PTX10002 - Router Juniper - Free user manual and instructions
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| Type | Router |
| Brand | Juniper |
| Model | PTX10002 |
| Dimensions (H x W x D) | 1.7 x 17.5 x 21.5 in (4.3 x 44.5 x 54.6 cm) |
| Weight | 25.5 lb (11.6 kg) |
| Power Supply | AC or DC, 1200W (redundant) |
| Power Consumption | 850W typical |
| Cooling | Front-to-back airflow, fan trays |
| Ethernet Ports | 36x 100GbE QSFP28 |
| Maximum Throughput | 3.6 Tbps |
| Routing Protocols | BGP, OSPF, IS-IS, MPLS, VXLAN, EVPN |
| Operating System | Junos OS |
| Memory | 16 GB SDRAM, 8 GB flash |
| Management Interfaces | Console, USB, RJ-45 management, out-of-band |
| Safety Certifications | EN 60825, UL 60950, CSA 60950 |
| Operating Temperature | 32°F to 104°F (0°C to 40°C) |
| Humidity | 5% to 90% non-condensing |
| Mounting | 19-inch rack mountable, 1 RU |
| Maintenance | Hot-swappable power supplies and fans |
| Repairability Index | 8/10 (modular components, field-replaceable) |
| Included Accessories | Rack mount kit, power cord, documentation |
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USER MANUAL PTX10002 Juniper
PTX10002-60C Packet Transport Router Hardware Guide
Juniper Networks, Inc.
1133 Innovation Way
Sunnyvale, California 94089
USA
408-745-2000
www.juniper.net
Juniper Networks, the Juniper Networks logo, Juniper, and Junos are registered trademarks of Juniper Networks, Inc. and/or its affiliates in the United States and other countries. All other trademarks may be property of their respective owners.
Juniper Networks assumes no responsibility for any inaccuracies in this document. Juniper Networks reserves the right to change, modify, transfer, or otherwise revise this publication without notice.
PTX10002-60C Packet Transport Router Hardware Guide
Copyright © 2018 Juniper Networks, Inc. All rights reserved.
The information in this document is current as of the date on the title page.
YEAR 2000 NOTICE
Juniper Networks hardware and software products are Year 2000 compliant. Junos OS has no known time-related limitations through the year 2038. However, the NTP application is known to have some difficulty in the year 2036.
END USER LICENSE AGREEMENT
The Juniper Networks product that is the subject of this technical documentation consists of (or is intended for use with) Juniper Networks software. Use of such software is subject to the terms and conditions of the End User License Agreement ("EULA") posted at https://www.juniper.net/support/eula/. By downloading, installing or using such software, you agree to the terms and conditions of that EULA.
Table of Contents
About the Documentation ...... Documentation and Release Notes ...... Documentation Conventions ...... Documentation Feedback ...... Requesting Technical Support ...... Self-Help Online Tools and Resources ...... Opening a Case with JTAC ....
Chapter 1
Overview 17
PTX10002-60C System Overview Benefits of the PTX10002-60C PTX10002-60C System Architecture Cooling and Power System Software Port Panel and Management Panel Field-Replaceable Units Panel PTX10002-60C Component Redundancy PTX10002-60C Optics and Cables
PTX10002-60C Port Panel ...... PTX10002 Port Description ...... PTX10002-60C Network Port LEDs ...... .....
PTX10002-60C Management Panel ...... PTX10002-60C Management Panel Components ...... PTX10002-60C Management Port LEDs ...... PTX10002-60C Chassis Status LEDs ...... 2
PTX10002-60C Cooling System Description and Airflow .... 3 Fan Modules ...... PTX10002-60C Chassis Airflow ...... Fan Module Status ....
PTX10002-60C Power System PTX10002-60C AC Power Supply Description PTX10002-60C DC Power Supply Description PTX10002-60C Power Supply LED PTX10002-60C AC Power Specifications PTX10002-60C AC Power Cord Specifications PTX10002-60C DC Power Specifications PTX10002-60C DC Power Cable Specifications
Chapter 2 Site Planning, Preparation, and Specifications ..... 4
PTX10002-60C Site Preparation Checklist
PTX10002-60C Site Guidelines and Requirements
PTX10002-60C Environmental Requirements and Specifications ..... 44
General Site Guidelines
PTX10002-60C Chassis Grounding Cable and Lug Specifications . . . . . . . 46
PTX10002-60C Clearance Requirements for Airflow and Hardware
Maintenance
PTX10002-60C Chassis Physical Specifications
Site Electrical Wiring Guidelines
PTX10002-60C Rack Requirements
PTX10002-60C Network Cable and Transceiver Planning
Determining Transceiver Support for the PTX10002-60C . . . . . . . . . . . . . . . . 50
Cable and Connector Specifications for MX Series and PTX Series
Devices
12-Fiber MPO Connectors
24-Fiber MPO Connectors
LC Duplex Connectors
Understanding Fiber-Optic Cable Signal Loss, Attenuation, and
Dispersion
Signal Loss in Multimode and Single-Mode Fiber-Optic Cable . . . . . . . 56
Attenuation and Dispersion in Fiber-Optic Cable . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Calculating Power Budget and Power Margin for Fiber-Optic Cables . . . . . . . 57
Calculating Power Budget for Fiber-Optic Cable 5
Calculating Power Margin for Fiber-Optic Cable 5
PTX10002-60C Management Cable Specifications and Pinouts
Cable Specifications for Console and Management Connections for the
PTX10002-60C
Management Port Connector Pinouts for the PTX10002-60C . . . . . . . . . . . . 60
Console Port Connector Pinouts for the PTX10002-60C 6
USB Port Specifications for the PTX10002-60C
RJ-45 Port, QSFP+ Port, QSFP28 Port, SFP+ Port, and SFP Port Connector
Pinout Information
Chapter 3 Initial Installation and Configuration
PTX10002-60C Installation Overview
Overview of Installing the PTX10002-60C
PTX10002-60C Installation Safety Guidelines
General Installation Safety Guidelines
PTX10002-60C Chassis Lifting Guidelines 6
Unpacking and Mounting the PTX10002-60C
Unpacking the PTX10002-60C
Mounting the PTX10002-60C in a Rack
Before You Begin Mounting the PTX10002-60C 7
Mounting the PTX10002-60C
Connect the PTX10002-60C to Power
Connecting the PTX10002-60C to Ground
Connecting AC Power to the PTX10002-60C
Connecting DC Power to the PTX10002-60C
Connecting the PTX10002-60C to External Devices . . . . . . . . . . . . . . . . . . . . .
Connecting the PTX10002-60C to a Management Ethernet Device ..... 83
Connecting the PTX10002-60C to a Management Console 84
Registering Products—Mandatory for Validating SLAs 8
Performing the Initial Software Configuration for the PTX10002-60C ..... 85
Powering Off the PTX10002-60C
Chapter 4 Maintaining Components....91
Maintaining the PTX10002-60C Fan Modules . . . . . . . . . . . . . . . . . . . . . . . .
Removing a Fan Module from the PTX10002-60C . . . . . . . . . . . . . . . . . .
Installing a Fan Module in the PTX10002-60C . . . . . . . . . . . . . . . . . . . . . . .
Maintaining the PTX10002-60C Power Supplies
Removing a Power Supply from the PTX10002-60C . . . . . . . . . . . . . . . . .
Installing a Power Supply in a PTX10002-60C . . . . . . . . . . . . . . . . . . . . . . .
Maintaining Transceivers and Fiber-Optic Cables on PTX10002-60C ..... 98
Removing a Transceiver . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Installing a Transceiver . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Disconnecting a Fiber-Optic Cable from a Device . . . . . . . . . . . . . . . . . . .
Connecting a Fiber-Optic Cable . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Maintaining Fiber-Optic Cables
Uninstalling the PTX10002-60C
Chapter 5 Troubleshooting Hardware
Troubleshooting the PTX10002-60C . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
PTX10002-60C Troubleshooting Resources Overview 107
PTX10002-60C Alarm Messages Overview . . . . . . . . . . . . . . . . . . . . . . . . . . .
Chassis Alarm Messages on the PTX10002-60C and Recommended
Actions
Chapter 6 Contacting Customer Support and Returning the Chassis or
Components
Contacting Customer Support . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Returning the PTX10002-60C Chassis or Components ..... 1
Locating the Serial Number on a PTX10002-60C Chassis or Component . . 114
Listing the Chassis and PTX10002-60C Component Details by Using
the CLI
Locating the Chassis Serial Number ID Label on a PTX10002-60C . . . . 115
Locating the Serial Number ID Labels on FRU Components ..... 115
Removing the Solid State Drives for RMA . . . . . . . . . . . . . . . . . . . . . . . . .
Returning a PTX10002-60C or Component for Repair or Replacement . . . . 118
Contacting Customer Support to Obtain Return Material Authorization . . . . 118
Packing a PTX10002-60C Chassis or Component for Shipping . . . . . . . . . 119
Packing a PTX10002-60C for Shipping . . . . . . . . . . . . . . . . . . . . . . . .
Packing PTX10002-60C Components for Shipping ..... 120
Chapter 7 Safety and Compliance Information
General Safety Guidelines and Warnings . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Definitions of Safety Warning Levels . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Qualified Personnel Warning . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Warning Statement for Norway and Sweden . . . . . . . . . . . . . . . . . . . . . . . . .
Fire Safety Requirements ....
Fire Suppression
Fire Suppression Equipment . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Installation Instructions Warning . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Chassis and Component Lifting Guidelines . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Restricted Access Warning
Ramp Warning
Rack-Mounting and Cabinet-Mounting Warnings . . . . . . . . . . . . . . . . . . . . . . . .
Grounded Equipment Warning
Laser and LED Safety Guidelines and Warnings . . . . . . . . . . . . . . . . . . . . . . . . . .
General Laser Safety Guidelines . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Class 1 Laser Product Warning . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Class 1 LED Product Warning . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Laser Beam Warning . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Radiation from Open Port Apertures Warning . . . . . . . . . . . . . . . . . . . . . . . . . .
Maintenance and Operational Safety Guidelines and Warnings ..... 140
Battery Handling Warning
Jewelry Removal Warning
Lightning Activity Warning
Operating Temperature Warning . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Product Disposal Warning . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
General Electrical Safety Guidelines and Warnings . . . . . . . . . . . . . . . . . . . . .
Action to Take After an Electrical Accident . . . . . . . . . . . . . . . . . . . . . . . . .
Prevention of Electrostatic Discharge Damage . . . . . . . . . . . . . . . . . . . . . . . . .
AC Power Electrical Safety Guidelines . . . . . . . . . . . . . . . . . . . . . . . . . . . .
AC Power Disconnection Warning . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
DC Power Electrical Safety Guidelines
DC Power Copper Conductors Warning . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
DC Power Disconnection Warning
DC Power Grounding Requirements and Warning . . . . . . . . . . . . . . . . . . . . . . .
DC Power Wiring Sequence Warning . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
DC Power Wiring Terminations Warning . . . . . . . . . . . . . . . . . . . . . . . . . .
Multiple Power Supplies Disconnection Warning . . . . . . . . . . . . . . . . . . . . . .
TN Power Warning
PTX10002-60C Agency Approvals and Compliance Statements ..... 159
PTX10002-60C Agency Approvals . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Compliance Statements for EMC Requirements . . . . . . . . . . . . . . . . . . .
Canada
European Community
Israel
Japan
United States
Compliance Statements for Environmental Requirements 161
Compliance Statements for NEBS . . . . . . . . . . . . . . . . . . . . . . . . . . . .
PTX10002-60C Compliance Statements for Acoustic Noise . . . . . . . . . . . . 161
List of Figures
Chapter 1 Overview ...... 17
Figure 1: PTX10002-60C
Figure 2: PTX10002-60C FRU Panel
Figure 3: PTX10002-60 Port Panel and Management Panel . . . . . . . . . . . . . . . .
Figure 4: PTX10002-60C FRU Panel
Figure 5: PTX10002-60C Port Panel . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Figure 6: Port LEDs....24
Figure 7: PTX10002-60C Port Panel and Management Panel ..... 2
Figure 8: PTX10002-60C Management Panel Components ..... 26
Figure 9: Management Port LEDs on a PTX10002-60C Switch . . . . . . . . . . . . . . . .
Figure 10: Chassis Status LEDs
Figure 11: PTX10002-60C Fan Module . . . . . . . . . . . . . . . . . . . . . . . . . .
Figure 12: Air Out Airflow Through the PTX10002-60C Chassis . . . . . . . . . . . . . . . .
Figure 13: PTX10002-60C Fan Module LED . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Figure 14: PTX10002-60C FRU Panel
Figure 15: PTX10002-60C AC Power Supply . . . . . . . . . . . . . . . . . . . . . . . . .
Figure 16: PTX10002-60C FRU Panel
Figure 17: DC Power Supply in a PTX10002-60C . . . . . . . . . . . . . . . . . . . . . . . .
Figure 18: AC Power Supply LED on a PTX10002-60C . . . . . . . . . . . . . . . . . . .
Figure 19: DC Power Supply LED on a PTX10002-60C
Chapter 2 Site Planning, Preparation, and Specifications ..... 4
Figure 20: Clearance Requirements for Airflow and Hardware Maintenance for the PTX10002-60C
Figure 21: 24-Fiber MPO Optical Lane Assignments .....
Figure 22: LC Duplex Connector
Chapter 3 Initial Installation and Configuration .....
Figure 23: Removing the Screws Holding the Cover . . . . . . . . . . . . . . . . . . . . .
Figure 24: Attaching Front Mounting Rails (PTX10002-60C) ..... 72
Figure 25: Attaching Rear Mounting Blades to the Rack (PTX10002-60C) . . . . . 73
Figure 26: Connecting a Grounding Cable to the PTX10002-60C ..... 76
Figure 27: Connecting an AC Power Cord to an AC Power Supply in the PTX10002-60C
Figure 28: Connecting a Straight DC Power Cable to a DC Power Supply in a PTX10002-60C (CBL-JNP-PWR-DSUB)
Figure 29: Connecting a Right-Angle DC Power Cable to a DC Power Supply in a PTX10002-60C (CBL-JNP-PWR-DSUB2)
Figure 30: Connecting a Right-Angle DC Power Cable to a DC Power Supply in a PTX10002-60C (CBL-JNP-PWR-DSUB3)
Figure 31: Connecting a PTX10002-60C to a Network for Out-of-Band Management
Figure 32: Connecting the PTX10002-60C Directly to a Management Console
Figure 33: Connecting the PTX10002-60C to a Management Console Through a Console Server ....
Chapter 4 Maintaining Components....91
Figure 34: Removing a Fan Module from a PTX10002-60C . . . . . . . . . . . . . . .
Figure 35: Installing a Fan Module in a PTX10002-60C . . . . . . . . . . . . . . . . . . .
Figure 36: Removing a Power Supply from a PTX10002-60C . . . . . . . . . . . . .
Figure 37: Inserting a Power Supply Blank Cover . . . . . . . . . . . . . . . . . . . . . . .
Figure 38: Removing a Power Supply Blank Cover . . . . . . . . . . . . . . . . . . . . .
Figure 39: Installing a Power Supply in a PTX10002-60C . . . . . . . . . . . . . . . .
Figure 40: Removing an SFP, SFP+, XFP, or a QSFP+ Transceiver . . . . . . . . . . . . . 10
Figure 41: Installing a Transceiver
Figure 42: Connecting a Fiber-Optic Cable to an Optical Transceiver Installed in a Device
Chapter 6 Contacting Customer Support and Returning the Chassis or Components ....
Figure 43: Removing or Replacing Flat-head Screws in the Access Door ..... 116
Figure 44: Remove or Replacing the Thumb-screw Fasteners ..... 1
Figure 45: Removing the SSDs . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Chapter 7 Safety and Compliance Information
Figure 46: Placing a Component into an Antistatic Bag . . . . . . . . . . . . . . . . . .
List of Tables
About the Documentation ....
Table 1: Notice Icons ..... xii
Table 2: Text and Syntax Conventions
Chapter 1 Overview ...... 17
Table 3: Maximum Supported Ports at Each Interface Speed . . . . . . . . . . . . . .
Table 4: PTX10002-60C FRUs and Spares
Table 5: Available Power Redundancy Options
Table 6: PTX10002-60 Port Capacities
Table 7: Network Port LEDs on QSFP+ Ports on a PTX10002-60C
Table 8: PTX10002-60C RJ-45 Management Port LEDs
Table 9: PTX10002-60C SFP Management Port LED
Table 10: PTX10002-60C Chassis Status LEDs
Table 11: PTX10002-60C Fan Module Description
Table 12: PTX10002-60C Fan Module LED
Table 13: PTX10002-60C AC Power Supply
Table 14: PTX10002-60C DC Power Supply
Table 15: PTX10002-60C Power Supply LED
Table 16: PTX10002-60C AC Power Specifications
Table 17: PTX10002-60C AC Power Cord Specifications
Table 18: PTX10002-60C DC Power Specifications
Table 19: PTX10002-60C DC Power Cable Specifications
Chapter 2 Site Planning, Preparation, and Specifications 4
Table 20: Site Preparation Checklist . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Table 21: PTX10002-60C Environmental Tolerances
Table 22: Physical Specifications for the PTX10002-60C
Table 23: Site Electrical Wiring Guidelines
Table 24: Rack Requirements for the PTX10002-60C
Table 25: Cable Signals for 12-Fiber Ribbon Patch Cables
Table 26: Cable Pinouts for 12-Fiber Ribbon Patch Cables
Table 27: Cable Pinouts for 12-Fiber Ribbon Breakout Cables
Table 28: 12-Ribbon Patch and Breakout Cables Available from Juniper Networks
Table 29: Estimated Values for Factors Causing Link Loss
Table 30: Cable Specifications for Console and Management Connections for the PTX10002-60C
Table 31: RJ-45 Management Port Connector Pinouts for the PTX10002-60C
Table 32: Console Port Connector Pinouts for the PTX10002-60C ..... 61
Table 33: 10/100/1000BASE-T Ethernet Network Port Connector Pinout Information
Table 34: SFP Network Port Connector Pinout Information .....
Table 35: SFP+ Network Port Connector Pinout Information ..... 6
Table 36: QSFP+ and QSFP28 Network Port Connector Pinout Information . . . . 64
Chapter 3 Initial Installation and Configuration
Table 37: Inventory of Components Supplied with a PTX10002-60C ..... 70
Chapter 5 Troubleshooting Hardware
Table 38: PTX10002-60C Chassis Alarm Messages .....
About the Documentation
• Documentation and Release Notes on page xi
• Documentation Conventions on page xi
• Documentation Feedback on page xiii
- Requesting Technical Support on page xiv
Documentation and Release Notes
To obtain the most current version of all Juniper Networksal documentation, see the product documentation page on the Juniper Networks website at https://www.juniper.net/documentation/.
If the information in the latest release notes differs from the information in the documentation, follow the product Release Notes.
Juniper Networks Books publishes books by Juniper Networks engineers and subject matter experts. These books go beyond the technical documentation to explore the nuances of network architecture, deployment, and administration. The current list can be viewed at https://www.juniper.net/books.
Documentation Conventions
Table 1 on page xii defines notice icons used in this guide.
Table 1: Notice Icons
| DescriptionMeaningIcon | ||
| Indicates important features or instructions.Informational note | ||
| Indicates a situation that might result in loss of data or hardware damage.Caution | ||
| Alerts you to the risk of personal injury or death.Warning | ||
| Alerts you to the risk of personal injury from a laser.Laser warning | ||
| Indicates helpful information.Tip | ||
| Alerts you to a recommended use or implementation.Best practice |
Table 2 on page xii defines the text and syntax conventions used in this guide.
Table 2: Text and Syntax Conventions
| ExamplesDescriptionConvention | ||
| Represents text that you type.Boldtext like this configuration mode, type theconfigurecommand:user@host>configure | ||
| Fixed-width text like this | Represents output that appears on theuser@host>show chassis alarms terminal screen.No alarms currently active | |
| Italic text like this | Introduces or emphasizes important new terms.Identifies guide names.Identifies RFC and Internet draft titles. | A policy term is a named structure that defines match conditions and actions.Junos OS CLI User GuideRFC 1997,BGP Communities Attribute |
| Italic text like this | Represents variables (options for which you substitute a value) in commands or configuration statements. | Configure the machine's domain name:[edit]root@# set system domain-name domain-name |
Table 2: Text and Syntax Conventions (continued)
| ExamplesDescriptionConvention | ||
| Text like this | Represents names of configuration statements, commands, files, and directories; configurationhierarchy levels; or labels on routing platform components. | To configure a stub area, include the stub statement at the [edit protocols ospf area area-id] hierarchy level.The console port islabeled CONSOLE. |
| < > (angle brackets) | Encloses optional keywords or variables. | stub; |
| | (pipe symbol) | Indicates a choice between the mutually exclusive keywords or variables on either side of the symbol. The set of choices (string1 | string2 | string3) often enclosed in parentheses for clarity. | |
| # (pound sign) | same line as the configuration statement to which it applies. | rsvp { # Required for dynamic MPLS only indicates a c |
| [ ] (square brackets) | Encloses a variable for which you can substitute one or more values. | community name members [ community-ids ] |
| Indention and braces ( { } ) | Identifies a level in the configuration hierarchy. | [edit]routing-options {static {route default {nexthop address;retain;}}} |
| ; (semicolon) | Identifies a leaf statement at a configuration hierarchy level. | |
| GUI Conventions | ||
| Bold text like this | Representsgraphical user interface(GUI) items you click or select. | In the Logical Interfaces box, select All Interfaces.To cancel the configuration, click Cancel. |
| > (bold right angle bracket) | Separates levels in a hierarchy of men to the configuration editor hierarchy, selections. | select Protocols>Ospf. |
Documentation Feedback
We encourage you to provide feedback, comments, and suggestions so that we can improve the documentation. You can provide feedback by using either of the following methods:
- Online feedback rating system—On any page of the Juniper Networks TechLibrary site at https://www.juniper.net/documentation/index.html, simply click the stars to rate the content, and use the pop-up form to provide us with information about your experience. Alternately, you can use the online feedback form at https://www.juniper.net/documentation/feedback/.
- E-mail—Send your comments to techpubs-comments@juniper.net. Include the document or topic name, URL or page number, and software version (if applicable).
Requesting Technical Support
Technical product support is available through the Juniper Networks Technical Assistance Center (JTAC). If you are a customer with an active J-Care or Partner Support Service support contract, or are covered under warranty, and need post-sales technical support, you can access our tools and resources online or open a case with JTAC.
- JTAC policies—For a complete understanding of our JTAC procedures and policies, review the JTAC User Guide located at https://www.juniper.net/us/en/local/pdf/resource-guides/7100059-en.pdf.
- Product warranties—For product warranty information, visit https://www.juniper.net/support/warranty/.
- JTAC hours of operation—The JTAC centers have resources available 24 hours a day, 7 days a week, 365 days a year.
Self-Help Online Tools and Resources
For quick and easy problem resolution, Juniper Networks has designed an online self-service portal called the Customer Support Center (CSC) that provides you with the following features:
• Find CSC offerings: https://www.juniper.net/customers/support/
• Search for known bugs: https://prsearch.juniper.net/
• Find product documentation: https://www.juniper.net/documentation/
• Find solutions and answer questions using our Knowledge Base: https://kb.juniper.net/
- Download the latest versions of software and review release notes: https://www.juniper.net/customers/csc/software/
- Search technical bulletins for relevant hardware and software notifications: https://kb.juniper.net/InfoCenter/
- Join and participate in the Juniper Networks Community Forum: https://www.juniper.net/company/communities/
- Open a case online in the CSC Case Management tool: https://www.juniper.net/cm/
To verify service entitlement by product serial number, use our Serial Number Entitlement (SNE) Tool: https://entitlementsearch.juniper.net/entitlementsearch/
Opening a Case with JTAC
You can open a case with JTAC on the Web or by telephone.
- Use the Case Management tool in the CSC at https://www.juniper.net/cm/.
- Call 1-888-314-JTAC (1-888-314-5822 toll-free in the USA, Canada, and Mexico).
For international or direct-dial options in countries without toll-free numbers, see https://www.juniper.net/support/requesting-support.html.
CHAPTER 1
Overview
• PTX10002-60C System Overview on page 17
• PTX10002-60C Port Panel on page 23
• PTX10002-60C Management Panel on page 25
- PTX10002-60C Cooling System Description and Airflow on page 31
• PTX10002-60C Power System on page 33
PTX10002-60C System Overview
The Juniper Networks PTX10002-60C Packet Transport Router is a second-generation PTX Series fixed configuration core router, featuring a compact, 2 U form factor that is easy to deploy in space-constrained Internet exchange locations, remote central offices, and embedded peering points throughout the network, including cloud-hosted services.
The PTX10002-60C offers flexible configuration of the 60 QSFP28 ports. Each port can be configured as either 100 Gbps, 40 Gbps, or 4 by 10 Gbps. It has up to 6 Tbps of throughput and 4 Bpps of forwarding capacity. The PTX10002-60C ships with four 1600 W AC or DC power supplies and three fan modules. See Figure 1 on page 17.
Figure 1: PTX10002-60C

natural_image
Line drawing of a rectangular electronic device with multiple ports and connectors (no text or symbols visible)
TIP: For information about features supported on PTX Series routers, see Feature Explorer.
• Benefits of the PTX10002-60C on page 18
• PTX10002-60C System Architecture on page 18
• Cooling and Power on page 18
• System Software on page 19
- Port Panel and Management Panel on page 19
• Field-Replaceable Units Panel on page 20
• PTX10002-60C Component Redundancy on page 21
• PTX10002-60C Optics and Cables on page 22
Benefits of the PTX10002-60C
- By offering the industry's highest 100GbE port density—up to 60 ports in a 2 U form factor—the PTX10002-60C enables you to seamlessly scale your core network from 10GbE and 40GbE architectures to 100GbE. The PTX10002-60C gives you a practical solution for keeping pace with evolving distributed core architecture requirements.
- The PTX10002-60C is engineered with hardware redundancy for cooling, power supplies, and forwarding. High Availability (HA) is critical for service providers to maintain an always-on infrastructure base and meet stringent SLAs across the core.
- Exceptional packet processing capabilities help alleviate the challenge of scaling the network as traffic levels increase while optimizing IP/MPLS transit functionality around superior performance and elegant deployability.
PTX10002-60C System Architecture
The system architecture cleanly separates control operations from packet forwarding operations. This design eliminates processing and traffic bottlenecks, permitting the PTX10002-60C to achieve high performance.
- Control operations are performed by the Routing Engine, which runs the Juniper Networks Junos operating system (Junos OS). The Routing Engine handles routing protocols, traffic engineering, policy, policing, monitoring, and configuration management. Junos OS is installed on the PTX10002-60C internal solid-state drives (SSDs). The PTX10002-60C has 2 x 64-GB SSDs. The Routing Engine is enhanced by a 2.5-GHz quad core Intel CPU and 32 GB of SDRAM.
- Forwarding operations are performed by the Packet Forwarding Engines, which include custom ASICs designed by Juniper Networks. The Q5 ASICs enable the PTX10002-60C to provide up to 6 terabits per second (Tbps) of throughput. The Q5 ASICs are connected to Hybrid Memory Cubes (HMCs). These high-efficiency memory modules provide packet buffering, virtual output queue (VOQ) memory, and improved logical system scale.
Cooling and Power
The cooling system in a PTX10002-60C consists of three 80-W fan modules that operate at 150 cubic feet per minute (CFM) at full speed as well as fans housed in the power supplies. Each fan module has dual counter-rotating fans. These fan modules can be hot-swapped and hot-inserted, meaning that you do not need to power off the router or disrupt the routing function to replace a module.
In the PTX10002-60C cooling system, cool air enters through the vents in the port panel and hot air exhausts through the field-replaceable unit (FRU) panel. This type of airflow is known as airflow out or port-to-FRU airflow.
The four AC or DC 1600-W power supplies are installed by the factory. See Figure 2 on page 19 for an example of the PTX10002-60C FRU panel. Each power supply provides 12 VDC output with a standby voltage of 12-VDC. The AC or DC power supplies in a PTX10002-60C are hot-removable and hot-insertable FRUs.
Figure 2: PTX10002-60C FRU Panel

