netvox RP02RH Series User Manual

Wireless miniature circuit breakerwith power meter
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RP02RH Series
Wireless Miniature Circuit Breaker with Power Meter
Wireless Miniature Circuit Breaker
with Power Meter
RP02RH Series
User Manual
Copyright©Netvox Technology Co., Ltd.
This document contains proprietary technical information which is the property of NETVOX Technology. It shall be
maintained in strict confidence and shall not be disclosed to other parties, in whole or in part, without written permission
of NETVOX Technology. The specifications are subject to change without prior notice.

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Summary of Contents for netvox RP02RH Series

  • Page 1 Copyright©Netvox Technology Co., Ltd. This document contains proprietary technical information which is the property of NETVOX Technology. It shall be maintained in strict confidence and shall not be disclosed to other parties, in whole or in part, without written permission...
  • Page 2: Table Of Contents

    Table of Contents 1. Introduction ..................................2 2. Appearance ..................................3 3. Features ....................................4 4. Set up Instruction ................................4 5. Data Report ..................................5 5.1 Default Value of Protection Parameters ........................6 5.2 Example of ReportDataCmd ............................7 5.2.1 1PN/1PNL Report Data .............................
  • Page 3: Introduction

    RP02RH4P250 Wireless 4P Miniature Circuit Breaker with Power Meter, 250A RP02RH series is a class C smart Miniature Circuit Breaker with Power Meter based on LoRaWAN open protocol. It can monitor the status of all external circuit breakers in real time. (connect up to 9 poles). When the power line is abnormal (such as undervoltage, overvoltage, overload, leakage, etc.), the system will automatically give early warning, alarm and power off to prevent electrical fire...
  • Page 4: Appearance

    2. Appearance RS-485 Interface Indicator Function Key Antenna LoRa/LoRaWAN Radio Module 485 Signal Line RP02RH1PN063 LoRa/LoRaWAN Radio Module External Circuit Breaker Power Module...
  • Page 5: Features

    3. Features ⚫ Compatible with LoRaWAN ⚫ Support RS485 serial port transparent transmission. ⚫ Circuit breaker attribute value collection. ⚫ Multiple circuit breaker protection. ⚫ Simple operation and setting. 4. Set up Instruction On/Restore to factory setting Power on Power supply of power module Turn on Power supply of power module.
  • Page 6: Data Report

    87 + Receive Data. Note: (1) The data transmission cycle of the device shall be subject to the burning configuration. (2) Please refer Netvox LoRaWAN Application Command document and Netvox Lora Command Resolver http://cmddoc.netvoxcloud.com/cmddoc to resolve uplink data.
  • Page 7: Default Value Of Protection Parameters

    5.1 Default Value of Protection Parameters Protection Method: 0x00 None 0x01 Alarm 0x02 Trip 0x03 Alarm and trip RP02 Default Value of Protection Parameters Parameter Default 0 - None Configuration Circuit Protection Hardware Software 1-Alarm (through Breaker Alarm Alarm Action Time (Command) Protection...
  • Page 8: Example Of Reportdatacmd

    cannot be (0x05) configured) configured Phase Failure Protection (0x06) 0 - None ● ● ● (3PN, 3PNL support) Overpower 150%P Protection Smart P = rated (0x07) 110% P 0 - None ● ● ● voltage* (1PN, 1PNL setting current support) Note: (1) MCB refers to miniature circuit breaker.
  • Page 9: 1Pn/1Pnl Report Data

    (1Byte,fixed 0x00) Unit:0.01mA) Example of 1PN / 1PNL #Packet 1: 01C9010203010800000100 byte (01): Version byte (C9): DeviceType - RP02RH Series byte (01): ReportType byte (02): Breaker RS485Addr-2 byte (03): Breaker Type-3: 1PNL byte (01): BreakerProtectStatusBits-Alarm, 0x01=00000001 (bit 0=1) byte (08): AlarmStatusBits-UnderVol (Low voltage alarm) , 0x08 = 00001000 (bit3=1) byte (00): Pre-TripStatusBits-NULL...
  • Page 10 (1B): Temperature-27℃, 1B (HEX) = 27 (DEC), 27* 1℃ = 27℃ #Packet 3: 01C9030200000038310000 byte (01): Version byte (C9): DeviceType - RP02RH Series byte (03): ReportType byte (02): Breaker RS485Addr-2 byte (00000038): Energy-56wh, 00000038 (HEX) = 56 (DEC), 56* 1wh = 56wh byte (31): Frequency-49 Hz, 31 (HEX) = 49 (DEC), 49* 1HZ = 49HZ...
  • Page 11: 3Pn/3Pnl Report Data

