USB7002 - Kit de développement électronique Microchip - Free user manual and instructions
Find the device manual for free USB7002 Microchip in PDF.
| Type of Product | USB Smart Hub Controller Evaluation Board |
| Model | USB7002 |
| Manufacturer | Microchip Technology Inc. |
| Package | 100-pin QFN, RoHS compliant |
| USB Compliance | USB 3.1 Gen1 (5 Gbps), USB 2.0 High/Full/Low Speed |
| Upstream Port | 1x USB 3.1 Gen1 Type-C |
| Downstream Ports | 2x USB 3.1 Gen1 Type-C, 2x USB 2.0 Type-A |
| Power Supply | Self-powered via 12V DC input (barrel jack or terminal block) |
| Battery Charging | BC1.2 support on all downstream ports (up to 2.1A per port, 10A total) |
| Configuration Options | Internal defaults, external SPI Flash, SMBus, or hardware straps |
| Onboard Regulators | 5.2V (15A), 3.3V (0.5A), 1.2V (2A) |
| LED Indicators | Power (5V, 3.3V, 1.2V), port VBUS, SPI activity, reset, attach |
| Special Technologies | PortSwap, PHYBoost, VariSense, FlexConnect role reversal |
| Bridge Functions | USB-to-UART, USB-to-I2S Audio Codec, USB-to-SMBus, USB-to-I2C |
| Dimensions | Approximately 100mm x 80mm (evaluation board) |
| Weight | Approximately 150g (board only) |
| Operating Temperature | 0°C to 70°C (commercial) |
| Compatible Drivers | Windows 10/8/7, Mac OS X 10.4+, Linux (inbox hub drivers) |
| Software Tool | MPLAB Connect (MPLABC) for configuration (v2.1.0+) |
| Kit Contents | EVB-USB7002 board, Type-A to Type-C cable, documentation |
Frequently Asked Questions - USB7002 Microchip
User questions about USB7002 Microchip
0 question about this device. Answer the ones you know or ask your own.
Ask a new question about this device
Download the instructions for your Kit de développement électronique in PDF format for free! Find your manual USB7002 - Microchip and take your electronic device back in hand. On this page are published all the documents necessary for the use of your device. USB7002 by Microchip.
USER MANUAL USB7002 Microchip
Note the following details of the code protection feature on Microchip products:
• Microchip products meet the specifications contained in their particular Microchip Data Sheet.
- Microchip believes that its family of products is secure when used in the intended manner, within operating specifications, and under normal conditions.
- Microchip values and aggressively protects its intellectual property rights. Attempts to breach the code protection features of Microchip product is strictly prohibited and may violate the Digital Millennium Copyright Act.
- Neither Microchip nor any other semiconductor manufacturer can guarantee the security of its code. Code protection does not mean that we are guaranteeing the product is "unbreakable" Code protection is constantly evolving. Microchip is committed to continuously improving the code protection features of our products.
This publication and the information herein may be used only with Microchip products, including to design, test, and integrate Microchip products with your application. Use of this information in any other manner violates these terms. Information regarding device applications is provided only for your convenience and may be superseded by updates. It is your responsibility to ensure that your application meets with your specifications. Contact your local Microchip sales office for additional support or, obtain additional support at https://www.micro-chip.com/en-us/support/design-help/client-support-services.
THIS INFORMATION IS PROVIDED BY MICROCHIP "AS IS". MICROCHIP MAKES NO REPRESENTATIONS OR WAR- RANTIES OF ANY KIND WHETHER EXPRESS OR IMPLIED, WRITTEN OR ORAL, STATUTORY OR OTHERWISE, RELATED TO THE INFORMATION INCLUDING BUT NOT LIMITED TO ANY IMPLIED WARRANTIES OF NON- INFRINGEMENT, MERCHANTABILITY, AND FITNESS FOR A PARTICULAR PURPOSE, OR WARRANTIES RELATED TO ITS CONDITION, QUALITY, OR PERFORMANCE.
IN NO EVENT WILL MICROCHIP BE LIABLE FOR ANY INDI-RECT, SPECIAL, PUNITIVE, INCIDENTAL, OR CONSEQUENTIAL LOSS, DAMAGE, COST, OR EXPENSE OF ANY KIND WHATSOEVER RELATED TO THE INFORMATION OR ITS USE, HOWEVER CAUSED, EVEN IF MICROCHIP HAS BEEN ADVISED OF THE POSSIBILITY OR THE DAMAGES ARE FORESEEABLE. TO THE FULLEST EXTENT ALLOWED BY LAW, MICROCHIP'S TOTAL LIABILITY ON ALL CLAIMS IN ANY WAY RELATED TO THE INFORMATION OR ITS USE WILL NOT EXCEED THE AMOUNT OF FEES, IF ANY, THAT YOU HAVE PAID DIRECTLY TO MICROCHIP FOR THE INFORMATION.
Use of Microchip devices in life support and/or safety applications is entirely at the buyer's risk, and the buyer agrees to defend, indemnify and hold harmless Microchip from any and all damages, claims, suits, or expenses resulting from such use. No licenses are conveyed, implicitly or otherwise, under any Microchip intellectual property rights unless otherwise stated.
Trademarks
The Microchip name and logo, the Microchip logo, Adaptec, AVR, AVR logo, AVR Freaks, BesTime, BitCloud, CryptoMemory, CryptoRF, dsPIC, flexPWR, HELDO, IGLOO, JukeBlox, KeeLoq, Kleer, LANCheck, LinkMD, maXStylus, maXTouch, MediaLB, megaAVR, Microsemi, Microsemi logo, MOST, MOST logo, MPLAB, OptoLyzer, PIC, picoPower, PICSTART, PIC32 logo, PolarFire, Prochip Designer, QTouch, SAM-BA, SenGenuity, SpyNIC, SST, SST Logo, SuperFlash, Symmetricom, SyncServer, Tachyon, TimeSource, tinyAVR, UNI/O, Vectron, and XMEGA are registered trademarks of Microchip Technology Incorporated in the U.S.A. and other countries.
AgileSwitch, APT, ClockWorks, The Embedded Control Solutions Company, EtherSynch, Flashtec, Hyper Speed Control, HyperLight Load, Libero, motorBench, mTouch, Powermite 3, Precision Edge, ProASIC, ProASIC Plus, ProASIC Plus logo, Quiet-Wire, SmartFusion, SyncWorld, Temux, TimeCesium, TimeHub, TimePlictra, TimeProvider, TrueTime, and ZL are registered trademarks of Microchip Technology Incorporated in the U.S.A.
Adjacent Key Suppression, AKS, Analog-for-the-Digital Age, Any Capacitor, AnyIn, AnyOut, Augmented Switching, BlueSky, BodyCom, Clockstudio, CodeGuard, CryptoAuthentication, CryptoAutomotive, CryptoCompanion, CryptoController, dsPICDEM, dsPICDEM.net, Dynamic Average Matching, DAM, ECAN, Espresso T1S, EtherGREEN, GridTime, IdealBridge, In-Circuit Serial Programming, ICSP, INICnet, Intelligent Paralleling, IntelliMOS, Inter-Chip Connectivity, JitterBlocker, Knob-on-Display, KoD, maxCrypto, maxView, memBrain, Mindi, MiWi, MPASM, MPF, MPLAB Certified logo, MPLIB, MPLINK, MultiTRAK, NetDetach, Omniscient Code Generation, PICDEM, PICDEM.net, PICkit, PICtail, PowerSmart, PureSilicon, QMatrix, REAL ICE, Ripple Blocker, RTAX, RTG4, SAM-ICE, Serial Quad I/O, simpleMAP, SimpliPHY, SmartBuffer, SmartHLS, SMART-I.S., storClad, SQI, SuperSwitcher, SuperSwitcher II, Switchtec, SynchroPHY, Total Endurance, Trusted Time, TSHARC, USBCheck, VariSense, VectorBlox, VeriPHY, ViewSpan, WiperLock, XpressConnect, and ZENA are trademarks of Microchip Technology Incorporated in the U.S.A. and other countries.