System Software
PTX Series devices use the Junos operating system (OS), which provides Layer 2 and Layer 3 switching, routing, and security services. Junos OS is installed on the PTX10002-60C 25-gigabyte (GB) internal NAND solid state flash drive. The same Junos OS code base that runs on PTX10002-60C also runs on all Juniper Networks EX Series switches, and M Series, MX Series, and T Series routers.
For more information about which features are supported on PTX Series devices, see Feature Explorer.
You manage the router using the Junos OS command-line interface (CLI), which is accessible through the console and out-of-band management ports on the device.
Port Panel and Management Panel
The port panel of the PTX10002-60C contains 60 network ports and port LEDs. The management panel contains console and management ports, a reset button, system status LEDs, clocking ports, and a USB port. Figure3 on page20 shows the PTX10002-60C port panel and management panel.
Figure 3: PTX10002-60 Port Panel and Management Panel

2-1— Management panelPort panel
Each of the 60 network ports support quad small-form factor pluggable (QSFP+) transceivers and the 28-Gbps QSFP+ Pluggable Solution (QSFP28) transceivers. The interfaces on a PTX10002-60C can be configured to support 10-Gbps, 40-Gbps, and 100-Gbps port speeds. Table 3 on page 20 describes the maximum number of ports for each interface type supported by the PTX10002-60C.
Table 3: Maximum Supported Ports at Each Interface Speed
| Maximum Supported PortsInterface Type | |
| 19210-Gigabit Ethernet | |
| 6040-Gigabit Ethernet | |
| 60100-Gigabit Ethernet |
You manage the PTX10002-60C by using the Junos OS CLI, which is accessible through the console and out-of-band management ports on the management panel. In addition, the management panel has system status LEDs that alert you to minor or major alarms or other issues with the router, external clock synchronization ports, and a USB port to support software installation and recovery.
See Also • PTX10002-60C Management Panel on page 25
Field-Replaceable Units Panel
The field-replaceable units (FRU) panel of the PTX10002-60C contains the fan modules, power supplies, and ESD grounding point for the PTX10002-60C. The PTX10002-60C FRUs are hot-removable and hot-insertable—you can remove and replace them without powering off the PTX10002-60C or disrupting the routing function. Figure 4 on page 21 shows the PTX10002-60C FRU panel.
Figure 4: PTX10002-60C FRU Panel

Table 4 on page 21 lists the model numbers and CLI output for PTX10002-60C FRUs.
Table 4: PTX10002-60C FRUs and Spares
| CLI OutputSpare Juniper Model Number | ||
| PTX10002-60CPTX10002-CHAS-SChassis | ||
| PTX10002-FAN-SFan module | PTX10002-60C Fan Tray, Front to Back Airflow - AFO | |
| Power ACUFOs 1600W PSUJPSU-1600W-AC-AFO | ||
| JPSU-1600W-DC-AFO | DC AFO 1600W PSU |
For more information about the components on the FRU panel, see "PTX10002-60C Cooling System Description and Airflow" on page 31 and "PTX10002-60C Power System" on page 33.

NOTE: If you have a Juniper Care service contract, register any addition, change, or upgrade of hardware components at
https://www.juniper.net/customers/support/tools/updateinstallbase/. Failure
to do so can result in significant delays if you need replacement parts. This note does not apply if you replace existing components with the same type of component.
See Also • request vmhost snapshot
• show vmhost hardware
PTX10002-60C Component Redundancy
The following hardware components provide redundancy on the PTX10002-60C:
- Cooling system—The PTX10002-60C has three fan modules. Each fan module is a redundant unit containing two fans. If a fan module fails and the remaining fan modules are unable to keep the PTX10002-60C within the desired temperature thresholds, chassis alarms are raised and the PTX10002-60C might shut down.
- Power supplies
As shown in Table 5 on page 22, the PTX10002-60C can operate with a single DC input power supply or a single AC input power supply for 220VAC operation. A minimum of two AC power supplies are required to operate the PTX10002-60C at 110VAC.

CAUTION: When running the switchinnon-redundant mode, installa power supplycover(PTX10002-PWR-BLNK)inanyunusedpowerbaysforsafety, cooling, and emissions control.
The recommended configuration is to run the switch with twice as much power as needed, also called 2N, for full power redundancy. To provide additional power for switch redundancy or feed-redundancy, see Table 5 on page 22.
Table 5: Available Power Redundancy Options
| Non-redundant (N)PowerModel | 2N or Dual Feed | ||
| 1220 VACPTX10002-60C | |||
| For power feed redundancy, connect power source feed A to power supplies 0 or 1 and connect power source feed B to power supplies 2 or 3. The remaining slots should be covered with a power supply cover. | |||
| 2110 VAC | 4 | ||
| For power feed redundancy, connect power source feed A to power supplies 0 and 1 and connect power source feed B to power supplies 2 and 3. | |||
| 1DCPTX10002-60C2DC | |||
| For power feed redundancy, connect power source feed A to power supplies 0 or 1 and connect power source feed B to power supplies 2 or 3. The remaining slots should be covered with a power supply blank cover. | |||
See Also
• PTX10002-60C Cooling System Description and Airflow on page 31
• PTX10002-60C Power System on page 33
PTX10002-60C Optics and Cables
The PTX10002-60C supports the following types of optics and cables:
- 100-Gigabit Ethernet using 28-Gbps QSFP28 optical transceivers and 100-Gbps active optical cables (AOCs).
- 40-Gigabit Ethernet using QSFP+ optical transceivers, 40-Gbps AOCs, or 40-Gbps direct attach copper (DAC) cables.
- 10-Gigabit Ethernet using DAC breakout cables (DACBO). When configured for channelization, a breakout cable converts the 40-Gigabit Ethernet port into 4 independent 10-Gigabit Ethernet ports.
For a detailed list of supported optical transceivers and electrical cables, see The Hardware Compatibility Tool.
See Also
- Maintaining Transceivers and Fiber-Optic Cables on PTX10002-60C on page 98
PTX10002-60C Port Panel
The port panel of the PTX10002-60C consists of 60 high-density 100-Gigabit Ethernet quad small form-factor pluggable solution (QSFP28) ports and the management panel. The highly-flexible ports support 10-Gbps, 40-Gbps and 100-Gbps port speeds. See Figure 5 on page 23
Figure 5: PTX10002-60C Port Panel

This topic describes:
- PTX10002 Port Description on page 23
• PTX10002-60C Network Port LEDs on page 24
PTX10002 Port Description
The PTX10002-60C ports support the flexible configuration of 100-Gbps, 40-Gbps, and 10-Gbps. Each port auto-senses a 100-Gbps QSFP28 or 40-Gbps QSFP transceiver and sets the speed accordingly. Any of the 60 ports, 0 through 59, can be configured as either uplink or access ports. See Table 6 on page 24.
Table 6: PTX10002-60 Port Capacities
| Per RouterPer Port | |
| 60 x 100 Gbps1 x100 Gbps | |
| 60 x 40 Gbps1 x 40 Gbps | |
| 192 x 10 Gbps4 x 10 Gbps |
PTX10002-60C Network Port LEDs
Each PTX10002-60C QSFP+ port uses a single bi-colored LED to indicate link status and activity. See Figure 6 on page 24 for an example of these triangle shaped LEDs.
Figure 6: Port LEDs

The same single bi-colored LED also indicates when the interface is configured and connected using an optical split cable or a copper DACBO cable to a 10-Gigabit Ethernet port.
There are some slight differences in the amber LED behavior depending on the firmware level of the complex programmable logic device (CPLD) in your router and the Junos release level running on the router. To determine the Junos release level, use the show version command. To determine the CPLD of your router, use the show chassis firmware command. For example:
| root@> show chassis firmware | ||
| Part | Type | Version |
| FPC 0 | U-Boot | *** |
| loader | FreeBSD/i386 bootstrap loader 1.2 | |
| BIOS | V0018.2U | |
| EC FPGA | 2.3 | |
| MAIN_CPLD | 1.10 | |
| MEZZ_CPLD | 1.10 | |
| RE FPGA | 2.4 | |
root@>
See Table 7 on page 25 for how to interpret the QSFP+ LEDs.
Table 7: Network Port LEDs on QSFP+ Ports on a PTX10002-60C
| DescriptionStateColor | ||
| OffUnlit | The port is administratively disabled, there is no power, the link is down, or a transceiver is not present. All sub-channels are disabled. | |
| On steadilyGreen | A link is established. When channelized, all sub-channels are up.When not channelized, it indicates no activity. | |
| 1750 ms off) | The beacon function was enabled on the port.Slow blinking (250 ms on and | |
| Blinking (500 ms on and 500 ms off) | When channelized, all four channels are up and active. When not channelized, it indicates the port is up and active in either 40-Gigabit or 100-Gigabit mode. | |
| On steadilyAmber | For Junos Release 15.1X53-D21 or later and CPLD version V1.16 or later:One or more breakout connections (sub-channels) are up. However not all sub-channels are up and there is no port activity. | |
| For Junos Release 15.1X53-D10 to 15.1X53-D20 and CPLD version V1.10:Solid yellow LED is not available. | ||
| Blinking | One or more breakout connections (sub-channels) are up. At least one sub-channel has activity, but not all connections are active. | |
PTX10002-60C Management Panel
The PTX10002-60C management panel is found next to the port panel (see Figure 7 on page 25).
Figure 7: PTX10002-60C Port Panel and Management Panel

Port panel
2-1— Management panel
This topic covers:
- PTX10002-60C Management Panel Components on page 26
• PTX10002-60C Management Port LEDs on page 27
• PTX10002-60C Chassis Status LEDs on page 28
PTX10002-60C Management Panel Components
You manage the PTX10002-60C by using the Junos OS CLI, which is accessible through the console and out-of-band management ports on the management panel. The management panel has system status LEDs that alert you to minor or major alarms or other issues with the router, external clock synchronization ports, and a USB port to support software installation and recovery. Figure 8 on page 26 shows the management panel in detail.
Figure 8: PTX10002-60C Management Panel Components

| em0-RJ-45 (1000BASE-T) management Ethernet port (MGMT). | 6-1- PTP Ethernet-SFP (1000BASE-T) port (ETH) |
| RJ-45 console port (CON) to support RS-232 serial ports. The LED below the indicates link status and link activity. | 7-20 Hz pulses-per-second (PPS) portSubMiniature B (SMB) connector for input and output measuring of the timing drift to and from a grandmaster clock |
| Reset button. Press and hold 5 seconds reset the hardware. Clock functions and FPGA status registers are not reset. | 8e-30 MHz SMB timing connector (10MHz) |
| Status LEDs-Power (PWR), status (STA), major alarm (MJR), and minor alarm (MIN). | 9-4- USB port |
| 5-em1-SFP management Ethernet port (MGMT). |
PTX10002-60C Management Port LEDs
There are two management ports on the PTX10002-60C. Both are labeled MGMT. The RJ-45management port is for 10/100/1000BASE-T connections and the small form-factor pluggable (SFP) management port is for 10/100/1000BASE-T and 1000BASE-X connections.
The RJ-45 port has separate LEDs for status and activity. The copper, RJ-45, port has separate LEDs for status and activity. The fiber, SFP, port has a combination link and activity LED. Figure 9 on page 27 shows the location of the LEDs.
Figure 9: Management Port LEDs on a PTX10002-60C Switch
| Status LED (RJ-45) | 3-1- Green indicates the link is up; blinking indicates activity (SFP) |
| 2-Activity LED (RJ-45) |
Table 8 on page 27 describes the RJ-45 management port LEDs.
Table 8: PTX10002-60C RJ-45 Management Port LEDs
| DescriptionStateColorLED | |||
| No link is established, there is a fault, or the link is down.OffUnlitLinI | |||
| Yellow | Blinking or flickering | A link is established, and there is link activity. | |
| OffUnlitStatus | Either the port speed is 10 M or the link is down. | ||
| Green | On steadily | The port speed is 1000 M. |
Table 9 on page 28 describes the SFP management port LED.
Table 9: PTX10002-60C SFP Management Port LED
| DescriptionStateColorLED | |||
| No link is established, there is a fault, or the link is down.OffUnlitLink a | |||
| A link is established, but there is no link activity.On steadilyGreen | |||
| A link is established, and there is link activity.Blinking or flickering |
PTX10002-60C Chassis Status LEDs
The PTX10002-60C has four status LEDs on the port side of the chassis, next to the access ports (see Figure 10 on page 28).
Figure 10: Chassis Status LEDs

| 3—1—PWR | |
| 2—MJR | 4—MIN |
STS
Table 10 on page 28 describes the chassis status LEDs on a PTX10002-60C.
Table 10: PTX10002-60C Chassis Status LEDs
| Name | Color | State | Description |
| PWR-Alarm | Unlit | Off | The router is powered off; no power to the device. |
| Green | On steadily | Power is working correctly. | |
| Yellow | Blinking | There is a problem with chassis power. Power off the PTX10002-60C by setting the AC power source outlet to the OFF (O) position, or unplugging the AC power cords. Correct any voltage issues. Power on the PTX10002-60C and monitor the power supply and fan LEDs to help determine where the error is occurring. If there is any CPU power failure, the system will not boot.DescriptionStateColorName | |
| The router is powered off or halted.OffUnlitSTA-Status | |||
| Junos OS for PTX Series is loaded on the router.On steadilyGreen | |||
| BlinkingGreen | The beacon feature is enabled on the router. This feature is enabled using therequest chassis beaconcommand. | ||
| The router detects a fault.BlinkingYellow | |||
| alarm | There are no major alarms.OffUnlitMJR-Major | ||
| On steadilyRed | A major hardware fault has occurred, such as a temperature alarm or power failure, and the router has halted. | ||
| alarm | There are no minor alarms.OffUnlitMIN-Minor | ||
| A minor alarm has occurred, such as a software error.On steadilyYellow |
For power and temperature alarms, you can use the show chassis environment fpc operational mode command to get detailed information on the internal state of the chassis. For example:
user@device> show chassis environment fpc
| FPC 0 status: | |
| State | Online |
| Temperature | 51 degrees C / 123 degrees F |
| Voltage: | |
| PE0 VDD Core 0.9V | 949 mV |
| PE0 AVDD 1.0V | 1000 mV |
| PE0 HMC VDD 0.9V | 897 mV |
| PE0 HMC AVDD 1.2V | 1197 mV |
| PE01 HMC VDD 1.2V | 1197 mV |
| PE1 VDD Core 0.9V | 949 mV |
| PE1 AVDD Core 1.0V | 999 mV |
| PE1 HMC VDD 0.9V | 899 mV |
| PE1 HMC AVDD 1.2V | 1197 mV |
| PE2 VDD Core 0.9V | 950 mV |
| PE2 AVDD Core 1.0V | 999 mV |
| PE2 HMC VDD 0.9V | 897 mV |
| PE2 HMC AVDD 1.2V | 1197 mV |
| PE23 HMC AVDD 1.2V | 1197 mV |
| PE3 VDD Core 0.9V | 949 mV |
| PE3 AVDD Core 1.0V | 999 mV |
| PE3 HMC VDD 0.9V | 899 mV |
| PE3 HMC AVDD 1.2V | 1200 mV |
| PE4 VDD Core 0.9V | 949 mV |
| PE4 AVDD Core 1.0V | 999 mV |
| PE4 HMC VDD 0.9V | 899 mV |
| PE4 HMC AVDD 1.2V | 1197 mV |
| PE45 HMC AVDD 1.2V | 1197 mV |
| PE5 VDD Core 0.9V | 949 mV |
| PE5 AVDD Core 1.0V | 1000 mV |
| PE5 HMC VDD 0.9V | 899 mV |
| PE5 HMC AVDD 1.2V | 1200 mV |
| XMB VDD 3.3V | 3316 mV |
| MAIN VDD 3.3V | 3298 mV |
| RT VDD 1.0V | 999 mV |
| MAIN VDD 2.5V | 2502 mV |
| MAIN PFE 1.5V | 1502 mV |
| PE6 VDD Core 0.9V | 949 mV |
| PE6 AVDD 1.0V | 1000 mV |
| PE6 HMC VDD 0.9V | 897 mV |
| PE6 HMC AVDD 1.2V | 1204 mV |
| PE67 HMC VDD 1.2V | 1197 mV |
| PE7 VDD Core 0.9V | 949 mV |
| PE7 AVDD Core 1.0V | 999 mV |
| PE7 HMC VDD 0.9V | 897 mV |
| PE7 HMC AVDD 1.2V | 1197 mV |
| PE8 VDD Core 0.9V | 949 mV |
| PE8 AVDD Core 1.0V | 999 mV |
| PE8 HMC VDD 0.9V | 897 mV |
| PE8 HMC AVDD 1.2V | 1200 mV |
| PE78 HMC AVDD 1.2V | 1197 mV |
| PE9 VDD Core 0.9V | 950 mV |
| PE9 AVDD Core 1.0V | 999 mV |
| PE9 HMC VDD 0.9V | 897 mV |
| PE9 HMC AVDD 1.2V | 1200 mV |
| PE10 VDD Core 0.9V | 949 mV |
| PE10 AVDD Core 1.0V | 999 mV |
| PE10 HMC VDD 0.9V | 899 mV |
| PE10 HMC AVDD 1.2V | 1200 mV |
| PE910 HMC AVDD 1.2V | 1200 mV |
| PE11 VDD Core 0.9V | 950 mV |
| PE11 AVDD Core 1.0V | 999 mV |
| PE11 HMC VDD 0.9V | 899 mV |
| PE11 HMC AVDD 1.2V | 1200 mV |
| PF0 VDD Core 0.9V | 950 mV |
| PF0 AVDD Core 1.0V | 999 mV |
| PF1 VDD Core 0.9V | 950 mV |
| PF1 AVDD Core 1.0V | 999 mV |
| XDB VDD 3.3V | 3298 mV |
| XDB RT VDD 1.0V | 999 mV |
| MEZZ VDD 2.5V | 2502 mV |
| MEZZ PFE 1.5V | 1502 mV |
| MEZZ GEX 1.0V | 999 mV |
| VCC 1.0V | 1009 mV |
| VCC 0.85V | 862 mV |
| VDD RAIL 12.0V | 0 mV |
| VCC 1.8V | 1793 mV |
| VDD 1.2V | 1215 mV |
| PCH VCC 1.0V | 999 mV |
| CPU VCC 1.8V | 1803 mV |
| BIAS 1 3.3V | 3312 mV |
| AUX VCC 5.0V | 4165 mV |
| DDR VDD 1.5V | 1499 mV |
| VTT SA CPU 0.8V | 803 mV |
| VTT CPU 1.05V | 1048 mV |
| CORE CPU 1.0V | 940 mV |
| PCH VCC 1.5V | 1509 mV |
| PCH VCC 1.05V | 1058 mV |
| VDD 2.5V | 2508 mV |
See Also show chassis alarms.
PTX10002-60C Cooling System Description and Airflow
The cooling system in a PTX10002-60C consists of three 80-W fan modules in a fan tray and two counter-rotating fans housed in each of the power supplies.
The PTX10002-60C brings air into the vents in the port panel and exhausts warmed air through the field-replaceable units (FRU) panel. This type of airflow is known as airflow out or port-to-FRU airflow.
This topic describes:
• Fan Modules on page 31
• PTX10002-60C Chassis Airflow on page 32
• Fan Module Status on page 32
Fan Modules
The fan modules in a PTX10002-60C are hot-removable and hot-insertable FRUs designed for port-to-FRU airflow. The fan modules numbered 0 through 2 are installed in the fan tray located next to the power supplies. Each fan module slot has a fan icon next to it.
Figure 11 on page 31 shows the 2 U fan module for the PTX10002-60C.
Figure 11: PTX10002-60C Fan Module

natural_image
Technical line drawing of a mechanical component with hexagonal cutouts and mounting brackets (no text or symbols)You remove and replace a fan module from the FRU end of the chassis. The router continues to operate for a limited period of time (30 seconds) during the replacement of the fan module without thermal shutdown.