    5.2.2 3PN/3PNL Report Data Report Type=0x11-0x18 Report Device Device NetvoxPayLoadData Type Type AlarmStatusBit Pre-TripStatusBits (2Bytes) (2Bytes) Bit0:APhaseOverLoad Bit0:APhaseOverLoad Bit1:BPhaseOverLoad Bit1:BPhaseOverLoad Bit2:CPhaseOverLoad Bit2:CPhaseOverLoad BreakerType BreakerProtectStatusBit Bit3:NPhaseOverLoad Bit3:NPhaseOverLoad (1Byte) (2Bytes) Bit4-5:Reserved Bit4-5:Reserved 1:1P Bit6: CreepAge Bit6: CreepAge 2:1PN BreakerRS485Addr Bit0:Alarm Bit7:APhaseUnderVol Bit7:APhaseUnderVol 0x11 3:1PNL Bit1:Pre-Trip...
  • Page 12 #Packet 1: 01C9110105000103800000 byte (01): Version byte (C9): DeviceType byte (11): ReportType byte (01): BreakerRS485Addr –Alarm byte (05): BreakerType–3PN – 7 byte (0001): BreakerProtectStatusBits(3P) – 9 byte (0380): AlarmStatusBits(3P) — UnderVol (Low voltage alarm), 896 (DEC) = 0011 1000 0000 (BIN) bit7–bit9=1 –...
  • Page 13 #Packet 4:01C9140100950000000032 (01): Version (C9): DeviceType (14) : ReportType (01): BreakerRS485Addr – 6 (0095): CPhaseVoltage – 149V 0095 (HEX) = 149 (DEC), 149* 1V = 149V – 8 (0000): APhasePower– 0W – 10 (0000): BPhasePower – 0 (32): Frequency – 50HZ 32 (HEX) = 50 (DEC), 50* 1HZ = 50HZ #Packet 5:01C9150100000000000000 (01): Version (C9): DeviceType...
  • Page 14 #Packet 7:01C917010000000C010000 (01): Version (C9): DeviceType (17) : ReportType (01): BreakerRS485Addr – 8 (0000000C): CPhaseEnergy –12wh 0000000C (HEX) = 12 (DEC), 12* 1wh = 12wh (01): HandOrAutoControlStaus (00): OnOffStatus – off (00): Reserved #Packet 8:01C91801FFFF000003D900 (01): Version (C9): DeviceType (18) : ReportType (01): BreakerRS485Addr –...
  • Page 15: Example Of Configurecmd By Acquisition Mode

    ReportMaxTime shall be configured based on the type and number of the connected circuit breaker. (2) Example When Two 1PN/1PNL and one 3PN/3PNL are connected to RP02RH series, … (a) ReportMaxTime shall be greater than (2* 1PNreportcount + 1* 3PNreportcount)* MinTime...
  • Page 16: Remote Control Circuit Breaker

    5.3.2 Remote Control Circuit Breaker Device Description Device CmdID NetvoxPayLoadData Type BreakerRS485Addr Reserved 0x90 (1Byte) (8Bytes,Fixed 0x00) BreakerRS485Addr Reserved 0x91 (1Byte) (8Bytes,Fixed 0x00) RP02RH 0xC9 Series BreakerRS485Addr Reserved ClearEnergy 0x93 (1Byte) (8Bytes,Fixed 0x00) LeakageCurrent BreakerRS485Addr Reserved 0x95 SeftTest (1Byte) (8Bytes,Fixed 0x00) (1) Control address 1 circuit breaker off Downlink: 90C9010000000000000000 (2) Control address 1 circuit braker on...
  • Page 17: Mode Switching

    5.3.3 Mode Switching Device Description Device CmdID NetvoxPayLoadData Type PassThroughModeOn(1Byte) Reserved SetPassThroughModeReq 0x03 0x00_Off (8Bytes,Fixed 0x00) 0x01_On Status Reserved SetPassThroughModeRsp 0x83 (0x00_success) (8Bytes,Fixed 0x00) RP02RH 0xC9 Series Reserved GetPassThroughModeReq 0x04 (9Bytes,Fixed 0x00) PassThroughModeOn(1Byte) Reserved GetPassThroughModeRsp 0x84 0x00_Off (8Bytes,Fixed 0x00) 0x01_On (1) The configuration mode is acquisition mode Downlink: 03C900000000000000000 Device return: 83C9000000000000000000 (configuration successful)
  • Page 18: Example Of Configurecmd By Transparent Transmission Mode

