Advantech WISE-M502 - Unknown

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Product Type Multi-circuit Power Meter / Energy Analyzer
Measurement Parameters Voltage (V), Current (A), Active Power (W), Reactive Power (var), Apparent Power (VA), Power Factor, Frequency (Hz), Active Energy (kWh), Reactive Energy (kvarh)
Wiring Configurations 1P2W, 1P3W, 3P3W, 3P4W; up to 5 loops (1P2W) or 2 loops (3P3W, 1P3W)
Measurement Accuracy Voltage & Current: 0.2% of reading; Power & Energy: 0.5% of reading; Power Factor: 0.5%; Frequency: 0.2%
Display LCD backlit, 2 lines x 6 digits each (top: 6.5mm, bottom: 9.6mm)
Communication RS-485 (Modbus RTU) and PLC (Power Line Communication); Baud rate up to 38400 bps
Data Logging Internal 1MB flash; stores up to 100,000 records; programmable interval (1-32767 seconds/minutes/hours/days)
Relay Outputs 5 programmable relays (SPST); configurable set points, hysteresis, delays, and modes (Lo, Hi, Latch)
Auxiliary Power Supply ADH: 85-346 VAC, 50/60 Hz or 100-300 VDC; ADL: 20-56 VDC
Power Consumption AC: 10 VA max; DC: 4 W max
Mounting DIN rail (35 mm)
Weight 185 g
Operating Temperature 0 to 60 °C (32 to 140 °F)
Storage Temperature -20 to 70 °C (-4 to 158 °F)
Safety Standards EN 61010, EN 61326; Dielectric strength 2 kV; Surge 6 kV
Security Two-level password (4 digits) for parameter setting and energy reset; function lock (None, User, Programming, All)
Warranty 2 years from date of purchase
Applications Rental building electricity charging, market booth, dormitory, distributed generation management

Frequently Asked Questions - WISE-M502 Advantech

What wiring configurations does the WISE-M502 support?
The WISE-M502 supports single-phase two-wire (1P2W), single-phase three-wire (1P3W), three-phase three-wire (3P3W), and three-phase four-wire (3P4W). It can handle up to 5 loops in 1P2W or 2 loops in other configurations.
How do I set the communication parameters?
Access the Communication Group in the Programming Level. You can set the station address (1-255), baud rate (1200-38400 bps), parity (None, Even, Odd), and data format (High/Low word first). Default is Address 1, Baud 9600, N.8.2.
Can I log data over time?
Yes, the device has a 1MB internal flash memory for data logging. You can configure the recording interval (1-32767 units of seconds, minutes, hours, or days) and select which parameters to record. Up to 100,000 records can be stored.
How do I reset the energy counters?
To reset active/reactive energy, go to the Input Group in Programming Level and write the value 2100 to the register tL.rst (address 0050h). You may need the password (default 1000).
What is the accuracy of the voltage and current measurements?
Voltage and current measurements have an accuracy of 0.2% of reading. Active and reactive power accuracy is 0.5%, and frequency accuracy is 0.2%.
How do I configure the relay outputs?
In the Relay Group, you can assign each relay to a parameter (e.g., voltage, power), set the operation mode (Off, Lo, Hi, Lo.HLd, Hi.HLd, RO), set point, hysteresis, and delays. Default relay 1-5 set points are 1000, 2000, 3000, 4000, 5000.
What power supply options are available?
The WISE-M502 has two versions: ADH accepts 85-346 VAC (50/60 Hz) or 100-300 VDC, while ADL accepts 20-56 VDC. Power consumption is 10 VA (AC) or 4 W (DC).
How do I navigate the screen and configure parameters?
Use the front panel keys (not clearly labeled but described in the manual). Press and hold the ESC key to enter Programming Level. Use ENT to confirm, FUN to switch groups. The display shows measurement screens by default; you can scroll through voltage, current, power, energy, and relay settings.
Can I monitor neutral current?
Yes, in 3P4W wiring, the device measures neutral current (IN) with an accuracy of 1.0%. It is displayed as a parameter and can be logged or used for relay control.
What is the maximum voltage and current input?
The voltage input can handle up to 600 V continuous (1.2x rated). Current depends on the external CT; the CT primary setting can be up to 9999 A. The device measures current via clamp CTs (not included).

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Download the instructions for your Unknown in PDF format for free! Find your manual WISE-M502 - Advantech and take your electronic device back in hand. On this page are published all the documents necessary for the use of your device. WISE-M502 by Advantech.

USER MANUAL WISE-M502 Advantech

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WISE-M502

The documentation and the software included with this product are copyrighted 2016 by Advantech Co., Ltd. All rights are reserved. Advantech Co., Ltd. reserves the right to make improvements in the products described in this manual at any time without notice. No part of this manual may be reproduced, copied, translated or transmitted in any form or by any means without the prior written permission of Advantech Co., Ltd. Information provided in this manual is intended to be accurate and reliable. However, Advantech Co., Ltd. assumes no responsibility for its use, nor for any infringements of the rights of third parties, which may result from its use.

Acknowledgements

Intel and Atom are trademarks of Intel Corporation.

Microsoft Windows is registered trademark of Microsoft Corp.

All other product names or trademarks are properties of their respective owners.

Product Warranty (2 years)

Advantech warrants to you, the original purchaser, that each of its products will be free from defects in materials and workmanship for two years from the date of purchase.

This warranty does not apply to any products which have been repaired or altered by persons other than repair personnel authorized by Advantech, or which have been subject to misuse, abuse, accident or improper installation. Advantech assumes no liability under the terms of this warranty as a consequence of such events.

Because of Advantech's high quality-control standards and rigorous testing, most of our customers never need to use our repair service. If an Advantech product is defective, it will be repaired or replaced at no charge during the warranty period. For out-of-warranty repairs, you will be billed according to the cost of replacement materials, service time and freight. Please consult your dealer for more details.

If you think you have a defective product, follow these steps:

  1. Collect all the information about the problem encountered. (For example, CPU speed, Advantech products used, other hardware and software used, etc.) Note anything abnormal and list any onscreen messages you get when the problem occurs.

  2. Call your dealer and describe the problem. Please have your manual, product, and any helpful information readily available.

  3. If your product is diagnosed as defective, obtain an RMA (return merchandize authorization) number from your dealer. This allows us to process your return more quickly.

  4. Carefully pack the defective product, a fully-completed Repair and Replacement Order Card and a photocopy proof of purchase date (such as your sales receipt) in a shippable container. A product returned without proof of the purchase date is not eligible for warranty service.

  5. Write the RMA number visibly on the outside of the package and ship it prepaid to your dealer.

Part No.2003M50200 Edition 1

Printed in China December 2016

Declaration of Conformity

CE

This product has passed the CE test for environmental specifications when shielded cables are used for external wiring. We recommend the use of shielded cables. This kind of cable is available from Advantech. Please contact your local supplier for ordering information.

Technical Support and Assistance

  1. Visit the Advantech web site at http://support.advantech.com where you can find the latest information about the product.

  2. Contact your distributor, sales representative, or Advantech's customer service center for technical support if you need additional assistance. Please have the following information ready before you call:

– Product name and serial number
– Description of your peripheral attachments
– Description of your software (operating system, version, application software, etc.)
– A complete description of the problem
- The exact wording of any error messages

Safety Instructions

  1. Read these safety instructions carefully.
  2. Keep this User Manual for later reference.
  3. Disconnect this equipment from any AC outlet before cleaning. Use a damp cloth. Do not use liquid or spray detergents for cleaning.
  4. For plug-in equipment, the power outlet socket must be located near the equipment and must be easily accessible.

  5. Keep this equipment away from humidity.

  6. Put this equipment on a reliable surface during installation. Dropping it or letting it fall may cause damage.

  7. The openings on the enclosure are for air convection. Protect the equipment from overheating. DO NOT COVER THE OPENINGS.

  8. Make sure the voltage of the power source is correct before connecting the equipment to the power outlet.

  9. Position the power cord so that people cannot step on it. Do not place anything over the power cord.

  10. All cautions and warnings on the equipment should be noted.

  11. If the equipment is not used for a long time, disconnect it from the power source to avoid damage by transient overvoltage.

  12. Never pour any liquid into an opening. This may cause fire or electrical shock.

  13. Never open the equipment. For safety reasons, the equipment should be opened only by qualified service personnel.

  14. If one of the following situations arises, get the equipment checked by service personnel:

■ The power cord or plug is damaged.
- Liquid has penetrated into the equipment.
■ The equipment has been exposed to moisture.
The equipment does not work well, or you cannot get it to work according to the user's manual.
■ The equipment has been dropped and damaged.
■ The equipment has obvious signs of breakage.

  1. DO NOT LEAVE THIS EQUIPMENT IN AN ENVIRONMENT WHERE THE STORAGE TEMPERATURE MAY GO BELOW -40°C (-40°F) OR ABOVE 60°C (140°F). THIS COULD DAMAGE THE EQUIPMENT. THE EQUIPMENT SHOULD BE IN A CONTROLLED ENVIRONMENT.

  2. CAUTION: DANGER OF EXPLOSION IF BATTERY IS INCORRECTLY REPLACED. REPLACE ONLY WITH THE SAME OR EQUIVALENT TYPE RECOMMENDED BY THE MANUFACTURER, DISCARD USED BATTERIES ACCORDING TO THE MANUFACTURER'S INSTRUCTIONS.

The sound pressure level at the operator's position according to IEC 704-1:1982 is no more than 70 dB (A).

DISCLAIMER: This set of instructions is given according to IEC 704-1. Advantech disclaims all responsibility for the accuracy of any statements contained herein.

Safety Precaution - Static Electricity

Follow these simple precautions to protect yourself from harm and the products from damage.

To avoid electrical shock, always disconnect the power from your PC chassis before you work on it. Don't touch any components on the CPU card or other cards while the PC is on.
■ Disconnect power before making any configuration changes. The sudden rush of power as you connect a jumper or install a card may damage sensitive electronic components.

Battery Information

Batteries, battery packs, and accumulators should not be disposed of as unsorted household waste. Please use the public collection system to return, recycle, or treat them in compliance with the local regulations.

Advantech WISE-M502 - Battery Information - 1

Advantech WISE-M502 - Battery Information - 2

Advantech WISE-M502 - Battery Information - 3

Manual Conventions

Warning! Warnings indicate conditions, which if not observed, can cause personal injury!

Advantech WISE-M502 - Manual Conventions - 1

Caution! Cautions are included to help you avoid damaging hardware or losing data. e.g.

Advantech WISE-M502 - Manual Conventions - 2

There is a danger of a new battery exploding if it is incorrectly installed. Do not attempt to recharge, force open, or heat the battery. Replace the battery only with the same or equivalent type recommended by the manufacturer. Discard used batteries according to the manufacturer's instructions.

Note! Notes provide optional additional information.

Advantech WISE-M502 - Manual Conventions - 3

Contents

Chapter 1 Product Overview....1

1.1 Introduction 2
1.2 Application.... 2
1.3 Panel Description 2

Chapter 2 Product Specifications......3

2.1 Product Specifications....4

Table 2.1: Measurement and Wiring 4
Table 2.2: Accuracy & Resolutions....4
Table 2.3: Communication function 5
Table 2.4: Recording 5
Table 2.5: Display....5
Table 2.6: Power 5
Table 2.7: Security....5
Table 2.8: Operating environment 6
Table 2.9: Electrical Safety....6
Table 2.10:Mechanical 6

Chapter 3 Hardware Installation ....7

3.1 Wiring Diagram 8
3.2 Screen Function Key Operation 9

Chapter 4 System Configuration .....19

4.1 System Configuration.... 20

Appendix A I/O Modbus Mapping Table......25

A.1 I/O Modbus Mapping Table.... 26

Chapter 1

Product Overview

1.1 Introduction

Provides high accuracy measurement, display and remote communication of single phase & three phase parameters (V, A, P, Q, S, PF, Hz, Kwh). Multi-circuit design and relay output modular design decrease the overall cost and make the functionality more flexible. All monitored data is available via a RS485 serial, PLC communication for requirements in energy management, and remote control. Embedded flash memory for data logging avoids missing data once the communication is interrupted.

Moreover, its ultra compact size DIN-rail mounting makes itself mountable in virtually any panel, enclosure or indoor cabinet.