NOTE: All fan modules must be installed for optimal operation of the router.
Table 11 on page 32.
Table 11: PTX10002-60C Fan Module Description
| Label on the FanModuleFan Module | Color of FanModuleHandle | Direction of Airflow inthe Fan Module | Power Supplies | |
| Juniper GoldAIR | OUT-TO-1BRO2aFAW is where air enters on thesupplies that have end with the ports and gold-colored handles with exits on the end with AIR OUT labels.fans (also known as airflow out). | All models only use powe |
See Also PTX10002-60C System Overview on page 17.
- Maintaining the PTX10002-60C Fan Modules on page 91
PTX10002-60C Chassis Airflow
In data center deployments, position the router in such a manner that the AIR OUT labels on router components are next to the hot aisle. Figure 12 on page 32 shows the airflow through the chassis.
Figure 12: Air Out Airflow Through the PTX10002-60C Chassis

flowchart
graph TD
A["FRUs"] --> B["Port"]
B --> C["Port"]
C --> D["Port"]
D --> E["Port"]
E --> F["Port"]
F --> G["Port"]
G --> H["Port"]
H --> I["Port"]
I --> J["Port"]
J --> K["Port"]
K --> L["Port"]
L --> M["Port"]
M --> N["Port"]
N --> O["Port"]
O --> P["Port"]
P --> Q["Port"]
Q --> R["Port"]
R --> S["Port"]
S --> T["Port"]
T --> U["Port"]
U --> V["Port"]
V --> W["Port"]
W --> X["Port"]
X --> Y["Port"]
Y --> Z["Port"]
Z --> AA["Port"]
AA --> AB["Port"]
AB --> AC["Port"]
AC --> AD["Port"]
AD --> AE["Port"]
AE --> AF["Port"]
AF --> AG["Port"]
AG --> AH["Port"]
AH --> AI["Port"]
AI --> AJ["Port"]
AJ --> AK["Port"]
AK --> AL["Port"]
AL --> AM["Port"]
AM --> AN["Port"]
AN --> AO["Port"]
AO --> AP["Port"]
AP --> AQ["Port"]
AQ --> AR["Port"]
AR --> AS["Port"]
AS --> AT["Port"]
AT --> AU["Port"]
AU --> AV["Port"]
AV --> AW["Port"]
AW --> AX["Port"]
Fan Module Status
You can check the status of fan modules through the show system alarms or show chassis fan commands or by looking at the LEDs next to each fan module. For example:
user@device> show chassis fan
| Item | Status | RPM | Measurement |
| Tray 0 Fan 0 | Absent | ||
| Tray 0 Fan 1 | Absent | ||
| Tray 1 Fan 0 | OK | 5000 | Spinning at normal speed |
| Tray 1 Fan 1 | OK | 4400 | Spinning at normal speed |
| Tray 2 Fan 0 | OK | 5000 | Spinning at normal speed |
| Tray 2 Fan 1 | OK | 4400 | Spinning at normal speed |
Each router has a status LED (labeled ST) for each fan module on the left side of the corresponding fan module slot. It indicates the status of all the fan modules.
Figure13 on page 33 shows the location of the LED next to the PTX10002-60C fan module.
Figure 13: PTX10002-60C Fan Module LED

1— Fan LED
Table 12 on page 33
Table 12: PTX10002-60C Fan Module LED
| DescriptionStateColor | ||
| On steadilyGreen | The fan module is operating normally. The system has verified that the module is engaged, and that the fan is operating correctly. | |
| On steadilyAmber | An error has been detected in the fan module. Replace the fan module as soon as possible. Either the fan has failed or it is seated incorrectly. To maintain proper airflow through the chassis, leave the fan module installed in the chassis until you are ready to replace it. |
Under normal operating conditions, the fan modules operate at a moderate speed. Temperature sensors in the chassis monitor the temperature within the chassis.
The system raises an alarm if a fan module fails or if the ambient temperature inside the chassis rises above the acceptable range. If the temperature inside the chassis rises above the threshold temperature, the system shuts down automatically.
PTX10002-60C Power System
- PTX10002-60C AC Power Supply Description on page 34
- PTX10002-60C DC Power Supply Description on page 35
• PTX10002-60C Power Supply LED on page 37
• PTX10002-60C AC Power Specifications on page 39 - PTX10002-60C AC Power Cord Specifications on page 39
- PTX10002-60C DC Power Specifications on page 40
- PTX10002-60C DC Power Cable Specifications on page 41
PTX10002-60C AC Power Supply Description
The AC power supplies in the PTX10002-60C (see Figure 14 on page 34 and
Figure 15 on page 34) are hot-removable, and hot-insertable field-replaceable units (FRUs) that you can install without powering off the router or disrupting the routing function. The PTX10002-60C has four power supplies. All the power supplies are initially installed at the factory.

CAUTION: Do not mix AC and DC power supplies in the same chassis.
Figure 14: PTX10002-60C FRU Panel

Figure 15: PTX10002-60C AC Power Supply

Each of the 1600-W power supplies has a single AC input. The power supply provides 12-VDC output with a standby voltage of 12 VDC. A PTX10002-60C provides for twice the number of power supplies needed to power all of the components in the device, which is known as 2N redundancy. When the PTX10002-60C has all four power supplies installed and connected to power, the router has full power redundancy. If a power supply fails or is removed, another power supply balances the electrical load without interruption.

NOTE: For more information about power system redundancy, see "PTX10002-60C Component Redundancy" on page 21.
The fan in the power supply provides port-to-FRU airflow, which is also known as airflow out (AFO). A power supply with the label AFO or a gold-colored handle denotes port-to-FRU airflow.
Table 13 on page 35 shows the characteristics of the power supply.
Table 13: PTX10002-60C AC Power Supply
| Color of Power SupplyHandleDirection of Air |
Juniper GoldPort-to-FRUJPSU-1600W-AC-AF

CAUTION: To avoid electrical injury, carefully follow the instructions in "Maintaining the PTX10002-60C Power Supplies" on page 94.
PTX10002-60C DC Power Supply Description
The DC power supplies in the PTX10002-60C (see Figure 16 on page 35 and
Figure17 on page 36) are hot-removable and hot-insertablefield-replaceable units (FRUs) that you can install without powering off the router or disrupting the routing function. The PTX10002-60C has four power supplies. All the power supplies are initially installed at the factory.

CAUTION: Do not mix AC and DC power supplies in the same chassis.
Figure 16: PTX10002-60C FRU Panel

Figure 17: DC Power Supply in a PTX10002-60C

| 3-1- HandleStatus LED | |
| 2-Ejector lever |
Each of the four1600-W power supplies has a single DC input. The powersupply provides 12-VDC output with a standby voltage of 12 VDC. A PTX10002-60C provides for twice the number of power supplies needed to powerall of the components in the router, which is known as 2N redundancy. When the PTX10002-60C has all four power supplies installed and connected to power, the router has full power redundancy. If a power supply fails or is removed, another power supply balances the electrical load without interruption.

NOTE: For more information about power system redundancy, see "PTX10002-60C Component Redundancy" on page 21.
The fan in the power supply provides port-to-FRU airflow, which is also known as airflow out (AFO). A power supply with the label AFO or a gold-colored handle denotes port-to-FRU airflow.
Table 14 on page 36 shows the characteristics of the DC power supply.
Table 14: PTX10002-60C DC Power Supply
| Color of Power Supply HandleDirection of Air | |||
| 1600-W | JPSU-1600W-DC-AFO | Juniper GoldPort-to-FRU |

CAUTION: To avoid electrical injury, carefully follow instructions in "Maintaining the PTX10002-60C Power Supplies" on page 94.

NOTE: We recommend that the 48-VDC facility DC source be equipped with a circuit breaker rated at 40 A (-48 VDC) minimum, or as required by local code.
See Also PTX10002-60C System Overview on page 17.
•Prevention of Electrostatic Discharge Damage on page 147
- Maintaining the PTX10002-60C Power Supplies on page 94
PTX10002-60C Power Supply LED
Each PTX10002-60C power supply has a status LED on the power supply faceplate.
Figure 18 on page 37 shows the location of the LED on a PTX10002-60C AC power supply and Figure 19 on page 37 shows the location of the LED on a PTX10002-60C DC power supply.
Figure 18: AC Power Supply LED on a PTX10002-60C

natural_image
Technical line drawing of a device front panel with circular and rectangular components (no text or symbols)1— Status LED
Figure 19: DC Power Supply LED on a PTX10002-60C

natural_image
Technical line drawing of a mechanical component with labeled parts (no text or symbols beyond part numbers)1— Status LED
Use Table 15 on page 37 to interpret the state of the power supply LED.
Table 15: PTX10002-60C Power Supply LED
| DescriptionStateColor | ||
| Green | The power supply is on and operating correctly.On steadily | |
| Amber | Off | |
| Green | Slow blinking (1 Hz) | The power supply is in cold standby mode; only the 12 V DC input is present. |
| Amber | Off | |
| Green | The power supply is uploading firmware.Blinking (2 Hz) | |
| Amber | Off | |
| Green | Off | Warning events are being detected; the power supply continues to operate. Often these events are because of rising temperatures. Check the fans and ensure there is proper airflow through the chassis. |
| Amber | Blinking | |
| Green | Off | Either the power cord is unplugged or a major error is detected in the power supply. Examples of a major error are: power supply failure, an over voltage protection error, an over current protection error, or a fan failure. |
| Amber | On steadily | If the power cord is unplugged or missing, reattach the power cord appropriate for your country.If a major error is occurring, Replace the power supply as soon as possible. To maintain proper airflow through the chassis, leave the power supply installed in the chassis until you are ready to replace it. |
| Green | There is no AC power to any of the power supplies.Off | |
| Amber | Off |
You can get additional information about the status of the power modules using the show chassis power command. For example:
user@device> show chassis power
PEM 0:
State: Online
Capacity: 1600 W (maximum 1600 W)
DC output: 372 W (zone 0, 31 A at 12 V, 23% of capacity)
PEM 1:
State: Online
Capacity: 1600 W (maximum 1600 W)
DC output: 324 W (zone 0, 27 A at 12 V, 20% of capacity)
PEM 2:
State: Online
Capacity: 1600 W (maximum 1600 W)
DC output: 312 W (zone 0, 26 A at 12 V, 19% of capacity)
PEM 3:
State: Online
Capacity: 1600 W (maximum 1600 W)
DC output: 312 W (zone 0, 26 A at 12 V, 19% of capacity)
System:
Zone 0:
Capacity: 6400 W (maximum 6400 W)
Allocated power: 1320 W (5080 W remaining)
Actual usage: 1320 W
Total system capacity: 6400 W (maximum 6400 W)
Total remaining power: 5080 W
PTX10002-60C AC Power Specifications
Table 16 on page 39 describes the AC power specifications for a PTX10002-60C.
Table 16: PTX10002-60C AC Power Specifications
| SpecificationsItem | |
| Operating range: 100–240 VACAC input voltage | |
| 50–60 HzAC input line frequency | |
| 11.5 A at 100–120 VACAC input current rating | |
| 14 A at 100–120 VACAC input current rating | |
| 1728 WTypical power consumption | |
| 1824 WMaximum power consumption |
PTX10002-60C AC Power Cord Specifications
Detachable AC power cords are shipped with the chassis if you include them as part of your order. The coupler is type C13 as described by International Electrotechnical Commission (IEC) standard 60320. The plug at the male end of the power cord fits into the power source outlet that is standard for your geographical location.

NOTE: In North America, AC power cords must not exceed 14.75 feet (approximately 4.5 meters) in length, to comply with National Electrical Code (NEC) Sections 400-8 (NFPA 75, 5-2.2) and 210-52 and Canadian Electrical Code (CEC) Section 4-010(3). The cords that can be ordered for the PTX10002-60C are in compliance.
Table17 on page40 lists AC powercord specifications provided for each country or region.
Table 17: PTX10002-60C AC Power Cord Specifications
| Electrical SpecificationsCountry/Region | Shipped Juniper Model NumberPlug | Spare Juniper Model Standards | Graphic | ||
| CBL-EX-PWR-C13-AUCG_CBL-C13-06-AUAS/NZ 3109 | |||||
| CBL-EX-PWR-C13-CHCG_CBL-C13-06-CHGB 1002-199 | |||||
| Italy, Switzerland,and UnitedKingdom) | CBL-EX-PWR-C13-EUCG_CBL-C13-06-EUCEE (7) VII2 | ||||
| Italy | 250 VAC, 10 A, 50 Hz | CEI 23-16/VII | CG_CBL-C13-06-IT | CBL-EX-PWR-C13-IT | |
| Japan | 125 VAC, 12 A, 50 Hz or 60 Hz | JIS C8303 | CG_CBL-C13-06-JP | CBL-EX-PWR-C13-JP | |
| North America | 250 VAC, 13 A, 60 Hz250 VAC, 13 A, 60 Hz | 49-92HzNEMA L6-15NEMA 6-15 | CG_CBL-C13-06-USCAN | NETSAX-RWRC-C13-USCBL-PW-C13-250-USCBL-PWR-C13-250-US | |
| South Korea | 250 VAC, 10 A, 60 Hz250 VAC, 13 A, 60 Hz | CBL-EX-PWR-C13-KRCG_CBL-C13-06-KRKSC 8305; | |||
| 250 VAC, 10 A, 50 Hz | SWITH 2019 1991;EN 60320 C13 | CG_CBL-C13-06-SZ | CBL-EX-PWR-C13-SZ | ||
| United Kingdom | 250 VAC, 10 A, 50 Hz | BS 1363/A | CG_CBL-C13-06-UK | CBL-EX-PWR-C13-UK | |
PTX10002-60C DC Power Specifications
Table 18 on page 40 describes the DC power specifications for a PTX10002-60C.

NOTE: We recommend that the 48-VDC facility DC source be equipped with a circuit breaker rated at 40 A (-48 VDC) minimum, or as required by local code.
Table 18: PTX10002-60C DC Power Specifications
| Item | Specifications |
| DC input voltage | Rated operating voltage: -48 VDC through -60 VDCOperating voltage range: -40 VDC through -72 VDC |
| SpecificationsItem | |
| 57.4 A maximumDC input current rating | |
| 1642 WTypical power consumption | |
| 1857 WMaximum power consumption |
PTX10002-60C DC Power Cable Specifications
PTX10002-60C DC power supplies require a D-Sub 3W3-type connector. The three pins on the connector provide -48 VDC input (-), return (+), and ground connections to the power supply.
DC power cables, each approximately 13.1 ft (4 m) long, are supplied with the PTX10002-60C. The provided cables include the three-pin connector on one end and insulated wires at the opposite end, for connection to the site's DC power distribution system.
Table 19 on page 41 lists the specifications for the PTX10002-60C DC power cables.
Table 19: PTX10002-60C DC Power Cable Specifications
| Wire SizelInsulation ColorWire Fur | ||
| (straight cable) | 8 AWG (8.4 mm2), 90° CBlue-48 VDC input (-)CB | |
| ReturnWG+(8.4 mm2), 90° CBlack | ||
| Ground (8.4 mm2), 90° CGreen and yellow | ||
| (optional) right-angle cable | 8 AWG (8.4 mm2), 90° CBlue-48 VDC input (-)CB | |
| ReturnWG+(8.4 mm2), 90° CBlack | ||
| (Optional) FT4 vertical-flame rated, right-angle cable | 8 AWG (8.4 mm2), 90° CGray-48 VDC input (-)CB | |
| 8 AWG (8.4 mm2), 90° CGrayReturn (+) | ||

NOTE: The optional right-angle DC power cables, CBL-JNP-PWR-DSUB2 and CBL-JNP-PWR-DSUB3, do not include a ground connection wire.
Regardless which DC power cable you use, you must connect the PTX10002-60C to earth ground before you connect it to power, using the procedure described in "Connecting the PTX10002-60C to Ground" on page 75.

WARNING: For field-wiring connections, use copper conductors only.

WARNING: Power cables must not block access to PTX10002-60C components or drape where people could trip over them.

CAUTION: You must ensure that power connections maintain the proper polarity. The power source cables might be labeled (+) and (−) to indicate their polarity. There is no standard color coding for DC power cables. The color coding used by the external DC power source at your site might be different from the color coding for the leads on the DC power cable provided with the chassis.
CHAPTER 2
Site Planning, Preparation, and Specifications
- PTX10002-60C Site Preparation Checklist on page 43
- PTX10002-60C Site Guidelines and Requirements on page 44
• PTX10002-60C Network Cable and Transceiver Planning on page 49 - PTX10002-60C Management Cable Specifications and Pinouts on page 59
PTX10002-60C Site Preparation Checklist
The checklist in Table 20 on page 43 summarizes the tasks you need to perform when preparing a site for a PTX10002-60C installation.
Table 20: Site Preparation Checklist
| Performed byFor More | Daterna |
Environment
| Verify that environmental factors such as temperature and TX10002-60C Environmental humidity do not exceed router tolerances. | and |
Power
| Measure the distance between external power sources and the router installation site. |
Calculate the power consumption and requirements.
- PTX10002-60C AC Power Specifications on page 39
- PTX10002-60C DC Power Specifications on page 40
Rack
| Verify that your rack meets the minimum requirements for X10002-60C Rack Requirements" the installation of the router. | on page 48 |
Figure 20 on page 47 Plan rack location, including required space clearance
Table 20: Site Preparation Checklist (continued)
| Performed byFor More | Date: |
Secure the rack to the floor and building structure.
Cables
Acquire cables and connectors:
See The Hardware Compatibility Tool.
- Determine the number of cables needed based on your planned configuration.
- Review the maximum distance allowed for each cable. Choose the length of cable based on the distance between the hardware components being connected.
Plan the cable routing and management.
Related Documentation
Installation Instructions Warning on page 129.
• Chassis and Component Lifting Guidelines on page 130
•Restricted Access Warning on page 130
•Ramp Warning on page 132
•Rack-Mounting and Cabinet-Mounting Warnings on page 132
•Grounded Equipment Warning on page 136
PTX10002-60C Site Guidelines and Requirements
- PTX10002-60C Environmental Requirements and Specifications on page 44
- General Site Guidelines on page 45
- PTX10002-60C Chassis Grounding Cable and Lug Specifications on page 46
- PTX10002-60C Clearance Requirements for Airflow and Hardware Maintenance on page 47
- PTX10002-60C Chassis Physical Specifications on page 47
- Site Electrical Wiring Guidelines on page 48
• PTX10002-60C Rack Requirements on page 48
PTX10002-60C Environmental Requirements and Specifications
The PTX10002-60C must be installed in a rack. It must be housed in a dry, clean, well-ventilated, and temperature-controlled environment.
Follow these environmental guidelines:
- The site must be as dust-free as possible, because dust can clog air intake vents and filters, reducing the efficiency of the PTX10002-60C cooling system.
- Maintain ambient airflow for normal PTX10002-60Coperation.If the airflow is blocked or restricted, or if the intake air is too warm, the chassis might overheat, leading to the PTX10002-60Ctemperature monitor shutting down the router to protect the hardware components.
Table 21 on page 45 provides the required environmental conditions for normal PTX10002-60C operation.
Table 21: PTX10002-60C Environmental Tolerances
| ToleranceDescription | |
| No performance degradation up to 6000 feet (1828.8 meters).Altitude | |
| Relative humidity | Normal operation ensured in relative humidity range of 5% through 90%, noncondensing.Short-term operation ensured in relative humidity range of 5% through 93%, noncondensing.NOTE: As defined in NEBS GR-63-CORE, Issue 3, short-term events can be up to 96 hours in duration but not more than 15 days per year. |
| Temperature | Normal operation ensured in temperature range of 32^ F ( 0^ C) through 104^ F ( 40^ C).Nonoperating storage temperature in shipping container: -40^ F through 158^ F ( -40^ C through 70^ C). |
| Designed to comply with Zone 4 earthquake requirements per NEBS GR-63-CORE, Issue 3.Seismic |

NOTE: Install the PTX10002-60C only in restricted areas, such as dedicated equipment rooms and equipment closets, in accordance with Articles 110-16, 110-17, and 110-18 of the National Electrical Code, ANSI/NFPA 70.
General Site Guidelines
Efficient device operation requires proper site planning and maintenance and proper layout of the equipment, rack or cabinet (if used), and wiring closet.
To plan and create an acceptable operating environment for your device and prevent environmentally caused equipment failures:
- Keep the area around the chassis free from dust and conductive material, such as metal flakes.
- Follow prescribed airflow guidelines to ensure that the coolingsystem functions properly and that exhaust from other equipment does not blow into the intake vents of the device.
- Follow the prescribed electrostatic discharge (ESD) prevention procedures to prevent damaging the equipment. Static discharge can cause components to fail completely or intermittently over time.
- Install the device in a secure area, so that only authorized personnel can access the device.
See Also • Prevention of Electrostatic Discharge Damage on page 147
PTX10002-60C Chassis Grounding Cable and Lug Specifications
For installations that require a separate grounding conductor to the chassis, the PTX10002-60C must be adequately grounded before power is connected to ensure proper operation and to meet safety and electromagnetic interference (EMI) requirements. To ground a PTX10002-60C, connect a grounding cable to earth ground and then attach it to the chassis grounding points.

WARNING: The device is a pluggable type A equipment installed in a restricted-access location. It has a separate protective earthing terminal provided on the chassis in addition to the grounding pin of the power supply cord. This separate protective earthing terminal must be permanently connected to earth ground for installations that require a separate grounding conductor to the chassis.

WARNING: To comply with GR-1089 requirements, all intrabuilding copper cabling used for SFP+, QSFP+, and QSFP28 ports must be shielded and grounded at both ends.

CAUTION: Before device installation begins, a licensed electrician must attach a cable lug to the grounding cables that you supply. See “Connecting the PTX10002-60C to Ground” on page 75. A cable with an incorrectly attached lug can damage the PTX10002-60C.
Before connecting the PTX10002-60C to earth ground, review the following information:
- A protective earthing terminal bracket is required for connecting the PTX10002-60C to earth ground. This two-holed bracket attaches through the mounting bracket, providing a protective earthing terminal for the router. Screws are provided in the accessory kit to attach the protective earthing terminal bracket.
- The grounding lug required is a Panduit LCD6-14BH-L or equivalent (not provided). The grounding lug accommodates 14–6 AWG (2–13.3 mm ^2 ) stranded wire.
- The grounding cable that you provide for a PTX10002-60C must be the same size or heavier than the input wire of each power supply. Minimum recommendations are 8 AWG (8.4 mm²) stranded wire, 60°C wire, or as permitted by local code.
See Also Connect the PTX10002-60C to Power on page 74.
PTX10002-60C Clearance Requirements for Airflow and Hardware Maintenance
When planning the site for a PTX10002-60C installation, you must allow sufficient clearance around the installed chassis (see Figure 20 on page 47).
Figure 20: Clearance Requirements for Airflow and Hardware Maintenance for the PTX10002-60C

Follow these guidelines:
- For the cooling system to function properly, the airflow around the chassis must be unrestricted. See "PTX10002-60C Cooling System Description and Airflow" on page 31 for more information about the airflow through the chassis.
- If you are mounting a PTX10002-60C in a rack with other equipment, ensure that the exhaust from other equipment does not blow into the intake vents of the chassis.
- You must leave at least 24 in. (61 cm) both in front of and behind the PTX10002-60C for service personnel to remove and install hardware components, you must leave adequate space at the front and back of the PTX10002-60C.NEBS GR-63 recommends that you allow at least 30 in. (76.2 cm) in front of the rack or cabinet and 24 in. (61 c) behind the rack.
PTX10002-60C Chassis Physical Specifications
Table 22 on page 48 lists the physical specifications for the PTX10002-60C chassis.
Table 22: Physical Specifications for the PTX10002-60C
| DepthWidthHeightV | ||||
| power supplies installed | 90.39 lbs (41 kg) | AC-powered chassis with three (8.8 cm) (44.1 cm) | 7.36 with three (8.8 cm) without handles for fans or power supplies | |
| power supplies installed | 67.8 lb (30.8 kg) | DC-powered chassis with three fans and four | ||
Site Electrical Wiring Guidelines
Table 23 on page 48 describes the factors you must consider while planning the electrical wiring at your site.

WARNING: It is particularly important to provide a properly grounded and shielded environment and to use electrical surge-suppression devices.
Table 23: Site Electrical Wiring Guidelines
| GuidelinesSite Wiring Factor | |
| Signaling limitations | If your site experiences any of the following problems, consult experts in electrical surge suppression and shielding:Improperly installed wires cause radio frequency interference (RFI).Damage from lightning strikes occurs when wires exceed recommended distances or pass between buildings.Electromagnetic pulses (EMPs) caused by lightning damage unshielded conductors and electronic devices. |
| Radio frequency interference | To reduce or eliminate RFI from your site wiring, do the following:Use a twisted-pair cable with a good distribution of grounding conductors.If you must exceed the recommended distances, use a high-quality twisted-pair cable with one ground conductor for each data signal when applicable. |
| Electromagnetic compatibility | If your site is susceptible to problems with electromagnetic compatibility (EMC), particularly from lightning or radio transmitters, seek expert advice.Some of the problems caused by strong sources of electromagnetic interference (EMI) are:Destruction of the signal drivers and receivers in the deviceElectrical hazards as a result of power surges conducted over the lines into the equipment |
See Also
• General Safety Guidelines and Warnings on page 124
•General Electrical Safety Guidelines and Warnings on page 145
PTX10002-60C Rack Requirements
The PTX10002-60C chassis is designed to be installed in four-post racks.
Rack requirements consist of:
- Rack type
- Mounting bracket hole spacing
- Rack size and strength
- Rack connection to the building structure
Table 24 on page 49 provides the rack requirements and specifications for the PTX10002-60C.
Table 24: Rack Requirements for the PTX10002-60C
| GuidelinesRack Requirement | |
| Rack type: four-post | Use a four-post rack that provides bracket holes or hole patterns spaced at 1-U (1.75 in. or 4.45 cm) increments and that meets the size and strength requirements to support the weight.A U is the standard rack unit defined in Cabinets, Racks, Panels, and Associated Equipment (document number EIA-310-D) published by the Electronics Components Industry Association (http://www.ecianow.org/). |
| Mounting bracket hole spacing | The holes in the mounting brackets are spaced at 1 U (1.75 in. or 4.45 cm), so that the PTX10002-60C can be mounted in any rack that provides holes spaced at that distance. |
| Rack size and strength | · Ensure that the rack complies with the standards for a 19-in. or 23-in. rack as defined in Cabinets, Racks, Panels, and Associated Equipment (document number EIA-310-D) published by the Electronics Components Industry Association (http://www.ecianow.org/).· Use a 600-mm rack as defined in the four-part Equipment Engineering (EE); European telecommunications standard for equipment practice (document numbers ETS 300 119-1 through 119-4) published by the European Telecommunications Standards Institute (http://www.etsi.org).The horizontal spacing between the rails in a rack that complies with this standard is usually wider than the router's mounting brackets, which measure 19 in. (48.26 cm) from outer edge to outer edge. Use approved wing devices to narrow the opening between the rails as required.· Ensure that the rack rails are spaced widely enough to accommodate the PTX10002-60C chassis' external dimensions. The outer edges of the front-mounting rails extend the width to 19 in. (48.26 cm).· Ensure that the front and rear rack rails are spaced between 28 in. (71.1 cm) and 36 in. (91.4 cm) front-to-back.· Ensure that the rack is strong enough to support the weight of the PTX10002-60C.· Ensure that the spacing of rails and adjacent racks allows for proper clearance around the PTX10002-60C and rack. |
| Rack connection to building structure | · Secure the rack to the building structure.· If earthquakes are a possibility in your geographical area, secure the rack to the floor.· Secure the rack to the ceiling brackets as well as wall or floor brackets for maximum stability. |
PTX10002-60C Network Cable and Transceiver Planning
• Determining Transceiver Support for the PTX10002-60C on page 50
- Cable and Connector Specifications for MX Series and PTX Series Devices on page 50
• Understanding Fiber-Optic Cable Signal Loss, Attenuation, and Dispersion on page 56
• Calculating Power Budget and Power Margin for Fiber-Optic Cables on page 57
Determining Transceiver Support for the PTX10002-60C
The PTX10002-60C has quad small form-factor pluggable plus (QSFP+) ports for use as uplinks, downlinks, or as access ports. These 40-Gigabit Ethernet ports support QSFP+ transceivers, QSFP28 transceivers, QSFP+ direct-attach copper (DAC) cables, and DAC breakoutcables(DACBO). Each QSFP+ port can be configured to operate as a 10-Gigabit Ethernet interface by using a breakout cable or as a single 40-Gigabit Ethernet interface.
The PTX10002-60C also supports using small form-factor pluggable (SFP) and small form-factor pluggable plus (QSFP+) transceivers to connect the management ports. These transceivers are not supported for use in the uplinks, downlinks, or access ports.
You can find information about the optical transceivers supported on your Juniper device by using the Hardware Compatibility Tool. In addition to transceiver and connection type, the optical and cable characteristics—where applicable—are documented for each transceiver. The Hardware Compatibility Tool enables you to search by product, displaying all the transceivers supported on that device, or category, by interface speed or type. The list of supported transceivers for PTX10002-60C routers is located at https://apps.juniper.net/hct/product/#prd=PTX10002.