SQTP is a service mark of Microchip Technology Incorporated in the U.S.A.
The Adaptec logo, Frequency on Demand, Silicon Storage Technology, and Symmcom are registered trademarks of Microchip Technology Inc. in other countries.
GestIC is a registered trademark of Microchip Technology Germany II GmbH & Co. KG, a subsidiary of Microchip Technology Inc., in other countries.
All other trademarks mentioned herein are property of their respective companies.
© 2018-2023, Microchip Technology Incorporated and its subsidiaries.
All Rights Reserved.
ISBN: 978-1-6683-2206-2
For information regarding Microchip's Quality Management Systems, please visit www.microchip.com/quality.
Table of Contents
Preface 5
Introduction....5
Document Layout 5
Conventions Used in this Guide 6
Warranty Registration....7
The Microchip Web Site 7
Development Systems Customer Change Notification Service 7
Customer Support 8
Document Revision History 8
Chapter 1. Overview
1.1 Introduction 9
1.2 Features 9
1.3 Block Diagram 10
1.4 References 12
1.5 Acronyms and Definitions ...... 12
Chapter 2. Getting Started
2.1 Introduction 13
2.2 Kit Contents 13
2.3 Quick Start 13
Chapter 3. Hardware Configuration
3.1 Hardware Configuration Options 15
3.1.1 Configuration 15
3.1.2 Power Source - Self Powered 17
3.1.3 Downstream Port Power Control 17
3.1.4 USB Type-C Ports 17
3.1.5 LED Indicators 17
3.1.6 Switches 18
3.1.7 Connector Descriptions 18
3.1.8 Test Points 19
Appendix A. Schematics
A.1 Introduction 21
Appendix B. Bill of Materials
B.1 Introduction 31
Appendix C. PCB Silk Screens
C.1 Introduction 37
Worldwide Sales and Service 40
NOTES:
Preface
NOTICE TO CUSTOMERS
All documentation becomes dated, and this manual is no exception. Microchip tools and documentation are constantly evolving to meet customer needs, so some actual dialogs and/or tool descriptions may differ from those in this document. Please refer to our web site (www.microchip.com) to obtain the latest documentation available.
Documents are identified with a "DS" number. This number is located on the bottom of each page, in front of the page number. The numbering convention for the DS number is "DSXXXXXA", where "XXXXX" is the document number and "A" is the revision level of the document.
For the most up-to-date information on development tools, see the MPLAB ® IDE online help. Select the Help menu, and then Topics to open a list of available online help files.
INTRODUCTION
This chapter contains general information that will be useful to know before using the EVB-USB7002 Evaluation Kit. Items discussed in this chapter include:
- Document Layout
- Conventions Used in this Guide
- Warranty Registration
• The Microchip Web Site - Development Systems Customer Change Notification Service
- Customer Support
• Document Revision History
DOCUMENT LAYOUT
This document describes how to use the EVB-USB7002 Evaluation Kit as a demonstration platform optimized for portable applications. The manual layout is as follows:
- Chapter 1. "Overview" – Shows a brief description of the EVB-USB7002 Evaluation Kit.
- Chapter 2. “Getting Started” – Provides information about setup and operation of the EVB-USB7002 Evaluation Kit.
- Chapter 3. "Hardware Configuration" – Includes information about the hardware configuration of the EVB-USB7002 Evaluation Kit.
- Appendix A. “Schematics” – This appendix shows the EVB-USB7002 Evaluation Kit schematics.
- Appendix B. "Bill of Materials" – This appendix includes the EVB-USB7002 Evaluation Kit Bill of Materials (BOM).
- Appendix C. "PCB Silk Screens" – This appendix includes the EVB-USB7002 Evaluation Kit silk screen.
CONVENTIONS USED IN THIS GUIDE
This manual uses the following documentation conventions:
DOCUMENTATION CONVENTIONS
| Description Represents Examples | ||
| Arial font: | ||
| Italic characters Referenced books | oks MPLAB | IDE User's Guide |
| Emphasized text ...is the only compiler... | ||
| Initial caps A window the Output | window | |
| A dialog the Settings dialog | ||
| A menu selection select Enable Programmer | ||
| Quotes A field name in a window or dialog | "Save project before build" | |
| Underlined, italic text with right angle bracket | A menu path File>Save | —— |
| Bold characters A dialog button | Click OK | |
| A tab | Click the Power tab | |
| N'Rnnnn | A number in verilog format, where N is the total number of digits, R is the radix and n is a digit. | 4'b0010, 2'hF1 |
| Text in angle brackets <> | A key on the keyboard | Press,, |
| Courier New font: | ||
| Plain Courier New | Sample source code | #define START |
| Filenames | autoexec.bat | |
| File paths | c:\mcc18\h | |
| Keywords | _asm, _endasm, static | |
| Command-line options | -0pa+, -0pa- | |
| Bit values | 0, 1 | |
| Constants | 0xFF, 'A' | |
| Italic Courier New | A variable argument | file.o, where file can be any valid filename |
| Square brackets [] | Optional arguments | mccl8 [options] file [options] |
| Curly brackets and pipe character: { | } | Choice of mutually exclusive arguments; an OR selection | errorlevel {0|1} |
| Ellipses... | Replaces repeated text | var_name [, var_name...] |
| Represents code supplied by user | void main (void) { ... } | |
WARRANTY REGISTRATION
Please complete the enclosed Warranty Registration Card and mail it promptly. Sending the Warranty Registration Card entitles users to receive new product updates. Interim software releases are available at the Microchip web site.
Microchip provides online support via our web site at www.microchip.com. This web site is used as a means to make files and information easily available to customers. Accessible by using your favorite Internet browser, the web site contains the following information:
- Product Support – Data sheets and errata, application notes and sample programs, design resources, user's guides and hardware support documents, latest software releases and archived software
- General Technical Support – Frequently Asked Questions (FAQs), technical support requests, online discussion groups, Microchip consultant program member listing
- Business of Microchip – Product selector and ordering guides, latest Microchip press releases, listing of seminars and events, listings of Microchip sales offices, distributors and factory representatives
DEVELOPMENT SYSTEMS CUSTOMER CHANGE NOTIFICATION SERVICE
Microchip's customer notification service helps keep customers current on Microchip products. Subscribers will receive e-mail notification whenever there are changes, updates, revisions or errata related to a specified product family or development tool of interest.
To register, access the Microchip web site at www.microchip.com, click on Customer Change Notification and follow the registration instructions.
The Development Systems product group categories are:
- Compilers – The latest information on Microchip C compilers, assemblers, linkers and other language tools. These include all MPLAB C compilers; all MPLAB assemblers (including MPASM assembler); all MPLAB linkers (including MPLINK object linker); and all MPLAB librarians (including MPLIB object librarian).