1.2 Application

■ Rental Building Electricity Charging Management
■ Market/Vender/Stand Electricity Charging Management
■ Rental Apartment Electricity Charging Management
■ Distributed Generation Electricity Charging Management
■ Booth Electricity Charging Management
■ Dormitory Electricity Charging Management

1.3 Panel Description

950V 0.0V FUR ESC Energy Power Volt Amp

Key definition (from left to right)

ENT Enter(confirmation)/ FU Left(left shift (Leave)/ )

Advantech WISE-M502 - Panel Description - 3

Up(Move)/ INC(Addition)/ Powe(Power) Down(Down)/ DEC(Reduce)/ Volt/Amp(Voltage, current)

Chapter 2

Product Specifications

2.1 Product Specifications

Table 2.1: Measurement and Wiring

Phase & Wiring Voltage Current Frequency
1P2W50~500V depends on external CT 45~65Hz
1P3W
3P3W
3P4W

Table 2.2: Accuracy & Resolutions
PARAMETERS ACCURACY RESOLUTION INPUT RANGE

Voltage 0.2% 0.1V0~9999
Current 0.2% 0.001A0~9999
Neutral Current1.0% 0.001A0~9999
Active Power0.5% 0.1W-32768~32767
Reactive Power0.5% 0.1var-32768~32767
Apparent Power0.5% 0.1VA-32768~32767
Power factor0.5% 0.001±0.020~+1.000
Frequency0.2% 0.01Hz45.00~65.00
Active Energy0.5% 0.1kWh0~999999
Reactive Energy0.5% 0.1kvarh0~999999

* Current Specification 400A or more, because the instrument can not be calibrated with the accuracy required to add additional error of 0.5% *

MeasurementTrue RMS measuring Parameters
Display update period0.5 Sec
Wiring1P2W, 1P3W, 3P3W, 3P4W
Input rangeVoltage: As metering and WiringPT Primary side unit: V or KVPT Primary setting: 50.0V~99.99KVPT Secondary setting:50.0~500.0VDirect Input: Primary = Secondary ≤ 500VCurrent: depends on external CTCT Primary setting: 1~9999AFrequency: 45~65Hz
Max. input withstandVoltage: 1.2 X Rated voltage continuous(600Vmax)Current: Clamp CT Specification1.2X Rate voltage continuous

Table 2.3: Communication function

Port RS-485 PLC (power line communication) Half-duplex Transmission
Protocol Modbus RTU Mode
Address 1~255 selectable
Baud rate 1200, 2400, 4800, 9600, 19200 or 38400 bps selectable
Parity check N81, N82, odd, even selectable
Wire distance 1200M max
Terminal resistance 150Ω.
Variable Communication addressCustomizing from 0100h to 0113h, 20 address parameters

Table 2.4: Recording

Memory: Internal 1MB
Capability:Depends, i.e. saving up to 100,000 records with recording KWH parameters only. Recording interval:1~32767
Time units Second, minute, hour, day

Table 2.5: Display

LCD backlight 2-line, 6 digits for each. Top pane: 6.5mm high;
bottom pane 9.6mm high
Comm. status indication With Communication status display icon
Parameter indicationShow parameters and channels in words
Alarm status indicationR1~R5 with Relay contact status display icon

Table 2.6: Power

Aux PowerADH: 85~346Vac, 50/60Hz, 100~300Vdc
ADL20~56Vdc
Power consumptionAC:10VA, DC:4W
Temperature Coefficient100 ppm/°C

Table 2.7: Security

PasswordTwo groups password in 4 digits for "parameter setting" & "reset to zero for WATT"
Parameter settingPassword is able to set
Reset to zero for WATTPassword is unable to set
Function LockThere are 4 optionsUser Level: User Level lock. User can get into User Level only for checking but unable to change the settingProgramming Level: Programming Level lock. User can get into programming level only for checking but unable to change the settingALL: All lock. Lock both User Level & Programming Level. User can get into all level for checking but unable to change the settingNone: No Lock
Parameter storage methodsF-RAM (Ferroelectric RAM), a random-access memory

Table 2.8: Operating environment

Operation Temperature & Humidity0~60°C;Display 0~60°C/0~80% RH, No-condensing
Storage Temperature & Humidity-20~70°C/0~80% RH, Non condensing

Table 2.9: Electrical Safety

Surge test 6KV, 1.2x50usec Common mode & differential mode
Insulating resistance ≥ 100M ohm,DC500V
Dielectric strength AC 2KV,50/60Hz,Input/Output/Power/Case
Standard EN61010;EN61326

Table 2.10: Mechanical

Case material PC fireproof
Mounting DIN rail
Weight 185g

Chapter 3

Hardware Installation

3.1 Wiring Diagram

( Secondary output wire of CT must be wiring separately as protection. parallel or ground.DO NOT )

Advantech WISE-M502 - Wiring Diagram - 1

Power Supply
1A Fuse ADH:AC85~264V 50/60Hz DC100~300V ADL:AC/DC 20~65V Filter transformer PMI PMB FG 1△2 3 4 5 6 7 8 9

RS485 Communication Port
10 11 12 13 14 15 16 17 18 19 20 21 45+ 45- Max. wiring distance 1200M Terminal resistors (the farthest device): 120~300 ohm/0.25W (typical: 150ohm)

3.2 Screen Function Key Operation

95V/2 0.00 0.00 EN DC Energy Power Rel./AGS

Press the the button on the following version can review each phase line Circuit voltage and current measurement value, the flow picture Page 4 to 6 of process description

950V2 000 000 FIB EC S&P Pow tkt.any

Press the the button on the following version can review each phase line The measured values of the circuit in the power, process screen 7 to 10 of process description

95V/2 0.00 0.00 Pin ESG Energy Power rel Amps

Press the the button on the following version can review each loop The measured values of the energy flow picture, such as Page 11 Process Description

45V±2 0.00 R/W ESC Energy Power Pull Help

Press the the button on the following version more than a second or more, Set the relay parameter values, Flow picture described processes such as Page 11

Before use, please understand the function of individual keys to achieve the best possible mode of operation.

Advantech WISE-M502 - Screen Function Key Operation - 5

Volt/Amp

(Voltage, Current)

Measurement screen

● 1P2W 5Loop (Single-phase two-wire five-loop)

Advantech WISE-M502 - Volt/Amp - 1
Frequency

Advantech WISE-M502 - Volt/Amp - 2
L-N Voltage U1/V

Advantech WISE-M502 - Volt/Amp - 3
Loop 1 Current I1

Advantech WISE-M502 - Volt/Amp - 4
Loop 2 Current I2

Advantech WISE-M502 - Volt/Amp - 5
Loop 3 Current I3

Advantech WISE-M502 - Volt/Amp - 6
Loop 4 Current I4

Advantech WISE-M502 - Volt/Amp - 7
Loop 5Current I5

● 1P3W 2Loop (Single-phase three-wire two-loop)

Advantech WISE-M502 - Volt/Amp - 8
Frequency

Advantech WISE-M502 - Volt/Amp - 9
L1-N Voltage UL1/V

Advantech WISE-M502 - Volt/Amp - 10
L2-N Voltage UL2/V

Advantech WISE-M502 - Volt/Amp - 11
L1-L2 Voltage UL12

Advantech WISE-M502 - Volt/Amp - 12
Loop1 L1 Current IL1-1

Advantech WISE-M502 - Volt/Amp - 13
Loop 1 L2 Current IL2-1

Advantech WISE-M502 - Volt/Amp - 14
Loop 2 L1 Current IL1-2

Advantech WISE-M502 - Volt/Amp - 15
Loop 2 L2Current IL2-2

Advantech WISE-M502 - Volt/Amp - 16

Volt/Amp

Voltage Current,)

Measurement screen

  • 3P3W 2Loop (Three-phase three-wire two-loop)
    Advantech WISE-M502 - Volt/Amp - 1

Advantech WISE-M502 - Volt/Amp - 2

Volt/Amp (Voltage, Current) Measurement screen

- 3P4W 1Loop (Three-phase four-wire single-loop)

Advantech WISE-M502 - Volt/Amp (Voltage, Current) Measurement screen - 1

Advantech WISE-M502 - Volt/Amp (Voltage, Current) Measurement screen - 2
Loop 1 average current I.AVG

Advantech WISE-M502 - Volt/Amp (Voltage, Current) Measurement screen - 3

Power

( POWER)

Measurement screen

● 1P2W 5Loop (Single-phase three-wire two-loop)
Advantech WISE-M502 - Measurement screen - 1

Advantech WISE-M502 - Measurement screen - 2

Power

( POWER)

Measurement screen

● 1P3W 2Loop (Single-phase three-wire two-loop)
Advantech WISE-M502 - Measurement screen - 1

Advantech WISE-M502 - Measurement screen - 2

Power

( POWER)

Measurement screen

  • 3P3W 2Loop (Three-phase three-wire two-loop)
    Advantech WISE-M502 - Measurement screen - 1

Advantech WISE-M502 - Measurement screen - 2

Power

( POWER)

Measurement screen

- 3P4W 1Loop (Three-phase four-wire two-loop)

Advantech WISE-M502 - Measurement screen - 1

Advantech WISE-M502 - Measurement screen - 2

Advantech WISE-M502 - Measurement screen - 3

( Energy )

Measurement screen

Advantech WISE-M502 - Measurement screen - 1
First loop total active energy A.E1

Advantech WISE-M502 - Measurement screen - 2
First loop total reactive energy R.E1

Advantech WISE-M502 - Measurement screen - 3
Second loop total active energy A.E2

Advantech WISE-M502 - Measurement screen - 4
Second loop total reactive energy R.E2

Advantech WISE-M502 - Measurement screen - 5
Third loop total active energy A.E3

Advantech WISE-M502 - Measurement screen - 6
Third loop total reactive energy R.E3

Advantech WISE-M502 - Measurement screen - 7
Fourth loop total active energy A.E4

Advantech WISE-M502 - Measurement screen - 8
Fourth loop total reactive energy R.E4

Advantech WISE-M502 - Measurement screen - 9
Fifth loop total active energy A.E5

Advantech WISE-M502 - Measurement screen - 10
Fifth loop total reactive energy R.E5

Advantech WISE-M502 - Measurement screen - 11
Date 12.01.01

Advantech WISE-M502 - Measurement screen - 12
Time 00.00.00

The display order of the total active energy and total reactive energy in the loop

1P2W 5Loop:AE1/RE1\~\~AE5/RE5

1P3W 1Loop:AE1/RE1

3P3W 1Loop:AE1/RE1

3P4W 1Loop:AE1/RE1

1P3W 2Loop:AE1/RE1\~\~AE2/RE2

3P3W 2Loop:AE1/RE1\~\~AE2/RE2

Advantech WISE-M502 - Measurement screen - 13

ESC (Leave)

( Press and hold for more than more than one second to enter the class

Advantech WISE-M502 - ESC (Leave) - 1
Relay 1 set point RY1.SP/1000 Range- 32768\~32767

Advantech WISE-M502 - ESC (Leave) - 2

Advantech WISE-M502 - ESC (Leave) - 3
Relay 2 set point RY2.SP/2000 Range- 32768\~32767

Advantech WISE-M502 - ESC (Leave) - 4

Advantech WISE-M502 - ESC (Leave) - 5
Relay 3 set point RY3.SP/3000 Range- 32768\~32767

Advantech WISE-M502 - ESC (Leave) - 6

Advantech WISE-M502 - ESC (Leave) - 7
Relay 4 set point RY4.SP/4000 Range- 32768\~32767

Advantech WISE-M502 - ESC (Leave) - 8
Relay 5 set point RY5.SP/5000 Range:-32768\~32767

Advantech WISE-M502 - ESC (Leave) - 9

Advantech WISE-M502 - ESC (Leave) - 10
Forced reset has been activated to maintain the relay N∅ YES

Advantech WISE-M502 - ESC (Leave) - 11

Advantech WISE-M502 - ESC (Leave) - 12
System wiring 1P2W

Advantech WISE-M502 - ESC (Leave) - 13

Advantech WISE-M502 - ESC (Leave) - 14
The number of loops 5 By SPEC shaw/1 /2 5

Advantech WISE-M502 - ESC (Leave) - 15

Advantech WISE-M502 - ESC (Leave) - 16
Software version AEM-RD/vxx.xx

Advantech WISE-M502 - ESC (Leave) - 17

Advantech WISE-M502 - ESC (Leave) - 18
FLASH remaining time 0\~65535 Units of the same recording interval units

Advantech WISE-M502 - ESC (Leave) - 19

Chapter 4

System Configuration

4.1 System Configuration

Advantech WISE-M502 - System Configuration - 1

ENT

Enter(Confirm)/

FUN

Programming Level

INPUT Group

Advantech WISE-M502 - INPUT Group - 1
P.CODE/0000

Advantech WISE-M502 - INPUT Group - 2

key is pressed, the rightmost 0 starts blinking can move

Advantech WISE-M502 - INPUT Group - 3

Left moves to the nearest thousand,, Up set to 1, the display 1000.,

Advantech WISE-M502 - INPUT Group - 4

Enter can enter the the parameter setting class

Advantech WISE-M502 - INPUT Group - 5

flowchart
graph TD
    A["Input Group"] --> B["Relay setting group"]
    B --> C["Communication setting group"]
    C --> D["Time setting group"]
    D --> E["Factory Default"]

    subgraph_Group1["Group 11: Input into into into into into into into"]
        F["ENT"] --> G["INTO INPUT GROUP (Page 11)"]
        H["ENT"] --> I["INTO RELAY GROUP (Page 12~13)"]
        J["ENT"] --> K["INTO COMM GROUP (Page 14)"]
        L["ENT"] --> M["INTO TIME GROUP (Page 14)"]
        N["ENT"] --> O["INTO INIT (Page 14)"]
    end

Programming Level

INPUT Group

Advantech WISE-M502 - INPUT Group - 1
PT primary voltage unit: U.UNIT/V

Advantech WISE-M502 - INPUT Group - 2

Advantech WISE-M502 - INPUT Group - 3
PT primary voltage: PT.PRI/500.0

Advantech WISE-M502 - INPUT Group - 4

Advantech WISE-M502 - INPUT Group - 5
PT secondary voltage: PT.SEC/500.0

Advantech WISE-M502 - INPUT Group - 6

Advantech WISE-M502 - INPUT Group - 7
CT primary current: CT.PRI/50

Advantech WISE-M502 - INPUT Group - 8
Voltage display resolution settings: V.UNT/0.1

Advantech WISE-M502 - INPUT Group - 9

Advantech WISE-M502 - INPUT Group - 10
Current display resolution setting: I.UNT / 0.01

Advantech WISE-M502 - INPUT Group - 11

Advantech WISE-M502 - INPUT Group - 12
Power display resolution setting: W.UNT/0.01k

Advantech WISE-M502 - INPUT Group - 13

Advantech WISE-M502 - INPUT Group - 14
Current display low cut:Lo.CUT/0

Advantech WISE-M502 - INPUT Group - 15
Active / reactive energy zeroing tlrst/0000

Advantech WISE-M502 - INPUT Group - 16

Advantech WISE-M502 - INPUT Group - 17
Modify the pass code P.CODE/1000

Advantech WISE-M502 - INPUT Group - 18

Advantech WISE-M502 - INPUT Group - 19
Back light time b.Light /1

Advantech WISE-M502 - INPUT Group - 20

Advantech WISE-M502 - INPUT Group - 21
Select Permanent screen disply/ A.E1

Advantech WISE-M502 - INPUT Group - 22
Parameter lock screen F. LOCK/NONE

Advantech WISE-M502 - INPUT Group - 23

Advantech WISE-M502 - INPUT Group - 24
Pulse output A E1\~A.E5/NONE.