CAUTION: If you face a problem running a Juniper Networks device that uses a third-party optic or cable, the Juniper Networks Technical Assistance Center (JTAC) can help you diagnose the source of the problem. Your JTAC engineer might recommend that you check the third-party optic or cable and potentially replace it with an equivalent Juniper Networks optic or cable that is qualified for the device.
Cable and Connector Specifications for MX Series and PTX Series Devices
The transceivers that are supported on MX Series and PTX Series devices use fiber-optic cables and connectors. The type of connector and the type of fiber depends on the transceiver type.
You can determine the type of cable and connector required for your specific transceiver by using the Hardware Compatibility Tool.

CAUTION: To maintain agency approvals, use only a properly constructed, shielded cable.

NOTE: The terms multifiber push-on (MPO) and multifiber termination push-on (MTP) describe the same connector type. The rest of this topic uses MPO to mean MPO or MTP.
The following sections provide details about different cable and connector types:
• 12-Fiber MPO Connectors on page 51
• 24-Fiber MPO Connectors on page 54
• LC Duplex Connectors on page 55
12-Fiber MPO Connectors
There are two types of cables used with 12-fiber MPO connectors on Juniper Networks devices—patch cables with MPO connectors on both ends, and breakout cables with an MPO connector on one end and four LC duplexconnectors on the opposite end. Depending on the application, the cables might use single-mode fiber (SMF) or multimode fiber (MMF). Juniper Networks sells cables that meet the supported transceiver requirements, but it is not required to purchase cables from Juniper Networks.
Ensure that you order cables with the correct polarity. Vendors refer to these crossover cables as key up to key up, latch up to latch up, Type B, or Method B. If you are using patch panels between two transceivers, ensure that the proper polarity is maintained through the cable plant.
Also, ensure that the fiber end in the connector is finished correctly. Physical contact (PC) refers to fiber that has been polished flat. Angled physical contact (APC) refers to fiber that has been polished at an angle. Ultra physical contact (UPC) refers to fiber that has been polished flat, to a finer finish. The required fiber end is listed with the connector type in the Hardware Compatibility Tool.
12-Fiber Ribbon Patch Cables with MPO Connectors
You can use 12-ribbon patch cables with female MPO connectors to connect two transceivers of the same type—for example, 40GBASE-SR4-to-40GBASESR4 or 100GBASE-SR4-to-100GBASE-SR4. You can also connect 4x10GBASE-LR or 4x10GBASE-SR transceivers by using patch cables—for example, 4x10GBASE-LR-to-4x10GBASE-LR or 4x10GBASE-SR-to-4x10GBASE-SR—instead of breaking the signal out into four separate signals.
Table 25 on page 51 describes the signals on each fiber. Table 26 on page 52 shows the pin-to-pin connections for proper polarity.
Table 25: Cable Signals for 12-Fiber Ribbon Patch Cables
| SignalFiber | |
| Tx0 (Transmit)1 | |
| Tx1 (Transmit)2 | |
| Tx2 (Transmit)3 | |
| Tx3 (Transmit)4 | |
| Unused5 | |
| Unused6 | |
| Unused7 | |
| Unused8 | |
| Rx3 (Receive)9 | |
| Rx2 (Receive)10 | |
| Rx1 (Receive)11 | |
| Rx0 (Receive)12 |
Table 26: Cable Pinouts for 12-Fiber Ribbon Patch Cables
| MPO PinMPO Pin | |
| 1 | 12 |
| 2 | 11 |
| 3 | 10 |
| 4 | 9 |
| 5 | 8 |
| 6 | 7 |
| 7 | 6 |
| 8 | 5 |
| 9 | 4 |
| 10 | 3 |
| 11 | 2 |
| 12 | 1 |
12-Fiber Ribbon Breakout Cables with MPO-to-LC Duplex Connectors
You can use 12-fiber ribbon breakout cables with MPO-to-LC duplex connectors to connect a QSFP+ transceiver to four separate SFP+ transceivers—for example, 4x10GBASE-LR-to-10GBASE-LR or 4x10GBASE-SR-to-10GBASE-SR SFP+transceivers.
The breakout cable is constructed out of a 12-fiber ribbon fiber-optic cable. The ribbon cable splits from a single cable with a female MPO connector on one end, into four cable pairs with four LC duplex connectors on the opposite end.
Table 27 on page 53 describes the way the fibers are connected between the MPO and LC duplex connectors. The cable signals are the same as those described in Table 25 on page 51.
Table 27: Cable Pinouts for 12-Fiber Ribbon Breakout Cables
| LC Duplex Connector PinMPO Connector Pin | |
| Tx on LC Duplex 11 | |
| Tx on LC Duplex 22 | |
| Tx on LC Duplex 33 | |
| Tx on LC Duplex 44 | |
| Unused5 | |
| Unused6 | |
| Unused7 | |
| Unused8 | |
| Rx on LC Duplex 49 | |
| Rx on LC Duplex 310 | |
| Rx on LC Duplex 211 | |
| Rx on LC Duplex 112 |
12-Ribbon Patch and Breakout Cables Available from Juniper Networks
Juniper Networks sells 12-ribbon patch and breakout cables with MPO connectors that meet the requirements described above. It is not required to purchase cables from Juniper Networks. Table 28 on page 54 describes the available cables.
Table 28: 12-Ribbon Patch and Breakout Cables Available from Juniper Networks
| Cable Type | Fiber TypeConnector Type | Juniper Model NumberCable Length | |
| 12-ribbon patch | Female MPO/PC to female MPO/PC, key (OM3) up to key up | MTP12-FF-M1M1 mMMF | |
| MTP12-FF-M3M3 m | |||
| MTP12-FF-M5M5 m | |||
| MTP12-FF-M10M10 m | |||
| female MPO/APC, key up to key up | MTP12-FF-S1M1 mSMFFemale MPO/APC to | ||
| MTP12-FF-S3M3 m | |||
| MTP12-FF-S5M5 m | |||
| MTP12-FF-S10M10 m | |||
| 12-ribbon breakout | Female MPO/PC, key up, to four LC/UPC (OM3) duplex | MTP-4LC-M1M1 mMMF | |
| MTP-4LC-M3M3 m | |||
| MTP-4LC-M5M5 m | |||
| 10 m | MTP-4LC-M10M | ||
| up, to four LC/UPC duplex | 1 mSMFFemale MPO/APC | MTP-4LC-S1M | |
| MTP-4LC-S3M3 m | |||
| MTP-4LC-S5M5 m | |||
| MTP-4LC-S10M10 m |
24-Fiber MPO Connectors
You can use patch cables with 24-fiber MPO connectors to connect two supported transceivers of the same type—for example, 100GBASE-SR10-to-100GBASE-SR10.
Figure 21 on page 55 shows the 24-fiber MPO optical lane assignments.
Figure 21: 24-Fiber MPO Optical Lane Assignments


NOTE: Ensure that you order cables with the correct polarity. Vendors refer to these crossover cables as key up to key up, latch up to latch up, Type B, or Method B. If you are using patch panels between two transceivers, ensure that the proper polarity is maintained through the cable plant.
The MPO optical connector for the CFP2-100G-SR10-D3 is defined in Section 5.6 of the CFP2 Hardware Specification and Section 88.10.3 of IEEE STD 802.3-2012. These specifications include the following requirements:
- Recommended Option A in IEEE STD 802.3-2012 is required.
- The transceiver receptacle is male. A patch cable with female connector is required to mate with the module.
- Ferrule finish shall be flat polished interface that is compliant with IEC 61754-7.
- Alignment key is key up.
The optical interface must meet the requirement FT-1435-CORE inGeneric Requirements for Multi-Fiber Optical Connectors. The module must pass wiggle test defined by IEC 62150-3.
LC Duplex Connectors
You can use patch cables with LC duplex connectors to connect two supported transceivers of the same type—for example, 40GBASE-LR4-to-40GBASE-LR4 or 100GBASE-LR4-to100GBASE-LR4. The patch cable is one fiber pair with two LC duplex connectors at opposite ends. LC duplex connectors are also used with 12-fiber ribbon breakout cables, as described in "12-Fiber Ribbon Breakout Cables with MPO-to-LC Duplex Connectors" on page 53.
Figure 22 on page 56 shows an LC duplex connector being installed in a transceiver.
Figure 22: LC Duplex Connector

Understanding Fiber-Optic Cable Signal Loss, Attenuation, and Dispersion
This topic describes signal loss, attenuation, and dispersion in fiber-optic cable.
• Signal Loss in Multimode and Single-Mode Fiber-Optic Cable on page 56
- Attenuation and Dispersion in Fiber-Optic Cable on page 56
Signal Loss in Multimode and Single-Mode Fiber-Optic Cable
Multimode fiber is large enough in diameter to allow rays of light to reflect internally (bounce off the walls of the fiber). Interfaces with multimode optics typically use LEDs as light sources. However, LEDs are not coherent sources. They spray varying wavelengths of light into the multimode fiber, which reflects the light at different angles. Light rays travel in jagged lines through a multimode fiber, causing signal dispersion. When light traveling in the fiber core radiates into the fiber cladding, higher-order mode loss results. Together these factors limit the transmission distance of multimode fiber compared with single-mode fiber.
Single-mode fiber is so small in diameter that rays of light can reflect internally through one layer only. Interfaces with single-mode optics use lasers as light sources. Lasers generate a single wavelength of light, which travels in a straight line through the single-mode fiber. Compared with multimode fiber, single-mode fiber has higher bandwidth and can carry signals for longer distances.
Exceeding the maximum transmission distances can result in significant signal loss, which causes unreliable transmission.
Attenuation and Dispersion in Fiber-Optic Cable
Correct functioning of an optical data link depends on modulated light reaching the receiver with enough power to be demodulated correctly. Attenuation is the reduction in power of the light signal as it is transmitted. Attenuation is caused by passive media components, such as cables, cable splices, and connectors. Although attenuation is significantly lower for optical fiber than for other media, it still occurs in both multimode and single-mode transmission. An efficient optical data link must have enough light available to overcome attenuation.
Dispersion is the spreading of the signal over time. The following two types of dispersion can affect an optical data link:
- Chromatic dispersion—Spreading of the signal over time resulting from the different speeds of light rays.
- Modal dispersion—Spreading of the signal over time resulting from the different propagation modes in the fiber.
For multimode transmission, modal dispersion, rather than chromatic dispersion or attenuation, usually limits the maximum bit rate and link length. For single-mode transmission, modal dispersion is not a factor. However, at higher bit rates and over longer distances, chromatic dispersion rather than modal dispersion limits maximum link length.
An efficient optical data link must have enough light to exceed the minimum power that the receiver requires to operate within its specifications. In addition, the total dispersion must be less than the limits specified for the type of link in Telcordia Technologies document GR-253-CORE (Section 4.3) and International Telecommunications Union (ITU) document G.957.
When chromatic dispersion is at the maximum allowed, its effect can be considered as a power penalty in the power budget. The optical power budget must allow for the sum of component attenuation, power penalties (including those from dispersion), and a safety margin for unexpected losses.
Calculating Power Budget and Power Margin for Fiber-Optic Cables
Use the information in this topic and the specifications for your optical interface to calculate the power budget and power margin for fiber-optic cables.

TIP: You can use the Hardware Compatibility Tool to find information about the pluggable transceivers supported on your Juniper Networks device.
To calculate the power budget and power margin, perform the following tasks:
- Calculating Power Budget for Fiber-Optic Cable on page 57
- Calculating Power Margin for Fiber-Optic Cable on page 58
Calculating Power Budget for Fiber-Optic Cable
To ensure that fiber-optic connections have sufficient power for correct operation, you need to calculate the link's power budget, which is the maximum amount of power it can transmit. When you calculate the power budget, you use a worst-case analysis to provide a margin of error, even though all the parts of an actual system do not operate at the worst-case levels. To calculate the worst-case estimate of power _B budget (P you assume minimum transmitter power) (And minimum receiver sensitivity):(P
$$ P _ {B} = P _ {T} - P _ {R} $$
The following hypothetical power budget equation uses values measured in decibels (dB) and decibels referred to one milliwatt (dBm):
$$ P _ {B} = P _ {T} - P _ {R} $$
$$ P _ {B} = - 1 5 \mathrm{dBm} - (- 2 8 \mathrm{dBm}) $$
$$ P _ {B} = 1 3 \mathrm{dB} $$
Calculating Power Margin for Fiber-Optic Cable
After calculating a link's power budget, you can calculate the power margin (P represents the amount of power available after subtracting attenuation or link loss (LL) from the power budget.) (PA worst-case estimate of assumes maximum LL:
$$ P _ {M} = P _ {B} - L L $$
P_M greater than zero indicates that the power budget is sufficient to operate the receiver.
Factors that can cause link loss include higher-order mode losses, modal and chromatic dispersion, connectors, splices, and fiber attenuation. Table 29 on page 58 lists an estimated amount of loss for the factors used in the following sample calculations. For information about the actual amount of signal loss caused by equipment and other factors, refer to vendor documentation.
Table 29: Estimated Values for Factors Causing Link Loss
| Estimated Link-Loss ValueLink-Loss Factor | |
| Higher-order mode losses | Single-mode—NoneMultimode—0.5 dB |
| Modal and chromatic dispersion | Single-mode—NoneMultimode—None, if product of bandwidth and distance is less than 500 MHz-km |
| 0.5 dBConnector | |
| 0.5 dBSplice | |
| Fiber attenuation | Single-mode—0.5 dB/kmMultimode—1 dB/km |
The following sample calculation for a 2-km-long multimode link with a power budget ( P_B ) of 13 dB uses the estimated values from Table 29 on page 58 to calculate link loss (LL) asthesumoffiberattenuation (2 km @ 1 dB/km, or 2 dB) and loss for five connectors (0.5 dB per connector, or 2.5 dB) and two splices (0.5 dB per splice, or 1 dB) as well as higher-order mode losses (0.5 dB). The power margins (Calculated as follows:
$$ P _ {M} = P _ {B} - L L $$
$$ P _ {M} = 1 3 \mathrm{dB} - 2 \mathrm{km} (1 \mathrm{dB/km}) - 5 (0. 5 \mathrm{dB}) - 2 (0. 5 \mathrm{dB}) - 0. 5 \mathrm{dB} $$
$$ P _ {M} = 1 3 \mathrm{dB} - 2 \mathrm{dB} - 2. 5 \mathrm{dB} - 1 \mathrm{dB} - 0. 5 \mathrm{dB} $$
$$ P _ {M} = 7 \mathrm{dB} $$
The following sample calculation for an 8-km-long single-mode link with a power budget ( P_p ) of 13 dB uses the estimated values from Table 29 on page 58 to calculate link loss
(LL) as the sum of fiber attenuation (8 km @ 0.5 dB/km, or 4 dB) and loss for seven connectors (0.5 dB per connector, or 3.5 dB). The power marginalulated as follows:
$$ P _ {M} = P _ {B} - L L $$
$$ P _ {M} = 1 3 \mathrm{dB} - 8 \mathrm{km} (0. 5 \mathrm{dB/km}) - 7 (0. 5 \mathrm{dB}) $$
$$ P _ {M} = 1 3 \mathrm{dB} - 4 \mathrm{dB} - 3. 5 \mathrm{dB} $$
$$ P _ {M} = 5. 5 \mathrm{dB} $$
In both examples, the calculated power margin is greater than zero, indicating that the link has sufficient power for transmission and does not exceed the maximum receiver input power.
PTX10002-60C Management Cable Specifications and Pinouts
- Cable Specifications for Console and Management Connections for the PTX10002-60C on page 59
- Management Port Connector Pinouts for the PTX10002-60C on page 60
- Console Port Connector Pinouts for the PTX10002-60C on page 60
• USB Port Specifications for the PTX10002-60C on page 61 - RJ-45 Port, QSFP+ Port, QSFP28 Port, SFP+ Port, and SFP Port Connector Pinout Information on page 62
Cable Specifications for Console and Management Connections for the PTX10002-60C
Table 30 on page 60 lists the specifications for the cables that connect the PTX10002-60C to a management device.

NOTE: ThePTX10002-60C alsohasanSFPmanagementportthatsupports transceiversthat use fiber-optic cables. See“Determining TransceiverSupport for the PTX10002-60C” on page 50 for more information about supported transceivers.
Table 30: Cable Specifications for Console and Management Connections for the PTX10002-60C
| Port on PTX10002-60C | Device ReceptacleM | |||
| Console (CON) port | RS-232 (EIA-232) serial cable | RJ-45 patch cable and RJ-45 to DB-9 adapter | RJ-457 feet (2.13 meters)One 7 | |
| Management(MGMT) port | Category 5 cable or equivalent suitable for 1000BASE-T operation | One 7-foot (2.13-meter)-long RJ-45 patch cable | (100 meters) | RJ-45328 feet |
Management Port Connector Pinouts for the PTX10002-60C
The 10/100/1000BASE-T RJ-45 management port (labeled MGMT) uses an RJ-45 connector to connect to a management device for out-of-band management.
Table 31 on page 60 provides the pinout information of the RJ-45 management port connector. An RJ-45 cable is supplied with the PTX10002-60C.
Table 31: RJ-45 Management Port Connector Pinouts for the PTX10002-60C
| DescriptionSignalPin | ||
| Transmit/receive data pair 1TRP1+ | ||
| Transmit/receive data pair 1TRP1- | ||
| 3 | TRP2+ | Transmit/receive data pair 2 |
| 4 | TRP3+ | Transmit/receive data pair 3 |
| 5 | TRP3- | Transmit/receive data pair 3 |
| 6 | TRP2- | Transmit/receive data pair 2 |
| 7 | TRP4+ | Transmit/receive data pair 4 |
| 8 | TRP4- | Transmit/receive data pair 4 |
Console Port Connector Pinouts for the PTX10002-60C
The console port (labeled CON) is an RS-232 serial interface that uses an RJ-45 connector to connect to a console management device. The default baud rate for the console port is 9600 baud.
Table 32 on page 61 provides the pinout information for the RJ-45 console connector. An RJ-45 cable and an RJ-45 to DB-9 adapter are supplied with the PTX10002-60C.

NOTE: If your laptop or PC does not have a DB-9 male connector pin and you want to connect your laptop or PC directly to a PTX10002-60C, use a combination of the RJ-45 cable and RJ-45 to DB-9 adapter supplied with the router and a USB to DB-9 male adapter. You must provide the USB to DB-9 male adapter.
Table 32: Console Port Connector Pinouts for the PTX10002-60C
| DescriptionSignalPin | ||
| Request to sendRTS Output1 | ||
| Data terminal readyDTR Output2 | ||
| Transmit dataTxD Output3 | ||
| Signal groundSignal Ground4 | ||
| Signal groundSignal Ground5 | ||
| 6 | RxD Input | Receive data |
| 7 | DCD Input | Data carrier detect |
| 8 | CTS Input | Clear to send |
USB Port Specifications for the PTX10002-60C
The following Juniper Networks USB flash drives have been tested and are officially supported for the USB port in the PTX Series:
- RE-USB-1G-S—1-gigabyte (GB) USB flash drive
- RE-USB-2G-S—2-GB USB flash drive
• RE-USB-4G-S—4-GB USB flash drive

CAUTION: Any USB memory product not listed as supported for the PTX Series has not been tested by Juniper Networks. The use of any unsupported USB memory product could expose your device to unpredictable behavior. Juniper Networks Technical Assistance Center (JTAC) can provide only limited support for issues related to unsupported hardware. We strongly recommend that you use only supported USB flash drives.

CAUTION: Remove the USB flash drive before upgrading Junos OS or rebooting a PTX Series device. Failure to do so could expose your device to unpredictable behavior.