- Emulators – The latest information on Microchip in-circuit emulators. This includes the MPLAB REAL ICE and MPLAB ICE 2000 in-circuit emulators.
- In-Circuit Debuggers – The latest information on the Microchip in-circuit debuggers. This includes MPLAB ICD 3 in-circuit debuggers and PICkit 3 debug express.
- MPLAB IDE – The latest information on Microchip MPLAB IDE, the Windows Integrated Development Environment for development systems tools. This list is focused on the MPLAB IDE, MPLAB IDE Project Manager, MPLAB Editor and MPLAB SIM simulator, as well as general editing and debugging features.
- Programmers – The latest information on Microchip programmers. These include production programmers such as MPLAB REAL ICE in-circuit emulator, MPLAB ICD 3 in-circuit debugger and MPLAB PM3 device programmers. Also included are nonproduction development programmers such as PICSTART Plus and PIC-kit 2 and 3.
CUSTOMER SUPPORT
Users of Microchip products can receive assistance through several channels:
• Distributor or Representative
- Local Sales Office
• Field Application Engineer (FAE)
- Technical Support
Customers should contact their distributor, representative or field application engineer (FAE) for support. Local sales offices are also available to help customers. A listing of sales offices and locations is included in the back of this document.
Technical support is available through the web site at:
http://www.microchip.com/support
DOCUMENT REVISION HISTORY
| Revisions Section/Figure/Entry Correction | ||
| DS50002800C(03-21-23) | Section AppendixA. “Schematics” | Updated the diagrams. |
| DS50002800B(07-24-19) | Section 2.2 “Kit Contents”andSection 2.3 “Quick Start” | Updated the sections. The 12V power supply is not included in the kit. |
| DS50002800A(09-12-18) | Initial release | |
Chapter 1. Overview
1.1 INTRODUCTION
The EVB-USB7002 is a demonstration and evaluation platform that provides the necessary requirements and interface options for evaluating the USB7002, which is a 4-port High-Speed (HS) USB smart hub on a 4-layer RoHS-compliant Printed Circuit Board (PCB). This allows the user to gain an understanding of the product and accelerate the integration of the USB7002 into the user's design.
The EVB-USB7002 is compliant with the USB 2.0 HS, Full-Speed (FS), and Low-Speed (LS) USB signaling. The EVB-USB7002 is also compliant with USB 3.1 Gen1 on the upstream port and on downstream ports 1 and 2.
The evaluation platform supports four downstream ports: two Gen1 ports with Type-C connectors and two USB2.0 ports with Type-A connectors. The EVB-USB7002 platform also supports battery charging on all four downstream ports (maximum of 10A [see Note 1] at any one time). The EVB-USB7002 supports FlexConnect role reversal for any of the four downstream ports with the upstream port.
The EVB-USB7002 has four configurations for operation through internal default settings and supports custom configurations through SMBus or through the external 16-Mbit SPI Flash device.
The EVB-USB7002 demonstrates driver compatibility with Microsoft ® Windows ® 10, Windows 8.x, Windows 7, Windows XP, Mac OS ® X 10.4+, and Linux ® hub drivers.
For more information about EVB-USB7002, see Section 1.2 "Features".
Note 1: Requires a 12V, 85W supply.
1.2 FEATURES
- Microchip's PortSwap, PHYBoost TM , and VariSense TM technologies
- USB7002 in a 100-pin QFN RoHS compliant package
- USB 3.1 compliant (Gen1 operation)
- USB 2.0 compliant (HS, FS, and LS operation)
- 5V-tolerant USB pins
- Self-powered operation
- USB Gen1 Type-C upstream port
• Four Downstream USB ports: - Two Type-C Gen1 downstream ports
- Two Type-A USB 2.0-only downstream ports
- All downstream ports support individual port power and overcurrent sense.
- All downstream ports can be enabled for battery charging with the battery charging select shunts J1 and J20. (BC1.2 or SE1, 2.1A max per port)
- Onboard SPI Flash for external downloadable firmware
- Operates from a single voltage (+12.0V, regulated) external power supply
- Onboard 25 MHz crystal or oscillator input
-
Single onboard +5.2V, 15A regulator
-
Single onboard +3.3V, 0.5A regulator
- Single onboard +1.2V, 2A regulator
- Port Power LED indicators
• SPI Flash activity blue LED indicator - Reset red LED indicator
- Green LED indicators for 5V, 3.3V, and 1.2V regulator outputs
- Terminal block connector for use with an external 12 VDC bench supply
- Barrel connector for use with a Microchip 12V power supply
- Removable or non-removable downstream ports options can be configured with select shunt on J17.
• Bridge peripheral functions: - USB-to-UART (CDC)
- USB-to-I 2 S Audio Codec
- USB-to-SMBus
- USB-to-I 2 C
1.3 BLOCK DIAGRAM
Figure 1-1 shows the block diagram of EVB-USB7002.
FIGURE 1-1: EVB-USB7002 BLOCK DIAGRAM

flowchart
graph TD
A["Port0"] --> B["Type-C"]
B --> C["DC Jack 12V"]
C --> D["MCP19035 MCP1825-MIC23201"]
D --> E["Configuration Straps"]
E --> F["USB7002"]
F --> G["USB2114"]
G --> H["Type-A Type-C Type-CType-A"]
H --> I["Port4"]
H --> J["Port3"]
H --> K["Port2"]
H --> L["Port1"]
F --> M["USB2114"]
M --> N["Type-A Type-C Type-CType-A"]
N --> O["Port4"]
N --> P["Port3"]
N --> Q["Port2"]
N --> R["Port1"]
F --> S["MIPS Microcontroller/Hub Feature Controller"]
S --> T["GPIO/IPS/C/IPS/SPI/UART"]
S --> U["I/O Multiplexer"]
U --> V["mikroBUS, GPIO, LEDs, UART"]
U --> W["I²S Codec Header"]
U --> X["SST26VF016B SPI Flash"]
U --> Y["SMBus1 Header"]
U --> Z["SMBus2 Header"]
F --> AA["USB7002"]
AA --> AB["USB2114"]
AA --> AC["USB2114"]
AA --> AD["USB2114"]
AA --> AE["USB2114"]
AA --> AF["USB2114"]
AA --> AG["USB2114"]
AA --> AH["USB2114"]
AA --> AI["USB2114"]
AA --> AJ["USB2114"]
AA --> AK["USB2114"]
AA --> AL["USB2114"]
1.4 REFERENCES
Concepts and materials available in the following documents may be helpful when reading this document. Visit www.microchip.com for the latest documentation.
- USB7002 Data Sheet
1.5 ACRONYMS AND DEFINITIONS
TABLE 1-1: ACRONYMS AND DEFINITIONS
| Acronym Definition | |
| BC1.2 Latest USB-IF specified USB battery charging standard | |
| CDP | Charging Downstream Port, a BC1.2-compliant port allows simultaneous USB data and USB charging |
| DCP | Dedicated Charging Port, a BC1.2-compliant port which is only capable of USB charging (no data) |
| DFP Downstream Facing Port | |
| EVB Evaluation Board | |
| OTP One-Time-Programmable Memory | |
| SDP | Standard Downstream Port, a standard USB port with no high-current battery charging capabilities |
| SE1 | Type of Battery Charging (non-USB compliant) that sets the USB D+/D- to specific DC voltages to communicate charging capability |
| Type-C Reversible USB Connector | |
| USB-IF | USB Integrators Forum, a collection of corporate sponsored members responsible for developing USB specifications |
| Gen1 USB Specification 3.1 Gen1 | |
Chapter 2. Getting Started
2.1 INTRODUCTION
The Microchip EVB-USB7002 is designed for flexible configuration solutions. It can be configured via default internal register settings, via a downloadable external firmware to an onboard SPI Flash (OTP memory), via SMBus, or via the onboard configuration switches. When configured with the default internal register settings, the device operates as a USB 3.1 Gen1 hub with one upstream Gen1 port, two downstream Gen2 ports, and two downstream USB 2.0 ports, with Microchip's standard VID/PID/DID settings.