Advantech WISE-M502 - INPUT Group - 25
Back toPT primary voltage

Programming Level

RELAY Group

Advantech WISE-M502 - RELAY Group - 1
Relay 1 action parameter RY1.SL

Advantech WISE-M502 - RELAY Group - 2
Relay 1 operation mode RY1.MD / HI OFF/Lo/Hi/Lo.HLd/Hi.HLd/RO

Advantech WISE-M502 - RELAY Group - 3
Relay 1 set point RY1.SP/1000 Range 32768\~32767:-

Advantech WISE-M502 - RELAY Group - 4
Relay 2 action parameter RY2 SL

Advantech WISE-M502 - RELAY Group - 5
Relay 2 operation mode RY2.MD / HI OFF/Lo/Hi/Lo.HLd/Hi.HLd/RO

Advantech WISE-M502 - RELAY Group - 6
Relay 2 set point RY2.SP/2000 Range 32768\~32767:-

Advantech WISE-M502 - RELAY Group - 7
Relay 3 action parameter RY3 SL

Advantech WISE-M502 - RELAY Group - 8
Relay 3 operation mode RY3.MD / HI OFF/Lo/Hi/Lo.HLd/Hi.HLd/RC

Advantech WISE-M502 - RELAY Group - 9
Relay 3 set point RY3.SP/3000 Range 32768\~32767:-

Advantech WISE-M502 - RELAY Group - 10
Relay 4 action parameter RY4 SL

Advantech WISE-M502 - RELAY Group - 11
Relay 4 operation mode RY4.MD / HI OFF/Lo/Hi/Lo.HLd/Hi.HLd/RO

Advantech WISE-M502 - RELAY Group - 12
Relay 4 set point RY4.SP/4000 Range 32768\~32767:-

Advantech WISE-M502 - RELAY Group - 13
Relay 5 action parameter RY5 SL

Advantech WISE-M502 - RELAY Group - 14
Relay 5 operation mode RY5.MD / HI OFF/Lo/Hi/Lo.HLd/Hi.HLd/RO

Advantech WISE-M502 - RELAY Group - 15
Relay 5 set point RY5.SP/5000 Range 32768\~32767:-

Advantech WISE-M502 - RELAY Group - 16
General or advanced Function Select PROG/basic Range BASIC/ADVNC:

Advantech WISE-M502 - RELAY Group - 17
Relay 1 start band RY1. Sb/0 Range 0\~9999 counts:

Advantech WISE-M502 - RELAY Group - 18
Relay1start delay time RY1.Sd/0.00.0 Range: 0.00.0\~9.59.9

Advantech WISE-M502 - RELAY Group - 19
Relay 1 hysteresis time RY1.hy/0 Range 0\~9999 counts:

Advantech WISE-M502 - RELAY Group - 20
Relay 1 start delay time: RY1.rd/0.00.0 Range: 0.00.0\~9.59.9

Advantech WISE-M502 - RELAY Group - 21
Relay1 de-energizeddelay time:RY1.Fd/0.00.0 Range:0.00.0\~9.59.9

Advantech WISE-M502 - RELAY Group - 22
Relay 2 start band RY 2 Sb 0. / Range 0\~9999 counts:

Advantech WISE-M502 - RELAY Group - 23
Relay 2 start delay time RY2.Sd/0.00.0 Range: 0.00.0\~9.59.9

Advantech WISE-M502 - RELAY Group - 24
Relay 2 hysteresis time: RY2.hy/0 Range 0\~9999 counts:

Advantech WISE-M502 - RELAY Group - 25
Relay 2 start delay time: RY2.rd/0.00.0 Range: 0.00.0\~9.59.9

Programming Level parameters correspond

Select Permanent screen
Advantech WISE-M502 - Programming Level parameters correspond - 1

Loop 1Loop 2
1P3WFreq., UL1, UL2, UL12, IL1-1, IL2-1, PL1-1, PL2-1, P.SUM1, QL1-1, QL2-1, Q.SUM1, SL1-1, SL2-1, S.SUM1, PFL1-1, PFL2-1, PF.AVG1, A.E1, R.E1Freq., UL1, UL2, UL12, JL1 4, JL2 4, JL1 2, IL2-2, PL1-1, PL2-1, P.SUM1, QL1-1, QL2-1, Q.SUM1, SL1-1, SL2-1, S.SUM1, PFL1-1, PFL2-1, PF.AVG1, PL1-2, PL2-2, P.SUM2, QL1-2, QL2-2, Q.SUM2, SL1-2, SL2-2, S.SUM2, PFL1-2, PFL2-2, PF.AVG2, A.E1, R.E1, A.E2, R.E2
3P3WFreq., UAB, UBC, UCA, ULL.AVG, IA1, IB1, IC1, I.AVG1, PA1, PC1, P.SUM1, QA1, QC1, Q.SUM1, SA1, SC1, S.SUM1, PFA1, PFC1, PF.AVG1, A.E1, R.E1Freq., UAB, UBC, UCA, ULL.AVG, IA1, IB1, IC1, I.AVG1, IA2, IB2, IC2, I.AVG2, PA1, PC1, P.SUM1, QA1, QC1, Q.SUM1, SA1, SC1, S.SUM1, PFA1, PFC1, PF.AVG1, PA2, PC2, P.SUM2, QA2, QC2, Q.SUM2, SA2, SC2, S.SUM2, PFA2, PFC2, PF.AVG2, A.E1, R.E1, A.E2, R.E2
3P4W Loop11P2W Loop5
Freq UA UB UC ULN AVG UAB UBC.UCA ULL AVG IA IB IC IN I AVG PA,PB, PC, P.SUM, QA, QB, QC, Q.SUM,SA, SB, SC, S.SUM, PFA, PFB, PFC, PF.AVG,A.E1, R.E1Freq.,U1, I1, I2, I3, I4, I5, P1, Q1, S1, PF1,,P2,Q2 S2 PF2 P3 Q3 S3 PF3 P4.Q4S4, PF4, P5, Q5, S5, PF5, A.E1, R.E1, A.E2,R.E2, A.E3, R.E3, A.E4, R.E4, A.E5, R.E5

Relay parameters table
-9.15L 80.1 -9.25L 80.2 -9.35L 80.3 -9.45L 80.4 -9.55L 80.5

Loop 1Loop 2
1P3WFreq.,UL1,UL2,UL12,IL1-1,IL2-1,PL1-1,PL2-1,P.SUM1,QL1-1,QL2-1,Q SUM1,SL1-1,SL2-1,S.SUM1,PFL1-1,PFL2-1,PF AVG1Freq.,UL1,UL2,UL12,IL1 1,IL2-1,IL1-2,IL2-2,PL1-1,PL2-1,P SUM1,QL1-1,QL2-1,Q.SUM1,SL1-1,SL2-1,S SUM1,PFL1-1,PFL2-1,PF AVG1,PL1-2,PFL2-2,P.SUM2,QL1-2,QL2-2,Q SUM2,SL1 2,SL2-2,S.SUM2,PFL1-2,PFL2-2,PF AVG2
3P3WFreq.UAB UBC UCA ULL A - VG JA1 JB1,IC1, I.AVG1,PA1,PC1,P.SUM1,QA1,QC1,Q.SUM1,SA1,SC1,S SUM1,PFA1,PFC1,PF AVG1Freq.,UAB,UBC,UCA,ULL AVG JA1,IB1,IC1,I AVG1,IA2,IB2,IC2,I AVG2,PA1,PC1,P SUM1,QA1,QC1,Q SUM1,SA1,SC1,S.SUM1,PFA1,PFC1,PF AVG1,PA2,PC2,P.SUM2,QA2,QC2,Q SUM2,SA2,SC2,S.SUM2,PFA2,PFC2,PF AVG2
3P4W Loop11P2W Loop 5
Freq UA UB UC ULN AVG UAB UBÇUCA,ULL.AVG,IA,IB,IC,IN,I.AVG,PA,PB,PC,P.SUM,QA,QB,QC,Q SUM,SA,SB,SC,S SUM,PFA,PFB,PFC,PF AVGFreq,U1,I1,I2,I3,I4,I5,P1,Q1,S1,PF1,P2 Q2 S2 PF2 P3 Q3 S3 PF3 P4 Q4S4,PF4,P5,Q5,S5,PF5

Programming Level

Communication Group

Advantech WISE-M502 - Communication Group - 1
Station number Addr/001

Advantech WISE-M502 - Communication Group - 2
Transmission rate: Baud/9600

Advantech WISE-M502 - Communication Group - 3
Parity Check: Prity/N.8.2

Advantech WISE-M502 - Communication Group - 4
Data Format: Forma /HI Hi/Lo (Data for the Double Word you can decide High Word or Low Word first previous)

Advantech WISE-M502 - Communication Group - 5
General or advanced function selection: Prog/Basic

Advantech WISE-M502 - Communication Group - 6
User-defined address buffer (Schedule 1)

Advantech WISE-M502 - Communication Group - 7

Advantech WISE-M502 - Communication Group - 8

Advantech WISE-M502 - Communication Group - 9
User-defined address buffer (Schedule 1)

Programming Level

TimeGroup

Advantech WISE-M502 - TimeGroup - 1
Factory reset: Initialization 7170:

Appendix A

I/O Modbus Mapping Table

A.1 I/O Modbus Mapping Table

1P2W

Rs485 Communication

Name Address RangeExplain Initial R/W
Freq. 0000h0.00~99.99 Frequency R
U1 0001h 0~9999 L-N voltageR
I10002h 0~9999 Group 1 loop currentR
I20003h 0~9999 Group 2 loop currentR
I30004h 0~9999 Group 3 loop currentR
I40005h 0~9999 Group 4 loop currentR
I50006h 0~9999 Group 5 loop currentR
P10007h-32768~32767Group 1 loop active powerR
Q10008h-32768~32767Group 1 loop reactive powerR
S10009h0~32767Group 1 loop apparent powerR
PF1000Ah-1.000~1.000Group 1 loop power factorR
P2000Bh-32768~32767Group 2 loop active powerR
Q2000Ch-32768~32767Group 2 loop reactive powerR
S2000Dh0~32767Group 2 loop apparent powerR
PF2000Eh-1.000~1.000Group 2 loop power factorR
P3000Fh-32768~32767Group 3 loop active powerR
Q30010h-32768~32767Group 3 loop reactive powerR
S30011h0~32767Group 3 loop apparent powerR
PF30012h-1.000~1.000Group 3 loop power factorR
P40013h-32768~32767Group 4 loop active powerR
Q40014h-32768~32767Group 4 loop reactive powerR
S40015h0~32767Group 4 loop apparent powerR
PF40016h-1.000~1.000Group 4 loop power factorR
P50017h-32768~32767Group 5 loop active powerR
Q50018h-32768~32767Group 5 loop reactive powerR
S50019h0~32767Group 5 loop apparent powerR
PF5001Ah-1.000~1.000Group 5 loop power factorR
Reserved001Bh~0026h
A.E10027h 0~99999.9kWhLoop1 total active energy (High Word)R
A.E10028hLoop1 total active energy (Low Word)R
R.E10029h 0~99999.9kVARhLoop1 reactive power (High Word)R
R.E1002AhLoop1 reactive power (Low Word)R
A.E2002Bh0~99999.9kWhLoop2 total active energy (High Word)R
A.E2002ChLoop2 total active energy (Low Word)R
R.E2002Dh0~99999.9kVARhLoop2 reactive power (High Word)R
R.E2002EhLoop2 reactive power (Low Word)R
A.E3002Fh0~99999.9kWhLoop3 total active energy (High Word)R
A.E3 0030hLoop3 total active energy (Low Word)R
R.E3 0031h0~99999.9kVARhLoop3 reactive power (High Word)R
R.E3 0032hLoop3 reactive power (Low Word)R
A.E4 0033h0~99999.9kWhLoop4 total active energy (High Word)R
A.E4 0034hLoop4 total active energy (Low Word)R
R.E4 0035h0~99999.9kVARhLoop4 reactive power (High Word)R
R.E4 0036hLoop4 reactive power (Low Word)R
A.E5 0037h0~99999.9kWhLoop5 total active energy (High Word)R
A.E5 0038hLoop5 total active energy (Low Word)R
R.E5 0039h0~99999.9kVARhLoop5 reactive power (High Word)R
R.E5 003AhLoop5 reactive power (Low Word)R

Relay Status and Control (CODE: 01h, 05h):

0000hRelay 1 bit0~bit4 behalf relay 1~relay5state,1=on, 0=off;code 05 is relaycontrol, at register address writeR/W
0001hRelay 2
0002hRelay 3
0003hRelay 4
0004hRelay 5

General operating Level( CODE : 03h ):

WIRE 003Fh0~50:1P2W1:1P3W2:3P3W3:3P4W4:3P3W-b5:3P4W-bR
LOOP 0040h0~1Loop0: 5 LoopR
FLASH 0041h0~65535FLASH remaining time R