NOTE: USBflash drives used with the PTX Series devicemustsupportUSB2.0 or later.
See Also PTX10002-60C Management Panel on page 25.
RJ-45 Port, QSFP+ Port, QSFP28 Port, SFP+ Port, and SFP Port Connector Pinout Information
Tables in this topic describe the connector pinout information for the RJ-45, QSFP+, QSFP28, SFP+, and SFP ports.
- Table 33 on page 62—10/100/1000BASE-T Ethernet network port connector pinout information
- Table 34 on page 63—SFP network port connector pinout information
- Table 35 on page 63—SFP+ network port connector pinout information
- Table 36 on page 64—QSFP+ and QSFP28 network module ports connector pinout information
Table 33: 10/100/1000BASE-T Ethernet Network Port Connector Pinout Information
| DescriptionSignalPin | ||
| TRP1+1 | Transmit/receive data pair 1Negative Vport (in PoE models) | |
| TRP1-2 | Transmit/receive data pair 1Negative Vport (in PoE models) | |
| 3 | TRP2+ | Transmit/receive data pair 2Positive Vport (in PoE models) |
| 4 | TRP3+ | Transmit/receive data pair 3 |
| TRP3-5 | Transmit/receive data pair 3 | |
| TRP2-6 | Transmit/receive data pair 2Positive Vport (in PoE models) | |
| 7 | TRP4+ | Transmit/receive data pair 4 |
| 8 | TRP4- | Transmit/receive data pair 4 |
Table 34: SFP Network Port Connector Pinout Information
| DescriptionSignalPin | ||
| Module transmitter groundVeeT1 | ||
| Module transmitter faultTX_Fault2 | ||
| Transmitter disabledTX_Disable3 | ||
| 2-wire serial interface data lineSDA4 | ||
| 2-wire serial interface clockSCL-5 | ||
| 6 | MOD_ABS | Module absent |
| 7 | RS | Rate select |
| 8 | RX_LOS | Receiver loss of signal indication |
| VeeR9 | Module receiver ground | |
| VeeR10 | Module receiver ground | |
| VeeR11 | Module receiver ground | |
| 12 | RD- | Receiver inverted data output |
| RD+13 | Receiver noninverted data output | |
| VeeR14 | Module receiver ground | |
| VccR15 | Module receiver 3.3 V supply | |
| 16 | VccT | Module transmitter 3.3 V supply |
| Module transmitter groundVeeT17 | ||
| 18 | TD+ | Transmitter noninverted data input |
| 19 | TD- | Transmitter inverted data input |
| Module transmitter groundVeeT20 |
Table 35: SFP+ Network Port Connector Pinout Information
| DescriptionSignalPin | |
| Module transmitter groundVeeT1 | |
| Module transmitter faultTX_Fault2 |
Table 35: SFP+ Network Port Connector Pinout Information (continued)
| DescriptionSignalPin | ||
| Transmitter disabledTX_Disable3 | ||
| 2-wire serial interface data lineSDA4 | ||
| 2-wire serial Interface clockSCL-5 | ||
| Module absentMOD_ABS6 | ||
| Rate select 0, optionally controls SFP+ module receiverRS07 | ||
| Receiver loss of &signal indicationRX_LOS | ||
| 9 | RS1 | Rate select 1, optionally controls SFP+ transmitter |
| 10 | VeeR | Module receiver ground |
| 11 | VeeR | Module receiver ground |
| 12 | RD- | Receiver inverted data output |
| RD+13 | Receiver noninverted data output | |
| 14 | VeeR | Module receiver ground |
| VccR15 | Module receiver 3.3 V supply | |
| 16 | VccT | Module transmitter 3.3 V supply |
| 17 | VeeT | Module transmitter ground |
| 18 | TD+ | Transmitter noninverted data input |
| 19 | TD- | Transmitter inverted data input |
| 20 | VeeT | Module transmitter ground |
Table 36: QSFP+ and QSFP28 Network Port Connector Pinout Information
| Pin | Signal |
| 1 | GND |
| 2 | TX2n |
| 3 | TX2p |
| 4 | GND |
| SignalPin | |
| TX4n5 | |
| TX4p6 | |
| 7 | GND |
| ModSelL8 | |
| LPMode_Reset9 | |
| VccRx10 | |
| SCL11 | |
| SDA12 | |
| GND13 | |
| RX3p14 | |
| RX3n15 | |
| GND16 | |
| RX1p17 | |
| RX1n18 | |
| GND19 | |
| GND20 | |
| RX2n21 | |
| RX2p22 | |
| GND23 | |
| RX4n24 | |
| RX4p25 | |
| GND26 | |
| ModPrsL27 | |
| IntL28 | |
| VccTx29 | |
| Vcc130 | |
| Reserved31 | |
| GND32 | |
| TX3p33 | |
| TX3n34 | |
| GND35 | |
| TX1p36 | |
| TX1n37 | |
| GND38 |
CHAPTER 3
Initial Installation and Configuration
- PTX10002-60C Installation Overview on page 67
- Unpacking and Mounting the PTX10002-60C on page 69
- Connect the PTX10002-60C to Power on page 74
- Connecting the PTX10002-60C to External Devices on page 83
- Registering Products—Mandatory for Validating SLAs on page 85
- Performing the Initial Software Configuration for the PTX10002-60C on page 85
• Powering Off the PTX10002-60C on page 87
PTX10002-60C Installation Overview
• Overview of Installing the PTX10002-60C on page 67
- PTX10002-60C Installation Safety Guidelines on page 68
Overview of Installing the PTX10002-60C
You can mount a PTX10002-60C:
- Flush with the front of a 19-in. four-post rack. Use the standard mounting brackets provided with the switch for this configuration.
- Recessed 2 in. (5 cm) from the front of a 19-in. four-post rack. Use the extension bracket provided in the standard mounting kit for this configuration. Recessed mounting is primarily used in enclosed cabinets.
Before you begin to install and connect a PTX10002-60C, ensure that you have reviewed the information in PTX10002-60C Installation Safety Guidelines.
To install and connect a PTX10002-60C:
- Unpack the PTX10002-60C and verify the components received. See "Unpacking the PTX10002-60C" on page 69.
-
Mount the PTX10002-60C in a rack. See "Mounting the PTX10002-60C in a Rack" on page 70.
-
For installations that require a separate grounding conductor to the chassis, follow the instructions in "Connecting the PTX10002-60C to Ground" on page 75.
- Connect the PTX10002-60C to power. Depending on your configuration, follow the instructions in "Connecting AC Power to the PTX10002-60C" on page 76 or "Connecting DC Power to the PTX10002-60C" on page 79
- Connect the PTX10002 to a management console for initial configuration. See "Connecting the PTX10002-60C to a Management Console" on page 84.
- Initially configure Junos OS following the instructions in "Performing the Initial Software Configuration for the PTX10002-60C" on page 85.
See Also • PTX10002-60C Site Preparation Checklist on page 43
PTX10002-60C Installation Safety Guidelines
Observe the following guidelines before and during PTX10002-60C installation:
- General Installation Safety Guidelines on page 68
- PTX10002-60C Chassis Lifting Guidelines on page 68
General Installation Safety Guidelines
Before installing or moving the PTX10002-60C, verify that the intended site meets the specified power, environmental, and clearance requirements. See the following documentation:
• PTX10002-60C Site Preparation Checklist on page 43
- PTX10002-60C Clearance Requirements for Airflow and Hardware Maintenance on page 47
• PTX10002-60C Rack Requirements on page 48
• PTX10002-60C Chassis Physical Specifications on page 47
- “PTX10002-60C AC Power Specifications” on page 39 or PTX10002-60C DC Power Specifications on page 40
PTX10002-60C Chassis Lifting Guidelines
The weight of a fully-loaded PTX10002-60C is approximately 68.6 lb (31.1 kg) with AC power supplies and 67.8 lb (30.8 kg) with DC power supplies installed. Observe the following guidelines for lifting and moving a PTX10002-60C:

CAUTION: If you are installing the PTX10002-60C above 60 in. (152.4 cm) from the floor, remove the powersupplies and fan modules beforeattempting
to install the device. Unless you are using a mechanical lift, at least three persons are required to perform the rack installation.
- Before lifting or moving the PTX10002-60C, disconnect all external cables.
- When manually raising the PTX10002-60C into the rack, have two persons lift and align the PTX10002-60C with the rack while another person secures the device to the rack. As when lifting any heavy object, lift most of the weight with your legs rather than your back. Keep your knees bent and your back relatively straight and avoid twisting your body as you lift. Balance the load evenly and be sure that your footing is solid.
See Also Mounting the PTX10002-60C in a Rack on page 70.
Unpacking and Mounting the PTX10002-60C
- Unpacking the PTX10002-60C on page 69
- Mounting the PTX10002-60C in a Rack on page 70
Unpacking the PTX10002-60C
The PTX10002-60C chassis is a rigid sheet-metal structure that houses the hardware components. The PTX10002-60C is shipped in a cardboard carton, secured with foam packing material. The carton also contains an accessory kit and quick start instructions.

CAUTION: PTX10002-60C routers are maximally protected inside the shipping carton. Do not unpack the PTX10002-60C until you are ready to begin installation.
To unpack a PTX10002-60C:
- Move the shipping carton to a staging area as close to the installation site as possible, but where you have enough room to remove the system components.
- Position the carton so that the arrows point upward.
- Open the top flaps on the shipping carton.
- Remove the accessorykit and verify the contents against the inventory of components listed in Table 37 on page 70.
- Pull out the packing material holding the PTX10002-60C in place.
-
Verify the chassis components received:
-
Three fan modules
-
Four power supplies
-
Save the shipping carton and packing materials in case you need to move or ship the chassis later.
Table 37: Inventory of Components Supplied with a PTX10002-60C
| QuantityComponent | |
| 1Chassis with three fan modules and | |
| 2Rear-mounting blades | |
| 2Front-mounting rails | |
| 1RJ-45 cable and RJ-45 to DB-9 serial | |
| 24Flat-head M4x6-mm Phillips mounti | |
| 4Power cords with plugs for that are |
Mounting the PTX10002-60C in a Rack
Mount a PTX10002-60C in a 19-in four-post rack by using the included mounting brackets. The shipping carton contains two front mounting rails with two matching rear mounting blades. This configuration allows either end of the PTX10002-60C to be mounted flush with the rack and still be adjustable for racks with different depths. The minimum distance the front and rear rack rails can be spaced apart is 28 in. (71.1 cm) front to back. The maximum distance the front and rear rack rails can be spaced apart is 36 in. (91.4 cm) front to back.
- Before You Begin Mounting the PTX10002-60C on page 70
- Mounting the PTX10002-60C on page 72
Before You Begin Mounting the PTX10002-60C
Before you begin mounting a PTX10002-60C in the rack:
- Ensure that you understand how to prevent electrostatic discharge (ESD) damage. See "Prevention of Electrostatic Discharge Damage" on page 147.
- Verify that the site meets the requirements described in "PTX10002-60C Site Preparation Checklist" on page 43.
-
Place the rack in its permanent location, allowing adequate clearance for airflow and maintenance, and secure it to the building structure.
-
Read "General Safety Guidelines and Warnings" on page 124 and PTX10002-60C Installation Safety Guidelines.

NOTE: If you are mounting multiple units in the rack, mount the heaviest unit at the bottom and mount the others from bottom to top in order of decreasing weight. The PTX10002-60C weighs 80.5 lbs (36.5 kgs). Installing the router in a rack requires either a mechanical lift or two people to lift the device and another person to secure it to the rack.
- Decide whether the field-replaceable unit (FRU) end of the switch or the port end is to be placed at the front of the rack. Position the switch in such a manner that the AI OUT labels on components are next to the hot aisle.
- Remove the PTX10002-60C from the shipping carton (see "Unpacking the PTX10002-60C" on page 69).
-
Ensure that you have the following parts and tools available to mount the PTX10002-60C in a rack:
-
Either a mechanical lift or two persons to lift the PTX10002-60C into place. An additional person is needed for securing the router to the rack.
- ESD grounding strap (not provided).
- One pair of front mounting rails (provided). The mounting blades slide into the mounting rails to support the router.
- A pair of rear mounting blades (provided). These mounting blades support the rear of the chassis and must be installed.
- Flat-head M4x6-mm Phillips mounting screws to secure the mounting rail to the chassis (24 screws are provided—11 for each side and 2 extra screws).
- Sixteen (16) screws to secure the chassis and mounting blades to the rack (not provided).
- Screwdriver appropriate for the rack-mounting screws (not provided).
- Four power cords with plugs appropriate to your geographical location (provided).
- RJ-45 cable and RJ-45 to DB-9 serial port adapter (provided).
- Management host, such as a PC laptop, with a serial port (not provided).
- (Optional) Grounding cable kit with bracket, lug, and three nuts with integrated washers.

WARNING: PTX10002-60C routers must be supported at all four corners. Mounting the chassis by using only the front brackets will damage the chassis and can result in serious bodily injury.

CAUTION: PTX10002-60C routers require at least three people for installation, two people to lift the PTX10002-60C into place and another person to attach the device to the rack. You can remove the power supplies and fan modules to minimize the weight before attempting to install the PTX10002-60C. For overhead installation—for example, if you are installing the PTX10002-60C above 60 in. (152.4 cm) from the floor—we recommend that you use a mechanical lift.

CAUTION: If you are mounting multiple devices in a rack, mount the device in the lowest position of the rackfirst. Proceed to mount the rest of the devices from the bottom tothetop of the rackto minimize the risk of the rack toppling.
Mounting the PTX10002-60C
To mount the PTX10002-60C on four posts in a rack by using the provided mounting kit:
- Attach the ESD grounding strap to your bare wrist and to a site ESD point.
- Decide whether the field-replaceable unit (FRU) end or the port end of the PTX10002-60C must be placed at the front of the rack. Position the PTX10002-60C in such a manner that the AIR OUT labels on components are next to the hot aisle.
- Using a Phillips screwdriver, remove the six screws on each side of the chassis that hold the cover to the chassis (see Figure 23 on page 72). These screws will be replaced with the mounting screws included in the box.
Figure 23: Removing the Screws Holding the Cover

- Align one of the front-mounting rails with the screw holes on the side of the chassis (see Figure 24 on page 72).
Figure 24: Attaching Front Mounting Rails (PTX10002-60C)

natural_image
Technical line drawing of a server rack unit with multiple ports and ventilation slots (no text or labels visible)-
Attach the mounting rail tothe PTX10002-60C by using 11 flat-head M4x6-mm Phillips mounting screws. Tighten the screws.
-
Repeat Step 4 and Step 5 on the opposite side of the PTX10002-60C.
-
Perform one of the following steps:
-
Use a mechanical lift to position the PTX10002-60C in the rack so that the front brackets on the front-mounting rails are aligned with the rack holes.
- Have two people grasp both sides of the PTX10002-60C, lift it, and position it in the rack so that the front brackets on the front mounting rails are aligned with the rack holes.
- Have another person secure the front of the PTX10002-60C to the rack by using eight mounting screws (and cage nuts and washers if your rack requires them). Tighten the screws.
- Continue to support the PTX10002-60C while sliding the rear mounting blades into the channel of the side-mounting rails and securing the blades to the rack (see Figure 25 on page 73). Use eight mounting screws (and cage nuts and washers if your rack requires them) to attach the blade to the rack. Tighten the screws.
Figure 25: Attaching Rear Mounting Blades to the Rack (PTX10002-60C)

natural_image
Technical line drawing of a server rack with multiple drive bays and a blue arrow indicating a component (no text or symbols present)- Ensure that the PTX10002-60C chassis is level by verifying that all the screws on the front of the rack are aligned with the screws at the back of the rack.
- Attach a grounding cable to earth ground and then attach it to the chassis grounding points.
Related Documentation
Rack-Mounting and Cabinet-Mounting Warnings on page 132.
Connect the PTX10002-60C to Power
- Connecting the PTX10002-60C to Ground on page 75
- Connecting AC Power to the PTX10002-60C on page 76
- Connecting DC Power to the PTX10002-60C on page 79
Connecting the PTX10002-60C to Ground
To meet safety and electromagnetic interference (EMI) requirements and to ensure proper operation, you must connect the chassis to earth ground before you connect it to power. For installations that require a separate grounding conductor to the chassis, use the protective earthing terminal on the PTX10002-60C chassis to connect to the earth ground.

NOTE: An AC-powered PTX10002-60C gains additional grounding when you plug the power supply in the device into a grounded AC power outlet by using an AC power cord appropriate for your geographical location. See "PTX10002-60C AC Power Cord Specifications" on page 39.

CAUTION: Before you connect power to the PTX10002-60C, a licensed electrician must attach a cable lug to the grounding and power cables that you supply. A cable with an incorrectly attached lug can damage the PTX10002-60C (for example, by causing a short circuit).

NOTE: Mount the PTX10002-60Cintherack before attaching the grounding lug to the PTX10002-60C. See "Mounting the PTX10002-60C in a Rack" on page 70.
Ensure that you have the following parts and tools available (none are provided):
- Grounding cable—The grounding cable must be 8 AWG (8.4 mm ^2 ), minimum 90° C wire, or as permitted by the local code.
- Grounding lug for your grounding cable—The grounding lug required is a Panduit LCD6-14BH-L or equivalent.
- Two #10-32 UNF screws and washers.
- Screwdriver appropriate for the #10-32 UNF screws.
To connect a grounding cable to the PTX10002-60C:
- Connect one end of the grounding cable to a proper site earth ground, such as the rack in which the PTX10002-60C is mounted.
- Place the grounding lug attached to the grounding cable over the protective earthing terminal on the chassis (see Figure 26 on page 76).
Figure 26: Connecting a Grounding Cable to the PTX10002-60C

natural_image
Technical line drawing of a server rack with two zoomed-in views showing internal components (no text or symbols)- Secure the grounding lug to the protective earthing terminal with the washers and screws.
- Dress the grounding cable and ensure that it does not touch or block access to other device components and that it does not drape where people could trip over it.
Connecting AC Power to the PTX10002-60C
The power supply in a PTX10002-60C is a hot-removable and hot-insertable field-replaceable unit (FRU). After removing the power cord from an individual power supply, you can remove and replace it without powering off the router or disrupting router functions.
Ensure that you have a power cord appropriate for your geographical location available to connect AC power to the router.
Before you begin connecting AC power to the PTX10002-60C:
- Read "General Electrical Safety Guidelines and Warnings" on page 145 and "Action to Take After an Electrical Accident" on page 147.
- Ensure that you have taken the necessary precautions to prevent electrostatic discharge (ESD) damage (see "Prevention of Electrostatic Discharge Damage" on page 147).
-
Ensure that you have connected the PTX10002-60C chassis to earth ground.
-
Ensure that you have electrostatic discharge (ESD) grounding strap.
- Install the power supply in the chassis following the instructions in “Installing a Power Supply in a PTX10002-60C” on page 96.

CAUTION: Before you connect power to the router, a licensed electrician must attach a cable lug to the grounding and power cables that you supply. A cable with an incorrectly attached lug can damage the router (for example, by causing a short circuit).
To meet safety and electromagnetic interference (EMI) requirements and to ensure proper operation, you must connect the chassis to earth ground before you connect it to power. For installations that require a separate grounding conductor to the chassis, use the protective earthing terminal on the router chassis to connect to the earth ground. For instructions, see "Connecting the PTX10002-60C to Ground" on page 75. The router gains additional grounding when you plug the power supply in the router into a grounded AC power outlet by using the AC power cord appropriate for your geographical location. See "PTX10002-60C AC Power Cord Specifications" on page 39.

CAUTION: Do not mix AC and DC power supplies in the same chassis.

NOTE: Each power supply must be connected to a dedicated power source outlet.
To connect AC power to a PTX10002-60C:
- To prevent damage to the equipment caused by static discharge, attach an electrostatic discharge (ESD) grounding strap to your bare wrist, and connect the strap to an approved site ESD grounding point.
- Ensure that the power supplies are fully inserted in the chassis and the latches are secure.
- Locate the power cords shipped with the PTX10002-60C; the cords have plugs appropriate for your geographical location. Refer to "PTX10002-60C AC Power Cord Specifications" on page 39

WARNING: Ensure that the power cord does not block access to router components or drape where people could trip over it.
- Connect each power supply to the power sources. Insert the coupler end of the power cord into the AC power cord inlet on the AC power supply faceplate (see Figure 27 on page 78).
Figure 27: Connecting an AC Power Cord to an AC Power Supply in the PTX10002-60C

natural_image
Technical diagram of an electrical panel with a cable inserted into the socket (no text or symbols visible)- If the AC power source outlet has a power switch, set it to the off (O) position.

NOTE: The PTX10002-60C powers on as soon as power is provided to the power supply. There is no power router on the router.
-
Insert the power cord plug into an AC power source outlet.
-
If the AC power source outlet has a power switch, set it to the on (1) position.
-
Repeat Step 4 through Step 6 for each power supply that you are connecting to power.
-
Verify that the status LEDs on each power supply are lit green.
If the status LED is lit amber, remove power from the power supply, and replace the power supply (see "Removing a Power Supply from the PTX10002-60C" on page 94).
Do not remove the power supply until you have a replacement power supply ready. The power supplies or a blank cover panel must be installed in the router to ensure proper airflow.

CAUTION: Replace a failed power supply with a blank panel or new power supply within 1 minute of removal to prevent chassis overheating.
See Also • PTX10002-60C AC Power Supply Description on page 34
•Figure 18 on page 37
Connecting DC Power to the PTX10002-60C
The power supply in a QFX10002 is a hot-removable and hot-insertable field-replaceable unit (FRU). You can remove and replace it without powering off the router or disrupting router functions. You do, however, need to remove power from the power supply before attempting to remove the unit.

WARNING: A DC-powered PTX10002-60C is intended for installation only in a restricted-access location.
Before you begin connecting DC power to the PTX10002-60C:
- Read "General Electrical Safety Guidelines and Warnings" on page 145, PTX10002 Electrical Safety Guidelines and Warnings, and the following DC power warnings:
• DC Power Copper Conductors Warning on page 151
• DC Power Disconnection Warning on page 152
• DC Power Grounding Requirements and Warning on page 153
• DC Power Wiring Sequence Warning on page 154
• DC Power Wiring Terminations Warning on page 156
- Ensure that you have taken the necessary precautions to prevent electrostatic discharge (ESD) damage (see "Prevention of Electrostatic Discharge Damage" on page 147).
- Ensure that you have connected the PTX10002-60C chassis to earth ground.

CAUTION: Before you connect power to the PTX10002-60C, a licensed electrician must attach a cable lug to the grounding and power cables that you supply. A cable with an incorrectly attached lug can damage the router (for example, by causing a short circuit).

NOTE: To meet safety and electromagnetic interference (EMI) requirements and to ensure proper operation, you must connect the chassis to earth ground before you connect it to power. For installation that require a separate grounding conductor to the chassis, use the protective earthing terminal on the PTX10002-60C chassis to connect to the earth ground (see "Connecting the PTX10002-60C to Ground" on page 75).
- Install the power supply in the chassis following the instructions in “Installing a Power Supply in a PTX10002-60C” on page 96. The battery returns of the DC power supply must be connected as an isolated DC return (DC-I).
- Ensure that you have the following parts and tools available:
- ESD grounding strap
- Slotted (−) screwdriver, 1/4-in., with a torque range between 6 lb-in (0.68 Nm) and 7 lb-in (0.79 Nm)

CAUTION: You must use an appropriate torque-controlled tool to tighten the screws on the DC power cable connector. Do not overtighten the screws. Applying excessive torque damages the terminal block and the wiring tray. The absolute maximum torque that may be applied to this screw is 10 lb-in (1.13 Nm).
- Power cable or cables appropriate for your geographical location available to connect DC power to the PTX10002-60C. There are twotypes of DC powercables—a straight DC power cable (CBL-JNP-PWR-DSUB) and a right-angle DC power cable (CBL-JNP-PWR-DSUB2orCBL-JNP-PWR-DSUB3). See "PTX10002-60C DCPower Cable Specifications" on page 41 for more information.

CAUTION: Do not mix AC and DC power supplies in the same chassis.

NOTE: Each power supply must be connected to a dedicated power source outlet.
To connect DC power to a PTX10002-60C:
- To prevent damage to the equipment caused by static discharge, attach an ESD grounding strap to your bare wrist, and connect the strap to an approved site ESD grounding point.
- Ensure that the power supplies are fully inserted in the chassis and the latches are secure.
- If you are using the straight DC power cable (CBL-JNP-PWR-DSUB), connect the green grounding wire in each power cable to ground. Right angled DC cables, do not have a grounding wire.
- Connect each power supply to the power source, by inserting the DC connector into the power supply. See Figure 28 on page 81, Figure 29 on page 81, or
Figure 30 on page 82.
Figure 28: Connecting a Straight DC Power Cable to a DC Power Supply in a PTX10002-60C (CBL-JNP-PWR-DSUB)

natural_image
Technical diagram of an internal server rack with connectors and a cable, showing no text or symbols.Figure 29: Connecting a Right-Angle DC Power Cable to a DC Power Supply in a PTX10002-60C (CBL-JNP-PWR-DSUB2)

Figure 30: Connecting a Right-Angle DC Power Cable to a DC Power Supply in a PTX10002-60C (CBL-JNP-PWR-DSUB3)


WARNING: Ensure that the power cables do not block access to device components or drape where people could trip over them.
- Using the slotted screwdriver, tighten the screws on the power cable connector to between 6 lb-in (0.68 Nm) and 7 lb-in (0.79 Nm).

CAUTION: You must use an appropriate torque-controlled tool to tighten the screws on the DC power cable connector. Do not overtighten the screws. Applying excessive torque damages the terminal block and the wiring tray. The absolute maximum torque that may be applied to this screw is 10 lb-in (1.13 Nm).
-
Repeat Step 4 and Step 5 for each power supply that you are connecting to power.
-
Close the input circuit breaker.

NOTE: We recommend that the 48-VDC facility DC source be equipped with a circuit breaker rated at 40 A (-48 VDC) minimum, or as required by local code.

NOTE: The PTX10002-60C powers on as soon as power is provided to the power supply. There is no power switch on the router.
- Verify that the status LEDs on each power supply are lit green and on steadily.
If the status LED is lit amber, remove power from the power supply, and replace the power supply (see "Removing a Power Supply from the PTX10002-60C" on page 94).
Do not remove the power supply until you have a replacement power supply ready. The power supplies must be installed in the PTX10002-60C to ensure proper airflow.

CAUTION: Replace a failed power supply with a new power supply within 30 seconds of removal to prevent chassis overheating.
See Also
• PTX10002-60C DC Power Supply Description on page 35
- PTX10002-60C Power Supply LED on page 37
Connecting the PTX10002-60C to External Devices
- Connecting the PTX10002-60C to a Management Ethernet Device on page 83
- Connecting the PTX10002-60C to a Management Console on page 84
Connecting the PTX10002-60C to a Management Ethernet Device
You can monitor and manage the PTX10002-60C by using a dedicated management channel. The PTX10002-60Chas two managementports—a10/100/1000BASE-T RJ-45 port for copper connections and a Gigabit Ethernet SFP port for fiber-optic connections. Use the management ports to connect the PTX10002-60C to a network for out-of-band management.

NOTE: You cannot use the management ports to perform the initial configuration of the PTX10002-60C. You must configure the management ports through the console connection before you can successfully connect to the PTX10002-60C by using these ports. See "Performing the Initial Software Configuration for the PTX10002-60C" on page 85.
Ensure that you have an appropriate cable available. See "PTX10002-60C Management Cable Specifications and Pinouts" on page 59.
To connect a PTX10002-60C to a network for out-of-band management (see Figure 31 on page 84):
-
Connect one end of the cable to one of the two management ports—labeled MGMT—on the PTX10002-60C.
-
Connect the other end of the cable to the management network device.
Figure 31: Connecting a PTX10002-60C to a Network for Out-of-Band Management

flowchart
graph LR
A["MGMT<br>To Management port<br>(on device)"] --> B["Management network"]
B --> C["Management PC"]
B --> D["Management PC"]
B --> E["Management PC"]
See Also PTX10002-60C Management Panel on page 25.
- PTX10002-60C Management Cable Specifications and Pinouts on page 59
Connecting the PTX10002-60C to a Management Console
The PTX10002-60C has a console port with an RJ-45 connector. Use the console port to connect the router directly to a management console, such as a laptop, or to a console server.
Ensure that you have an RJ-45 to DB-9 rollover cable available. An RJ-45 cable with an RJ-45 to DB-9 adapter is provided with the PTX10002-60C.

