See notes for calculations 4110 Usage Hours 1 Integer RO Y - Hours YP Usage Minutes 1 Integer RO Y - Minutes 0-59 YP
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1 Table of Contents 2 FW Release summary Y Y Y Y Y Y PM RS FW History Y Y Y PM_2 OS FW History Y Y Y PM_2 RS FW History Y Y Y Setup & Status Metering Min Max Demand IO Alarms N N Reset Commands DL System Notes
2 Setup & Status 124 Usage Hours 2 Float RO Y - Hours >=. This combination timer counts the total time for which the absolute current on at least one phase is >.1Amp. 126 Usage Minutes 2 Float RO Y - Minutes.-9. This combination timer counts the total time for which the absolute current on at least one phase is >.1Amp. 43 Reset Counter 1 Uint R/W Y Counts the number of times the meter boots up 41 Scale Factor I (current) 1 Integer RO N Power of 1 See notes for calculations 416 Scale Factor V (voltage) 1 Integer RO N Power of 1 See notes for calculations 41 Scale Factor W (power) 1 Integer RO N Power of 1 See notes for calculations 418 Scale Factor E (energy) 1 Integer RO N Power of 1 See notes for calculations 411 Usage Hours 1 Integer RO Y - Hours Usage Minutes 1 Integer RO Y - Minutes Error Bitmap 1 Integer RO N bit: VA Clipping bit1: VB Clipping bit2: VC Clipping bit3: IA Clipping bit4: IB Clipping bit: IC Clipping bit6: Freq Invalid reserved: bit : IA would clip if changed to high gain reserved: bit 8: IB would clip if changed to high gain reserved: bit 9: IC would clip if changed to high gain 411 Thermal Demand Interval 1 Integer R/W Y - Minutes 1-6 Current Demand Only 4118 Power Block Demand Interval 4119 Power Block Demand Number of Sub-Intervals 1 Integer R/W Y - Minutes 1-6 Duration in minutes 1 Integer R/W Y - Seconds 1-6 : Sliding Block Calculation If Reg[4118 <= 1 Minutes the Sub-interval is 1 Seconds if Reg[4118 > 1 Minutes the Sub-interval is 6 Seconds 1: Fixed Block Else: Rolling Block (Must be evenly divided into 4188 to the second) 412 CT Ratio - Primary 1 Integer R/W Y CT Ratio - Secondary 1 Integer R/W Y or 4122 PT Ratio - Primary 1 Integer R/W Y PT Ratio - Scale ( = No PT) 1 Integer R/W Y - -, 1, 1, PT Ratio - Secondary 1 Integer R/W Y - - 1, 11, 11, Service Frequency 1 Integer R/W Y - Hz or Reset Commands 1 Integer R/W N - - N/A Always return a. A listing of commands is on sheet Reset Commands 412 System Type 1 Integer R/W Y - - 1,11,12,3,31,3 2,4,42, Display Mode 1 Integer R/W Y - -,1 = IEC Units 1 = IEEE Units
3 1 Signed Real Energy, Consumption 2 Float RO Y - kwh - Signed in all PM2s, PMs and PM 12 Apparent Energy, Consumption 2 Float RO Y - kvah - 14 Signed Reactive Energy, Consumption 2 Float RO Y - kvarh - Signed in all PM2s, PMs and PM 16 Real Power, Total 2 Float RO N - kw - Signed in all PM2s, PMs and PM 18 Apparent Power, Total 2 Float RO N - kva - 11 Reactive Power, Total 2 Float RO N - kvar - Signed in all PM2s, PMs and PM 112 Power Factor, Total 2 Float RO N Voltage, L-L, 3P Average 2 Float RO N - Volt Voltage, L-N, 3P Average 2 Float RO N - Volt Current, 3P Average 2 Float RO N - Amp - 12 Frequency 2 Float RO N - Hz Derived from Phase A 134 Current, A 2 Float RO N - Amp Current, B 2 Float RO N - Amp Current, C 2 Float RO N - Amp - 14 Current, N 2 Float RO N - Amp - 14 Voltage, A-B 2 Float RO N - Volt - 16 Voltage, B-C 2 Float RO N - Volt - 18 Voltage, C-A 2 Float RO N - Volt - 16 Voltage, A-N 2 Float RO N - Volt Voltage, B-N 2 Float RO N - Volt Voltage, C-N 2 Float RO N - Volt Real Power, A 2 Float RO N - kw - Signed in all PMs and PM 168 Real Power, B 2 Float RO N - kw - Signed in all PMs and PM 1 Real Power, C 2 Float RO N - kw - Signed in all PMs and PM 12 Apparent Power, A 2 Float RO N - kva - 14 Apparent Power, B 2 Float RO N - kva - 16 Apparent Power, C 2 Float RO N - kva - 18 Reactive Power, A 2 Float RO N - kvar - Signed in all PMs and PM 18 Reactive Power, B 2 Float RO N - kvar - Signed in all PMs and PM 182 Reactive Power, C 2 Float RO N - kvar - Signed in all PMs and PM 184 Current, A, THD 2 Float RO N - % Current, B, THD 2 Float RO N - % Current, C, THD 2 Float RO N - % Voltage, A-N, THD 2 Float RO N - % Voltage, B-N, THD 2 Float RO N - % Voltage, C-N, THD 2 Float RO N - % Voltage, A-B, THD 2 Float RO N - % Voltage, B-C, THD 2 Float RO N - % Voltage, C-A, THD 2 Float RO N - % Real Energy, Consumption 2 Long RO Y E kwh/scale -xffffffff Signed in all PM2's, PMs and PM 42 Apparent Energy, Consumption 2 Long RO Y E kvah/scale -xffffffff 44 Reactive Energy, Consumption 2 Long RO Y E kvarh/scale -xffffffff Signed in all PM2's, PMs and PM 46 Real Power, Total 1 Integer RO N W kw/scale -326 Signed in all PM2's, PMs and PM 4 Apparent Power, Total 1 Integer RO N W kva/scale -326
4 48 Reactive Power, Total 1 Integer RO N W kvar/scale -326 Signed in all PM2's, PMs and PM 49 Power Factor, Total 1 Integer RO N Voltage, L-L, 3P Average 1 Integer RO N V Volt/Scale Voltage, L-N, 3P Average 1 Integer RO N V Volt/Scale Current, 3P Average 1 Integer RO N I Amp/Scale Frequency 1 Integer RO N.1 Hz 4-6 Derived from Phase A 42 Current, A 1 Integer RO N I Amp/Scale Current, B 1 Integer RO N I Amp/Scale Current, C 1 Integer RO N I Amp/Scale Current, N 1 Integer RO N I Amp/Scale Voltage, A-B 1 Integer RO N V Volt/Scale Voltage, B-C 1 Integer RO N V Volt/Scale Voltage, C-A 1 Integer RO N V Volt/Scale Voltage, A-N 1 Integer RO N V Volt/Scale Voltage, B-N 1 Integer RO N V Volt/Scale Voltage, C-N 1 Integer RO N V Volt/Scale Real Power, A 1 Integer RO N W kw/scale -326 Signed in all PMs and PM 43 Real Power, B 1 Integer RO N W kw/scale -326 Signed in all PMs and PM 438 Real Power, C 1 Integer RO N W kw/scale -326 Signed in all PMs and PM 439 Apparent Power, A 1 Integer RO N W kva/scale Apparent Power, B 1 Integer RO N W kva/scale Apparent Power, C 1 Integer RO N W kva/scale Reactive Power, A 1 Integer RO N W kvar/scale -326 Signed in all PMs and PM 443 Reactive Power, B 1 Integer RO N W kvar/scale -326 Signed in all PMs and PM 444 Reactive Power, C 1 Integer RO N W kvar/scale -326 Signed in all PMs and PM 44 Current, A, THD 1 Integer RO N.1 % Current, B, THD 1 Integer RO N.1 % Current, C, THD 1 Integer RO N.1 % Power Factor, Total Signed 1 Integer RO N to 1. "-" sign indicates lag If a negative value is reported, add 3268 then divide by 1 to find the lagging PF reported. 449 Voltage, A-N, THD 1 Integer RO N.1 % -1 4 Voltage, B-N, THD 1 Integer RO N.1 % Voltage, C-N, THD 1 Integer RO N.1 % Voltage, A-B, THD 1 Integer RO N.1 % Voltage, B-C, THD 1 Integer RO N.1 % Voltage, C-A, THD 1 Integer RO N.1 % -1