Programming Level (CODE: 03h, 06h, 10h): Input function group

U.UNIT0043h0~1PT primary voltage unit0:V1:kV0R/W
PT.PRI0044h0~10000PT primary voltage5000R/W
PT.SEC0045hPT secondary voltage5000R/W
CT.PRI0046hCT primary current50R/W
V.UNT 0047h0~4Voltage display unit and resolution setting0:0.1(V)1:1(V)2:0.01k(V)3:0.1k(V)4:1k(V)0R/W
I.UNT 0048h0~3Current display units and resolution setting0:0.001(A)1:0.01(A)2:0.1(A)3:1(A)0R/W
W.UNT 0049h0~7Power display unit and resolution settings0:0.1(W)1:1(W)2:0.01k(W)3:0.1k(W)4:1k(W)5:0.01M(W)6:0.1M(W)7:1M(W)2R/W
Lo.CUT 004Ah0~10000Current displaylow cut 40 R/W
P.CODE 004Bh0~9999Modify the P.COD 1000 R/W
b.Light004Ch0~15Backlight time 0(Always lights)~15Min1R/W
dSPLY004Dh2 Loop 0~155 Loop 0~36Select Permanent screen2 Loop==>0:Freq.1:U12:I13:I24:P15:Q16:S1 7:PF18:P29:Q210:S2 11:PF212:A.E1 13:R.E114:A.E2 15:R.E25 Loop==>0:Freq.1:U12:I13:I24:I35:I46:I57:P18:Q19:S110:PF111:P212:Q213:S214:PF215:P316:Q317:S318:PF319:P420:Q421:S422:PF423:P524:Q525:S526:PF527:A.E1 28:R.E1 29:A.E230:R.E2 31:A.E3 32:R.E3 33:A.E434:R.E4 35:A.E5 36:R.E50R/W
F.LOCK004Eh0~30:NONE 1:USER 2.ENG. 3:ALL0R/W
EEP STS-TUS004Fh0~30:OK 1:EEPROMNG 2:FLASHING3:EEPROM & FLASHING0R
tL.rst0050hClear Energy (Write 2100)0R/W

Relay output function group

RY1.SL 0051h2 Loop0~115 Loop0~26Relay 1 action parameters2 Loop==>0:Freq.1:U12:I13:I24:P15:Q16:S1 7:PF18:P29:Q210:S2 11:PF25 Loop==>0:Freq.1:U12:I13:I24:I35:I46:I57:P18:Q19:S110:PF111:P212:Q213:S214:PF215:P316:Q317:S318:PF319:P420:Q421:S422:PF423:P524:Q525:S526:PF52R/W
RY1.MD 0052h 0~5Relay 1 action mode0:OFF 1:Lo2:Hi 3:Lo.HLd4:Hi.HLd5:RO2R/W
RY1.SP 0053h -32768~32767Relay 1 set point1000R/W
RY1.Sb 0054h 0~9999 Relay1 start band 0 R/W
RY1.Sd 0055h0000~5999(0.1second)Relay1start delay time 0 R/W
RY1.Hy 0056h 0~9999 Relay1 hysteresis time0 R/W
RY1.rd0057h0000~5999(0.1second)Relay 1 start delay time0 R/W
RY1.Fd0058h0000~5999(0.1second)Relay 1 de-energizeddelaytime0R/W
RY2.SL 0059h2 Loop0~115 Loop0~26Relay 2 action parameters2 Loop==>0:Freq.1:U12:I13:I24:P15:Q16:S1 7:PF18:P29:Q210:S2 11:PF25 Loop==>0:Freq.1:U12:I13:I24:I35:I46:I57:P18:Q19:S110:PF111:P212:O213:S214:PF215:P316:Q317:S318:PF319:P420:Q421:S422:PF423:P524:Q525:S526:PF52R/W
RY2.MD 005Ah0~5Relay 2 action mode0:OFF 1:Lo2:Hi 3:Lo.HLd4:Hi.HLd5:RO2R/W
RY2.SP 005Bh-32768~32767 Relay 2set point2000R/W
RY2.Sb 005Ch0~9999 Relay 2 start band 0 R/W
RY2.Sd 005Dh0000~5999(0.1second)Relay 2 start delay time0 R/W
RY2.Hy 005Eh0~9999 Relay 2 hysteresis time 0 R/W
RY2.rd005Fh0000~5999(0.1second)Relay 2 start delay time0 R/W
RY2.Fd 0060h0000~5999(0.1second)Relay 2 de-energizeddelay time 0 R/W
RY3.SL 0061h2 Loop0~115 Loop0~26Relay 3 action parameters2Loop==>0:Freq.1:U12:I13:I24:P15:Q16:S1 7:PF18:P29:Q210:S2 11:PF25Loop==>0:Freq.1:U12:I13:I24:I35:I46:I57:P18:Q19:S110:PF111:P212:Q213:S214:PF215:P316:Q317:S318:PF319:P420:Q421:S422:PF423:P524:Q525:S526:PF52R/W
RY3.MD 0062h 0~5Relay 3 action mode0:OFF 1:Lo2:Hi 3:Lo.HLd4:Hi.HLd5:RO2R/W
RY3.SP 0063h -32768~32767 Relay 3 set point 3000 R/W
RY3.Sb 0064h 0~9999 Relay 3 start band 0 R/W
RY3.Sd 0065h0000~5999(0.1second)Relay 3 start delay time0 R/W
RY3.Hy 0066h 0~9999 Relay 3 hysteresis time 0 R/W
RY3.rd0067h0000~5999(0.1second)Relay 3 start delay time0 R/W
RY3.Fd 0068h0000~5999(0.1second)Relay 3 de-energizeddelay time 0 R/W
RY4.SL 0069h2 Loop0~115 Loop0~26Relay 4 action parameters2 Loop==>0:Freq.1:U12:I13:I24:P15:Q16:S1 7:PF18:P29:Q210:S2 11:PF25 Loop==>0:Freq.1:U12:I13:I24:I35:I46:I57:P18:Q19:S110:PF111:P212:Q213:S214:PF215:P316:Q317:S318:PF319:P420:Q421:S422:PF423:P524;Q525:S526:PF52R/W
RY4.MD 006Ah 0~5Relay 4 action mode0:OFF 1:Lo2:Hi 3:Lo.HLd4:Hi.HLd5:RO2R/W
RY4.SP006Bh-32768~32767 Relay 4 set point 4000 R/W
RY4.Sb 006Ch 0~9999 Relay 4 start band 0 R/W
RY4.Sd 006Dh0000~5999(0.1second)Relay 4 start delay time0 R/W
RY4.Hy 006Eh 0~9999 Relay 4 hysteresis time 0 R/W
RY4.rd006Fh0000~5999(0.1second)Relay 4 start delay time0 R/W
RY4.Fd 0070h0000~5999(0.1second)Relay 1 de-energizeddelay time 0 R/W
RY5.SL 0071h2 Loop0~115 Loop0~26Relay 5 action parameters2 Loop==>0:Freq.1:U12:I13:I24:P15:Q16:S1 7:PF18:P29:Q210:S2 11:PF25 Loop==>0:Freq.1:U12:I13:I24:I35:I46:I57:P18:Q19:S110:PF111:P212:Q213:S214:PF215:P316:Q317:S318:PF319:P420:Q421:S422:PF423:P524:Q525:S526:PF52R/W
RY5.MD 00772h 0~5Relay 5 action mode0:OFF 1:Lo2:Hi 3:Lo.HLd4:Hi.HLd5:RO2R/W
RY5.SP 00773h -32768~32767 Relay 5 set point 5000 R/W
RY5.Sb 00774h 0~9999Relay 5 start band 0 R/W
RY5.Sd 00775h0000~5999(0.1second)Relay 5 start delay time0 R/W
RY5.Hy 00776h 0~9999Relay 5 hysteresis time 0 R/W
RY5.rd0077h0000~5999(0.1second)Relay 5 start delay time0 R/W
RY5.Fd 0078h0000~5999(0.1second)Relay 5 de-energizeddelay time 0 R/W

Communication function group

Addr007Bh1~255Station number1R/W
Baud007Ch0~5Transmission rate0:12001:24002:48003:96004:192005:384003R/W
Prity 007Dh 0~3Parity Check0:N.8.11:N.8.22:E.8.1 3:O.8.11R/W
Format007Eh0~10:High 1:Lo0R/W

Date Time function group

Year 007Fh 2000~2099Year2012R/W
Month0080h1~12Month1R/W
Day0081h1~31Date1R/W
Hour0082h0~23Time0R/W
Minute0083h0~59Minute0R/W
Second0084h0~59Second0R/W

FLASH read(CODE: 03h, 06h)

0200h The number of read items Reach record WORD R
0201h Unread items R
0202hRead the next record, if no data returned error code 0020hR
0203h 0~2Read status reports0:Clear all records1:Give up this read2:Read successfullyW
0204H 0~1 Stop recording0:Stop1:Restart1R

FLASH setting ( CODE : 03h , 06h , 10h )

0210h 0~10:Full Record 1:individual choice 0 R/ W
0211h 1~32767The value of the recording interval15 R /W
0212h 0~3Recording interval time units0:sec 1:min2:hour3:day1R
0213h 2000~2099 Start recording time -Year2012 R/ W
0214h 1~12Start recording time -Month1 R/ W
0215h 1~31Start recording time -Day1 R/ W
0216h 0~23Start recording time -Hour0 R/ W
0217h 0~59Start recording time -Minute0 R/ W
0218h 0~59Start recording time -Second0 R/ W
0219h 2000~2099 Stop recording time- Year2012 R/ W
021Ah1~12Stop recording time- Month1R/ W
021Bh1~31Stop recording time- Day1R/ W
021Ch 0~23Stop recording time- Hour0 R/ W
021Dh 0~59Stop recording time- Minute0 R/ W
021Eh0~59Stop recording time- Second0R /W
021Fh0~1Stop / Start recording0:Stop1:Start0R
Record0220hR/W
Record0221h R/W
Record0222h R/WRecord field, store the recorded content index
Record0223h R/W
Record0224h R/W2 Loop==>
Record0225h R/W0:none1: Freq. 2: U1 3: I14: I25: P1
Record0226h R/W6:Q1 7:S1 8:PF1 9:P2 10:Q2 11:S2
Record0227h R/W12:PF2 13:A .E1 14:R .E1 15:A .E2 16:R .E2
Record0228h R/W5 Loop==>
Record0229h R/W0:none1: Freq. 2: U1 3: I14: I25: I3
Record022Ah R/W6:I4 7:I5 8:P1 9:Q1 10:S1 11:PF1
Record022Bh R/W12:P2 13:Q2 14:S2 15:PF2 16:P3 17:Q3
Record022Ch R/W18:S3 19:PF3 20:P4 21:Q4 22:S4
Record022Dh R/W23:PF4
Record022Eh R/W24:P5 25:Q5 26:S5 27:PF5 28:A .E1
Record022Fh R/W29:R .E1 30:A .E2 31:R .E2 32:A .E3
Record0230h R/W33:R .E3
Record0231h R/W34:A .E4 35:R .E4 36:A .E5 37:R .E5
Record0232h
Record0233h R/WR/W
Record0234h R/W2 loop 0~16
Record0235h R/W5 loop 0~37
Record0236h R/W
Record0237h R/W
Record0238h R/W
Record0239h R/W
Record023Ah R/Winitial(Full Record)
Record023Bh R/W2 loop==>Record field 01~Record field
Record023Ch R/W16 Sequence 1~16 ,Record
Record023Dh R/Wfield17~Record field 41 are all 0
Record023Eh R/W5 loop==>Record field 01~Record field37
Record023Fh R/WSequence1~37, Record38~Record field41 are all 0
Record0240h R/Winitial
Record0241h R/WRecord field 01~Record field 41 are all 0
Record0242h R/W
Record0243h R/W
Record0244h R/W
Record0245h R/W
Record0246h R/W
Record0247h R/W
Record0248h R/W
Name Address RangeExplain Initial R/W
Freq. 0000h45.00~65.00 Frequency R
UL1 0001h 0~9999 L1-N Voltage R
UL2 0002h 0~9999 L2-N Voltage R
UL120003h 0~9999 L1-L2 VoltageR
IL1-10004h 0~9999 Loop 1 L1 currentR
IL2-10005h 0~9999 Loop 1 L2 currentR
IL1-20006h 0~9999 Loop 2 L1 currentR
IL2-20007h 0~9999 Loop 2 L2 currentR
PL1-10008h-32768~32767Loop 1 L1-N phase active powerR
PL2-10009h-32768~32767Loop 1 L2-N phase active powerR
P.SUM1000Ah-32768~32767Loop 1 total active powerR
QL1-1000Bh-32768~32767Loop 1 L1-N phase reactive powerR
QL2-1000Ch-32768~32767Loop 1 L2-N phase reactive powerR
Q.SUM1000Dh-32768~32767Loop 1 total reactive powerR
SL1-1000Eh0~32767Loop 1 L1-N apparent powerR
SL2-1000Fh0~32767Loop 1 L2-N apparent powerR
S.SUM10010h0~32767Loop 1 total apparent powerR
PFL1-10011h-1.000~1.000Loop 1 L1-N Power FactorR
PFL2-10012h-1.000~1.000Loop 1 L2-N Power FactorR
PF.AVG0013h-1.000~1.000Loop 1 average power factorR
PL1-20014h-32768~32767Loop 2 L1-N phase active powerR
PL2-20015h-32768~32767Loop 2 L2-N phase active powerR
P.SUM20016h-32768~32767Loop 2 total active powerR
QL1-20017h-32768~32767Loop 2 L1-N apparent powerR
QL2-20018h-32768~32767Loop 2 L2-N apparent powerR
Q.SUM20019h-32768~32767Loop 2 total reactive powerR
SL1-2001Ah0~32767Loop 2 L1-N apparent powerR
SL2-2001Bh0~32767Loop 2 L2-N apparent powerR
S.SUM2001Ch0~32767Loop 2 total apparent powerR
PFL1-2001Dh-1.000~1.000Loop 2 L1-N Power FactorR
PFL2-2001Eh-1.000~1.000Loop 2 L2-N Power FactorR
PF.AVG2001Fh-1.000~1.000Loop 2 average power factorR
A.E10027h 0~99999.9kWhLoop 1 total active energy (High Word)R
A.E10028hLoop 1 total active energy (Low Word)R
R.E10029h0~99999.9kVAR hLoop 1 total reactive energy (High Word)R
R.E1002AhLoop 1 total reactive energy (Low Word)R
A.E2002Bh0~99999.9kWhLoop 2 total active energy (High Word)R
A.E2002ChLoop 2 total active energy (Low Word)R
R.E2002Dh0~99999.9kVAR hLoop 2 total reactive energy (High Word))R
R.E2 002EhLoop 2 total reactive energy (Low Word)R