NOTE: If your laptop or PC does not have a DB-9 male connector pin and you want to connect your laptop or PC directly to the PTX10002-60C, use a combination of the RJ-45 cable and RJ-45 to DB-9 adapter (provided) and a USB to DB-9 male adapter (not provided).
To connect the PTX10002-60C to a management console (see Figure 32 on page 85 or Figure 33 on page 85):
-
Connect one end of the Ethernet cable to the console port (labeled CON).
-
Connect the other end of the Ethernet cable directly to a management console or console server.
Figure 32: Connecting the PTX10002-60C Directly to a Management Console

flowchart
graph LR
A["CON"] --> B["Laptop CPU"]
style A fill:#f9f,stroke:#333
style B fill:#ccf,stroke:#333
Figure 33: Connecting the PTX10002-60C to a Management Console Through a Console Server

flowchart
graph LR
A["CON"] --> B["Console server"]
B --> C["PC"]
style A fill:#f9f,stroke:#333
style B fill:#ccf,stroke:#333
style C fill:#cfc,stroke:#333
See Also PTX10002-60C Management Panel on page 25.
- PTX10002-60C Management Cable Specifications and Pinouts on page 59
Registering Products—Mandatory for Validating SLAs
Register all new Juniper Networks hardware products and changes to an existing installed product using the Juniper Networks website to activate your hardware replacement service-level agreements (SLAs).

CAUTION: Register product serial numbers on the Juniper Networks website and update the installation base data if there is any addition or change to the installation base or if the installation base is moved. Juniper Networks will not be held accountable for not meeting the hardware replacement service-level agreement for products that do not have registered serial numbers or accurate installation base data.
Register your product(s) at: https://tools.juniper.net/svcreg/SRegSerialNum.jsp. Update your install base at:
https://www.juniper.net/customers/csc/management/updateinstallbase.jsp.
Related Documentation
Contacting Customer Support to Obtain Return Material Authorization on page 118.
Performing the Initial Software Configuration for the PTX10002-60C
You must perform the initial configuration of a PTX10002-60C modular switch through the console port using the command-line interface (CLI) or through Zero Touch Provisioning (ZTP). In order to provision the PTX10002-60C using ZTP, you must have access to a Dynamic Host Control Protocol (DHCP) server and a File Transfer Protocol
(anonymous FTP), Hypertext Transfer Protocol (HTTP), or Trivial File Transfer Protocol (TFTP) server on which the software image and configuration files are stored.
Before you begin connecting and configuring a PTX10002-60C, set the following parameter values on the management console or console server:
- Baud Rate—9600
- Flow Control—None
- Data—8
- Parity—None
- Stop Bits—1
- DCD State—Disregard
To connect and configure the PTX10002-60C using the command-line interface (CLI):
- Connect the console port to a laptop or PC by using the supplied RJ-45 cable and RJ-45 to DB-9 adapter. The console port (labeled CON) is located on the management panel of the PTX10002-60C (see "Connecting the PTX10002-60C to a Management Console" on page 84 for more information).
- Log in as root. There is no password. If the software boots before you connected to the console port, you might need to press the Enter key for the prompt to appear. login: root
- Start the CLI.
root@% cli
- Enter configuration mode.
root> configure
- Add a password to the root administration user account.
[edit] root@# set system root-authentication plain-text-password New password: password Retype new password: password
- (Optional) Configure the name of the PTX10002-60C. If the name includes spaces, enclose the name in quotation marks (" " ).
[edit] root@# set system host-name host-name
- Configure the default gateway.
[edit] root@# set routing-options static route default next-hop address
- Configure the IP address and prefix length for the management interface.
[edit]
root@# set interfaces em0 unit 0 family inet address address/prefix-length

CAUTION: Although the CLI permits you to configure two management Ethernet interfaces within the same subnet, only one interface is usable and supported at a time.

NOTE: The RJ-45 management port em0 and SFP management port em1 are both labeled MGMT.
- (Optional) Configure the static routes to remote prefixes with access to the management port.
[edit]
root@# set routing-options static route remote-prefix next-hop destination-ip retain no-readvertise
- Enable the Telnet service.
[edit]
root@# set system services telnet

NOTE: When Telnet is enabled, you cannot log in to a PTX10002-60C through Telnet by using root credentials. Root login is allowed only for SSH access.
- Commit the configuration to activate it on the PTX10002-60C.
[edit]
root@# commit
Powering Off the PTX10002-60C
Use the following procedure to power off a PTX10002-60C.
- Ensure that you have taken the necessary precautions to prevent electrostatic discharge (ESD) damage. See "Prevention of Electrostatic Discharge Damage" on page 147.
- Ensure that you do not need to route traffic through the PTX10002-60C.
- Ensure that you have the following parts and tools available to power off the PTX10002-60C:
• An ESD grounding strap
• An external management device such as a PC
- An RJ-45 to DB-9 rollover cable to connect the external management device to the console port
To power off a PTX10002-60C:
-
Connect to the router by using one of the following methods:
-
Connect a management device to the console (CON) port on a PTX10002-60C by following the instructions in "Connecting the PTX10002-60C to a Management Console" on page 84.
-
Connect a management device to one of the two management (MGMT) ports by following the instructions in "Connecting the PTX10002-60C to a Management Ethernet Device" on page 83.
-
Shut down Junos OS from the external management device by issuing the request vmhost halt operational mode CLI command. This command shuts down Junos OS gracefully and preserves system state information. A message appears on the console, confirming that the operating system has halted.
user@host> request vmhost halt
Halt the system ? [yes, no] (no) yes
You see the following output (or something similar) after entering the command:
Initiating vmhost halt... ok
Initiating Junos shutdown... shutdown: [pid 14318]
Shutdown NOW!
ok
Junos shutdown is in progress...
*** FINAL System shutdown message ***
System going down IMMEDIATELY
...
...
Operating system halted.
Please press any key to reboot.

CAUTION: The final output of any version of the request system halt command is the "The operating system has halted." Although traffic and the operating system have stopped, the PTX10002-60CPSMLEDs remain lit and a fan module continues to run. Wait at least 60 seconds after first seeing this message before following the instructions in Step 4 and Step 5 to power off the PTX10002-60C.
-
To prevent damage to the equipment caused by static discharge, attach an electrostatic discharge (ESD) grounding strap to your bare wrist, and connect the strap to one of the ESD points on the chassis.
-
Disconnect power to the PTX10002-60C:
-
AC power supply—If the AC power source outlet has a power switch, set it to the off (O) position. If the AC power source outlet does not have a power switch, gently pull out the male end of the power cord connected to the power source outlet.
-
DC power supply—Switch the circuit breaker on the panel board that services the DC circuit to the off position.
-
Remove the power source cable from the power supply faceplate:
-
AC power supply—Gently pull out the female end of the power plug connected to the power supply faceplate.
-
DC power supply—Loosen the thumb screws for the power cable. Gently pull out the female end of the power plug connected to the power supply faceplate.
-
Uncable the switch before removing it from the rack.
Related Documentation
•Connecting AC Power to the PTX10002-60C on page 76
•Connecting DC Power to the PTX10002-60C on page 79
CHAPTER 4
Maintaining Components
- Maintaining the PTX10002-60C Fan Modules on page 91
- Maintaining the PTX10002-60C Power Supplies on page 94
- Maintaining Transceivers and Fiber-Optic Cables on PTX10002-60C on page 98
- Uninstalling the PTX10002-60C on page 105
Maintaining the PTX10002-60C Fan Modules
- Removing a Fan Module from the PTX10002-60C on page 91
• Installing a Fan Module in the PTX10002-60C on page 92
Removing a Fan Module from the PTX10002-60C
The fan modules in a PTX10002-60C are hot-removable and hot-insertable field-replaceable units (FRUs)—you can remove and replace them without powering off the PTX10002-60C or disrupting routing functions.

CAUTION: Replace a failed fan module with a new fan module within one minute of removal to prevent chassis overheating. Before removing the fan module, ensure you have a replacement fan module at hand.
Before you remove a fan module from a PTX10002-60C, ensure that you have taken the necessary precautions to prevent electrostatic discharge (ESD) damage (see "Prevention of Electrostatic Discharge Damage" on page 147).
Ensure that you have the following parts and tools available:
- ESD grounding strap
- Antistatic bag or an antistatic mat
• Phillips (+) screwdriver, number 1
To remove a fan module from a PTX10002-60C (see Figure 34 on page 92):
- Place the antistatic bag or the antistatic mat on a flat, stable surface.
-
To prevent damage to the equipment caused by static discharge, attach an electrostatic discharge (ESD) grounding strap to your bare wrist, and connect the strap to one of the ESD points on the chassis.
-
Using the Phillips screwdriver, loosen the locking screw (3 or 4 turns).
-
Grasp the handle on the fan module and squeeze the outside of the handle to release the module.

WARNING: To avoid injury, do not touch the fan with your hands or any tools as you slide the fan module out of the chassis—the fan might still be running.
- Pull firmly to slide the fan module halfway out of the chassis.
- When the fan stops spinning, slide the fan module completely out of the chassis.
- Place the fan module in the antistatic bag or on the antistatic mat placed on a flat, stable surface.
Figure 34: Removing a Fan Module from a PTX10002-60C


NOTE: When a fan module is removed, the CLI message Fan/Blower is Absent is logged in the system log, and the system raises a minor alarm.
Installing a Fan Module in the PTX10002-60C
The fan modules in a PTX10002-60C are hot-removable and hot-insertable field-replaceable units (FRUs)—you can remove and replace them without powering off the PTX10002-60C or disrupting routing functions.

CAUTION: Replace a failed fan module with anew fanmodule within1minute of removal to prevent chassis overheating. Before removing the fan module, ensure you have a replacement fan module at hand.

NOTE: The fan module provides airflow out, which is also known as port-to-FRU airflow.
Before you install a fan module in a PTX10002-60C, ensure that you have taken the necessary precautions to prevent electrostatic discharge (ESD) damage (see "Prevention of Electrostatic Discharge Damage" on page 147).
Ensure that you have the following parts and tools available:
- ESD grounding strap
• #1 Phillips (+) screwdriver, number 1
To install a fan module in a PTX10002-60C (see Figure 35 on page 93):
- To prevent damage to the equipment caused by static discharge, attach an electrostatic discharge (ESD) grounding strap to your bare wrist, and connect the strap to one of the ESD points on the chassis.
- Taking care not to touch the connectors, remove the fan module from its bag.
- Align the module with the open slot on the FRU end of the PTX10002-60C and slide it in until it is fully seated.
- Using the Phillips screwdriver, tighten the locking screw (3 or 4 turns).
Figure 35: Installing a Fan Module in a PTX10002-60C

natural_image
Technical line drawing of a computer rack with a screwdriver inserted, showing internal components and a blue arrow indicating motion (no text or symbols present)Maintaining the PTX10002-60C Power Supplies
- Removing a Power Supply from the PTX10002-60C on page 94
• Installing a Power Supply in a PTX10002-60C on page 96
Removing a Power Supply from the PTX10002-60C
The power supplies in a PTX10002-60C are hot-removable and hot-insertable field-replaceable units (FRUs)—you can remove and replace them without powering off the PTX10002-60C or disrupting routing functions.

CAUTION: Replace the power supply within 1 minute of removal to prevent chassis overheating. Before removing the power supply, ensure you have a replacement power supply available.
Before you remove a power supply from a PTX10002-60C, ensure that you have taken the necessary precautions to prevent electrostatic discharge (ESD) damage (see "Prevention of Electrostatic Discharge Damage" on page 147).
Ensure that you have the following parts and tools available:
- ESD grounding strap
- Antistatic bag or an antistatic mat
- Phillips (+) screwdriver, number 2 (DC power supply)
If you are removing a redundant power supply and do not plan to replace it with another immediately, have a power supply cover for the opening.

CAUTION: Do not mix AC and DC power supplies in the same chassis.
To remove a power supply from a PTX10002-60C (see Figure 36 on page 95):
- Place the antistatic bag or the antistatic mat on a flat, stable surface.
-
To prevent damage to the equipment caused by static discharge, attach an electrostatic discharge (ESD) grounding strap to your bare wrist, and connect the strap to one of the ESD points on the chassis.
-
Disconnect power to the PTX10002-60C:
-
AC power supply—If the AC power source outlet has a power switch, set it to the off (O) position. If the AC power source outlet does not have a power switch, gently pull out the male end of the power cord connected to the power source outlet.
- DC power supply—Switch the circuit breaker on the panel board that services the DC circuit to the off position.

NOTE: If you need to remove all the power supplies installed in your PTX10002-60C, you must power off the PTX10002-60C before removing the power supplies. See "Powering Off the PTX10002-60C" on page 87.
-
Remove the power source cable from the power supply faceplate:
-
AC power supply—Remove the power cord from the power supply faceplate by detaching the power cord retainer and gently pulling out the female end of the power plug connected to the power supply faceplate.
-
DC power supply—Loosen the thumb screws for the power cable. Gently pull out the female end of the power plug connected to the power supply faceplate.
-
Slide the locking lever toward the handle until it stops.
- Grasp the power supply handle and pull firmly to slide the power supply halfway out of the chassis. See Figure 36 on page 95.
- Place one hand under the power supply to support it and slide it completely out of the chassis. Take care not to touch power supply components, pins, leads, or solder connections.
Figure 36: Removing a Power Supply from a PTX10002-60C

natural_image
Technical line drawing of a server rack with internal components and a blue directional arrow indicating movement (no text or symbols)- Place the power supply in the antistatic bag or on the antistatic mat placed on a flat, stable surface.
- Either replace with another power supply or insert a PSU blank cover (PTX10002-PWR-BLNK). Refer to Figure 37 on page 96
Figure 37: Inserting a Power Supply Blank Cover

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Technical diagram of a server rack with internal components and a blue arrow indicating direction (no text or symbols present)Installing a Power Supply in a PTX10002-60C
The power supplies in a PTX10002-60C are hot-removable and hot-insertable field-replaceable units (FRUs)—you can remove and replace them without powering off the PTX10002-60C or disrupting routing functions.

CAUTION: Replace the powersupply within one minute of removal to prevent chassis overheating. Before removing the power supply, ensure you have a replacement power supply available.
- Before you install a power supply in a PTX10002-60C, ensure that you have taken the necessary precautions to prevent electrostatic discharge (ESD) damage (see "Prevention of Electrostatic Discharge Damage" on page 147).
- Ensure that the airflow direction of the power supply is the same as the chassis. Labels on the power supply handle indicate the direction of airflow. See "PTX10002-60C Cooling System Description and Airflow" on page 31.
- Ensure that you have an ESD grounding strap.
- If the power supply has protective plastic wrap, peel and remove the plastic wrap from all four sides of the power supply.

CAUTION: Do not mix AC and DC power supplies in the same chassis.
To install a power supply in a PTX10002-60C (see Figure 39 on page 97):
- To prevent damage to the equipment caused by static discharge, attach an electrostatic discharge (ESD) grounding strap to your bare wrist, and connect the strap to one of the ESD points on the chassis.
- If the power supply is being installed in an empty slot, remove the blank cover by squeezing the finger holds and pulling the cover straight out.
Figure 38: Removing a Power Supply Blank Cover

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Technical diagram of a server rack with three fans and directional arrows indicating movement (no text or symbols)- Taking care not to touch power supply components, pins, leads, or solder connections, remove the power supply from its bag.
- Using both hands, place the power supply in the power supply slot on the FRU panel of the PTX10002-60C and slide it in until it is fully seated and the locking lever slides into place.
Figure 39: Installing a Power Supply in a PTX10002-60C

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Technical line drawing of a server rack with internal components and a blue arrow indicating direction (no text or symbols)
NOTE: Each power supply must be connected to a dedicated power source outlet.

NOTE: If you have a Juniper Care service contract, register any addition, change, or upgrade of hardware components at https://www.juniper.net/customers/support/tools/updateinstallbase/. Failure to do so can result in significant delays if you need replacement parts. This note does not apply if you replace existing components with the same type of component.
Maintaining Transceivers and Fiber-Optic Cables on PTX10002-60C
- Removing a Transceiver on page 98
• Installing a Transceiver on page 101 - Disconnecting a Fiber-Optic Cable from a Device on page 103
- Connecting a Fiber-Optic Cable on page 104
- Maintaining Fiber-Optic Cables on page 104
Removing a Transceiver
The transceivers for Juniper Networks devices are hot-removable and hot-insertable field-replaceable units (FRUs). You can remove and replace them without powering off the device or disrupting device functions.

NOTE: After you remove a transceiver or when you change the media-type configuration, wait for 6 seconds for the interface to display the operational commands.
Before you begin removing a transceiver from a device, ensure that you have taken the necessary precautions for safe handling of lasers (see “Laser and LED Safety Guidelines and Warnings” on page 137).
Ensure that you have the following parts and tools available:
- An antistatic bag or an antistatic mat
- Rubber safety caps to cover the transceiver and fiber-optic cable connector
• A dust cover to cover the port
Figure 40 on page 100 shows how to remove a QSFP+ transceiver. The procedure is the same for all types of transceivers except the QSFP28 and CFP transceivers.
To remove a transceiver from a device:
- Place the antistatic bag or antistatic mat on a flat, stable surface.
-
Wrap and fasten one end of the ESD wrist strap around your bare wrist, and connect the other end of the strap to the ESD point on the switch.
-
Label the cable connected to the transceiver so that you can reconnect it correctly.

WARNING: Do not look directly into a fiber-optic transceiver or into the ends of fiber-optic cables. Fiber-optic transceivers and fiber-optic cables connected to transceivers emit laser light that can damage your eyes.

WARNING: Do not leave a fiber-optic transceiver uncovered except when inserting or removing a cable. The rubber safety cap keeps the port clean and prevents accidental exposure to laser light.

CAUTION: Do not bend fiber-optic cables beyond their minimum bend radius. An arc smaller than a few inches indiametercan damage the cables and cause problems that are difficult to diagnose.
-
Remove the cable connected to the transceiver (see Disconnecting a Fiber-Optic Cable from a Device). Cover the transceiver and the end of each fiber-optic cable connector with a rubber safety cap immediately after disconnecting the fiber-optic cables.
-
To remove an SFP, SFP+, XFP, or a QSFP+ transceiver:
a. By using your fingers, pull open the ejector lever on the transceiver to unlock the transceiver.

CAUTION: Before removing the transceiver, make sure that you open the ejector levercompletely until you hear it click. This prevents damage to the transceiver.
b. Grasp the transceiver ejector lever and gently slide the transceiver approximately 0.5 in. (1.3 cm) straight out of the port.

CAUTION: To prevent electrostatic discharge (ESD) damage to the transceiver, do not touch the connector pins at the end of the transceiver.
To remove a CFP transceiver:
a. Loosen the screws on the transceiver by using your fingers.
b. Grasp the screws on the transceiver and gently slide the transceiver approximately 0.5 in. (1.3 cm) straight out of the port.

CAUTION: To prevent electrostatic discharge (ESD) damage to the transceiver, do not touch the connector pins at the end of the transceiver.
Figure 40: Removing an SFP, SFP+, XFP, or a QSFP+ Transceiver

1— Ejector lever
-
By using your fingers, grasp the body of the transceiver and pull it straight out of the port.
-
Place the transceiver in the antistatic bag or on the antistatic mat placed on a flat, stable surface.
- Place the dust cover over the empty port.
Installing a Transceiver
The transceivers for Juniper Networks devices are hot-removable and hot-insertable field-replaceable units (FRUs). You can remove and replace them without powering off the device or disrupting the device functions.

NOTE: After you insert a transceiver or after you change the media-type configuration, wait for 6 seconds for the interface to display operational commands.

NOTE: We recommend that you use only optical transceivers and optical connectors purchased from Juniper Networks with your Juniper Networks device.

CAUTION: If you face a problem running a Juniper Networks device that uses a third-party optic or cable, the Juniper Networks Technical Assistance Center (JTAC) can help you diagnose the source of the problem. Your JTAC engineer might recommend that you check the third-party optic or cable and potentially replace it with an equivalent Juniper Networks optic or cable that is qualified for the device.
Before you begin installing a transceiver in a device, ensure that you have taken the necessary precautions for safe handling of lasers (see “Laser and LED Safety Guidelines and Warnings” on page 137).
Ensure that you have a rubber safety cap available to cover the transceiver.
Figure 41 on page 103 shows how to install a QSFP+ transceiver. The procedure is the same for all types of transceivers except the QSFP28 and CFP transceivers.
To install a transceiver:

CAUTION: To prevent electrostatic discharge (ESD) damage to the transceiver, do not touch the connector pins at the end of the transceiver.
- Wrap and fasten one end of the ESD wrist strap around your bare wrist, and connect the other end of the strap to the ESD point on the switch.
- Remove the transceiver from its bag.
- Check to see whether the transceiver is covered with a rubber safety cap. If it is not, cover the transceiver with a rubber safety cap.

WARNING: Do not leave a fiber-optic transceiver uncovered except when inserting or removing a cable. The rubber safety cap keeps the port clean and prevents accidental exposure to laser light.
- If the port in which you want to install the transceiver is covered with a dust cover, remove the dust cover and save it in case you need to cover the port later. If you are hot-swapping a transceiver, wait for at least 10 seconds after removing the transceiver from the port before installing a new transceiver.
- Using both hands, carefully place the transceiver in the empty port. The connectors must face the chassis.

CAUTION: Before you slide the transceiver into the port, ensure that the transceiver is aligned correctly. Misalignment might cause the pins to bend, making the transceiver unusable.
- Slide the transceiver in gently until it is fully seated. If you are installing a CFP transceiver, tighten the captive screws on the transceiver by using your fingers.
- Remove the rubber safety cap when you are ready to connect the cable to the transceiver.

WARNING: Do not look directly into a fiber-optic transceiver or into the ends of fiber-optic cables. Fiber-optic transceivers and fiber-optic cables connected to transceivers emit laser light that can damage your eyes.
Figure 41: Installing a Transceiver

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Mechanical assembly diagram showing a component being extruded into a housing (no text or symbols present)1— Ejector lever
Disconnecting a Fiber-Optic Cable from a Device
Juniper Networks devices have field-replaceable unit (FRU) optical transceivers to which you can connect fiber-optic cables.
Before you begin disconnecting a fiber-optic cable from an optical transceiver, ensure that you have taken the necessary precautions for safe handling of lasers. See "Laser and LED Safety Guidelines and Warnings" on page 137.
Ensure that you have the following parts and tools available:
• A rubber safety cap to cover the transceiver
- A rubber safety cap to cover the fiber-optic cable connector
To disconnect a fiber-optic cable from an optical transceiver installed in the device:
- Disable the port in which the transceiver is installed by issuing the following command:
[edit interfaces] user@device# set interface-namedisable

WARNING: Do not look directly into a fiber-optic transceiver or into the ends of fiber-optic cables. Fiber-optic transceivers and fiber-optic cables connected to transceivers emit laser light that can damage your eyes.
-
Carefully unplug the fiber-optic cable connector from the transceiver.
-
Cover the transceiver with a rubber safety cap.

WARNING: Do not leave a fiber-optic transceiver uncovered except when inserting or removing a cable. The rubber safety cap keeps the port clean and prevents accidental exposure to laser light.
- Cover the fiber-optic cable connector with the rubber safety cap.
Connecting a Fiber-Optic Cable
Before you begin connecting a fiber-optic cable to an optical transceiver installed in a device, ensure that you have taken the necessary precautions for safe handling of lasers (see "Laser and LED Safety Guidelines and Warnings" on page 137).
To connect a fiber-optic cable to an optical transceiver installed in a device:

WARNING: Do not look directly into a fiber-optic transceiver or into the ends of fiber-opticcables. Fiber-optic transceivers and fiber-optic cablesconnected to transceivers emit laser light that can damage your eyes.
- If the fiber-optic cable connector is covered with a rubber safety cap, remove the cap. Save the cap.
- Remove the rubber safety cap from the optical transceiver. Save the cap.
- Insert the cable connector into the optical transceiver (see Figure 42 on page 104).
Figure 42: Connecting a Fiber-Optic Cable to an Optical Transceiver Installed in a Device

- Secure the cables so that they do not support their own weight. Place excess cable out of the way in a neatly coiled loop. Placing fasteners on a loop helps cables maintain their shape.