    5.4 Example of Configurecmd By Transparent Transmission Mode FPort:0x0A Description Device CmdID NetvoxPayLoadData SetPollSensorRawCmdReq 0x05 SensorRawCmd Status RP02RH SetPollSensorRawCmdRsp 0x85 (0x00_success) Series SensorRawCmd SensorRawCmdIndication 0x87 (Var bytes,according sensor datasheet) If the protocol format of the external RS485 device is, … Transmission frame: 010400100002700E Return frame: 01040440C5D2F2235C (1) Configure device SensorRawCmd...
  • Page 19: Applications

    6. Applications Smart Home Problems: ⚫ Unclear reason for the rise in electricity charges ⚫ Unclear cause of electrical failure ⚫ The waste of electric energy cannot be treated ⚫ Electrical hazards cannot be eliminated in time Solutions: ⚫ Effective energy saving: Master the power consumption information at home, reduce unconscious waste and standby power consumption ⚫...
  • Page 20 Solutions: ⚫ Safety protection: Set rated power, over limit alarm, limit malignant load and ensure power safety ⚫ Remote control: Timing control, energy saving and consumption reduction, realizing people walking lights off and device power ⚫ Fault early warning: Power off and maintain the lines with electrical hazards in advance to prevent accidents ⚫...
  • Page 21 Information communication Problems: ⚫ High requirements of power supply continuity ⚫ Difficult regional maintenance and high fault maintenance cost ⚫ Unclear cause of electrical fault ⚫ Failure to supply power in time Solutions: ⚫ Automatic reclosing: Use the automatic reclosing function to restore the power supply to the unattended base station in time ⚫...
  • Page 22: Installation

    7. Installation Danger ⚫ There may be danger of electric shock, explosion and electric arc burn. ⚫ When working on this power device, please cut off all power supplies first. ⚫ Violation of these instructions may result in serious personal injury. Note ⚫...
  • Page 23 1: The 12VDC power module, LoRa/LoRaWAN Radio Module and circuit breaker are arranged in the order shown in the figure above. 2: Clamp the 12VDC power module, LoRa/LoRaWAN Radio Module and circuit breaker back hooks on the guide rail, and then release the clips.
  • Page 24 4. The wiring diagram of 12VDC power module, LoRa/LoRaWAN Radio Module, circuit breaker and load are as follows: DC 12V input input output AC 100-240V output output input RP02RH1PN063 ( Power Module + LoRa/LoRaWAN Radio Module + 1PN Circuit Breaker ) input input DC 12V...
  • Page 25 input input input input DC 12V output AC 100-240V input output output output output RP02RH3PN063 ( Power Module + LoRa/LoRaWAN Radio Module + 3PN Circuit Breaker ) input input input input DC 12V output AC 100-240V input output output output output RP02RH3PNLB063 ( Power Module + LoRa/LoRaWAN Radio Module + 3PNL Circuit Breaker )
  • Page 26 RP02RH2P100 (RP02 + Power Module + 2P 100A Circuit Breaker) RP02RH4P100 (RP02 + Power Module + 4P 100A Circuit Breaker)
  • Page 27 RP02RH3P250 RP02 + LoRa Power Module + Breaker Power Module + 3P 250A Circuit Breaker RP02RH4P250 RP02 + LoRa Power Module + Breaker Power Module + 4P 250A Circuit Breaker...
  • Page 28: Wiring

    Ensure that the device is powered on after the above installation is correct, and the status after power on: 1: The power on indicator of LoRa/LoRaWAN Radio Module flashes once, then the indicator remains off, and the indicator does not respond when pressing the key.
  • Page 29: Dial Switch

    7.3 Dial Switch Status Indicator: Closing indication: The indicator is green. Opening indication: The indicator is red. Status Indicator Fault indication: The indicator is flashing red. Fault to be closed: The indicator is flashing green. Manual state: The indicator is flashing red and green alternately. Dial Switch Dial switch: Operate the manual and automatic state of the control module.
  • Page 30: Combination Of Power Modules And Circuit Breakers

    7.5 Combination of Power Modules and Circuit Breakers Because the external circuit breaker will be limited by the power module, the currently provided power module (with an output power of 24W) can be externally connected to a circuit breaker with a maximum of 9 poles. If the circuit breaker with more than 9 poles is connected, it needs to be expanded through the power supply, but the LoRa/LoRaWAN Radio Module device can connect up to 32 circuit breakers.
  • Page 31 input input input input input input input input DC12V output AC100 -240V output output output output output output output output input (b) Power Module + LoRa/LoRaWAN Radio Module + 1PNL*4 input input input input input input input input DC12V output AC100 -240V input output...
  • Page 32: Important Maintenance Instruction

    8. Important Maintenance Instruction Kindly pay attention to the following in order to achieve the best maintenance of the product: ⚫ Keep the device dry. Rain, moisture, or any liquid might contain minerals and thus corrode electronic circuits. If the device gets wet, please dry it completely.

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