Relay Status and Control( CODE : 01h , 05h ):

0000hRelay 1 bit0~bit4 behalf relay1~relay 5state,1=on, 0=off;code05 is relaycontrol, at registeraddress writeR/W
0001hRelay 2
0002hRelay 3
0003hRelay 4
0004hRelay 5

General operating Level (CODE: 03h):

WIRE 003Fh 0~50:1P2W1:1P3W2:3P3W3:3P4W4:3P3W-b5:3P4W-bR
LOOP 0040h 0~1number of loop0: 1LOOP 1: 2 LOOP R
FLASH 0041h 0~65535 FLASH remaining time R

Programming Level ( CODE: 03h, 06h, 10h ) Input function group

U.UNIT0043h0~1PT primary voltage unit0:V 1:kV0R/W
PT.PRI0044hPT primary voltage5000R/W
PT.SEC0045hPT secondary voltage5000R/W
CT.PRI0046hCT primary current50R/W
V.UNT0047h0~4Voltage display unit and resolution setting0:0 1(V)1:1(V)2:001k(V)3:01k(V)4: 1k(V)0R/W
I.UNT0048h0~3Current display units and resolution setting0:0 001(A)1:001(A)2:01(A)31(A:)0R/W
W.UNT0049h0~7Power display unit and resolution settings0:0 1(W )1:1(W )2:001k(W )3:01k(W )4: 1k(W )5:001M(W )6:01M(W )7: 1M(W )2R/W
Lo.CUT004Ah0~10000Current display low cut40R/W
P.CODE004Bh0~9999Modify the P.COD1000R/W
b Light004Ch0 ~ 15Backlight time0 ( Always lights )~ 15Min1R/W
dSPLY 004Dh1 Loop 0 ~ 192 Loop 0 ~ 35Select Permanent screen1Loop==>0:Freq1:UL12:UL23:UL124:IL1-15:IL2-16:PL1-17:PL2-18:P SUM19:QL1-110:QL2-111:Q SUM112:SL1-113:SL2-114:S SUM115:PFL1-116:PFL2-117:PF AVG118:A E119:RE12Loop ==>0:Freq1:UL12:UL23:UL124:IL1-15:IL2-16:IL1-27:IL2-28:PL1-19:PL2-110:P.SUM111:QL1-112:QL2-113:Q.SUM114:SL1-115;SL2-116:S.SUM117:PFL1-118:PFL2-119;PF.AVG120:PL1-221:PL2-222:P.SUM223:QL1-224:QL2-225:Q.SUM226:SL1-227:SL2-228:S.SUM229:PFL1-230:PFL2-231:PF.AVG232:A E1 33:RE1 34:A E2 35:RE20R
F.LOCK004Eh0~30:NONE 1:USER 2.ENG.3:ALL0R
EEP STS-TUS004Fh 0~30:OK 1:EEPROMNG 2:FLASHING 3:EEPROM & FLASHING0R
tL.rst 0050hClear Energy (Write 2100)0 R/W

Relay output function group

RY1.SL 0051h1Loop 0~172Loop 0~31Relay 1 action parameters1 Loop==>0: Freq. 1:UL1 2:UL2 3:UL124:IL1-1 5:IL2-1 6:PL1-1 7:PL2-18:P.SUM1 9:QL1-1 10:QL2-111:Q.SUM1 12:SL1-1 13:SL2-114:S.SUM1 15:PFL1-1 16:PFL2-117:PF.AVG12 Loop==>0:Freq. 1:UL1 2:UL2 3:UL124:IL1-1 5:IL2-1 6:IL1-2 7:IL2-28:PL1-1 9:PL2-1 10:P.SUM111:QL1-1 12:QL2-1 13:Q.SUM114:SL1-1 15;SL2-1 16:S.SUM117:PFL1-1 18:PFL2-1 19;PF.AVG120:PL1-2 21:PL2-2 22:P.SUM223:QL1-2 24:QL2-2 25:Q.SUM226:SL1-2 27:SL2-2 28:S.SUM229:PFL1-2 30:PFL2-2 31:PF.AVG24R/W
RY1.MD0052h0~5Relay 1 action mode0:OFF 1:Lo 2:Hi3:Lo.HLd4:Hi.HLd5:RO2R/W
RY1.SP0053h-32768~32767Relay 1 set point1000R/W
RY1.Sb0054h0~9999Relay 1 start band0R/W
RY1.Sd 0055h0000~5999(0.1second)Relay1start delay time0R/W
RY1.Hy0056h0~9999Relay 1 hysteresis time0R/W
RY1.rd0057h0000~5999(0.1second)Relay 1 start delay time0R/W
RY1.Fd 0058h0000~5999(0.1second)Relay 1 de-energizeddelay time 0 R/W
RY2.SL 0059h1Loop 0~172 Loop 0~31Relay 2 action parameters1 Loop==>0: Freq. 1:UL1 2:UL2 3:UL124:IL1-1 5:IL2-1 6:PL1-1 7:PL2-18:P.SUM1 9:QL1-1 10:QL2-111:Q.SUM1 12:SL1-1 13:SL2-114:S.SUM1 15:PFL1-1 16:PFL2-117:PF.AVG12 Loop==>0:Freq. 1:UL1 2:UL2 3:UL124:IL1-1 5:IL2-1 6:IL1-2 7:IL2-28:PL1-1 9:PL2-1 10:P.SUM111:QL1-1 12:QL2-1 13:Q.SUM114:SL1-1 15;SL2-1 16:S.SUM117:PFL1-1 18:PFL2-1 19:PF.AVG120:PL1-2 21:PL2-2 22:P.SUM223:QL1-2 24:QL2-2 25:Q.SUM226:SL1-2 27:SL2-2 28:S.SUM229:PFL1-2 30:PFL2-2 31:PF.AVG24R/W
RY2.MD 005Ah 0~5Relay 2 action mode0:OFF 1:Lo 2:Hi3:Lo.HLd4:Hi.HLd5:RO2R/W
RY2.SP 005Bh -32768~32767 Relay 2set point 2000 R/W
RY2.Sb005Ch0~9999Relay 2 start band0R/W
RY2.Sd005Dh0000~5999(0.1second)Relay 2 start delay time0R/W
RY2.Hy005Eh0~9999Relay 2 hysteresis time0R/ W
RY2.rd005Fh0000~5999(0.1second)Relay 2 start delay time0R/W
RY2.Fd0060h0000~5999(0.1second)Relay 2 de-energizeddelay time0R/W
RY3.SL0061h1Loop 0~172Loop 0~31Relay 3 action parameters1 Loop==>0: Freq. 1:UL1 2:UL2 3:UL124:IL1-1 5:IL2-1 6:PL1-1 7:PL2-18:P.SUM1 9:QL1-1 10:QL2-111:Q.SUM1 12:SL1-1 13:SL2-114:S.SUM1 15:PFL1-1 16:PFL2-117:PF.AVG12 Loop==>0:Freq. 1:UL1 2:UL2 3:UL124:IL1-1 5:IL2-1 6:IL1-2 7:IL2-28:PL1-1 9:PL2-1 10:P.SUM111:QL1-1 12:QL2-1 13:Q.SUM114:SL1-1 15:SL2-1 16:S.SUM117:PFL1-1 18:PFL2-1 19;PF.AVG120:PL1-2 21:PL2-2 22:P.SUM223:QL1-2 24:QL2-2 25:Q.SUM226:SL1-2 27:SL2-2 28:S.SUM229:PFL1-2 30:PFL2-2 31:PF.AVG24R/W
RY3.MD 0062h 0~5Relay 3 action mode0:OFF 1:Lo 2:Hi3:Lo.HLd4:Hi.HLd5:RO2R/W
RY3.SP 0063h -32768~32767 Relay 3action mode 3000 R/W
RY3.Sb 0064h 0~9999 Relay 3 start band 0 R/W
RY3.Sd 0065h0000~5999(0.1second)Relay 3 start delay time 0 R/W
RY3.Hy 0066h 0~9999 Relay 3 hysteresis time 0 R/W
RY3.rd 0067h0000~5999(0.1second)Relay 3 start delay time 0 R/W
RY3.Fd 0068h0000~5999(0.1second)Relay 3 de-energized delay time 0 R/W
RY4.SL 0069h1 Loop0~172 Loop0~31Relay 4 action parameters1 Loop==>0: Freq. 1:UL1 2:UL2 3:UL124:IL1-1 5:IL2-1 6:PL1-1 7:PL2-18:P.SUM1 9:QL1-1 10:QL2-111:Q.SUM1 12:SL1-1 13:SL2-114:S.SUM1 15:PFL1-1 16:PFL2-117:PF.AVG12 Loop==>0:Freq. 1:UL1 2:UL2 3:UL124:IL1-1 5:IL2-1 6:IL1-2 7:IL2-28:PL1-1 9:PL2-1 10:P.SUM111:QL1-1 12:QL2-1 13:Q.SUM114:SL1-1 15;SL2-1 16:S.SUM117:PFL1-1 18:PFL2-1 19;PF.AVG120:PL1-2 21:PL2-2 22:P.SUM223:QL1-2 24:QL2-2 25:Q.SUM226:SL1-2 27:SL2-2 28:S.SUM229:PFL1-2 30:PFL2-2 31:PF.AVG24R/W
RY4.MD006Ah0~5Relay 4 action mode0:OFF 1:Lo 2:Hi3:Lo.HLd4:Hi.HLd5:RO2R/W
RY4.SP006Bh-32768~32767Relay 4 set point4000R/W
RY4.Sb006Ch0~9999Relay 4 start band0R/W
RY4.Sd 006Dh0000~5999(0.1second)Relay 4 start delay time0R/W
RY4.Hy 006Eh 0~9999 Relay 4 hysteresis time 0 R/ W
RY4.rd 006Fh0000~5999(0.1second)Relay 4 start delay time0R/W
RY4.Fd 0070h0000~5999(0.1second)Relay 4 de-energizeddelay time0R/W
RY5.SL 0071h1 Loop0~172 Loop0~31Relay 5 action parameters1 Loop==>0: Freq. 1:UL1 2:UL23:UL124:IL1-1 5:IL2-1 6:PL1-17:PL2-18:P.SUM1 9:QL1-110:QL2-111:Q.SUM1 12:SL1-113:SL2-114:S.SUM1 15:PFL1-116:PFL2-117:PF.AVG12 Loop==>0:Freq. 1:UL1 2:UL23:UL124:IL1-1 5:IL2-1 6:IL1-27:IL2-28:PL1-1 9:PL2-110:P.SUM111:QL1-1 12:QL2-113:Q.SUM114:SL1-1 15:SL2-116:S.SUM14R/W
RY5.MD 0072h 0~5Relay 5 action mode0:OFF 1:Lo 2:Hi3:Lo.HLd4:Hi.HLd5:RO2R/W
RY5.SP 0073h -32768~32767 Relay 5 set point 5000 R/W
RY5.Sb 0074h 0~9999 Relay 5 start band 0 R/W
RY5.Sd 0075h0000~5999(0.1second)Relay 5 start delay time 0R/W
RY5.Hy 0076h 0~9999 Relay 5 hysteresis time 0R/W
RY5.rd0077h0000~5999(0.1second)Relay 5 start delay time 0R/W
RY5.Fd0078h0000~5999(0.1second)Relay 5 de-energized-delay time0

Communication function group

Addr007Bh1~255Station number1R/W
Baud007Ch0~5Transmission rate0:12001:24002:48003:96004:192005:384003R/W
Prity007Dh0~3Parity Check0:N.8.1 1:N.8.2 2:E.8.1 3:O.8.11R/W
Format007Eh0~10:High 1:Lo0R/W
Date Time function group
Year007Fh2000~2099Year2012R/W
Month0080h1~12Month1R/W
Day0081h1~31Date1R/W
Hour0082h0~23Time0R/W
Minute0083h0~59Minute0R/W
Second 0084h 0~59 Second 0 R/W

Date Time function group

Year 007Fh2000~2099Year 2012 R/W
Month 0080h1~12 Month1 R/W
Day0081h 1~31Date 1 R/W
Hour0082h0~23 Time0 R/W
Minute0083h0~59 Minute0 R/W
Second0084h0~59 Second0 R/W

FLASHread( CODE : 03h , 06h )

0200hThe number of each record WORD
0201hUnread itemsR
0202hRead the next record, if no data returned error code 0020hR
0203h0~2Read status reports0:Clear all records1:Give up this read2:Read successfullyW
0204H0~1Stop recording0:Stop1:Restart1R/W