5 Min Max values 114 Real Power, Total 116 Apparent Power, Total 118 Reactive Power, Total 111 Power Factor, Total 1112 Frequency 1114 Current, A, 1116 Current, B, 1118 Current, C, 112 Current, N, 1122 Voltage, A-N, 1124 Voltage, B-N, 1126 Voltage, C-N, 1128 Voltage, A-B, 113 Voltage, B-C, 1132 Voltage, C-A, 1134 Current, A, THD 1136 Current, B, THD 1138 Current, C, THD 1142 Voltage, A-N, THD 1144 Voltage, B-N, THD 1146 Voltage, C-N, THD 1148 Voltage, A-B, THD 11 Voltage, B-C, THD 112 Voltage, C-A, THD 114 Real Power, Total 116 Apparent Power, Total 118 Reactive Power, Total 116 Power Factor, Total 1162 Frequency 1164 Current, A, 1166 Current, B, 1168 Current, C, 11 Current, N, 112 Voltage, A-N, 114 Voltage, B-N, 116 Voltage, C-N, 118 Voltage, A-B, 118 Voltage, B-C, 1182 Voltage, C-A, 1184 Current, A, THD 1186 Current, B, THD 1188 Current, C, THD 1192 Voltage, A-N, THD 1194 Voltage, B-N, THD 1196 Voltage, C-N, THD 1198 Voltage, A-B, THD 12 Voltage, B-C, THD 122 Voltage, C-A, THD 4 Real Power, Total 46 Apparent Power, Total 2 Float RO Y - kw - 2 Float RO Y - kva - 2 Float RO Y - kvar - 2 Float RO Y Float RO Y - Hz derived from Phase A 2 Float RO Y - Amp - 2 Float RO Y - Amp - 2 Float RO Y - Amp - 2 Float RO Y - Amp - 2 Float RO Y - Volt - 2 Float RO Y - Volt - 2 Float RO Y - Volt - 2 Float RO Y - Volt - 2 Float RO Y - Volt - 2 Float RO Y - Volt - 2 Float RO Y - % Float RO Y - % Float RO Y - % Float RO Y - % Float RO Y - % Float RO Y - % Float RO Y - % Float RO Y - % Float RO Y - % Float RO Y - kw - 2 Float RO Y - kva - 2 Float RO Y - kvar - 2 Float RO Y Float RO Y - Hz derived from Phase A 2 Float RO Y - Amp - 2 Float RO Y - Amp - 2 Float RO Y - Amp - 2 Float RO Y - Amp - 2 Float RO Y - Volt - 2 Float RO Y - Volt - 2 Float RO Y - Volt - 2 Float RO Y - Volt - 2 Float RO Y - Volt - 2 Float RO Y - Volt - 2 Float RO Y - % Float RO Y - % Float RO Y - % Float RO Y - % Float RO Y - % Float RO Y - % Float RO Y - % Float RO Y - % Float RO Y - % Integer RO Y W kw Integer RO Y W kva -326
6 Min Max values 4 Reactive Power, Total 48 Power Factor, Total 49 Frequency 46 Current, A, 461 Current, B, 462 Current, C, 463 Current, N, 464 Voltage, A-N, 46 Voltage, B-N, 466 Voltage, C-N, 46 Voltage, A-B, 468 Voltage, B-C, 469 Voltage, C-A, 4 Current, A, THD 41 Current, B, THD 42 Current, C, THD 44 Voltage, A-N, THD 4 Voltage, B-N, THD 46 Voltage, C-N, THD 4 Voltage, A-B, THD 48 Voltage, B-C, THD 49 Voltage, C-A, THD 48 Real Power, Total 481 Apparent Power, Total 482 Reactive Power, Total 483 Power Factor, Total 484 Frequency 48 Current, A, 486 Current, B, 48 Current, C, 488 Current, N, 489 Voltage, A-N, 49 Voltage, B-N, 491 Voltage, C-N, 492 Voltage, A-B, 493 Voltage, B-C, 494 Voltage, C-A, 49 Current, A, THD 496 Current, B, THD 49 Current, C, THD 499 Voltage, A-N, THD 41 Voltage, B-N, THD 411 Voltage, C-N, THD 412 Voltage, A-B, THD 413 Voltage, B-C, THD 414 Voltage, C-A, THD 1 Integer RO Y W kvar Integer RO Y Integer RO Y.1 Hz 4-6 