Microchip provides a comprehensive software programming tool, MPLAB ® Connect (MPLABC), for configuring USB7002 functions, registers, and OTP memory. USB7002 requires MPLABC version 2.1.0 or greater.
For additional information on the MPLABCC programming tool, refer to Software Libraries within the Microchip USB7002 product page at www.microchip.com/USB7002.
2.2 KIT CONTENTS
The EVB-USB7002 Evaluation Kit includes the basic equipment necessary for evaluation. The items included in the kit are:
• EVB-USB7002 Evaluation Board
• Type-A to Type-C USB cable
2.3 QUICK START
To quickly start using the board, perform the following steps:
- Connect a 12V power supply to the barrel connector (J1) or the terminal block (J2) on the EVB-USB7002.
- Using a Type-A to Type-C USB cable, connect the EVB-USB7002 to a USB host via the upstream "Port 0" USB Type-C socket (J3).
Devices may now be connected to any of the downstream ports to enumerate and use those devices with the USB host.
To perform additional configuration or evaluate specific features, launch the MPLABC software on your USB host or manipulate the included hardware configuration options detailed in the next sections.
NOTES:
Chapter 3. Hardware Configuration
3.1 HARDWARE CONFIGURATION OPTIONS
Figure 3-1 shows the top view of the EVB-USB7002.
FIGURE 3-1: EVB-USB7002 REV B (TOP VIEW)

3.1.1 Configuration
3.1.1.1 EXTERNAL SPI FLASH
Upon power-up, the USB7002 first looks for an external SPI ROM device and a valid signature in the Flash. If one is found, the external ROM is enabled and code execution is initiated from the external SPI ROM device.
To enable operation from the SPI device, install shunts to pins 1-2 and 4-5 of J12. When code is executing from an SPI ROM device, a blue LED "SPI-ACTIVE" (D1) illuminates.
Note 1: CFG_BC and CFG_Non-Rem options are deselected when SPI shunts are installed on J17. When operating in SPI mode, all configuration is handled by the code executing from the SPI ROM device.
2: If the SPI Flash is not properly programmed or has an invalid signature, the USB7002 reverts to internal defaults even if the SPI ROM is selected.
3.1.1.2 SMBUS2
If an SPI Flash device is not found, the firmware checks if SMBus2 is enabled.
To select SMBus2 configuration, leave J17 open to disconnect the SPI ROM. To select OPTION1 from the CFG_STRAP header, shunt pins 1-2 of J18. To connect the SMBus2 pull-up resistors, connect a shunt to J22 pins 1-2. The SMBus2 signals may be accessed at J19, where pin 1 is the clock and pin 3 is data (pin 2 is ground).
If configuration OPTION1 is selected and SMBus2 is enabled (that is, SMBus2 clock and data are pulled up), the USB7002 waits indefinitely for data from the SMBus2 interface and will not enumerate to the USB host until the special USB Attach command is sent.
See the Configuration Options for USB70xx application note for additional details.
3.1.1.3 INTERNAL DEFAULT CONFIGURATIONS WITH STRAPPING OPTIONS
When the USB7002 does not detect a valid SPI Flash image and does not look for SMBus2 configuration upon power-up, the USB7002 uses internal default register settings. It also sets the Vendor ID, Product ID, Language ID, and Device ID, and additional settings from the internal ROM code.
If configuration is not done through SPI or SMBus2, additional configuration is available through two functions: CFG_BC_EN and CFG_NON-REM. The controls are configured by selecting one of the six resistor values for each pin. The EVB-USB7002 demonstrates two of the six possible resistor values for each of CFG_BC_EN and CFG_NON-REM. These straps are sensed by the USB7002 device at power-on to determine the resultant configuration of the device.
To select the CFG_BC_EN and CFG_NON-REM modes, shunts must be connected to J12, J15, and J17 headers.
To use the battery charging strap options, connect a shunt to pins 2-3 of J12 and connect a shunt to J15 according to Table 3-1. For the NON_REM strap options, connect a shunt to pins 5-6 of J12 and connect a shunt to J17 according to Table 3-2.
TABLE 3-1: BATTERY CHARGING OPTIONS (CFG_BC_EN - J15)
| J15 Shunt Position (J12 is shunted pins 2-3.) |
| 2-3 All ports are BC 1.2-disabled. |
| 1-2 All downstream ports are BC1.2-enabled. |
TABLE 3-2: NON-REMOVABLE PORT OPTIONS (CFG_NON-REM - J17)
| J17 Shunt Position (J12 is shunted pins 5-6.) |
| 1-2 All ports are non-removable. |
| 2-3 All ports are removable. |
3.1.2 Power Source - Self Powered
The EVB-USB7002 only supports self-powered operation. Power is supplied through one +12.0V regulated external power supply. The power supply is connected to the 2.5 mm connector J1 on the board. Alternatively, an external voltage can be supplied to the screw terminal "12V" (J2). The +12.0V feeds a 15A regulator that outputs +5.2V (nominal) across the board and also supplies the +3.3V regulator and the 1.2V regulator.
CAUTION
The supplied 12.0V external power supply cannot support simultaneous battery charging on all downstream ports. Use a higher power supply if the required test use case exceeds the power capability of the supply. Failure to heed to this warning could result in damage to the 12.0V external power supply.
3.1.3 Downstream Port Power Control
USB power to the four downstream ports is controlled via port power controllers with auto-discharge functionality. All downstream ports support BC 1.2 battery charging.
The two downstream USB Type-C ports are each capable of up to 3A of current at 5V. The two downstream USB Type-A ports are capable of up to 2.1A at 5V.
3.1.4 USB Type-C Ports
The USB7002 has two USB3.1 Gen 1 PHYs for each Type-C port. This eliminates the need for an external multiplexer. The USB7002 also features integrated Type-C control signal (CC) detection to determine when and in what orientation a USB Type-C attach has been made. It powers only the USB3.1 Gen 1 PHY needed for USB communication. To reduce power, the USB7002 powers down unused USB3.1 Gen 1 PHYs. In the case where no USB Type-C attach is detected, both USB3.1 Gen 1 PHYs associated with that port are powered down.
3.1.5 LED Indicators
Table 3-3 describes the LED indicators on the EVB-USB7002.