FLASH setting ( CODE : 03h , 06h , 10h )

0210h0~10:Full Record 1:Individual choice0R/ W
0211h1~32767The value of the recording interval15 R /W
0212h0~3Recording interval time units0:sec 1:min2:hour3:day1R/ W
0213h2000~2099Start recording time -Year2012R/ W
0214h1~12Start recording time -Month1R/ W
0215h1~31Start recording time -Day1R/ W
0216h0~23Start recording time -Hour0R/ W
0217h0~59Start recording time -Minute0R/ W
0218h0~59Start recording time -Second0R/ W
0219h2000~2099Stop recording time- Year2012R/ W
021Ah1~12Stop recording time- Month1R/ W
021Bh1~31Stop recording time- Day1R/ W
021Ch0~23Stop recording time- Hour0R/ W
021Dh0~59Stop recording time- Minute0R/ W
021Eh0~59Stop recording time- Second0R /W
021Fh0~1Stop / Start recording0:Stop1:Start0R/ W
Record field01 0220h1loop 0~202loop 0~36Record field, store the recorded content index1 Loop==>0:none1: Freq. 2:UL1 3:UL2 4:UL125:IL1-1 6: IL2-1 7: PL1-1 8: PL2-1 9:P. SUM110:QL1-1 11: Q. SUM1 13:SL1-114:SL2-1 15: S. SUM1 16: PFL1- 117:PFL2- 118:PF.AVG1 19:A .E1 20:R .E12 Loop==>0:none1: Freq. 2:UL1 3:UL2 4:UL125:IL1-16: IL2-1 7: IL1-2 8: IL2- 29: PL1- 110:PL2-1 11: P. SUM1 12: QL1- 113:QL2- 114:Q.SUM1 15: SL1-1 16: SL2- 117: S. SUM118:PFL1-1 19: PFL2-1 20: PF. AVG121: PL1-222:PL2-2 23: P. SUM2 24: QL1- 225:QL2- 226:Q.SUM2 27: SL1-2 28: SL2- 229: S. SUM230:PFL1-2 31: PFL2-2 32: PF. AVG2 33:A. E134:R .E1 35:A .E2 36:R .E2R/ W
Record field02 0221h R/ W
Record field03 0222h R/ W
Record field04 0223h R/ W
Record field05 0224h R/ W
Record field06 0225h R/ W
Record field07 0226h R/ W
Record field08 0227h R/ W
Record field09 0228h R/ W
Record field10 0229h R/ W
Record field11 022Ah R/ W
Record field12 022Bh R/ W
Record field13 022Ch R/ W
Record field14 022Dh R/ W
Record field15 022Eh R/ W
Record field16 022Fh R/ W
Record field17 0230h R/ W
Record field18 0231h R/ W
Record field19 0232hinitial(Full Record)1 loop==>Record field01~Record field20Sequence1 ~20 ,Record field21~ Record field41are all 02 loop==>Record field01~Recordfield36Sequence1 ~36 ,Record field37~ Record field41 are all 0initialRecord field01~Record field41 are all 0R/ W
Record field20 0233h R/ W
Record field21 0234h R/ W
Record field22 0235h R/ W
Record field23 0236h R/ W
Record field24 0237h R/ W
Record field25 0238h R/ W
Record field26 0239h R/ W
Record field27 023Ah R/ W
Record field28 023Bh R/ W
Record field29 023Ch R/ W
Record field30 023Dh R/ W
Record field31 023Eh R/ W
Record field32 023Fh R/ W
Record field33 0240h R/ W
Record field34 0241h R/ W
Record field35 0242h R/ W
Record field36 0243h R/ W
Record field37 0244h R/ W
Record field38 0245h R/ W
Record field39 0246h R/ W
Record field40 0247h R/ W
Record field41 0248h R/ W

3P3W Measurement screen quickly read the information( CODE :03h):

Name Address Range Explain Initial R/W
Freq 0000h 4500~6500 Frequency R
UAB 0001h 0~9999 A-B phase line voltage R
UBC 0002h 0~9999 B-C phase line voltage R
UCA 0003h 0~9999 C-A phase line voltage R
ULL.AVG0004h0~9999Average line voltageR
IA10005h 0~9999 Loop 1 A phase line current R
IB10006h 0~9999 Loop 1 B phase line current R
IC10007h 0~9999 Loop 1 C phase line current R
I.AVG1)0008h0~9999Loop 1 Average line currentR
IA20009h 0~9999 Loop 2 A phase line current R
IB2000Ah0~9999Loop 2 B phase line currentR
IC2000Bh0~9999Loop 2 C phase line currentR
I.AVG2000Ch0~9999Loop 2 Average line currentR
PA1000Dh-32768~32767Loop 1 A-B phase active powerR
PC1000Eh-32768~32767Loop 1 C-B phase active powerR
P.SUM1000Fh-32768~32767Loop 1 total active powerR
QA10010h-32768~32767Loop 1 A-B phase reactive powerR
QC10011h-32768~32767Loop 1 C-B phase reactive powerR
Q.SUM10012h-32768~32767Loop 1 total reactive powerR
SA1 0013h 0~32767 Loop 1 A-B apparent power R
SC10014h0~32767Loop 1 C-B apparent powerR
S.SUM10015h0~32767Loop 1 total apparent powerR
PFA10016h-1 000~1.000Loop 1 A-B phase Power FactorR
PFC1 0017h -1 000~1.000 Loop 1 B-C phase Power Factor R
PF.AVG10018h-1 000~1.000Loop 1 average power factorR
PA20019h-32768~32767Loop 2 A-B phase active powerR
PC2001Ah-32768~32767Loop 2 C-B phase active powerR
P.SUM2001Bh-32768~32767Loop 2 total active powerR
QA2001Ch-32768~32767Loop 2 A-B phase reactive powerR
QC2 001Dh -32768~32767 Loop 2 C-B phase reactive power R
Q.SUM2001Eh-32768~32767Loop 2 total reactive powerR
SA2001Fh0~32767Loop 2 A-B apparent powerR
SC20020h0~32767Loop 2 C-B apparent powerR
S.SUM20021h0~32767Loop 2 total apparent powerR
PFA20022h-1 000~1.000Loop 2 A-B phase Power FactorR
PFC2 0023h -1 000~1.000 Loop 2 B-C phase Power Factor R
PF.AVG20024h-1 000~1.000Loop 2 average power factorR
A.E10027h 0~99999kWhLoop 1 total active energy (High Word)R
A.E10028hLoop 1 total active energy (Low Word)R
R.E10029h 0~99999kVARhLoop 1 total reactive energy (High Word)R
R.E1002AhLoop 1 total reactive energy (Low Word)R
A.E2002Bh0~999999kWhLoop 2 total active energy (High Word)R
A.E2 002ChLoop 2 total active energy (Low Word)R
R.E2 002Dh0~999999kVARhLoop 2 total reactive energy (High Word)R
R.E2 002EhLoop 2 total reactive energy (Low Word)R

Relay Status and Control( CODE : 01h , 05h ):

0000hRelay 1 bit0~bit4 behalf relay1~relay 5state,1=on,0=off;code 05is relaycontrol, at registeraddress writeR/W
0001hRelay 2
0002hRelay 3
0003hRelay 4
0004hRelay 5

General operating Level( CODE : 03h , 06h , 10h ): Input Group

WIRE 003Fh 0~50:1P2W1:1P3W2:3P3W3:3P4W4:3P3W-b5:3P4W-bR
LOOP 0040h 0~1number of loop 0: 1LOOP 1: 2LOOP R
FLASH 00041h 0~65535 FLASH remaining timeR
U.UNIT0043h 0~1PT primary voltage unit 0:V 1:kV0R/W
PT. PRI0044hPT primary voltage5000R /W
PT. SEC0045hPT primary voltage5000R/W
CT.PRI0046hCT primary current50R/W
V.UNT0047h 0~4Voltage display unit and resolution setting0:0.1 1:1 2:0.01k 3:0.1k 4:1k (V)0R/W
I.UNT 0048h 0~3Current display units and resolution setting0:0.001 1:0.01 2:0.1 3:1 (A)0R/W
W.UNT 00049h 0~7Power display unit and resolution settings0:0.1 1:1 2:0.01k 3:0.1k 4:1k5:0.01M 6:0.1M 7:1M(W)0R/W
Lo.CUT004Ah0~10000Current display low cut40R/W
P.CODE004Bh0~9999Modify the P.COD1000R /W
b.Light004Ch0~15Backlight time 0(Always lights)~15Min1R/W
dSPLY 004Dh1Loop0~222Loop0~40Select Permanent screen1Loop==> 0:Freq. 1:UAB 2:UBC3:UCA 4:ULL.AVG 5: IA1 6:IB17:IC1 8:I .AVG1 9:PA1 10:PC111:P.SUM1 12:QA1 13:QC114:Q.SUM1 15:SA1 16:SC117:S.SUM1 18:PFA1 19:PFC120:PF.AVG1 21:A.E1 22;R.E12Loop==> 0:Freq. 1:UAB 2:UBC3:UCA 4:ULL.AVG 5:IA1 6:IB17:IC1 8:I.AVG1 9:IA2 10:IB211:IC2 12:I .AVG2 13:PA1 14:PC115:P.SUM1 16:QA1 17:QC118:Q.SUM1 19:SA1 20:SC121:S.SUM1 22:PFA1 23:PFC124:PF.AVG1 25:PA2 26:PC227:P.SUM2 28:QA2 29:QC230:Q.SUM2 31:SA2 32:SC233:S.SUM2 34:PFA2 35:PFC236:PF.AVG2 37:A.E1 38:R.E139:A.E2 40:R.E20R/W
F:LOCK 004Eh 0~3 0:NONE1:USER 2.ENG. 3:ALL 0 R/W
EEP STA-TUS004Fh 0~30:OK 1:EEPROMNG 2:FLASHING3:EEPROM & FLASHING0R
tL.rst 0050h ClearEnergy (Write 2100) 0 R/W