CAUTION: Do not bend fiber-optic cables beyond their minimum bend radius. An arc smaller than a few inches in diameter can damage the cables and cause problems that are difficult to diagnose.
Do not let fiber-optic cables hang free from the connector. Do not allow fastened loops of cables to dangle, which stresses the cables at the fastening point.
Maintaining Fiber-Optic Cables
Fiber-optic cables connect to optical transceivers that are installed in Juniper Networks devices.
To maintain fiber-optic cables:
- When you unplug a fiber-optic cable from a transceiver, place rubber safety caps over the transceiver and on the end of the cable.
- Anchor fiber-optic cables to prevent stress on the connectors. When attaching a fiber-optic cable to a transceiver, be sure to secure the fiber-optic cable so that it does not support its own weight as it hangs to the floor. Never let a fiber-optic cable hang free from the connector.
- Avoid bending fiber-optic cables beyond their minimum bend radius. Bending fiber-optic cables into arcs smaller than a few inches in diameter can damage the cables and cause problems that are difficult to diagnose.
- Frequent plugging and unplugging of fiber-optic cables in and out of optical instruments can damage the instruments, which are expensive to repair. Attach a short fiber extension to the optical equipment. Any wear and tear due to frequent plugging and unplugging is then absorbed by the short fiber extension, which is easier and less expensive to replace than the instruments.
- Keep fiber-optic cable connections clean. Microdeposits of oil and dust in the canal of the transceiver or cable connector can cause loss of light, reduction in signal power, and possibly intermittent problems with the optical connection.
- To clean the transceiver canal, use an appropriate fiber-cleaning device such as RIFOCS Fiber Optic AdaptorCleaning Wands (part number 946). Follow the directions in the cleaning kit you use.
- After cleaning the transceiver, make sure that the connector tip of the fiber-optic cable is clean. Use only an approved alcohol-free fiber-optic cable cleaning kit such as the Opptex CletopFiber Cleaner. Follow the directions in the cleaning kit you use.
Uninstalling the PTX10002-60C
If you need to relocate an installed PTX10002-60C, perform the following procedure.

NOTE: When you remove multiple devices from a rack, remove the device at the top of the rack first and proceed to remove the rest of the devices from top to bottom to avoid toppling the rack.
Before removing a PTX10002-60C from a rack:
- Ensure that the rack is stable and secured to the building.
- Ensure that there is enough space to place the removed PTX10002-60C in its new location and along the path to the new location.
- Read "General Safety Guidelines and Warnings" on page 124 and PTX10002-60C Installation Safety Guidelines.
-
Power off the device (see "Powering Off the PTX10002-60C" on page 87).
-
Disconnect the power cords.
- Ensure that you have disconnected any cables or wires attached to the PTX10002-60C (see Disconnecting a Fiber-Optic Cable from a Device).
Ensure that you have the following parts and tools available:
- Either a mechanical lift or two persons to support the weight of the PTX10002-60C. An additional person is needed to remove the screws securing the router to the rack.
- Screwdriver appropriate for your rack-mounting screws.
To remove a PTX10002-60C from a rack:
-
Perform one of the following steps:
-
Position a mechanical lift under the PTX10002-60C. Use the screwdriver to remove the front-mounting screws that attach the router to the rack.
-
Have two persons support the weight of the PTX10002-60C while another person uses the screwdriver to remove the front-mounting screws that attach the router to the rack.
-
Remove the PTX10002-60C from the rack.
- Use the screwdriver to remove the mounting screws that attach the rear-mounting blades to the rear of the rack.
- Place the removed screws and rear-mounting blades in a labeled bag. You will need them when you reinstall the chassis.
- Transport the PTX10002-60C to your desired new location.
Related Documentation
•Mounting the PTX10002-60C on page 72
CHAPTER 5
Troubleshooting Hardware
- Troubleshooting the PTX10002-60C on page 107
Troubleshooting the PTX10002-60C
• PTX10002-60C Troubleshooting Resources Overview on page 107
• PTX10002-60C Alarm Messages Overview on page 108
- ChassisAlarmMessages on the PTX10002-60C and RecommendedActions on page 108
PTX10002-60C Troubleshooting Resources Overview
To troubleshoot a PTX10002-60C, you use the Junos OS CLI, alarms, and LEDs on the network ports, management panel, and components.
- LEDs—When the Routing Engine detects an alarm condition, it lights the red or yellow alarm LED on the management panel as appropriate. In addition, you can also use component LEDs and network port LEDs to troubleshoot the PTX10002-60C. For more information, see the following topics:
• PTX10002-60C Chassis Status LEDs on page 28
• PTX10002-60C Management Port LEDs on page 27
• PTX10002-60C Network Port LEDs on page 24
• Figure 13 on page 33
• PTX10002-60C Power Supply LED on page 37
- CLI—The CLI is the primary tool for controlling and troubleshooting hardware, Junos OS, routing protocols, and network connectivity. CLI commands display information from routing tables, information specific to routing protocols, and information about network connectivity derived from the ping and traceroute utilities. For information about using the CLI to troubleshoot Junos OS, see the appropriate Junos OS configuration guide.
- JTAC—If you need assistance during troubleshooting, you can contact the Juniper Networks Technical Assistance Center (JTAC) by using the Web or by telephone. If you encounter software problems, or problems with hardware components not discussed here, contact JTAC.
See Also PTX10002-60C Management Panel on page 25.
- Contacting Customer Support on page 113
PTX10002-60C Alarm Messages Overview
When the Routing Engine detects an alarm condition, it lights the red or yellow alarm LED on the management panel as appropriate. To view a more detailed description of the alarm cause, issue the show chassis alarms CLI command:
user@host> show chassis alarms 6 alarms currently active
Alarm time Class Description
2018-02-07 12:12:18 PST Major FPC Management1 Ethernet Link Down
2018-02-07 12:11:54 PST Minor FPCO: LED 3:Alarm LED Read Error
2018-02-07 12:11:54 PST Minor FPCO: LED 3:Alarm LED Write Error
2018-02-07 12:11:54 PST Major FPCO: PEM 1 Not Supported
2018-02-07 12:11:54 PST Major FPCO: PEM 0 Not Supported
2018-02-07 12:11:54 PST Major FPCO: PEM 0 Not Powered
See Also Definitions of Safety Warning Levels on page 125.
Chassis Alarm Messages on the PTX10002-60C and Recommended Actions
Chassis alarms indicate a failure on the device or one of its components. Chassis alarms are preset and cannot be modified.
Chassis alarms on PTX10002-60C routers have two severity levels:
- Major (red)—Indicates a critical situation on the device that has resulted from one of the conditions described in Table 38 on page 109. A red alarm condition requires immediate action.
- Minor (yellow or amber)—Indicates a noncritical condition on the device that, if left unchecked, might cause an interruption in service or degradation in performance. A yellow alarm condition requires monitoring or maintenance.
Table 38 on page 109 describes the chassis alarm messages on the PTX10002-60C.
Table 38: PTX10002-60C Chassis Alarm Messages
| Recommended ActionCLI MessageA | ||
| Fan FailureMajor (red)Fans | Replace the fan module and report the failure to customer support. | |
| Fan I2C Failure | Check the system log for one of the following messages and report the error message to customer support:CM ENV Monitor: Get fan speed failed.fan-number is NOT spinning @ correct speed, where fan-number can be 1, 2, or 3. | |
| Fan fan-number Not Spinning | Remove and check the fan module for obstructions, and then reinsert the fan module. If the problem persists, replace the fan module. | |
| Fan/Blower AbsentMinor (yellow) | Check the system log for the message fan-number Absent, where fan-number can be 1, 2, or 3.Install the fan module. |
Table 38: PTX10002-60C Chassis Alarm Messages (continued)
| Recommended ActionCLI MessageA | ||
| Major (red)Power PEM pem-number Airflow not matching Chassis Airflow | Replace the power supply with a power supply that supports the same airflow direction as the chassis. | |
| PEM pem-number I2C Failure | Check the system log for one of the following messages and report the error message to customer support:I2C Read failed for device number, where number may be from 123 to 125.PS number: Transitioning from online to offline, where power supply (PS) number may be 1, 2, 3, or 4. | |
| PEM pem-number is not powered | Check the power cord connection and reconnect, if necessary. | |
| PEM pem-number is not supported | Replace the power supply with a supported power supply. | |
| PEM pem-number Not OK | Indicates a problem with the incoming AC power or outgoing DC power. Report the error to customer support. | |
| PEM pem-number AbsentMinor (yellow) | A power supply is not installed. Install a supported power supply in the appropriate slot. | |
| PEM pem-number Power Supply Type Mismatch | Check if there is a mix of AC and DC power supplies in the same chassis. Reboot the device with only AC or only DC power supplies. | |
| Replace the removed power supply.PEM pem-number R |
Table 38: PTX10002-60C Chassis Alarm Messages (continued)
| Recommended ActionCLI MessageA | |||
| sensors | sensor-location Temp Sensor FailMajor (Cold) Temperature system log for the following message and report it to customer support:Temp sensor sensor-number failed, where sensor-number ranges from 1 through 10. | ||
| sensor-location Temp Sensor Too Hot | Check environmental conditions and alarms on other devices. Ensure that environmental factors (such as hot air blowing around the equipment) do not affect the temperature sensor. If the condition persists, the device might shut down. | ||
| sensor-location Temp Sensor Too Warm (Timoinforylation only. Check environmental conditions and alarms on other devices. Ensure that environmental factors (such as hot air blowing around the equipment) do not affect the temperature sensor. | |||
| Routing Engine | Minor (yellow) | RE RE number /var partition usage is high | Clean up the system file storage space on the switch. For more information, see Cleaning Up the System File Storage Space. |
| RE RE number /var partition is full Major (Cleard) up the system file storage space on the switch. For more information, see Cleaning Up the System File Storage Space. | |||
| Rescue configuration is not setMinor (yellow) | the request system configuration rescue save command to set the rescue configuration. For more information, see Setting or Deleting the Rescue Configuration. | ||
| Feature usage requires a license orLicense for feature expired | Install the requiredlicense for the feature specified in the alarm. For more information, see Software Features That Require Licenses on the PTX Series. | ||
| Ethernet interface | Management Ethernet 1 Link DownMajorCheck Management cable is connected to the management Ethernet interface, or whether the cable is defective. Replace the cable, if required.If the problem cannot be resolved, open a support case by using the Case Manager link athttps://www.juniper.net/support/ or call 1-888-314-5822 (toll free, US and Canada)or 1-408-745-9500 (from outside the United States). | ||
See Also - Configuring the Junos OS to Determine Conditions That Trigger Alarms on Different Interface Types - alarm
CHAPTER 6
Contacting Customer Support and Returning the Chassis or Components
- Contacting Customer Support on page 113
- Returning the PTX10002-60C Chassis or Components on page 113
Contacting Customer Support
You can contact Juniper Networks Technical Assistance Center (JTAC) 24 hours a day, 7 days a week in one of the following ways:
- On the Web, using the Case Manager link at:
https://www.juniper.net/support/
- By telephone:
From the US and Canada: 1-888-314-JTAC
From all other locations: 1-408-745-9500
If contacting JTAC by phone, enter your 12-digit case number followed by the # key if this is an existing case, or press the * key to be routed to the next available support engineer.
When requesting support from JTAC by telephone, be prepared to provide the following information:
- Your existing case number, if you have one
• Details of the failure or problem - Type of activity being performed on the platform when the problem occurred
- Configuration data using one or more of the show commands
Returning the PTX10002-60C Chassis or Components
- Locating the Serial Number on a PTX10002-60C Chassis or Component on page 114
- Removing the Solid State Drives for RMA on page 115
-
Returning a PTX10002-60C or Component for Repair or Replacement on page 118
-
Contacting Customer Support to Obtain Return Material Authorization on page 118
- Packing a PTX10002-60C Chassis or Component for Shipping on page 119
Locating the Serial Number on a PTX10002-60C Chassis or Component
If you are returning a PTX10002-60C or a PTX10002-60C field-replaceable unit (FRU) to Juniper Networks for repair or replacement, you must locate the serial number of the router or FRU. You must provide the serial number to the Juniper Networks Technical Assistance Center (JTAC) when you contact them to obtain a Return Materials Authorization (RMA). See "Contacting Customer Support to Obtain Return Material Authorization" on page 118.
If the PTX10002-60C is operational and you can access the command-line interface (CLI), you can list serial numbers for the router and some components with a CLI command. If you do not have access to the CLI or if the serial number for the FRU does not appear in the command output, you can locate the serial number ID label on the router or FRU.

NOTE: If you want to find the serial number ID label on a component, you need to remove the component from the chassis, for which you must have the required parts and tools available.

NOTE: You must remove the fan module to read the serial number from the serial number ID label. The fan module serial number cannot be viewed through the CLI.
- Listing the Chassis and PTX10002-60C Component Detailsby Using the CLI on page 114
- Locating the Chassis Serial Number ID Label on a PTX10002-60C on page 115
- Locating the Serial Number ID Labels on FRU Components on page 115
Listing the Chassis and PTX10002-60C Component Details by Using the CLI
To list the PTX10002-60C and components and their serial numbers, use the show chassis hardware CLI operational mode command.
user@host> show chassis hardware
| Hardware inventory: | ||||
| Item | Version | Part number | Serial number | Description |
| Chassis | DB665 | PTX1000 | ||
| Pseudo CB 0 | ||||
| Routing Engine 0 | BUILTIN | BUILTIN | RE-PTX1000 | |
| FPC 0 | REV 06 | 750-065110 | ACMX7555 | PTX1000-FPC-P2-BUILTIN |
| CPU | BUILTIN | BUILTIN | FPC CPU | |
| PIC 0 | BUILTIN | BUILTIN | 288X10GE/72X40GE/24X100GE | |
| Xcvr 1 | REV 01 | 740-032986 | QB300994 | QSFP+-40G-SR4 |
| Xcvr 2 | REV 01 | 740-032986 | QB491187 | QSFP+-40G-SR4 |
| Xcvr 3 | REV 01 | 740-046565 | QE440568 | QSFP+-40G-SR4 |
| Xcvr 4 | REV 01 | 740-046565 | QF2805JS | QSFP+-40G-SR4 |
| Xcvr 5 | REV 01 | 740-046565 | QE413802 | QSFP+-40G-SR4 |
| Xcvr 6 | REV 01 | 740-032986 | QA470512 | QSFP+-40G-SR4 |
| Xcvr 71 | REV 01 | 740-061405 | 1ACQ104400S | 100GBASE-SR4 |
| Mezz | REV 04 | 711-064764 | ACMX2345 | PTX1000 Mezz |
| Power Supply 0 | REV 03 | 740-054405 | 1EDN5190265 | AC AFO 1600W PSU |
| Power Supply 1 | REV 03 | 740-054405 | 1EDN5190075 | AC AFO 1600W PSU |
| Power Supply 2 | REV 03 | 740-054405 | 1EDN5200472 | AC AFO 1600W PSU |
| Power Supply 3 | REV 03 | 740-054405 | 1EDN5200539 | AC AFO 1600W PSU |
| Fan Tray 0to Back Airflow - AFO | PTX1000 Fan Tray 0, Front | |||
| Fan Tray 1to Back Airflow - AFO | PTX1000 Fan Tray 1, Front | |||
| Fan Tray 2to Back Airflow - AFO | PTX1000 Fan Tray 2, Front | |||

NOTE: You must remove the fan module to read the fan serial number from the serial number ID label. The fan module serial number cannot be viewed through the CLI. Fan Tray 2 refers to the third module from the left, counting from 0.
Locating the Chassis Serial Number ID Label on a PTX10002-60C
The serial number ID label is located on a label on the top cover.
Locating the Serial Number ID Labels on FRU Components
For each FRU, you must remove the FRU from the chassis to see the FRU's serial number ID label.
- AC power supply—The serial number ID label is on the top of the AC power supply.
- DC power supply—The serial number ID label is on the top of the DC power supply.
- Fan module—The serial number ID label is on the top of the fan module.
Removing the Solid State Drives for RMA
The PTX10002 has two solid-state drives (SSDs) that store the software images, system logs, and the configuration files. Before returning a chassis to Juniper Networks as part of a Return Merchandise Authorization (RMA), you have the option of removing the SSDs and disposing them according to your own company's security procedures. Before you begin this procedure, ensure you have the following tools:
- ESD grounding strap (not provided)
• Number 2 Phillips screwdriver
Use this optional procedure to remove the drives from the PTX10002 after the device has shutdown and removed from the rack.
- Attach the ESD grounding strap to your bare wrist and to a site ESD point.
- Place the device on a firm surface such as a workbench or a table.
- Using the number 2 Phillips screwdriver, remove the six flat-head screws that secure the access door on the right-side of the device. Retain the screws for later use.
Figure 43: Removing or Replacing Flat-head Screws in the Access Door

- Reach inside of the cavity and unscrew the two thumb-screw fasteners and set aside with the screws.
Figure 44: Remove or Replacing the Thumb-screw Fasteners

- Slide the SSD out of the slot and set aside; repeat with the second SSD.
Figure 45: Removing the SSDs

-
Replace the two thumbscrews and hand-tighten.
-
Replace the six flat-head screws and hand tighten using the number 2 Phillips screwdriver.
- Dispose of the SSDs according to your site security procedures.
Returning a PTX10002-60C or Component for Repair or Replacement
If you need to return a PTX10002 or component to Juniper Networks for repair or replacement, follow this procedure:
- Determine the serial number of the component. For instructions, see "Locating the Serial Number on a PTX10002-60C Chassis or Component" on page 114.
- Obtain a Return Materials Authorization (RMA) number from the Juniper Technical Assistance Center (JTAC) as described in "Contacting Customer Support to Obtain Return Material Authorization" on page 118.

NOTE: Do not return any component to Juniper Networks unless you have first obtained an RMA number. Juniper Networks reserves the right to refuse shipments that do not have an RMA. Refused shipments are returned to the customer through collect freight.
- Pack the router or component for shipping as described in "Packing a PTX10002-60C Chassis or Component for Shipping" on page 119.
For more information about return and repair policies, see the customer support page at https://www.juniper.net/support/guidelines.html.
Contacting Customer Support to Obtain Return Material Authorization
If you are returning a device or hardware component to Juniper Networks for repair or replacement, obtain a Return Material Authorization(RMA) number from Juniper Networks Technical Assistance Center (JTAC).
After locating the serial number of the device or hardware component you want to return, open a Case with Juniper Networks Technical Assistance Center (JTAC) on the Web or by telephone.
Before you request an RMA number from JTAC, be prepared to provide the following information:
- Your existing case number, if you have one
- Serial number of the component
-
Your name, organization name, telephone number, fax number, and shipping address
• Details of the failure or problem -
Type of activity being performed on the device when the problem occurred
- Configuration data displayed by one or more show commands
You can contact JTAC 24 hours a day, seven days a week on the Web or by telephone:
- Case Manager at CSC: https://www.juniper.net/cm/
- Telephone: +1-888-314-JTAC1-888-314-5822, toll free in U.S., Canada, and Mexico

NOTE: For international or direct-dial options in countries without toll free numbers, see https://www.juniper.net/support/requesting-support.html.
If you are contacting JTAC by telephone, enter your 12-digit case number followed by the pound (#) key for an existing case, or press the star (*) key to be routed to the next available support engineer.
The support representative validates your request and issues an RMA number for return of the component.
See Also • Prevention of Electrostatic Discharge Damage on page 147
Packing a PTX10002-60C Chassis or Component for Shipping
If you are returning a PTX10002-60C or component to Juniper Networks for repair or replacement, pack the item as described in this topic.
Before you pack a PTX10002-60C or component:
- Ensure that you have taken the necessary precautions to prevent electrostatic discharge (ESD) damage. See "Prevention of Electrostatic Discharge Damage" on page 147.
- Retrieve the original shipping carton and packing materials. Contact your JTAC representative if you do not have these materials, to learn about approved packing materials (see “Contacting Customer Support” on page 113).
Ensure that you have the following parts and tools available:
- ESD grounding strap.
- Antistatic bag, one for each component.
- If you are returning the chassis, an appropriate screwdriver for the mounting screws used on your rack.
- Packing a PTX10002-60C for Shipping on page 119
- Packing PTX10002-60C Components for Shipping on page 120
Packing a PTX10002-60C for Shipping
To pack a PTX10002-60C for shipping:
- Power off the PTX10002-60C and remove the AC power cords or DC power cables. See "Powering Off the PTX10002-60C" on page 87.
- Remove the cables that connect the PTX10002-60C to all external devices. See Disconnecting a Fiber-Optic Cable from a Device.
- Remove all field-replaceable units (FRUs) from the router. See:
- Removing a Fan Module from the PTX10002-60C on page 91
- Removing a Power Supply from the PTX10002-60C on page 94
- Remove the PTX10002-60C from the rack. See "Uninstalling the PTX10002-60C" on page 105.
- Place the PTX10002-60C in an antistatic bag.
- Place the PTX10002-60C in the shipping carton.
- Place the packing foam on top of and around the PTX10002-60C.
- If you are returning accessories or FRUs with the PTX10002-60C, pack them as instructed in "Packing a PTX10002-60C Chassis or Component for Shipping" on page 119.
- Close the top of the cardboard shipping box and seal it with packing tape.
- Write the return materials authorization (RMA) number on the exterior of the box to ensure proper tracking. See "Contacting Customer Support to Obtain Return Material Authorization" on page 118 for instructions on obtaining an RMA number.
Packing PTX10002-60C Components for Shipping

CAUTION: Do not stack PTX10002-60C components. Return individual components in separate boxes if they do not fit together on one level in the shipping box.
To pack and ship PTX10002-60C components:
- Place individual FRUs in antistatic bags.
-
Ensure that the components are adequately protected with packing materials and packed so that the pieces are prevented from moving around inside the carton.
-
Close the top of the cardboard shipping box and seal it with packing tape.
- Write the RMA number on the exterior of the box to ensure proper tracking. See "Contacting Customer Support to Obtain Return Material Authorization" on page 118 for instructions on obtaining an RMA number.
CHAPTER 7
Safety and Compliance Information
- General Safety Guidelines and Warnings on page 124
- Definitions of Safety Warning Levels on page 125
• Qualified Personnel Warning on page 127 - Warning Statement for Norway and Sweden on page 128
• Fire Safety Requirements on page 128
• Installation Instructions Warning on page 129 - Chassis and Component Lifting Guidelines on page 130
- Restricted Access Warning on page 130
- Ramp Warning on page 132
- Rack-Mounting and Cabinet-Mounting Warnings on page 132
• Grounded Equipment Warning on page 136 - Laser and LED Safety Guidelines and Warnings on page 137
- Radiation from Open Port Apertures Warning on page 139
- Maintenance and Operational Safety Guidelines and Warnings on page 140
- General Electrical Safety Guidelines and Warnings on page 145
• Action to Take After an Electrical Accident on page 147
• Prevention of Electrostatic Discharge Damage on page 147
• AC Power Electrical Safety Guidelines on page 148
• AC Power Disconnection Warning on page 149
• DC Power Electrical Safety Guidelines on page 150
• DC Power Copper Conductors Warning on page 151
• DC Power Disconnection Warning on page 152
• DC Power Grounding Requirements and Warning on page 153
• DC Power Wiring Sequence Warning on page 154
• DC Power Wiring Terminations Warning on page 156 - Multiple Power Supplies Disconnection Warning on page 157
• TN Power Warning on page 158
• PTX10002-60C Agency Approvals and Compliance Statements on page 159
General Safety Guidelines and Warnings
The following guidelines help ensure your safety and protect the device from damage. The list of guidelines might not address all potentially hazardous situations in your working environment, so be alert and exercise good judgment at all times.
- Perform only the procedures explicitly described in the hardware documentation for this device. Make sure that only authorized service personnel perform other system services.
- Keep the area around the device clear and free from dust before, during, and after installation.
- Keep tools away from areas where people could trip over them while walking.
- Do not wear loose clothing or jewelry, such as rings, bracelets, or chains, which could become caught in the device.
- Wear safety glasses if you are working under any conditions that could be hazardous to your eyes.
- Do not perform any actions that create a potential hazard to people or make the equipment unsafe.
- Never attempt to lift an object that is too heavy for one person to handle.
- Never install or manipulate wiring during electrical storms.
- Never install electrical jacks in wet locations unless the jacks are specifically designed for wet environments.
- Operate the device only when it is properly grounded.
- Ensure that the separate protective earthing terminal provided on this device is permanently connected to earth.
- Replace fuses only with fuses of the same type and rating.
- Do not open or remove chassis covers or sheet-metal parts unless instructions are provided in the hardware documentation for this device. Such an action could cause severe electrical shock.
- Do not push or force any objects through any opening in the chassis frame. Such an action could result in electrical shock or fire.
- Avoid spilling liquid onto the chassis or onto any device component. Such an action could cause electrical shock or damage the device.
- Avoid touching uninsulated electrical wires or terminals that have not been disconnected from their power source. Such an action could cause electrical shock.
- Some parts of the chassis might become hot. The following label provides the warning of

- Always ensure that all modules, power supplies, and cover panels are fully inserted and that the installation screws are fully tightened.
Related Documentation
AC Power Electrical Safety Guidelines on page 148.
•General Electrical Safety Guidelines and Warnings on page 145
• Maintenance and Operational Safety Guidelines and Warnings on page 140
• Installation Instructions Warning on page 129
•Grounded Equipment Warning on page 136
Definitions of Safety Warning Levels
The documentation uses the following levels of safety warnings (there are two Warning formats):

NOTE: You might find this information helpful in a particular situation, or you might overlook this important information if it was not highlighted in a Note.