derived from Phase A 1 Integer RO Y I Amp Integer RO Y I Amp Integer RO Y I Amp Integer RO Y I Amp - 1 Integer RO Y V Volt Integer RO Y V Volt Integer RO Y V Volt Integer RO Y V Volt Integer RO Y V Volt Integer RO Y V Volt Integer RO Y.1 % -1 1 Integer RO Y.1 % -1 1 Integer RO Y.1 % -1 1 Integer RO Y.1 % -1 1 Integer RO Y.1 % -1 1 Integer RO Y.1 % -1 1 Integer RO Y.1 % -1 1 Integer RO Y.1 % -1 1 Integer RO Y.1 % -1 1 Integer RO Y W kw Integer RO Y W kva Integer RO Y W kvar Integer RO Y Integer RO Y.1 Hz 4-6 derived from Phase A 1 Integer RO Y I Amp Integer RO Y I Amp Integer RO Y I Amp Integer RO Y I Amp - 1 Integer RO Y V Volt Integer RO Y V Volt Integer RO Y V Volt Integer RO Y V Volt Integer RO Y V Volt Integer RO Y V Volt Integer RO Y.1 % -1 1 Integer RO Y.1 % -1 1 Integer RO Y.1 % -1 1 Integer RO Y.1 % -1 1 Integer RO Y.1 % -1 1 Integer RO Y.1 % -1 1 Integer RO Y.1 % -1 1 Integer RO Y.1 % -1 1 Integer RO Y.1 % -1
7 Demand Values 122 Real Power, Total Demand 124 Apparent Power, Total Demand 126 Reactive Power, Total Demand 128 Real Power, Total Demand 13 Apparent Power, Total Demand 132 Reactive Power, Total Demand 142 Current, A, Demand 144 Current, B, Demand 146 Current, C, Demand 148 Current, A, Demand 1 Current, B, Demand 12 Current, C, Demand 414 Real Power, Total Demand 41 Apparent Power, Total Demand 416 Reactive Power, Total Demand 41 Real Power, Total Demand 418 Apparent Power, Total Demand 419 Reactive Power, Total Demand 424 Current, A, Demand 42 Current, B, Demand 426 Current, C, Demand 42 Current, A, Demand 428 Current, B, Demand 429 Current, C, Demand 2 Float RO N - kw - 2 Float RO N - kva - 2 Float RO N - kvar - 2 Float RO Y - kw - 2 Float RO Y - kva - 2 Float RO Y - kvar - 2 Float RO N - Amp - 2 Float RO N - Amp - 2 Float RO N - Amp - 2 Float RO Y - Amp - 2 Float RO Y - Amp - 2 Float RO Y - Amp - 1 Integer RO N W kw/scale Integer RO N W kva/scale Integer RO N W kvar/scale Integer RO Y W kw/scale Integer RO Y W kva/scale Integer RO Y W kvar/scale Integer RO N I Amp/Scale Integer RO N I Amp/Scale Integer RO N I Amp/Scale Integer RO Y I Amp/Scale Integer RO Y I Amp/Scale Integer RO Y I Amp/Scale -326
8 Alarm Setup & Status 4113 Alarm Status Bitmap 1 Integer RO N - - x - FFF = Alarm OFF 1 = Alarm ON Bit = Alarm Position 1 Bit 1 = Alarm Position 2 Bit 2 = Alarm Position 3 Bit 3 = Alarm Position 4 Bit 4 = Alarm Position Bit = Alarm Position 6 Bit 6 = Alarm Position Bit = Alarm Position 8 Bit 8 = Alarm Position 9 Bit 9 = Alarm Position 1 Bit 1 = Alarm Position 11 Bit 11 = Alarm Position 12 Bit 12 = Alarm Position 13 Bit 13 = Alarm Position 14 Bit 14 = Alarm Position 1 Bit 1 = Not Used 4139 Alarm Setup Semaphore 1 Integer R/W N Enter the amount of time in seconds needed to write the setup of the alarms 414 Alarm Position 1 Configuration 16 - R/CW Y See Alarm Configuration Template 416 Alarm Position 2 Configuration 16 - R/CW Y See Alarm Configuration Template 412 Alarm Position 3 Configuration 16 - R/CW Y See Alarm Configuration Template 4188 Alarm Position 4 Configuration 16 - R/CW Y See Alarm Configuration Template 424 Alarm Position Configuration 16 - R/CW Y See Alarm Configuration Template 