Relay output function group

RY1.SL0051h1Loop0~202Loop0~36Relay 1 action parameters1 Loop==>0:Freq. 1:UAB 2:UBC 3:UCA4:ULL.AVG 5:IA1 6:IB1 7:IC18:I.AVG1 9:PA1 10:PC111:P.SUM1 12:QA1 13:QC114:Q.SUM1 15:SA1 16:SC117:S.SUM1 18:PFA1 19:PFC120:PF.AVG12 Loop==>0:Freq. 1:UAB 2:UBC 3:UCA4:ULL.AVG 5:IA1 6:IB1 7:IC18:I.AVG1 9:IA2 10:IB2 11:IC212:I.AVG2 13:PA1 14:PC115:P.SUM1 16:QA1 17:QC118:Q.SUM1 19:SA1 20:SC121:S.SUM1 22:PFA1 23:PFC124:PF.AVG1 25:PA2 26:PC227:P.SUM2 28:QA2 29:QC230:Q.SUM2 31:SA2 32:SC233:S.SUM2 34:PFA2 35:PFC236:PF.AVG28R/W
RY1.MD0052h0~5Relay 1 action mode0:OFF 1:Lo 2:Hi3:Lo.HLd4:Hi.HLd5:RO2R/W
RY1.SP0053h-32768~32767Relay 1 set point1000R/W
RY1.Sb0054h0~9999Relay 1 start band0R/W
RY1.Sd0055h0000~5999(0.1second)Relay1start delay time0 R/W
RY1.Hy 0056h 0~9999Relay 1 hysteresis time 0 R/W
RY1.rd 0057h0000~5999(0.1second)Relay 1 start delay time 0 R/W
RY1.Fd 0058h0000~5999(0.1second)Relay 1 de-energizeddelay time 0 R/W
RY2.SL 9h1Loop 0~202Loop 0~36Relay 2 action parameters1Loop==>0:Freq. 1:UAB 2:UBC 3:UCA4:ULL.AVG 5:IA1 6:IB1 7:IC18:I.AVG1 9:PA1 10:PC111:P.SUM1 12:QA1 13:QC114:Q.SUM1 15:SA1 16:SC117:S.SUM1 18:PFA1 19:PFC120:PF.AVG12 Loop==>0:Freq. 1:UAB 2:UBC 3:UCA4:ULL.AVG 5:IA1 6:IB1 7:IC18:I.AVG1 9:IA2 10:IB2 11:IC212:I.AVG2 13:PA1 14:PC115:P.SUM1 16:QA1 17:QC118:Q.SUM1 19:SA1 20:SC121:S.SUM1 22:PFA1 23:PFC124:PF.AVG1 25:PA2 26:PC227:P.SUM2 28:QA2 29:QC230:Q.SUM2 31:SA2 32:SC233:S.SUM2 34:PFA2 35:PFC236:PF.AVG28R/W
RY2.MD005Ah0~5Relay 2 action mode0:OFF 1:Lo 2:Hi3:Lo.HLd4:Hi.HLd5:RO2R/W
RY2.SP005Bh-32768~32767Relay 2 set point2000R/W
RY2.Sb005Ch0~9999Relay 2 start band0R/W
RY2.Sd 005Dh0000~5999(0.1second)Relay 2 start delay time 0 R/W
RY2.Hy 005Eh 0~99999 Relay 2 hysteresis time 0 R/W
RY2.rd 005Fh0000~5999(0.1second)Relay 2 start delay time 0 R/W
RY2.Fd 0060h0000~5999(0.1second)Relay 2 de-energizeddelay time 0R/W
RY3.SL 0061h1Loop 0~202Loop 0~36Relay 3 action parameters1 Loop==>0:Freq. 1:UAB 2:UBC 3:UCA4:ULL.AVG 5:IA1 6:IB1 7:IC18:I.AVG1 9:PA1 10:PC111:P.SUM1 12:QA1 13:QC114:Q.SUM1 15:SA1 16:SC117:S.SUM1 18:PFA1 19:PFC120:PF.AVG12 Loop==>0:Freq. 1:UAB 2:UBC 3:UCA4:ULL.AVG 5:IA1 6:IB1 7:IC18:I.AVG1 9:IA2 10:IB2 11:IC212:I.AVG2 13:PA1 14:PC115:P.SUM1 16:QA1 17:QC118:Q.SUM1 19:SA1 20:SC121:S.SUM1 22:PFA1 23:PFC124:PF.AVG1 25:PA2 26:PC227:P.SUM2 28:QA2 29:QC230:Q.SUM2 31:SA2 32:SC233:S.SUM2 34:PFA2 35:PFC236:PF.AVG28R/W
RY3.MD 0062h 0~5Relay 3 action mode0:OFF 1:Lo 2:Hi3:Lo.HLd4:Hi.HLd5:RO2R/W
RY3.SP 0063h -32768~32767 Relay 3 action mode 3000 R/W
RY3.Sb 0064h 0~9999 Relay 3 start band 0 R/W
RY3.Sd 0065h0000~5999(0.1second)Relay 3 start delay time0 R/W
RY3.Hy 0066h 0~9999 Relay 3 hysteresis time 0 R/W
RY3.rd0067h0000~5999(0.1second)Relay 3 start delay time0 R/W
RY3.Fd0068h0000~5999(0.1second)Relay 3 de-energizeddelay time0R/W
RY4.SL 0069h1Loop 0~202Loop 0~36Relay 4 action parameters1 Loop==>0:Freq. 1:UAB 2:UBC 3:UCA4:ULL.AVG 5:IA1 6:IB1 7:IC18:I.AVG1 9:PA1 10:PC111:P.SUM1 12:QA1 13:QC114:Q.SUM1 15:SA1 16:SC117:S.SUM1 18:PFA1 19:PFC120:PF.AVG12 Loop==>0:Freq. 1:UAB 2:UBC 3:UCA4:ULL.AVG 5:IA1 6:IB1 7:IC18:I.AVG1 9:IA2 10:IB2 11:IC212:I.AVG2 13:PA1 14:PC115:P.SUM1 16:QA1 17:QC118:Q.SUM1 19:SA1 20:SC121:S.SUM1 22:PFA1 23:PFC124:PF.AVG1 25:PA2 26:PC227:P.SUM2 28:QA2 29:QC230:Q.SUM2 31:SA2 32:SC233:S.SUM2 34:PFA2 35:PFC236:PF.AVG28R/W
RY4.MD 006Ah 0~5Relay 4 action mode0:OFF 1:Lo 2:Hi3:Lo.HLd4:Hi.HLd5:RO2R/W
RY4.SP 006Bh -32768~32767 Relay 4 set point 4000 R/W
RY4.Sb 006Ch 0~9999 Relay 4 start band 0 R/ W
RY4.Sd 006Dh0000~5999(0.1second)Relay 4 start delay time0R/W
RY4.Hy006Eh0~9999Relay 4 hysteresis time0
RY4.rd006Fh0000~5999(0.1second)Relay 4 start delay time0
RY4.Fd0070h0000~5999(0.1second)Relay 4 de-energizeddelay time0
RY5.SL 0071h1Loop 0~202Loop 0~36Relay 5 action parameters1Loop==>0:Freq. 1:UAB 2:UBC 3:UCA4:ULL.AVG 5:IA1 6:IB1 7:IC18:I.AVG1 9:PA1 10:PC111:P.SUM1 12:QA1 13:QC114:Q.SUM1 15:SA1 16:SC117:S.SUM1 18:PFA1 19:PFC120:PF.AVG12 Loop==>0:Freq. 1:UAB 2:UBC 3:UCA4:ULL.AVG 5:IA1 6:IB1 7:IC18:I.AVG1 9:IA2 10:IB2 11:IC212:I.AVG2 13:PA1 14:PC115:P.SUM1 16:QA1 17:QC118:Q.SUM1 19:SA1 20:SC121:S.SUM1 22:PFA1 23:PFC124:PF.AVG1 25:PA2 26:PC227:P.SUM2 28:QA2 29:QC230:Q.SUM2 31:SA2 32:SC233:S.SUM2 34:PFA2 35:PFC236:PF.AVG28R/W
RY5.MD 0072h 0~5Relay 5 action mode0:OFF 1:Lo 2:Hi3:Lo.HLd4:Hi.HLd5:RO2R/W
RY5.SP 0073h -32768~32767 Relay 5 set point 5000 R/W
RY5.Sb 0074h 0~9999 Relay 5 start band 0 R/W
RY5.Sd 0075h0000~5999(0.1second)Relay 5 start delay time0R/W
RY5.Hy0076h0~9999Relay 5 hysteresis time0
RY5.rd0077h0000~5999(0.1second)Relay 5 start delay time0
RY5.Fd0078h0000~5999(0.1second)Relay 5 de-energizeddelay time0

Communication function group

Addr007Bh1~255Station number1R/W
Baud 007Ch 0~5Transmission rate0:12001:24002:48003:96004:192005:384003R/W
Prity007Dh0~3Parity Check0:N.8.1 1:N.8.2 2:E.8.1 3:O.8.11R/W
Format007Eh0~10:High 1:Lo0R/W

Date Time function group

Year007Fh2000~2099Year2012R/W
Month 0080h1~12Month1R/W
Day0081h1~31Date1R/W
Hour0082h0~23Hour0R/W
Minute0083h0~59Time0R/W
Second 0084h0~59Second 0R/W

FLASH read( CODE : 03h , 06h )

0200hThe number of each record WORDR
0201h Unread items R
0202hRead the next record, if no data returned error code 0020hR
0203h0~2Read status reports0:Clear all records1:Give up this read2:Read successfullyW
0204h0~1Stop recording0:Stop1:Restart1R/W

FLASH setting( CODE : 03h , 06h , 10h )

0210h0~10:Full Record1:Individual choice0R/W
0211h 1~32767The value of the recording interval time15R/W
0212h0~3Recording interval timeunits0:sec 1:min2:hour3:day1R/W
0213h 2000~2099 Start recording time -Year2012R/W
0214h1~12Start recording time -Month1R/W
0215h1~31Start recording time -Day1R/W
0216h0~23Start recording time -Hour0R/W
0217h0~59Start recording time -Minute0R/W
0218h0~59Start recording time -Second0R/W
0219h 2000~2099 Stop recording time- Year2012R/W
021Ah1~12Stop recording time-Month1R/W
021Bh1~31Stop recording time-Day1R/W
021Ch0~23Stop recording time-Hour0R/W
021Dh0~59Stop recording time-Minute0R/W
021Eh0~59Stop recording time-Second0R/W
021Fh0~1Stop / Start recording0:Stop1:Start0R/W
Record field01 0220h1Loop0~232Loop0~411Loop(Balanced)0~152Loop(Balanced)0~25Record field, store the recorded content index1Loop==>0: none1: Freq. 2: UAB 3: UBC 4: UCA5: ULL. AVG 6: IA1 7: IB1 8: IC1 9: I. AVG110PA1 11:PC1 12: P. SUM1 13: QA1 14:QC115: Q. SUM1 16: SA1 17: SC1 18: S. SUM119: PFA1 20: PFC1 21: PF. AVG1 22: A. E123: R. E12Loop==>0: none1: Freq. 2: UAB 3: UBC 4: UCA5: ULL. AVG 6: IA1 7: IB1 8: IC1 9: I. AVG110: IA2 11: IB2 12: IC2 13: I. AVG2 14: PA115: PC1 16: P. SUM1 17: QA1 18: QC119: Q. SUM1 20: SA1 21: SC1 22: S. SUM123: PFA1 24: PFC1 25: PF. AVG1 26: PA227: PC2 28: P. SUM2 29: QA2 30: QC231: Q. SUM2 32: SA2 33: SC2 34: S. SUM235: PFA2 36: PFC2 37: PF. AVG2 38: A. E139: R. E1 40: A. E2 41: R. E21Loop(Balanced)==>0: none1: Freq. 2: UAB 3: UBC 4: UCA5: ULL. AVG 6: IA1 7: PA1 8: P. SUM1 9: QA110: Q. SUM1 11: SA1 12: S. SUM1 13: PFA114: A. E1 15: R. E12Loop(Balanced)==>0: none1: Freq. 2: UAB 3: UBC 4: UCA5: ULL. AVG 6: IA1 7: IA2 8: PA1 9: P. SUM110: QA1 11: Q. SUM1 12: SA1 13: S. SUM114: PFA1 15: PA2 16: P. SUM2 17: QA218: Q. SUM2 19: SA2 20: S. SUM2 21: PFA222: A. E1 23: R. E1 24: A. E2 25: R. E2R/ W
Record field02 0221h R/ W
Record field03 0222h R/ W
Record field04 0223h R/ W
Record field05 0224h R/ W
Record field06 0225h R/ W
Record field07 0226h R/ W
Record field08 0227h R/ W
Record field09 0228h R/ W
Record field10 0229h R/ W
Record field11 022Ah R/ W
Record field12 022Bh R/ W
Record field13 022Ch R/ W
Record field14 022Dh R/ W
Record field15 022Eh R/ W
Record field16 022Fh R/ W
Record field17 0230h R/ W
Record field18 0231h R/ W
Record field19 0232h R/ W
Record field20 0233h R/ W
Record field21 0234h R/ W
Record field22 0235h R/ W
Record field23 0236h R/ W
Record field24 0237h R/ W
Record field25 0238h R/ W
Record field26 0239h R/ W
Record field27 023Ah R/ W
Record field28 023Bh R/ W
Record field29 023Ch R/ W
Record field30 023Dh R/ W
Record field31 023Eh R/ W
Record field21 023Fh initial(Full Record)1loop==>Record field 01Record field23 Sequence 1 ~23 ,Record field24~ Record field41 all 02loop==>Record field01~Record field 41Sequence 1 ~411loop(Balanced)==>Record field 01~Record field15Sequence1~15,Sequence16~ Sequence41all 02loop(Balanced)==>Record field01~Record field 25 Sequence1 ~25,Sequence26~ Sequence41all 0initialRecord field01~Record field 41 all 0R/ W
Record field33 0240h R/ W
Record field34 0241h R/ W
Record field35 0242h R/ W
Record field36 0243h R/ W
Record field37 0244h R/ W
Record field38 0245h R/ W
Record field39 0246h R/ W
Record field40 0247h R/ W
Record field41 0248h R/ W

3P4W Measurement screen quickly read the information( CODE : 03h ):

Name Address Range Explain Initial R/W
Freq. 0000h45.00~65.00Frequency R
UA 0001h 0~9999 A phase voltage R
UB 0002h 0~9999 B phase voltage R
UC 0003h 0~9999 C phase voltageR
ULN.AVG 0004h 0~9999 Average phase voltage R
UAB0005h 0~9999 A-B phase line voltage R
UBC0006h 0~9999 B-C phase line voltage R
UCA0007h 0~9999 C-A phase line voltage R
ULL.AVG0008h0~9999Average line voltageR
IA0009h 0~9999 A phase line current R
IB000Ah0~9999 B phase line current R
IC000Bh0~9999 C phase line current R
IN000Ch0~9999 Neutral current R
I.AVG000Dh0~9999Average currentR
PA000Eh-32768~32767A phase active powerR
PB000Fh-32768~32767B phase active powerR
PC 0010h -32768~32767C phase active power R
P.SUM0011h-32768~32767total active powerR
QA 0012h -32768~32767A phase reactive power R
QB 0013h -32768~32767B phase reactive power R
QC0014h-32768~32767C phase reactive powerR
Q.SUM0015h-32768~32767total reactive powerR
SA0016h 0~32767A apparent powerR
SB0017h 0~32767B apparent powerR
SC 0018h 0~32767C apparent power R
S.SUM0019h0~32767total apparent powerR
PFA001Ah-1.000~1.000A phase Power FactorR
PFB001Bh-1.000~1.000B phase Power FactorR
PFC001Ch-1.000~1.000C phase Power FactorR
PF.AVG001Dh-1.000~1.000average power factorR
A.E10027h 0~9999.9kWhLoop 1 total active energy(High Word)R
A.E10028hLoop 1 total active energy(Low Word)R
R.E10029h 0~9999.9kVARhLoop 1 total reactiveenergy (High Word)R
R.E10030hLoop 1 total reactiveenergy (Low Word)R

Relay Status and Control( CODE : 01h , 05h ):

0000hRelay 1 bit0~bit4 behalf relay1~relay 5state,1=on, 0=off;code05 is relaycontrol, at registeraddress writeR/W
0001hRelay 2
0002hRelay 3
0003hRelay 4
0004hRelay 5

General operating Level( CODE : 03h , 06h , 10h ):

WIRE 003Fh 0~50:1P2W1:1P3W2:3P3W3:3P4W4:3P3W-b5:3P4W-bR
LOOP 0040h 0number of loop0: 1LOOP R
FLASH 0041h 0~65535 FLASH remaining time R