CAUTION: You need to observe the specified guidelines to prevent minor injury or discomfort to you or severe damage to the device.

WARNING: This symbol alerts you to the risk of personal injury from a laser.

WARNING: Thissymbolmeansdanger. You are in a situationthat couldcause bodily injury. Before you work on any equipment, be aware of the hazards involved with electrical circuitry and be familiar with standard practices for preventing accidents.
Related Documentation
General Safety Guidelines and Warnings on page 124.
•Installation Instructions Warning on page 129
• Maintenance and Operational Safety Guidelines and Warnings on page 140
•Grounded Equipment Warning on page 136
• Laser and LED Safety Guidelines and Warnings on page 137
•Laser and LED Safety Guidelines and Warnings for the ACX5000 Router
•Laser and LED Safety Guidelines and Warnings for the QFX Series
•Laser and LED Safety Guidelines and Warnings for the PTX10008 and PTX10016
•Warning Statement for Norway and Sweden on page 128
Qualified Personnel Warning

WARNING: Only trained and qualified personnel should install or replace the device.
Related Documentation
General Safety Guidelines and Warnings on page 124.
•General Electrical Safety Guidelines and Warnings on page 145
•AC Power Electrical Safety Guidelines on page 148
- PTX5000 AC Power Electrical Safety Guidelines
- PTX5000 AC Power Electrical Safety Warnings
•DC Power Electrical Safety Guidelines on page 150
-PTX1000 DC Power Electrical Safety Guidelines
- PTX3000 DC Power Electrical Safety Guidelines
•PTX5000 DC Power Electrical Safety Guidelines
Warning Statement for Norway and Sweden

WARNING: The equipment must be connected to an earthed mains socket-outlet.
Related Documentation
General Safety Guidelines and Warnings on page 124.
Fire Safety Requirements
In the event of a fire emergency, the safety of people is the primary concern. You should establish procedures for protecting people in the event of a fire emergency, provide safety training, and properly provision fire-control equipment and fire extinguishers.
In addition, you should establish procedures to protect your equipment in the event of a fire emergency. Juniper Networks products should be installed in an environment suitable for electronic equipment. We recommend that fire suppression equipment be available in the event of a fire in the vicinity of the equipment and that all local fire, safety, and electricalcodes and ordinances be observed when you install and operate your equipment.
Fire Suppression
In the event of an electrical hazard or an electrical fire, you should first turn power off to the equipment at the source. Then use a Type C fire extinguisher, which uses noncorrosive fire retardants, to extinguish the fire.
Fire Suppression Equipment
Type C fire extinguishers, which use noncorrosive fire retardants such as carbon dioxide and Halotron™, are most effective for suppressing electrical fires. Type C fire extinguishers displace oxygen from the point of combustion to eliminate the fire. For extinguishing fire on or around equipment that draws air from the environment for cooling, you should use this type of inert oxygen displacement extinguisher instead of an extinguisher that leaves residues on equipment.
Do not use multipurpose Type ABC chemical fire extinguishers (dry chemical fire extinguishers). The primary ingredient in these fire extinguishers is monoammonium phosphate, which is very sticky and difficult to clean. In addition, in the presence of minute amounts of moisture, monoammonium phosphate can become highly corrosive and corrodes most metals.
Any equipment in a room in which a chemical fire extinguisher has been discharged is subject to premature failure and unreliable operation. The equipment is considered to be irreparably damaged.

NOTE: To keep warranties effective, do not use a dry chemicalfire extinguisher to control a fire at or near a Juniper Networks device. If a dry chemical fire extinguisher is used, the unit is no longer eligible for coverage under a service agreement.
We recommend that you dispose of any irreparably damaged equipment in an environmentally responsible manner.
Related Documentation
General Safety Guidelines and Warnings on page 124.
•General Electrical Safety Guidelines and Warnings on page 145
•Action to Take After an Electrical Accident on page 147
Installation Instructions Warning

WARNING: Read the installation instructions before you connect the device to a power source.
Related Documentation
General Safety Guidelines and Warnings on page 124.
• Laser and LED Safety Guidelines and Warnings on page 137
• Laser and LED Safety Guidelines and Warnings for the ACX5000 Router
•Grounded Equipment Warning on page 136
Chassis and Component Lifting Guidelines
- Before moving the device to a site, ensure that the site meets the power, environmental, and clearance requirements.
- Before lifting or moving the device, disconnect all external cables and wires.
- As when lifting any heavy object, ensure that most of the weight is borne by your legs rather than your back. Keep your knees bent and your back relatively straight. Do not twist your body as you lift. Balance the load evenly and be sure that your footing is firm
-
Use the following lifting guidelines to lift devices and components:
-
Up to 39.7 lb (18 kg): One person.
• 39.7 lb (18 kg) to 70.5 lb (32 kg): Two or more people. - 70.5 lb (32 kg) to 121.2 lb (55 kg): Three or more people.
- Above 121.2 lbs (55 kg): Material handling systems (such as levers, slings, lifts and so on) must be used. When this is not practical, specially trained persons or systems must be used (riggers or movers).
Related Documentation
General Safety Guidelines and Warnings on page 124.
• Installation Instructions Warning on page 129
Restricted Access Warning

WARNING: This unit is intended for installation in restricted access areas. A restricted access area is an area to which access can be gained only by service personnel through the use of a special tool, lock and key, or other means of security, and which is controlled by the authority responsible for the location.
Related Documentation
General Safety Guidelines and Warnings on page 124.
•General Electrical Safety Guidelines and Warnings on page 145
• Installation Instructions Warning on page 129
•Grounded Equipment Warning on page 136
Ramp Warning

WARNING: When installing the device, do not use a ramp inclined at more than 10 degrees.
Related Documentation
General Safety Guidelines and Warnings on page 124.
• Installation Instructions Warning on page 129
•Grounded Equipment Warning on page 136
Rack-Mounting and Cabinet-Mounting Warnings
Ensure that the rack or cabinet in which the device is installed is evenly and securely supported. Uneven mechanical loading could lead to a hazardous condition.

WARNING: To prevent bodily injury when mounting or servicing the device in a rack, take the following precautions to ensure that the system remains stable. The following directives help maintain your safety:
- The device must be installed in a rack that is secured to the building structure.
- The device should be mounted at the bottom of the rack if it is the only unit in the rack.
- When mounting the device on a partially filled rack, load the rack from the bottom to the top with the heaviest component at the bottom of the rack.
- If the rack is provided with stabilizing equipment, install the stabilizers before mounting or servicing the device in the rack.
Related Documentation General Safety Guidelines and Warnings on page 124. Installation Instructions Warning on page 130
•Grounded Equipment Warning on page 136
Grounded Equipment Warning

WARNING: The device is intended to be grounded. During normal use, ensure that you have connected earth ground to the chassis.
Related Documentation
General Safety Guidelines and Warnings on page 124.
• Installation Instructions Warning on page 129
•AC Power Electrical Safety Guidelines on page 148
•DC Power Electrical Safety Guidelines on page 150
Laser and LED Safety Guidelines and Warnings
Juniper Networks devices are equipped with laser transmitters, which are considered a Class 1 Laser Product by the U.S. Food and Drug Administration and are evaluated as a Class 1 Laser Product per EN 60825-1 requirements.
Observe the following guidelines and warnings:
• General Laser Safety Guidelines on page 137
• Class 1 Laser Product Warning on page 137
• Class 1 LED Product Warning on page 138
• Laser Beam Warning on page 138
General Laser Safety Guidelines
When working around ports that support optical transceivers, observe the following safety guidelines to prevent eye injury:
- Do not look into unterminated ports or at fibers that connect to unknown sources.
- Do not examine unterminated optical ports with optical instruments.
- Avoid direct exposure to the beam.

WARNING: Unterminated optical connectors can emit invisible laser radiation. The lens in the human eye focuses all the laser power on the retina, so focusing the eye directly on a laser source—even a low-power laser—could permanently damage the eye.
Class 1 Laser Product Warning

WARNING: Class 1 laser product.
Waarschuwing Klasse-1 laser produkt.
Class 1 LED Product Warning

WARNING: Class 1 LED product.
WARNING: Do not stare into the laser beam or view it directly with optical instruments.
Related Documentation General Safety Guidelines and Warnings on page 124 •Radiation from Open Port Apertures Warning on page 139 •Installation Instructions Warning on page 129 •Grounded Equipment Warning on page 136
Radiation from Open Port Apertures Warning

WARNING: Because invisible radiation might be emitted from the aperture of the port when no fiber cable is connected, avoid exposure to radiation and do not stare into open apertures.
Related Documentation
General Safety Guidelines and Warnings on page 124.
• Laser and LED Safety Guidelines and Warnings on page 137
•Installation Instructions Warning on page 129
•Grounded Equipment Warning on page 136
Maintenance and Operational Safety Guidelines and Warnings
While performing the maintenance activities for devices, observe the following guidelines and warnings:
• Battery Handling Warning on page 140
- Jewelry Removal Warning on page 141
• Lightning Activity Warning on page 143
- Operating Temperature Warning on page 143
• Product Disposal Warning on page 144
Battery Handling Warning

WARNING: Replacing a battery incorrectly might result in an explosion.
Replace a battery only with the same or equivalent type recommended by the manufacturer. Dispose of used batteries according to the manufacturer's instructions.
Jewelry Removal Warning

WARNING: Before working on equipment that is connected to power lines, remove jewelry, including rings, necklaces, and watches. Metal objects heat up when connected to power and ground and can cause serious burns or can be welded to the terminals.
WARNING: Do not workonthesystem or connect or disconnectcables during periods of lightning activity.
Operating Temperature Warning

WARNING: To prevent the device from overheating, do not operate it in an area that exceeds the maximum recommended ambient temperature. To prevent airflow restriction, allow at least 6 in. (15.2 cm) of clearance around the ventilation openings.
Product Disposal Warning

WARNING: Disposal of this device must be handled according to all national laws and regulations.
Related Documentation
General Safety Guidelines and Warnings on page 124.
•General Electrical Safety Guidelines and Warnings on page 145
•AC Power Electrical Safety Guidelines on page 148
•DC Power Electrical Safety Guidelines on page 150
• Laser and LED Safety Guidelines and Warnings on page 137
• Installation Instructions Warning on page 129
•Grounded Equipment Warning on page 136
General Electrical Safety Guidelines and Warnings

WARNING: Certain ports on the device are designed for use as intrabuilding (within-the-building) interfaces only (Type 2 or Type 4 ports as described in GR-1089-CORE) and require isolation from the exposed outside plant (OSP) cabling. To comply with NEBS requirements and protect against lightning surges and commercial power disturbances, the intrabuilding ports must not be metallically connected to interfaces that connect to the OSP or its wiring. The intrabuilding ports on the device are suitable for connection to intrabuilding or unexposed wiring or cabling only. The addition of primary protectors is not sufficient protection for connecting these interfaces metallically to OSP wiring.

CAUTION: Before removing or installing components of a device, connect an electrostatic discharge (ESD) grounding strap to an ESD point and wrap and fasten the other end of the strap around your bare wrist. Failure to use an ESD grounding strap could result in damage to the device.
- Install the device in compliance with the following local, national, and international electrical codes:
- United States—National Fire Protection Association (NFPA 70), United States National Electrical Code.
- Other countries—International Electromechanical Commission (IEC) 60364, Part 1 through Part 7.
- Evaluated to the TN power system.
• Canada—Canadian Electrical Code, Part 1, CSA C22.1. - Locate the emergency power-off switch for the room in which you are working so that if an electrical accident occurs, you can quickly turn off the power.
- Make sure that grounding surfaces are cleaned and brought to a bright finish before grounding connections are made.
- Do not work alone if potentially hazardous conditions exist anywhere in your workspace.
- Never assume that power is disconnected from a circuit. Always check the circuit before starting to work.
- Carefully look for possible hazards in your work area, such as moist floors, ungrounded power extension cords, and missing safety grounds.
- Operate the device within marked electrical ratings and product usage instructions.
- To ensure that the device and peripheral equipment function safely and correctly, use the cables and connectors specified for the attached peripheral equipment, and make certain they are in good condition.
You can remove and replace many device components without powering off or disconnecting power to the device, as detailed elsewhere in the hardware documentation for this device. Never install equipment that appears to be damaged.
Related Documentation
General Safety Guidelines and Warnings on page 124.
•AC Power Electrical Safety Guidelines on page 148
•DC Power Electrical Safety Guidelines on page 150
Action to Take After an Electrical Accident
If an electrical accident results in an injury, take the following actions in this order:
- Use caution. Be aware of potentially hazardous conditions that could cause further injury.
- Disconnect power from the device.
- If possible, send another person to get medical aid. Otherwise, assess the condition of the victim, then call for help.
Related Documentation
General Safety Guidelines and Warnings on page 124.
•General Electrical Safety Guidelines and Warnings on page 145
•AC Power Electrical Safety Guidelines on page 148
•DC Power Electrical Safety Guidelines on page 150
Prevention of Electrostatic Discharge Damage
Device components that are shipped in antistatic bags are sensitive to damage from static electricity. Some components can be impaired by voltages as low as 30 V. You can easily generate potentially damaging static voltages whenever you handle plastic or foam packing material or if you move components across plastic or carpets. Observe the following guidelines to minimize the potential for electrostatic discharge (ESD) damage, which can cause intermittent or complete component failures:
- Always use an ESD wrist strap when you are handling components that are subject to ESD damage, and make sure that it is in direct contact with your skin.
If a grounding strap is not available, hold the component in its antistatic bag (see Figure 46 on page 148) in one hand and touch the exposed, bare metal of the device with the other hand immediately before inserting the component into the device.

WARNING: For safety, periodically check the resistance value of the ESD grounding strap. The measurement must be in the range 1 through 10 Mohms.
- When handling any component that is subject to ESD damage and that is removed from the device, make sure the equipment end of your ESD wrist strap is attached to the ESD point on the chassis.
If no grounding strap is available, touch the exposed,bare metal of the device toground yourself before handling the component.
- Avoid contact between the component that is subject to ESD damage and your clothing. ESD voltages emitted from clothing can damage components. - When removing or installing a component that is subject to ESD damage, always place it component-side up on an antistatic surface, in an antistatic card rack, or in an antistatic bag (see Figure 46 on page 148). If you are returning a component, place it in an antistatic bag before packing it.
Figure 46: Placing a Component into an Antistatic Bag


CAUTION: ANSI/TIA/EIA-568 cables such as Category 5e and Category 6 can get electrostatically charged. To dissipate this charge, always ground the cables to a suitable and safe earth ground before connecting them to the system.
Related Documentation
General Safety Guidelines and Warnings on page 124.
AC Power Electrical Safety Guidelines

CAUTION: For devices with AC power supplies, an external surge protective device (SPD) must be used at the AC power source.
The following electrical safety guidelines apply to AC-powered devices:
- Note the following warnings printed on the device:
"CAUTION: THIS UNIT HAS MORE THAN ONE POWER SUPPLY CORD. DISCONNECT ALL POWER SUPPLY CORDS BEFORE SERVICING TO AVOID ELECTRIC SHOCK."
"ATTENTION: CET APPAREIL COMPORTE PLUS D'UN CORDON D'ALIMENTATION. AFIN DE PRÉVENIR LES CHOCS ÉLECTRIQUES, DÉBRANCHER TOUT CORDON D'ALIMENTATION AVANT DE FAIRE LE DÉPANNAGE."
- AC-powered devices are shipped with a three-wire electrical cord with a grounding-type plug that fits only a grounding-type power outlet. Do not circumvent this safety feature. Equipment grounding must comply with local and national electrical codes.
- You must provide an external certified circuit breaker (2-pole circuit breaker or 4-pole circuit breaker based on your device) rated minimum 20 A in the building installation.
- The power cord serves as the main disconnecting device for the AC-powered device. The socket outlet must be near the AC-powered device and be easily accessible.
- For devices that have more than one power supply connection, you must ensure that all power connections are fully disconnected so that power to the device is completely removed to prevent electric shock. To disconnect power, unplug all power cords (one for each power supply).
Power Cable Warning (Japanese)
WARNING: The attached power cable is only for this product. Do not use the cable for another product.
注意
Related Documentation
General Safety Guidelines and Warnings on page 124.
•General Electrical Safety Guidelines and Warnings on page 145
•Multiple Power Supplies Disconnection Warning on page 157
AC Power Disconnection Warning

WARNING: Before working on the device or near power supplies, unplug all the power cords from an AC-powered device.
Related Documentation
General Safety Guidelines and Warnings on page 124.
•General Electrical Safety Guidelines and Warnings on page 145
•AC Power Electrical Safety Guidelines on page 148
DC Power Electrical Safety Guidelines
- A DC-powered device is equipped with a DC terminal block that is rated for the power requirements of a maximally configured device.
Incorporate an easily accessible disconnect device into the facility wiring. Be sure to connect the ground wire or conduit to a solid office earth ground. A closed loop ring is recommended for terminating the ground conductor at the ground stud.
- Run two wires from the circuit breaker box to a source of 48 VDC.
- A DC-powered device that is equipped with a DC terminal block is intended only for installation in a restricted-access location. In the United States, a restricted-access
area is one in accordance with Articles 110-16, 110-17, and 110-18 of the National Electrical Code ANSI/NFPA 70.

NOTE: Primary overcurrent protection is provided by the building circuit breaker. This breaker must protect against excess currents, short circuits, and earth grounding faults in accordance with NEC ANSI/NFPA 70.
- Ensure that the polarity of the DC input wiring is correct. Under certain conditions, connections with reversed polarity might trip the primary circuit breaker or damage the equipment.
- For personal safety, connect the green and yellow wire to safety (earth) ground at both the device and the supply side of the DC wiring.
- The marked input voltage of -48 VDC for a DC-powered device is the nominal voltage associated with the battery circuit, and any higher voltages are only to be associated with float voltages for the charging function.
- Because the device is a positive ground system, you must connect the positive lead to the terminal labeled RTN, the negative lead to the terminal labeled -48 VDC, and the earth ground to the device grounding points.
Related Documentation
General Safety Guidelines and Warnings on page 124.
•General Electrical Safety Guidelines and Warnings on page 145
•DC Power Disconnection Warning on page 152
•DC Power Grounding Requirements and Warning on page 153
•DC Power Wiring Sequence Warning on page 154
•DC Power Wiring Terminations Warning on page 156
DC Power Copper Conductors Warning

WARNING: Use copper conductors only.
DC Power Disconnection Warning

WARNING: Before performing any of the DC power procedures, ensure that power is removed from the DC circuit. To ensure that all power is off, locate the circuit breaker on the panel board that services the DC circuit, switch the circuit breaker to the OFF position, and tape the device handle of the circuit breaker in the OFF position.
Related Documentation
General Safety Guidelines and Warnings on page 124.
•General Electrical Safety Guidelines and Warnings on page 145
•DC Power Electrical Safety Guidelines on page 150
•DC Power Grounding Requirements and Warning on page 153
•DC Power Wiring Sequence Warning on page 154
•DC Power Wiring Terminations Warning on page 156
DC Power Grounding Requirements and Warning
An insulated grounding conductor that is identical in size to the grounded and ungrounded branch circuit supply conductors but is identifiable by green and yellow stripes is installed as part of the branch circuit that supplies the device. The grounding conductor is a separately derived system at the supply transformer or motor generator set.

WARNING: When you install the device, the ground connection must always be made first and disconnected last.
Related General Safety Guidelines and Warnings on page 124.
Documentation
•General Electrical Safety Guidelines and Warnings on page 145
•DC Power Electrical Safety Guidelines on page 150
•DC Power Copper Conductors Warning on page 151
•DC Power Disconnection Warning on page 152
•DC Power Wiring Sequence Warning on page 154
•DC Power Wiring Terminations Warning on page 156
DC Power Wiring Sequence Warning

WARNING: Wire the DC power supply using the appropriate lugs. When connecting power, the proper wiring sequence is ground to ground, +RTN to +RTN, then -48 V to -48 V. When disconnecting power, the proper wiring sequence is -48 V to -48 V, +RTN to +RTN, then ground to ground. Note that the ground wire must always be connected first and disconnected last.
Related Documentation
General Safety Guidelines and Warnings on page 124.
•General Electrical Safety Guidelines and Warnings on page 145
•DC Power Electrical Safety Guidelines on page 150
•DC Power Disconnection Warning on page 152
•DC Power Grounding Requirements and Warning on page 153
•DC Power Wiring Terminations Warning on page 156
DC Power Wiring Terminations Warning

WARNING: When stranded wiring is required, use approved wiring terminations, such as closed-loop or spade-type with upturned lugs. These terminations must be the appropriate size for the wires and must clamp both the insulation and conductor.
Related Documentation
General Safety Guidelines and Warnings on page 124.
•General Electrical Safety Guidelines and Warnings on page 145
•DC Power Electrical Safety Guidelines on page 150
•DC Power Disconnection Warning on page 152
•DC Power Grounding Requirements and Warning on page 153
•DC Power Wiring Sequence Warning on page 154
Multiple Power Supplies Disconnection Warning

WARNING: The network device has more than one power supply connection. All connections must be removed completely to remove power from the unit completely.
Related Documentation
General Safety Guidelines and Warnings on page 124.
•General Electrical Safety Guidelines and Warnings on page 145
•AC Power Electrical Safety Guidelines on page 148
•DC Power Electrical Safety Guidelines on page 150
TN Power Warning

WARNING: The device is designed to work with a TN power system.
Related Documentation
General Safety Guidelines and Warnings on page 124.
•General Electrical Safety Guidelines and Warnings on page 145
•Grounded Equipment Warning on page 136
•Multiple Power Supplies Disconnection Warning on page 157
PTX10002-60C Agency Approvals and Compliance Statements
• PTX10002-60C Agency Approvals on page 159
• Compliance Statements for EMC Requirements on page 160
• Compliance Statements for Environmental Requirements on page 161
• Compliance Statements for NEBS on page 161
- PTX10002-60C Compliance Statements for Acoustic Noise on page 161
PTX10002-60C Agency Approvals
The PTX10002-60C complies with the following standards:
- Safety
- CAN/CSA-22.2 No. 60950-1-07/UL 60950-1, 2nd Ed., Safety of Information Technology Equipment
- EN 60825-1 Safety of Laser Products - Part 1: Equipment Classification, Requirements and User's Guide
• EMC
• AS/NZS 3548 Class A (Australia/New Zealand)
• EN55022 Class A (Europe)
• FCC Part 15 Class A (USA)
• VCCI Class A (Japan) - Immunity
• EN-61000-3-3 Voltage Fluctuations and Flicker
• EN-61000-4-2 ESD
• EN-61000-4-3 Radiated Immunity
- EN-61000-4-4 EFT
• EN-61000-4-5 Surge
• EN-61000-4-6 Low Frequency Common Immunity
• ETSI EN-300386-2 Telecommunication Network Equipment. Electromagnetic Compatibility Requirements
The PTX10002-60C is designed to comply with the following standard:
- NEBS
• GR-1089-Core: EMC and Electrical Safety for Network Telecommunications Equipment
• SR-3580 NEBS Criteria Levels (Level 3 Compliance)
• GR-63-Core: NEBS, Physical Protection
Compliance Statements for EMC Requirements
• Canada on page 160
• European Community on page 160
• Israel on page 160
- Japan on page 161
• United States on page 161
Canada
CAN ICES-3 (A)/NMB-3(A)
European Community
This is a Class A product. In a domestic environment, this product might cause radio interference in which case the user might be required to take adequate measures.
Israel

Translation from Hebrew—Warning: This product is Class A. In residential environments, the product might cause radio interference, and in such a situation, the user might be required to take adequate measures.
Japan
The preceding translates as follows:
This is a Class A product based on the standard of the Voluntary Control Council for Interference by Information Technology Equipment (VCCI). If this product is used near a radio or television receiver in a domestic environment, it might cause radio interference. Install and use the equipment according to the instruction manual. VCCI-A.
United States
The hardware equipment has been tested and found to comply with the limits for a Class A digital device, pursuant to Part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference when the equipment is operated in a commercial environment. This equipment generates, uses, and can radiate radio frequency energy and, if not installed and used in accordance with the instruction manual, might cause harmful interference to radio communications. Operation of this equipment in a residential area is likely to cause harmful interference in which case the user will be required to correct the interference at his own expense.
Compliance Statements for Environmental Requirements
Batteries in this product are not based on mercury, lead, or cadmium substances. The batteries used in this product are in compliance with EU Directives 91/157/EEC, 93/86/EEC, and 98/101/EEC. The product documentation includes instructional information about the proper method of reclamation and recycling.
Compliance Statements for NEBS
- The equipment is suitable for installation as part of the Common Bonding Network (CBN).
- The equipment is suitable for installation in locations where the National Electrical Code (NEC) applies.
- The battery return connection is to be treated as an isolated DC return (that is, DC-I), as defined in GR-1089-CORE.
- You must provision a readily accessible device outside of the equipment to disconnect power. The device must also be rated based on local electrical code practice.
PTX10002-60C Compliance Statements for Acoustic Noise
The emitted sound pressure is below 70 dB(A) per EN ISO 7779.