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ZL0139-0A 

Page 23 of 24 

05145 

Installation Guide

Power Monitoring

Series 4000-R

S4000-R 

Register R/W NV Format

Units

Scale

Range

Description

277/278 R

Float

kW

Real Power, Phase B

279/280 R

Float

kW

Real Power, Phase C

281/282 R

Float

Ratio

0.0-1.0

Power Factor, Phase A

283/284 R

Float

Ratio

0.0-1.0

Power Factor, Phase B

285/286 R

Float

Ratio

0.0-1.0

Power Factor, Phase C

287/288 R

Float

Volt

Voltage, Phase A-B

289/290 R

Float

Volt

Voltage, Phase B-C

291/292 R

Float

Volt

Voltage, Phase A-C

293/294 R

Float

Volt

Voltage, Phase A-N

295/296 R

Float

Volt

Voltage, Phase B-N

297/298 R

Float

Volt

Voltage, Phase C-N

299/300 R

Float

Amp

Current, Instantaneous, Phase A

301/302 R

Float

Amp

Current, Instantaneous, Phase B

303/304 R

Float

Amp

Current, Instantaneous, Phase C

305/306 R

Float

Reserved, returns 0x7FC00000 (QNAN)

307/308 R

Float

Hz

45.0-65.0

Frequency (derived from Phase A)

309/310 R

NV Float

kVAh

Apparent Energy Consumption

311/312 R

NV Float

kVARh

Reactive  Energy Consumption

313/314 R

Float

kVA

Apparent Power, Phase A

315/316 R

Float

kVA

Apparent Power, Phase B

317/318 R

Float

kVA

Apparent Power, Phase C

319/320 R

Float

kVAR

Reactive Power, Phase A

321/322 R

Float

kVAR

Reactive Power, Phase B

323/324 R

Float

kVAR

Reactive Power, Phase C

325/326 R

Float

kW

Total Real Power Present Demand 

327/328 R

Float

kVAR

Total Reactive Power Present Demand 

329/330 R

NV Float

kVA

Total Apparent Power Present Demand

331/332 R

NV Float

kW

Total Real Power Max Demand

333/334 R

NV Float

kVAR

Total Reactive Power Max Demand

335/336 R

NV Float

kVA

Total Apparent Power Max Demand

337/338* R

Float

0 - 

4294967040 Pulse Counter 1 (Real Energy)

Contact Closure Counters. Valid for both Pulse 

inputs and outputs. Counts are shown in (). See 

register 144 (Energy per Pulse) for the Wh per 

pulse count. Clear via register 129. Inputs are 

user defined. These values are derived from the 

32 bit integer counter and rolls over to 0 when 

the integer counters do.

339/340* R

Float

0 - 

4294967040

341/342* R

NV Float

kWh

Real Energy Consumption, Phase A

clear via reset register

343/344* R

NV Float

kWh

Real Energy Consumption, Phase B

345/346* R

NV Float

kWh

Real Energy Consumption, Phase C

Invalid or Quiet Not A Number (QNAN) conditions are indicated by 0x8000 (negative zero) for 16 bit integers and 0x7FC00000 for 32 bit floating point numbers.

Floating point numbers are encoded per the IEEE 754 32-bit specifications.

Modbus Point Map (cont.)

www.

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1.800.561.8187

Summary of Contents for 4000-R series

Page 1: ...tial failure modes of control paths and for certain critical control functions provide a means to acheive a safe state during and after a path failure Examples of critical control functions are emerge...

Page 2: ...0 5 to 0 6 N m Terminal Block Wire Size 24 to 14 AWG 0 13 to 2 08 mm2 Rail T35 35mm DIN Rail per EN50022 OPERATING CONDITIONS Operating Temperature Range 30 to 70 C 22 to 158 F Storage Temperature Ra...

Page 3: ...g 8 Control Power 9 Quick Setup Instructions 10 Solid State Output 11 User Interface Menu Abbreviations Defined 11 User Interface for Data Configuration 12 Alert Reset Information 13 User Interface fo...

Page 4: ...ption FullDataSet FDS Power kW Energy kWh Configurable for CT PT ratios system type and passwords Diagnostic alerts Current 3 phase average Volts 3 phase average Current by phase Volts by phase Line L...

Page 5: ...s areclosed CONTROL POWER 0 1A 50 60 Hz A B C N 1 2 Alarm Energy NC NO S OUTPUT VA VB VC Neutral Earth Control Power UL 90V L N 600V L L CE 90V L N 300V L N VOLTAGE INPUTS CAT III 50 60 Hz X2 A X1 X2...