TABLE 3-3: EVB-USB7002 LED INDICATOR DESCRIPTIONS
| Ref.Des. | Label Description |
| D1 “SPI-ACTIVE” Indicates SPI Flash Memory activity. | |
| D2 | “RESET” The RST_N signal is asserted. |
| D4 “PORT 1 VBUS” Illuminates when 5V to upstream PORT1 VBUS is present. | |
| D6 “PORT 3 VBUS” Illuminates when 5V to upstream PORT3 VBUS is present. | |
| D7 | “5V” Illuminates when 5V is present from the 5V voltage regulator. |
| D8 | “3V3” Illuminates when 3.3V is present from the 3.3V voltage regulator. |
| D9 | “VCORE” Illuminates when 1.2V (VCORE) is present from the 1.2V regulator. |
| D10 “PORT 4 VBUS” Illuminates when 5V to upstream PORT4 VBUS is present. | |
| D11 “PORT 2 VBUS” Illuminates when 5V to upstream PORT2 VBUS is present. | |
| D14 | “ATTACH2” Illuminates when a device is detected by CC signals on PORT2. |
3.1.6 Switches
Table 3-4 describes the switches on the EVB-USB7002.
TABLE 3-4: EVB-USB7002 SWITCH DESCRIPTIONS
| Ref. Des. L | Label Description | |
| SW1 “RESET” Momentary push-button switch to assert RST_N. | ||
| SW2 “ON/OFF” Connects or disconnects the 12 VDC supply. | ||
3.1.7 Connector Descriptions
Table 3-5 describes the connectors included on the PCB.
TABLE 3-5: EVB-USB7002 CONNECTOR DESCRIPTIONS
| Ref. Des. | Type Label Description | ||
| J1 Barrel Jack “12VDC” | 12 VDC supply connection (center pin positive) | ||
| J2 | 2-pin terminal block | — | Alternative 12 VDC supply connec-tion. Pin 1 is positive. |
| J3 | USB Type-C Connector | “PORT0” | Upstream Type-C connection |
| J4 | 1x2 Header | “HOLD” | When shunted, disables the SPI memory. |
| J1 | 2x3 Header | “SPI_DI/CFG_BC_EN” “SPI_CEn/CFG_NON_REM” | Selects between SPI memory capabil-ity and BC/NON_REM capability. For SPI, connect pins 2-3 and 5-6. For BC, connect pins 4-5. For NON_REM, connect pins 1-2. |
| J5 | 2x1 Header | “Ext.Reset” | Connection for an external reset switch |
| J6 | 2x2 Header | PF24 PF23 PF25 PF21 | SPI data pins provided for debugging SPI memory |
| J7 | 1x1 Header | “GND” Circuit Ground | |
| J8 | 1x6 Header | — | PF26 - PF31 |
| J9 | 2x3 Header | “SMBus1” | OPTION1: 1-2 and 4-5 connects SMBus1 OPTION2: 2-3 and 5-6 connects SMBus1 |
| J10 | 1x6 Header | — | PF14 - PF19 |
| J11 | USB Type-C Connector | “PORT1” | Downstream Type-C Gen1 Port 1 USB connection |
| J12 | 2x3 Header | “SPI/BC/NR” | SPI_DI or CFG_BC_EN SPI_CEn or CFG_NON_REM See Table 3-1 and Table 3-2. |
| J13 | 1x2 Header | “PU” | Pull-up resistors, OPTION2 SMBus2 |
| J14 | 1x10 Header | — | PF4 - PF13 |
| J15 | 1x3 Header | “BC SELECT” | See Table 3-1. |
| J16 | 2x2 Header | “OPTION2 SMB1” | Access to SMBus1 in OPTION2 |
| J17 | 1x3 Header | “NON_REM_SELECT” | See Table 3-2. |
| Ref. Des. | Type | Label | Description |
| J18 2x6 | Header “CFG_SELECT” | Configuration Option select. Always select 1 and only 1 option. | |
| J19 2x2 | Header “OPTION1 SMB2” Access to SMBus2 in OPTION1 | ||
| J20 2x2 | Header “OPTION1 SMB1” Access to SMBus1 in OPTION1 | ||
| J21 | USB2 Type-A Connector | “PORT3” Downstream Port 3 USB connection | |
| J22 1x2 | Header “PU” | Pull-up resistors, OPTION1 SMBus2 | |
| J23 1x2 | Header “PU” | Pull-up resistors, OPTION1 SMBus1 | |
| J24 | USB2 Type-A Connector | “PORT4” Downstream Port 4 USB connection | |
| J25 | USB Type-C Connector | “PORT2” Downstream Port 2 USB connection | |
| J26 1x3 | Header — Spares for future use | ||
3.1.8 Test Points
Table 3-6 describes the test points on the EVB-USB7002. A header may be permanently installed on the through-hole test points if needed.
TABLE 3-6: EVB-USB7002 TEST POINT DESCRIPTIONS
| Ref. Des. | Type | Description |
| TPOUT1 | Test Pad | PORT3 VBUS |
| TP1 | Test Loop (Blue) | Signal PG5V |
| TP2 | Test Loop (Red) | Signal 5VL |
| TP3 | Test Loop (Red) | 12V |
| TP4 | Test Loop (Red) | 5V |
| TP5 | Test Loop (Black) Circuit Ground | |
| TP6 | Test Loop (Orange) | 3.3V |
| TP7 | Test Loop (Orange) | VCORE (1.2V) |
| TP8 | Test Pad | PORT4 VBUS |
NOTES:
Appendix A. Schematics
A.1 INTRODUCTION
This appendix shows the EVB-USB7002 Evaluation Kit schematic.
FIGURE A-1: EVB-USB7002 USB7X02 PART A

FIGURE A-2: EVB-USB7002 USB7X02 PART B AND AUDIO CODEC INTERFACE
USB7x02 Part B and Audio Codec Interface


FIGURE A-3: EVB-USB7002 MEMORY AND MIKROBUS

FIGURE A-4: EVB-USB7002 USB A PORTS AND POWER SWITCH
USB A Ports and Power Switch


USB C Upstream and Power Switch


$$ \pm \frac {1}{E A T = 0} \begin{array}{c c c c} \text { } & \text { } & \text { } & \text { } \ \text { } & \text { } & \text { } & \text { } \ \text { } & \text { } & \text { } & \text { } \ \text { } & \text { } & \text { } & \text { } \ \text { } & \text { } & \text { } & \text { } \ \text { } & \text { } & \text { } & \text { } \ \text { } & \text { } & \text { } & \text { } \ \text { } & \text { } & \text { } & \text { } \ \text { } & \text { } & \text { } & \text { } \ \text { } & \end{array} $$
| Device ID: | MICROCHIP | ||
| A. Duct | |||
| Logistic: | |||
| X. Duct | |||
| Hardware Configuration: | |||
| EVB-USB100 | EVB-USB7x02 | ||
| Test Title: | Units: | ||
| USB & UPstream and Power Switch | Altium | ||
| Seq | S14 (Dipower 1) | Freq. | 3 x 500 |
| Tired | S14 (Dipower 2) | Freq. | 3 x 500 |
| Data transfer: | |||
FIGURE A-6: EVB-USB7002 USB C DOWNSTREAM 1

FIGURE A-7: EVB-USB7002 USB C DOWNSTREAM 2

FIGURE A-8: EVB-USB7002 VOLTAGE REGULATORS
Voltage Regulators







NOTES:
Appendix B. Bill of Materials
B.1 INTRODUCTION
This appendix contains the EVB-USB7002 Evaluation Board Bill of Materials (BOM).