422 Alarm Position 6 Configuration 16 - R/CW Y See Alarm Configuration Template 4236 Alarm Position Configuration 16 - R/CW Y See Alarm Configuration Template 422 Alarm Position 8 Configuration 16 - R/CW Y See Alarm Configuration Template 4268 Alarm Position 9 Configuration 16 - R/CW Y See Alarm Configuration Template 4284 Alarm Position 1 Configuration 16 - R/CW Y See Alarm Configuration Template 43 Alarm Position 11 Configuration 16 - R/CW Y See Alarm Configuration Template 4316 Alarm Position 12 Configuration 16 - R/CW Y See Alarm Configuration Template 4332 Alarm Position 13 Configuration 16 - R/CW Y See Alarm Configuration Template 4348 Alarm Position 14 Configuration 16 - R/CW Y See Alarm Configuration Template 4364 Alarm Position 1 Configuration 16 - R/CW Y See Alarm Configuration Template Alarm Configuration Template Base Alarm Type 1 Integer R/CW Y = Over 2 = Under 6 = Digital (OFF to ON) 61 = Digital (ON to OFF) Base + 1 Test Register 1 Integer R/CW Y , , Base + 2 Enable 1 Integer R/CW Y = Disable (default) 1 = Enable Base + 3 Output Association 1 Integer R/CW Y = Disable (default) 1 = Enable Base + 4 Pickup Magnitude 1 Integer R/CW Y Will only evaluate based on Register Value, will not apply scaler Base + Dropout Magnitude 1 Integer R/CW Y Will only evaluate based on Register Value, will not apply scaler Base + 6 Pickup Time Delay 1 Integer R/CW Y - Seconds - 326
9 Alarm Setup & Status Base + Dropout Time Delay 1 Integer R/CW Y - Seconds Base + 8 Label 8 Integer R/CW Y - - See Char Table on Notes Sheet Default Alarms Position Type Test Register Label 1 Over 46 OVER KWt 2 Over 4 OVER KVAt 3 Over 48 OVER KVARt 4 Under 49 UNDER POWER FACTOR T Over 41 OVER U Vll 3p Ave 6 Over 411 OVER V Vln 3p Ave Under 41 UNDER U Vll 3p Ave 8 Under 411 UNDER V Vln 3p Ave 9 Over 412 OVER CURRENT I 3p Ave 1 Over 413 OVER FREQUENCY 11 Under 413 UNDER FREQUENCY 12 Over 44 OVER THD CURRENT Ia 13 Over 42 OVER THD VOLTAGE Vab 14 Digital (OFF to ON) 411 DIGITAL INPUT S1 1 Digital (OFF to ON) 4116 DIGITAL INPUT S2
10 Reset Commands Command entered to reg [4126 Parameters Entered to reg[16 Notes 666 Restart demand metering This does reset Demand s 332 De-energize digital output 3321 Energize digital output 3361 Write 3361 to reset digital output counter 336 Write 336 to reset digital input counters 629 The contents of registers 4-4. Preset Energy Values Note that the CT and PT ratios must be set in the new meter before executing this command 11 Clear the Usage Timers. (Set to ) 142 Reset all Min/Max Values. (Sets values to defaults) Reset Demand values. (Set to ) 38 Clear all Energy Accumulators. (Set to )
11 DL System Firmware Version, Reset System 1 Integer RO Y Firmware Version, Operating 1 Integer RO Y System 2 Serial Number 2 Long RO Y date/time of mfg in UTC 4 Device ID 1 Integer RO Y = PM, PMP, PM1 121 = PM2, PM2P, PM = PM Modbus Address 1 Integer RO Y Baudrate 1 Integer RO Y Password 1 Integer R/W Y always returns 8 Selftest 1 Integer RO N always returns 9 PLOS 1 Integer RO N - -,63 for OK and 63 for BAD 1 Reserved 1 Integer RO N always returns 11 Reserved 1 Integer RO N always returns 12 Reserved 1 Integer RO N always returns 13 Reserved 1 Integer RO N always returns 14 Reserved 1 Integer RO N always returns