General operating Level( CODE : 03h , 06h , 10h ): Input Group

U.UNIT 0043h 0~1PT primary voltage unit0:V 1:kV0R/W
PT.PRI0044hPT primary voltage5000R /W
PT.SEC0045hPT secondary voltage5000R/W
CT.PRI0046hCT primary current50R/W
V.UNT0047h 0~4Voltage display unit and resolution setting0:0.1(V) 1:1(V) 2:0.01k(V)3:0.1k(V) 4:1k(V)0R/W
I.UNT0048h 0~3Current display units and resolution setting0:0.001(A) 1:0.01(A) 2:0.1(A)3:1(A)0R/W
W.UNT0049h 0~7Power display unit and resolution settings0:0.1(W) 1:1(W)2:0.01k(W)3:0.1k(W)4:1k(W)5:0.01M(W)6:0.1M(W)7:1M(W)2R/W
Lo.CUT004Ah0~10000Current display low cut40R/W
P.CODE004Bh0~9999Modify the P.COD1000R /W
b.Light004Ch0~15Backlight time0(Always lights)~15Min1R/W
dSPLY004Dh0~31Select Permanent screen0:Freq. 1:UA 2:UB 3:UC4:ULN.AVG 5:UAB 6:UBC 7:UCA8:ULL.AVG 9:IA 10:IB 11:IC12:IN 13:I.AVG 14:PA 15:PB16:PC 17:P.SUM 18:QA 19:QB20:QC 21:Q.SUM 22:SA 23:SB24:SC 25:S.SUM 26:PFA 27:PFB28:PFC 29:PF.AVG 30:A.E131:R.E10R/W
F.LOCK004Eh0~30:NONE 1:USER 2.ENG. 3:ALL0R/W
EEP STSTUS 004Fh 0~30:OK 1:EEPROMNG 2:FLASHING3:EEPROM & FLASHING0R
tL.rst0050hClear Energy (Write 2100)0R/W

Relay Status and Control( CODE : 01h , 05h ):

0000h Relay 1 statusbit0~bit4 behalf relay1~relay 5state,1=on, 0=off;code 05is relaycontrol, at registeraddress writeFf00h or 0000hmake therelay on oroff? Be noted,relay modeis Rowrite FF00h or0000h,relay mode isLo.HLd or Hi.HLd write0000h, rest model is non-writableR/W
0001h Relay 2 statusR/W
0002h Relay 3 statusR/W
0003h Relay 4 statusR/W
0004h Relay 5 statusR/W

Relay output function group

RY1.SL 0051h 0~29Relay 1 action parameters0:Freq. 1:UA 2:UB 3:UC4:ULN.AVG 5:UAB 6:UBC 7:UCA8:ULL.AVG 9:IA 10:IB 11:IC12:IN 13:I.AVG 14:PA 15:PB16:PC 17:P.SUM 18:QA 19:QB20:QC 21:Q.SUM 22:SA 23:SB24:SC 25:S.SUM 26:PFA 27:PFB28:PFC 29:PF.AVG13 R/W
RY1.MD 00552h 0~5Relay 1 action mode0:OFF 1:Lo 2:Hi3:Lo.HLd4:Hi.HLd5:RO2R/W
RY1.SP 00553h -32768~32767 Relay 1 set point1000 R/W
RY1.Sb0054h0~9999Relay 1 start band0R/W
RY1.Sd 00555h0000~5999(0.1second)Relay1start delay time0R/W
RY1.Hy0056h0~9999Relay 1 hysteresis time0R/W
RY1.rd0057h0000~5999(0.1second)Relay 1 start delay time0R/W
RY1.Fd0058h0000~5999(0.1second)Relay 1 de-energizeddelay time0R/W
RY2.SL 00559h 0~29Relay 2 action parameters0:Freq. 1:UA 2:UB 3:UC4:ULN.AVG 5:UAB 6:UBC 7:UCA8:ULL.AVG 9:IA 10:IB 11:IC12:IN 13:I.AVG 14:PA 15:PB16:PC 17:P.SUM 18:QA 19:QB24:SC 25:S.SUM 26:PFA 27:PFB28:PFC 29:PF.AVG13 R/W
RY2.MD 0055Ah 0~5Relay 2 action mode0:OFF 1:Lo 2:Hi3:Lo.HLd4:Hi.HLd5:RO2R/W
RY2.SP005Bh-32768~32767Relay 2 set point2000R/W
RY2.Sb005Ch0~9999Relay 2 start band0R/W
RY2.Sd 005Dh0000~5999(0.1second)Relay 2 start delay time0R/W
RY2.Hy 005Eh 0~9999 Relay 2 hysteresis time 0 R/ W
RY2.rd 005Fh0000~5999(0.1second)Relay 2 start delay time 0 R/W
RY2.Fd 0060h0000~5999(0.1second)Relay 2 de-energizeddelay time 0 R/W
RY3.SL 0061h 0~29Relay 3 action parameters0:Freq. 1:UA 2:UB 3:UC4:ULN.AVG 5:UAB 6:UBC 7:UCA8:ULL.AVG 9:IA 10:IB 11:IC12:IN 13:I.AVG 14:PA 15:PB16:PC 17:P.SUM 18:QA 19:QB20:QC 21:Q.SUM 22:SA 23:SB24:SC 25:S.SUM 26:PFA 27:PFB28:PFC 29:PF.AVG13 R/W
RY3.MD 0062h 0~5Relay 3 action mode0:OFF 1:Lo 2:Hi3: Lo. HLD4:Hi.HLd5:DO2R/W
RY3.SP0063h-32768~32767Relay 3 action mode3000R/W
RY3.Sb 0064h 0~9999 Relay 3 start band0 R/W
RY3.Sd 0065h0000~5999(0.1second)Relay 3 start delay time 0 R/W
RY3.Hy 0066h 0~9999 Relay 3 hysteresis time 0 R/W
RY3.rd0067h0000~5999(0.1second)Relay 3 start delay time 0 R/W
RY3.Fd0068h0000~5999(0.1second)Relay 3 de-energizeddelay time 0R/W
RY4.SL 0069h 0~29Relay 4 action parameters0:Freq. 1:UA 2:UB 3:UC4:ULN.AVG 5:UAB 6:UBC 7:UCA8:ULL.AVG 9:IA 10:IB 11:IC12:IN 13:I.AVG 14:PA 15:PB16:PC 17:P.SUM 18:QA 19:QB24:SC 25:S.SUM 26:PFA 27:PFB28:PFC 29:PF.AVG13 R/W
RY4.MD 0066Ah 0~5Relay 4 action mode0:OFF 1:Lo 2:Hi3: Lo. HLD4:Hi.HLd5:RO2R/W
RY4.SP006Bh-32768~32767Relay 4 set point4000R /W
RY4.Sb006Ch0~9999Relay 4 start band0R/ W
RY4.Sd 006Dh0000~5999(0.1second)Relay 4 start delay time 0 R/W
RY4.Hy 006Eh 0~9999 Relay 4 hysteresis time 0 R/ W
RY4.rd006Fh0000~5999(0.1second)Relay 4 start delay time0R/W
RY4.Fd0070h0000~5999(0.1second)Relay 4 de-energizeddelay time 0R/W
RY5.SL 0071h 0~29Relay 5 action parameters0:Freq. 1:UA 2:UB 3:UC4:ULN.AVG 5:UAB 6:UBC 7:UCA8:ULL.AVG 9:IA 10:IB 11:IC12:IN 13:I.AVG 14:PA 15:PB16:PC 17:P.SUM 18:QA 19:QB20:QC 21:Q.SUM 22:SA 23: SB24:SC 25:S.SUM 26:PFA 27:PFB28:PFC 29:PF.AVG13 R/W
RY5.MD 00772h 0~5Relay 5 action mode0:OFF 1:Lo 2:Hi 3: Lo.HLd4:Hi.HLd5:RO2R/W
RY5.SP 00773h -32768~32767 Relay 5 set point 5000 R/W
RY5.Sb 0074h 0~99999 Relay 5 start band 0 R/W
RY5.Sd 0075h0000~5999(0.1second)Relay 5 start delay time0R/W
RY5.Hy 0076h 0~99999 Relay 5 hysteresis time 0 R/W
RY5.rd0077h0000~5999(0.1second)Relay 5 start delay time0R/W
RY5.Fd0078h0000~5999(0.1second)Relay 5 de-energizeddelay time 0R/W

Communication function group

Addr007Bh1~255Station number1R/W
Baud007Ch0~5Transmission rate0:12001:24002:48003:96004:192005:384003R/W
Prity007DhParity Check0:N.8.1 1:N.8.2 2:E.8.1 3:O.8.11R/W
Format007Eh0~10:High 1:Lo0R /W

Date Time function group

Year007Fh2000~2099Year2012R/W
Month0080h1~12Month1R/W
Day0081h1~31Date1R/W
Hour0082h0~23Time0R/W
Minute0083h0~59Minute0R/W
Second0084h0~59Second0R/W

FLASH read( CODE : 03h , 06h )

0200hThe number of each record WORDR
0201hUnread itemsR
0202hRead the next record, if no data returned error code 0020hR
0203h0~2Read status reports0:Clear all records1:Give up this read2:Read successfullyW
0204h 0~1Stop recording0:Stop1:Restart1R/W

FLASH setting ( CODE : 03h , 06h , 10h )

0210h 0~10:Full Record 1:individual choice 0 R/ W
0211h 1~32767The value of the recording interval15 R /W
0212h 0~3Recording interval time units0:sec 1:min2:hour3:day1R
0213h 2000~2099 Start recording time -Year 2012 R/ W
0214h 1~12 Start recordingtime -Month 1 R/ W
0215h 1~31 Start recordingtime -Day 1 R/ W
0216h 0~23 Start recordingtime -Hour 0 R/ W
0217h 0~59 Start recordingtime -Minute 0 R/ W
0218h 0~59 Start recordingtime -Second 0 R/ W
0219h 2000~2099 Stop recording time- Year 2012 R/ W
021Ah1~12 Stop recding time- Month 1 R/ W
021Bh1~31 Stop recding time- Day 1 R/ W
021Ch 0~23 Stop recordingtime- Hour 0 R/ W
021Dh 0~59 Stop recordingtime- Minute 0 R/ W
021Eh0~59 Stop recding time- Second 0 R /W
021Fh0~1Stop / Start recording0:Stop1:Start0R
Record0220hR/W
Record0221h R/W
Record0222h R/WRecord field, store the recorded content index
Record0223h R/W
Record0224h R/W1Loop==>
Record0225h R/W0:none1: Freq. 2: UA 3: UB 4: UC
Record0226h R/W5:ULN.AVG 6:UAB 7:UBC 8:UCA
Record0227h R/W9:ULL.AVG 10:IA 11:IB 12: IC 13: IN
Record0228h R/W14:I.AVG 15:PA 16:PB 17: PC 18: P. SUM
Record0229h R/W19:QA 20:QB 21:QC 22: Q. SUM 23: SA
Record022Ah R/W24:SB 25:SC 26:S.SUM 27: PFA 28: PFB
Record022Bh R/W29:PFC 30:PF.AVG 31: A. E1 32: R. E1
Record022Ch R/W1 loop(Balanced)==>
Record022Dh R/W0:none1: Freq. 2: UA 3: UB 4: UC
Record022Eh R/W5:ULN.AVG 6:UAB 7:UBC 8:UCA
Record022Fh R/W9:ULL.AVG 10:IA 11:PA 12: P. SUM 13: QA
Record0230h R/W14:Q.SUM 15:SA 16: S. SUM 17: PFA
Record0231h R/W18:A.E1 19:R.E1
Record0232hR/W
Record0233h R/W1Loop0~32
Record0234h R/W1Loop(Bal-anced)
Record0235h R/W6~19
Record0236h R/W
Record0237h R/W
Record0238h R/W
Record0239h R/Winitial( Full Record)
Record023Ah R/W1loop==>
Record023Bh R/WRecord field01~Record field20
Record023Ch R/WSequence1~20,
Record023Dh R/WRecord field21~Record field41all 0
Record023Eh R/W2loop==>
Record023Fh R/WRecord field01~Record field36
Record0240h R/WSequence1~36,
Record0241h R/WRecord field37~ Record field41all 0
Record0242h R/Winitial
Record0243h R/WRecord field 01~Record field 41 all 0
Record0244h R/W
Record0245h R/W
Record0246h R/W
Record0247h R/W
Record0248h R/W

Write this area To define the address, fill in the following table. Done memorandum For example, 0000h is written to address 1100h, read address 0100h will read the frequency

User-defined area ( CODE : 03h , 06h, 10h ) :

Defined position UI displayDefined parameter value Temporary AddressesRead / WritePredefined addressDefined address parameter temporaryRead / Write
U.DF01V 0100hR 1100h R/W
U.DF02V 0101hR 1101h R/W
U.DEF03 0102hR 1102h R/W
U.DEF04 0103hR 1103h R/W
U.DEF05 0104hR 1104h R/W
U.DEF06 0105hR 1105h R/W
U.DEF07 0106hR 1106h R/W
U.DEF08 0107hR 1107h R/W
U.DEF09 0108hR 1108h R/W
U.DEF10 0109hR 1109h R/W
U.DEF11 010AhR 110Ah R/W
U.DEF12 010BhR 110Bh R/W
U.DEF13 010ChR 110Ch R/W
U.DEF14 010DhR 110Dh R/W
U.DEF15 010EhR 110Eh R/W
U.DEF16 010FhR 110FhR/W
U.DEF17 0110hR 1110h R/W
U.DEF18 0111hR 1111h R/W
U.DEF19 0112hR 1112h R/W
U.DEF20 0113hR 1113h R/W

www.advantech.com

Please verify specifications before quoting. This guide is intended for reference purposes only.

All product specifications are subject to change without notice.

No part of this publication may be reproduced in any form or by any means, electronic, photocopying, recording or otherwise, without prior written permission of the publisher.

All brand and product names are trademarks or registered trademarks of their respective companies.

© Advantech Co., Ltd. 2016

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Product information

Brand : Advantech

Model : WISE-M502

Category : Unknown