TABLE B-1: EVB-USB7002 BILL OF MATERIALS
| Item Quantity Designator Description Populated Manufacturer Manufacturer Part Number | ||||||
| 1 | 55 | C1, C2, C3, C4, C5, C6,C7, C9, C17, C20, C23,C24, C26, C28, C31, C33,C35, C36, C41, C47, C49,C50, C52, C53, C55, C56,C57, C59, C60, C61, C62,C63, C84, C71, C72, C73,C74, C75, C76, C77, C78,C80, C81, C82, C83, C84,C85, C86, C87, C88, C89,C90, C97, C98, C99 | CAP CER 0.1uF 16V 10% X7R SMD 0402 YES Murata GRM155R71 | C104KA88D | ||
| 2 | 3 | C10, C13, C22 | CAP CER 47uF 16V 10% X5R SMD 1210 | YES | Murata Electronics North America | GRM32ER61C476KE15K |
| 3 | 3 | C11, C12, C30 | CAP CER 100uF 10V 20% X5R SMD 1210 | YES | Taiyo Yuden | LMK325BJ107MM-T |
| 4 | 1 | C14 | CAP CER 3900pF 50V 5% C0G SMD 0603 | YES | TDK | C1608C0G1H392J080AA |
| 5 | 1 | C15 | CAP CER 33pF 50V 5% NP0 SMD 0603 | YES | Cal-Chip | GMC10CG330J50NTLF |
| 6 | 1 | C16 | CAP CER 680pF 50V 5% NP0 SMD 0603 | YES | Panasonic | ECJ-1VC1H681J |
| 7 | 1 | C18 | CAP CER 4.7uF 35V 10% X7R SMD 0805 | YES | TDK Corporation | C2012X7R1V475K125AC |
| 8 | 1 | C21 | CAP CER 0.33uF 16V 10% X7R SMD 0603 | YES | Murata | GRM188R71C334KA01D |
| 9 | 5 | C25, C37, C39, C58, C79 | CAP CER 10uF 16V 10% X5R SMD 0805 | YES | Wurth Electronics Inc | 885012107014 |
| 10 | 10 | C27, C29, C32, C34, C38,C43, C44, C45, C46, C51 | CAP CER 47uF 6.3V 20% X5R SMD 0805 YES Taiyo Yuden | JMK212BJ476MG-T | ||
| 11 2 C40, C54 | CAP CER 22uF 10V 10% X7R SMD 1206 | YES | Samsung Electro-Mechanics America,Inc | CL31B226KPHNNNE | ||
| 12 | 1 | C42 | CAP CER 470pF 25V 5% NP0 SMD 0603 | YES | AVX | 06033A471JAT2A |
| 13 | 1 | C48 | CAP CER 2.2uF 10V 10% X7R SMD 0603 | YES | Murata | GRM188R71A225KE15D |
| 14 | 1 | C100 | CAP CER 2.2UF 16V X5R 0402 | YES | TDK | TDK C1005X5R1C225K050BC |
| 15 | 1 | D1 | DIO LED BLUE 2.8V 20mA 15mcd Clear SMD 0603 | YES | Lite-On | LTST-C193TBKT-5A |
| 16 | 1 | D2 | DIO RED 2V 20mA 54mcd CLEAR SMD 0603 | YES | Lite-On Inc. | LTST-C191KRKT |
| 17 | 1 | D3 | DIO RECT MMBD914-7-F 1.25V 200mA 75V SMD SOT-23-3 | YES | Diodes Incorporated | MMBD914-7-F |
| 18 | 7 | D4, D6, D7, D8, D9, D10,D11 | DIO LED GREEN 2V 30mA 35mcd Clear SMD 0603 | YES | Lite-On Inc | LTST-C191KGKT |
| 19 | 1 | D5 | DIO TVS SMBJP6KE6.8CA 5.8V 600W DO-214AA_SMB | YES | Micro Commercial Co | SMBJP6KE6.8CA-TP |
| 20 | 2 | D12, D15 | DIO RECTARR BAV99 1.25V 200mA 70V SOT-23-3 | YES | Fairchild | BAV99 |
| 21 | 4 | D13, D14, D16, D17 | DIO SBAR SBR160S23-7 SBR 530mV 900mA 60V SMD SOT23-3 | YES | Diodes Incorporated | SBR160S23-7 |
| 22 | 1 | J1 | CON POWER 2.5mm 5.5mm TH R/A | YES | CUI Inc. | PJ-063BH |
| 23 | 1 | J2 | CON TERMINAL 5.08mm 1X2 Female 16-30AWG 13.5A TH RA | YES | TE Connectivity | 282836-2 |
| 24 | 3 | J3, J11, J25 | CON USB3.0 TYPE-C FEMALE SMD R/A | YES | Advanced-Connectek Inc. | NBR25-AK5322 |
| 25 | 5 | J4, J5, J13, J22, J23 | CON HDR-2.54 Male 1x2 Gold 5.84MH TH VERT | YES | FCI | 77311-118-02LF |
| Item | Quantity | Designator | Description | Populated | Manufacturer | Manufacturer Part Number |
| 26 1 J7 | CON HDR | 2.54 Male 1x1 Gold 5.84MH | TH VERT YES TE Connectivity 5-146280-1 | |||
| 27 2 J9 | J12 CON | HDR-2.54 Male 3x2 Gold 5.84MH | TH VERT YES Samtec Inc. TSW-102-07-G-T | |||
| 28 2 J15 | J17 CON | HDR-2.54 Male 1x3 Gold 5.84MH | TH VERT YES FCI 68000-103HLF | |||
| 29 3 J16 | J19, J20 | CON HDR-2.54 Male 2x2 Gold 5.84MH | TH VERT YES Samtec TSW-102-07-G-D | |||
| 30 1 J18 | CON HDR | 2.54 Male 2x6 Gold 5.84MH | TH VERT YES Samtec TSW-106-07-G-D | |||
| 31 | 2 | J21, J24 | CON USB2.0 STD-A FEMALE TH R/A | YES | TE Connectivity AMP Connectors | 292303-1 |
| 32 | 1 | L1 | INDUCTOR 2uH 23A 20% SMD L12.8W12.8H6.2 | YES | Wurth Electronics Inc. | 7443551200 |
| 33 | 1 | L2 | INDUCTOR 1.5uH 3A 20% SMD L5W5H2.2 | YES | Murata Electronics North America | LQH5BPN1R5NT0L |
| 34 | 1 | Q3 | TRANS BJT NPN MMBT3904 40V 200mA 310mW SOT-23-3 | YES | Diodes Incorporated | MMBT3904-7 |
| 35 | 6 | Q4, Q5, Q7, Q8, Q9, Q10 | TRANS FET N-CH 2N7002-7-F 60V 170mA 370mW SOT-23-3 | YES | Diodes Inc | 2N7002-7-F |
| 36 2 Q6 | Q11 | TRANS FET DUAL P+P CMKDM8005 20V 650mA .360R 0.350WSOT-363 | YES Central Semiconductor Corp | CMKDM8005 TR | ||
| 37 | 6 | R1, R38, R70, R71, R73, R74 | RES TKF 330R 1% 1/10W SMD 0603 | YES Panasonic | ERJ-3EKF3300V | |
| 38 | 9 | R2, R5, R15, R79, R82, R85, R98, R99, R100 | RES TKF 100k 1% 1/10W SMD 0603 | YES Panasonic | ERJ-3EKF1003V | |