12 NV Value is stored in non-volatile memory Scale Scalers keep the range of a variable to 326 to 326 NA / NAN Access R W R/W CR/CW R/CW PW Type UInt Integer Long Float Split Floats Split UInt For integers 3268 and for floats xfc Read Only Write Only Read/Write Configurable Read / Configurable Write Read / Configurable Write Password protected Unsigned 16-bit integer Signed 16-bit integer Unsigned 32-bit integer Upper 16-bits (MSW) in lowest-numbered register (41/11 = MSW/LSW) 32-bit floating point Upper 16-bits (MSW) in lowest-numbered register (41/11 = MSW/LSW) Split into 4 UChars Upper 8-bits (MSW) in lowest-numbered register (2/23 = MSB / LSB) Split into 2 UChars Upper 8-bits (MSW) in lowest-numbered register (2/21 = MSB / LSB) MODBUS COMMANDS SUPPORTED x3: Read Holding Registers x4: Read Input Registers x6: Preset Single Register x1: Preset Multiple Registers x11: Report ID: Return string: byte: address byte1: x11 byte2: #bytes following w/out crc byte3: ID byte = 2 byte4: status = xff bytes+: ID string = "PM4 Power Meter" x2b: Read l t2b Device t CRC Identification, BASIC implementation (x, x1 and x2 data), Conformity Level 1. Object values: x1: "Schneider Electric" x2: "PM4" x3: "Vxx.yyy", where xx.yyy is the OS version number (reformatted version of the Modbus register #1, (Firmware Version, Operating System). If register #1 == 1234, then the x3 data would be "V12 34") SPECIAL NOTES REGARDING When the Operating System is erased, only registers -162 are available. Register 1 (Firmmware Version, Operating System) will read as in this condition. Additionally, the ID string returned from a "Report ID" query (x11) will be 'PMXXX Power Meter - RESET SYSTEM RUNNING'. WARNING - The os is very dependant on the RS version. DLF will do a >= check on the RS for compatability. This will allow a fw file with newer RS to be saved to a meter with an older version of RS and make the meter INOPERABLE. Currently, the PM1 is the only meter that has been produced with different RS code. (vers 2. and 2.1)
13 Available characters are in black Customer calculation for Scalers A B C D E F Current Voltage Power Energy Notes NUL SOH STX ETX EOT ENQ ACK BEL BS HT LF VT FF CR SO SI Scaler PT only NA 1 1 DLE DC1 DC2 DC3 DC4 NAK SYN ETB CAN EM SUB ESC FS GS RS US Secondary SP! " # $ % & ' ( ) * +,. / Primary : ; < = >? Calculated Ratio 1 32 A B C D E F G H I J K L M N O Max Value Possible 9 6 P Q R S T U V W X Y Z [ \ ] ^ _ Actual max value after ratios ` a b c d e f g h i j k l m n o Scaler - edit to make reg value green p q r s t u v w x y z { } ~ DEL Register scaled value Edit values in yellow until Register scaled value is green. I, V, and P are to be scaled between 326. and 326. E is scaled to be between 1 and 1
4111 Usage Minutes 1 Integer RO Y - Minutes 0-59 Y Y YP
Table of Contents 2 Setup & Status Y Y Y Metering Y Y Y Min Max Y Y Y Demand Y Y Y IO Y Y Y Alarms N N Y Reset Commands Y Y Y DL System Y Y Y Notes Y Y Y 5 Setup & Status 24 Usage Hours 2 Float RO Y -
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