Page 6: ...ing by sliding them into the slots from the inside The stopping pegs must face the housing and the outside edge of the clip must be flush with the outside edge of the housing 2 Snap the clips onto the...

Page 7: ...Qty ID Type Modbus Register 130 User Interface SETUP S SYS VLL VLN Balance Diagram number Single PhaseWiring 2 1 A 2 A N L N 10 1L 1n AN 1 2 1 A 2 A B L L 11 2L AB 2 3 2 A B 3 A B N L L with N 12 2L 1...

Page 8: ...X2 X1 A B C N A B C N White Black White Black X1 X2 X1 X2 X1 X2 L1 L2 X2 X1 A B C N A B C White Black X1 X2 X1 X2 X1 X2 Diagram3 1 PhaseDirectVoltageConnection2CT L1 L2 L3 X2 X1 A B C N A B C X2 X1 X2...

Page 9: ...rce obey local and national code requirements For selecting fuses and circuit breakers use the following criteria Select current interrupt capacity based on the installation category and fault current...

Page 10: ...ough the digits Use the or buttons to select the CT size in amps b back to the S CT screen 7 to the S SYS Set System screen a to the SYSTM screen Use the or buttons to select the System Type see wirin...

Page 11: ...al Number RESET RESET Reset Data PASWD PASWD Enter Reset or Setup Password ENERG ENERG Reset Energy Accumulators DEMND DEMND Reset Demand Maximums User Interface UI Menu Abbreviations Defined The user...

Page 12: ...C VAC C KW C VLN A KVA B KVA C KVA A PF 3 PF B PF C PF 3KVAR Total Reactive Power Q AKVAR BKVAR CKVAR KVARh KVAh Accumulated Reactive Energy Qh Accumulated Apparent Energy Sh DEMND D KW Present Real P...

Page 13: ...ber Energy Pulse Output Error Overrun Error ConF Configuration Error PULSE Error ENERG rES Reset Energy Accumulators to 0 Unit Information Alert Status check if Wrench on LCD RESET Enter Reset Passwor...

Page 14: ...stalled See Install for wiring diagrams This value must be set before the System Voltage if used Potential Transformer RATIO 001 00 Back S V Back Sytem Voltage Next Set System Voltage V LL The nominal...

Page 15: ...nostic Alert Bitmap if equipped Wh P Set Pulse Energy In Watt Hours VAR Hours if present per Pulse When moving down to a smaller energy the meter will not allow the selection if it cannot find a pulse...

Page 16: ...S 485 transceivers are unit load or less RS 485 has a 47 k pull up to 5V and RS 485 has a 47 k pull down to Shield RS 485 signal ground Wire the RS 485 bus as a daisy chain from device to device witho...

Page 17: ...er interval 1 block mode 149 Demand sub interval length 900 sec 15 min 150 Modbus Address 001 Modbus Baud Rate 19200 baud Modbus Parity None Log Read Page 0 158 Logging Configuration Register 0 159 Lo...

Page 18: ...n Series 4000R Power Meter Full Data Set RESET SYSTEM RUNNING RSVersion x xxx last 2 bytes CRC 0x2B Read Device Identification BASIC implementation 0x00 0x01 and 0x02 data Conformity Level 1 Object va...

Page 19: ...C 019 R UInt Volt V 0 32767 Voltage Phase A N 020 R UInt Volt V 0 32767 Voltage Phase B N 021 R UInt Volt V 0 32767 Voltage Phase C N 022 R UInt Amp I 0 32767 Current Instantaneous Phase A 023 R UInt...

Page 20: ...31 40 Single Phase A N SystemType Single Phase A B Single Split Phase A B N 3 phase A B C no N 3 phaseY A B C N 131 R W NV UInt Amps 20 5000 CT Ratio Primary Current Inputs 132 R NV UInt n a Reserved...

Page 21: ...hase loss alarm bit in register 146 will be true Phase Loss Output Note The phases tested are determined by the SystemType 143 R W NV UInt 1 99 Phase Loss ImbalanceThreshold in Percent Default is 25 p...

Page 22: ...the number of sub intervals that make a single demand interval For block demand set this to 1 Demand Calculation 150 R W NV UInt Seconds 0 10 32767 Sub Interval Length in seconds For sync to comms se...

Page 23: ...t kVAR Reactive Power Phase A 321 322 R Float kVAR Reactive Power Phase B 323 324 R Float kVAR Reactive Power Phase C 325 326 R Float kW Total Real Power Present Demand 327 328 R Float kVAR Total Reac...

Page 24: ...perly Check all CTs and PTs to verify correct connection to the same service PT polarity and adequate powering See theWiring Diagrams section for more information Cannot communicate with power meter f...

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