| 39 | 19 | R3, R6, R8, R9, R32, R33, R34, R35, R36, R40, R47, R48, R50, R51, R52, R53, R63, R94, R95 | RES TKF 10k 1% 1/10W SMD 0603 | YES ROHM | MCR03EZPFX1002 | |
| 40 | 14 | R7, R11, R44, R57, R72, R76, R77, R81, R83, R87, R88, R101, R104, R107 | RES TKF 1k 1% 1/10W SMD 0603 | YES Panasonic | ERJ-3EKF1001V | |
| 41 | 3 | R12, R80, R90 | RES TKF 43k 1% 1/10W SMD 0603 | YES | Yageo | 9C06031A4302FKHFT |
| 42 | 3 | R13, R78, R91 | RES TKF 49.9k 1% 1/10W SMD 0603 | YES | Panasonic | ERJ-3EKF4992V |
| 43 1 R14 | RES TKF | 20R 1% 1/10W SMD 0603 | YES Panasonic | ERJ-3EKF20R0V | ||
| 44 | 1 | R16 | RES TKF 140k 1% 1/10W SMD 0603 | YES | Panasonic | ERJ-3EKF1403V |
| 45 1 R17 | RES TKF | 51k 1% 1/10W SMD 0603 | YES Panasonic | ERJ-3EKF5102V | ||
| 46 | 1 | R18 | RES TKF 8.2k 1% 1/10W SMD 0603 | YES | Panasonic | ERJ-3EKF8201V |
| 47 | 1 | R19 | RES TKF 750R 1% 1/10W SMD 0603 | YES | Vishay | CRCW0603750RFKEA |
| 48 | 2 | R20, R26 | RES TKF OR 1/10W SMD 0603 | YES | NIC Components | NRC06Z0TRF |
| 49 | 1 | R21 | RES TKF 20k 1% 1/10W SMD 0603 | YES | Yageo | 9C06031A2002FKHFT |
| 50 | 1 | R22 | RES TKF 2.49k 1% 1/10W SMD 0603 | YES | Panasonic | ERJ-3EKF2491V |
| 51 | 1 | R23 | RES TF 100k 1% 1/8W SMD 0603 | YES | Vishay | MCT06030C1003FP500 |
| 52 | 8 | R25, R42, R43, R46, R60, R61, R62, R108 | RES TKF OR 1/10W SMD 0603 | YES Panasonic | ERJ-3GSY0R00V | |
| 53 | 6 | R27, R30, R37, R41, R96, R97 | RES TKF 200k 1% 1/10W SMD 0603 | YES Panasonic | ERJ-3EKF2003V | |
| 54 4 R28, R29, R92 | R93 RES TKF 10R 1% 1/10W SMD 0603 YES Panasonic ERJ-3EKF10R0V | |||||
| 55 2 R31, R56 RES | TKF 12k 1% 1/10W SMD 0603 YES Yageo RC0603FR-0712KL | |||||
| 56 2 R39, R59 RES | TKF 33k 1% 1/10W SMD 0603 YES Panasonic ERJ-3EKF3302V | |||||
| 57 1 R54 RES TKF | 2.2k 1% 1/10W SMD 0603 YES Panasonic ERJ-3EKF2201V | |||||
| 58 1 R55 RES TKF | 86.6k 1% 1/10W SMD 0603 YES Panasonic Electronic Components ERJ-3EKF8662V | |||||
| 59 2 R64, R68 RES | TKF 10k 1% 1/10W SMD 0603 YES Vishay CRCW060310K0FKEA | |||||
| 60 1 R65 RES TKF | 13k 1% 1/10W SMD 0603 YES Panasonic ERJ-3EKF1302V | |||||
| 61 1 R66 RES TKF | 12.1k 1% 1/10W SMD 0603 YES Panasonic ERJ-3EKF1212V | |||||
| 62 1 R69 RES TKF | 500R 5% 1/10W SMD 0603 YES Stackpole Electronics Inc RMC 1/16 500 5% R | |||||
| 63 2 R75, R89 RES | TKF 560R 1% 1/10W SMD 0603 YES Yageo RC0603FR-07560RL | |||||
| 64 | 4 | R84, R86, R105, R106 | RES TKF 2R 1% 1/4W SMD 0603 | YES | Vishay Dale | CRCW06032R00FKEAHP |
| 65 | 2 | R102, R103 | RES TKF 1k 1% 1/16W SMD 0603 | YES | MULTICOMP | MC0063W060311K |
| 66 | 2 | SKT1 | SOCKET I2S HOST DIP 16 TH | YES | 3M | 963108-2000-AR-PR |
| 67 | 2 | SKT2 | SOCKET mikroBUS HOST DIP 16 TH | YES | 3M | 963108-2000-AR-PR |
| 68 1 SW1 | SWITCH TACT SPST 16V 50mA PTS810 SJM 250 SMTR LFS SMD | YES C&K Components | PTS810 SJM 250 SMTR LFS | |||
| 69 | 1 | SW2 | SWITCH SLIDE SPDT 120V 6A 1101M2S3CQE2 TH | YES | C&K Components | 1101M2S3CQE2 |
| 70 1 TP1 CON TP | LOOP BLUE Ag TH | YES Keystone Electronics 5117 | ||||
| 71 | 1 | TP5 | MISC, TEST POINT MULTI PURPOSE MINI BLACK | YES | Keystone | 5001 |
| 72 1 TP6 CON TP | LOOP Orange TH | YES Keystone Electronics 5003 | ||||
| 73 | 1 | TP7 | MISC, TEST POINT PC MINI, 0.040* D YELLOW | YES | Keystone | 5004 |
| 74 | 6 | U2, U3, U9, U13, U14, U15 | 74LVC1G14GW,125 SCHMITT-TRG INVERTER | YES | NXP | 74LVC1G14GW,125 |
| 75 1 Q1 | MCHP ANALOG MOSFET N-CH 25V 100A 0.0026RMCP87022T-U/MF PDFN-8 | YES Microchip Technology | MCP87022T-U/MF | |||
| 76 1 Q2 | MCHP ANALOG MOSFET N-CH 25V 100A 0.006RMCP87050-U/MF PDFN-8 | YES Microchip | MCP87050T-U/MF | |||
| 77 1 U1 | MCHP MEMORY SERIAL FLASH 16M 104MHz SST26VF016B-104I/SM SOIJ-8 | YES Microchip Technology | SST26VF016B-104I/SM | |||
| 78 1 U4 | MCHP ANALOG SUPERVISOR 2.93V MIC803-29D4VM3-TRSOT-23-3 | YES Microchip Technology | MIC803-29D4VM3-TR | |||
| 79 1 U6 | MCHP ANALOG PWM CONTROLLER 600kHz MCP19035-BAABE/MF DFN-10 | YES Microchip | MCP19035-BAABE/MF | |||
| 80 | 1 | U7 | MCHP INTERFACE USB 3.1 TYPE-C HUB CTLR TQFN-100 | YES | Microchip Technology | USB7002/KDX |
| 81 | 2 | U8, U11 | MCHP INTERFACE USB Power Controller UCS2114 QFN-20 | YES | Microchip | UCS2114-1-V/LX |
| 82 | 1 | U10 | MCHP ANALOG LDO ADJ MCP1825T-ADJE/DC SOT-223-5 | YES | Microchip | MCP1825T-ADJE/DC |
| 83 1 U12 | MCHP ANALOG SWITCHER Buck 0.95V to 3.6V 2AMIC23201YML-TR MLF-10 | YES Microchip Technology | MIC23201YML-TR | |||
| 84 1 Y1 | MCHP CLOCK OSCILLATOR SINGLE 25MHZ DSC1001-CI2-025.0000T CDFN-4 | YES Microchip Technology DSC1001CI2-025.0000T | ||||
| 85 13 | C8, C65, C66, C67, C68, C69, C70, C91, C92, C93, C94, C95, C96 | CAP CER 0.1uF 16V 10% X7R SMD 0402 DNP Murata GRM155R7 | C104KA88D | |||
| 86 1 C1 | 9 CAP CER | 0.33uF 16V 10% X7R SMD | 0603 DNP Murata GRM188R71C334KA01D | |||
| 87 2 C1 | 101, C102 C | CAP CER 10pF 50V 5% NP0 | SMD 0402 DNP Murata GRM1555C1H100JZ01D | |||
| 88 | 1 | J6 | CON HDR-2.54 Male 2x2 Gold 5.84MH TH VERT | DNP | Samlec | TSW-102-07-G-D |
| 89 | 2 | J8, J10 | CON HDR-2.54 Male 1x6 Tin 5.84MH TH VERT | DNP | Sullins | PEC06SAAN |
| 90 | 1 | J14 | CON HDR-2.54 Male 1x10 Gold 5.84MH TH VERT | DNP | Greenconn | GPHA101-1002A001B1BA |
| 91 | 1 | J26 | CON HDR-2.54 Male 1x3 Gold 5.84MH TH VERT | DNP | FCI | 68000-103HLF |
| 92 | 3 | R4, R10, R24 | RES TKF OR 1/10W SMD 0603 | DNP | Panasonic | ERJ-3GSY0R00V |
| 93 | 2 | R45, R58 | RES TKF OR 1/10W SMD 0603 | DNP | Panasonic | ERJ-3GSY0R00V |
| 94 | 2 | R49, R67 | RES TKF 1k 1% 1/10W SMD 0603 | DNP | Panasonic | ERJ-3EKF1001V |
| 95 | 3 | TP2, TP3, TP4 | MISC, TEST POINT MULTI PURPOSE MINI RED | DNP | Keystone | 5000 |
| 96 | 1 | U5 | MCHP MCU 8-BIT 32MHz 3.5kB 256B PIC16F18313-I/RF UDFN-8 | DNP | Microchip | PIC16F18313-I/RF |
| 97 1 Y2 | Crystal 25MHz 4 pins 3225 | DNP Abracon ABM8G-25.000MHZ-B4YT | ||||
NOTES:
Appendix C. PCB Silk Screens
C.1 INTRODUCTION
This appendix shows the top and bottom silk screen images of the EVB-USB7002 PCB.
FIGURE C-1: EVB-USB7002 TOP SILK SCREEN IMAGE

FIGURE C-2: EVB-USB7002 BOTTOM SILK SCREEN IMAGE

NOTES:
Worldwide Sales and Service
AMERICAS
Corporate Office
2355 West Chandler Blvd.
Chandler, AZ 85224-6199
Tel: 480-792-7200
Fax: 480-792-7277
Technical Support:
http://www.microchip.com/
support
Web Address:
www.microchip.com
Atlanta
Duluth, GA
Tel: 678-957-9614
Fax: 678-957-1455
Austin, TX
Tel: 512-257-3370
Boston
Westborough, MA
Tel: 774-760-0087
Fax: 774-760-0088
Chicago
Itasca, IL
Tel: 630-285-0071
Fax: 630-285-0075
Dallas
Addison, TX
Tel: 972-818-7423
Fax: 972-818-2924
Detroit
Novi, MI
Tel: 248-848-4000
Houston, TX
Tel: 281-894-5983
Indianapolis
Noblesville, IN
Tel: 317-773-8323
Fax: 317-773-5453
Tel: 317-536-2380
Los Angeles
Mission Viejo, CA
Tel: 949-462-9523
Fax: 949-462-9608
Tel: 951-273-7800
Raleigh, NC
Tel: 919-844-7510
New York, NY
Tel: 631-435-6000
San Jose, CA
Tel: 408-735-9110
Tel: 408-436-4270
Canada - Toronto
Tel: 905-695-1980
Fax: 905-695-2078
ASIA/PACIFIC
Australia - Sydney
Tel: 61-2-9868-6733
China - Beijing
Tel: 86-10-8569-7000
China - Chengdu
Tel: 86-28-8665-5511
China - Chongqing
Tel: 86-23-8980-9588
China - Dongguan
Tel: 86-769-8702-9880
China - Guangzhou
Tel: 86-20-8755-8029
China - Hangzhou
Tel: 86-571-8792-8115
China - Hong Kong SAR
Tel: 852-2943-5100
China - Nanjing
Tel: 86-25-8473-2460
China - Qingdao
Tel: 86-532-8502-7355
China - Shanghai
Tel: 86-21-3326-8000
China - Shenyang
Tel: 86-24-2334-2829
China - Shenzhen
Tel: 86-755-8864-2200
China - Suzhou
Tel: 86-186-6233-1526
China - Wuhan
Tel: 86-27-5980-5300
China - Xian
Tel: 86-29-8833-7252
China - Xiamen
Tel: 86-592-2388138
China - Zhuhai
Tel: 86-756-3210040
ASIA/PACIFIC
India - Bangalore
Tel: 91-80-3090-4444
India - New Delhi
Tel: 91-11-4160-8631
India - Pune
Tel: 91-20-4121-0141
Japan - Osaka
Tel: 81-6-6152-7160
Japan - Tokyo
Tel: 81-3-6880-3770
Korea - Daegu
Tel: 82-53-744-4301
Korea - Seoul
Tel: 82-2-554-7200
Malaysia - Kuala Lumpur
Tel: 60-3-7651-7906
Malaysia - Penang
Tel: 60-4-227-8870
Philippines - Manila
Tel: 63-2-634-9065
Singapore
Tel: 65-6334-8870
Taiwan - Hsin Chu
Tel: 886-3-577-8366
Taiwan - Kaohsiung
Tel: 886-7-213-7830
Taiwan - Taipei
Tel: 886-2-2508-8600
Thailand - Bangkok
Tel: 66-2-694-1351
Tel: 43-7242-2244-39
Fax: 43-7242-2244-393
Denmark - Copenhagen
Tel: 45-4485-5910
Fax: 45-4485-2829
Finland - Espoo
Tel: 358-9-4520-820
France - Paris
Tel: 33-1-69-53-63-20
Fax: 33-1-69-30-90-79
Germany - Garching
Tel: 49-8931-9700
Germany - Haan
Tel: 49-2129-3766400
Germany - Heilbronn
Tel: 49-7131-72400
Germany - Karlsruhe
Tel: 49-721-625370
Germany - Munich
Tel: 49-89-627-144-0
Fax: 49-89-627-144-44
Germany - Rosenheim
Tel: 49-8031-354-560
Israel - Ra'anana
Tel: 972-9-744-7705
Italy - Milan
Tel: 39-0331-742611
Fax: 39-0331-466781
Italy - Padova
Tel: 39-049-7625286
Netherlands - Drunen
Tel: 31-416-690399
Fax: 31-416-690340
Norway - Trondheim
Tel: 47-7288-4388
Poland - Warsaw
Tel: 48-22-3325737
Romania - Bucharest
Tel: 40-21-407-87-50
Spain - Madrid
Tel: 34-91-708-08-90
Fax: 34-91-708-08-91
Sweden - Gothenberg
Tel: 46-31-704-60-40
Sweden - Stockholm
Tel: 46-8-5090-4654
UK - Wokingham
Tel: 44-118-921-5800
Fax: 44-118-921-5820