
COMMUNICATIONS
Modbus RTU Communication
42
The following ranges are scaled by a
multiplier
(shown in this table as multi = x.x). For
example, if a voltage of 100 V is reported by Modbus as 1000, the user has to multiply
the Modbus value by 0.1 for the actual value of the reading.
300
R
N
Average Voltage
0 to 9000.0 multi
= 0.1
Average voltage across all phases.
301
R
N
A-B Voltage
0 to 9000.0 multi
= 0.1
Phase A to Phase B voltage reading
302
R
N
B-C Voltage
0 to 9000.0 multi
= 0.1
Phase B to Phase C voltage reading
303
R
N
C-A Voltage
0 to 9000.0 multi
= 0.1
Phase C to Phase A voltage reading
304
R
N
L-N Voltage
0 to 9000.0 multi
= 0.1
Line-to-neutral voltage reading
305
R
N
Frequency
45.0 to 66.0 multi
= 0.1
Line frequency measurement
306
R
N
Phase Order
0 - Undefined
1 - A-B-C
2 - A-C-B
Phase Order
307
R
N
Voltage Unbalance 0 to 100.0 multi =
0.1
Voltage unbalance percentage
308
R
N
A-B Min Voltage
0 to 1320.0 multi =
0.1
Minimum phase-to-phase voltage during the last start
309
R
N
B-C Min Voltage
0 to 1320.0 multi=
0.1
Minimum phase-to-phase voltage during the last start
310
R
N
C-A Min Voltage
0 to 1320.0 multi =
0.1
Minimum phase-to-phase voltage during the last start
311
R
N
Average Current
0 to 14000.0 multi
= 0.1
Average current among all phases
312
R
N
Phase A Current
0 to 14000.0 multi
= 0.1
Phase A current
313
R
N
Phase B Current
0 to 14000.0 multi
= 0.1
Phase B current
314
R
N
Phase C Current
0 to 14000.0 multi
= 0.1
Phase C current
315
R
N
Ground Current
0 to 14000.0 multi
= 0.1
Ground current
316
R
N
Current Unbalance 0 to 100.0 multi
= 0.1
Current unbalance percentage
317
R
N
Peak Current
0 to 14000.0 multi
= 0.1
Peak inrush current during the last start
318
R
N
Present Real
Power
-2000.0 to 2000.0 multi
= 0.1
Real power in kW
319
R
N
Present Apparent
Power
-2000.0 to 2000.0 multi
= 0.1
Apparent power in kVA
320
R
N
Present Reactive
Power
-2000.0 to 2000.0 multi
= 0.1
Reactive power in kVAR
321
R
N
Average PF
-1.00 to 1.00 multi =
0.0 1
Power Factor
Mod
Bus R/W
RC
Address Name
Choices/Range
Description
Содержание SUBMONITOR CONNECT MT1111
Страница 1: ...franklinwater com SUBMONITORCONNECT Installation and Operation Manual ...
Страница 60: ...SPECIFICATIONS Wiring Diagrams for Panels 60 Standard SMS Panel Using Current Transformers 200 480VAC MT1311 ...
Страница 61: ...SPECIFICATIONS Wiring Diagrams for Panels 61 Standard SMS Panel Using Current Transformers 600VAC MT1311 ...
Страница 62: ...SPECIFICATIONS Wiring Diagrams for Panels 62 Standard SMS Panel with PWM Contactor Output MT2211 ...
Страница 63: ...SPECIFICATIONS Wiring Diagrams for Panels 63 Reduced Voltage SMS Panel with Relay Contactor Output MT1311 ...
Страница 66: ...SPECIFICATIONS Wiring Diagrams for Panels 66 Reduced Voltage SMS Panel with PWM Contactor Output MT2211 ...
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Страница 73: ...ESPAÑOL ES franklinagua com SUBMONITORCONNECT Manual de instalación y funcionamiento ...
Страница 142: ...ESPECIFICACIONES Diagramas de cableado para paneles 70 Panel SMS estándar con salida de contactor PWM MT2211 ...
Страница 146: ...ESPECIFICACIONES Diagramas de cableado para paneles 74 Panel SMS de voltaje reducido con salida de contactor PWM MT2211 ...
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Страница 153: ...franklinwater com FRANÇAIS FR SUBMONITORCONNECT Manuel d installation et d utilisation ...
Страница 220: ...SPÉCIFICATIONS Diagrammes de câblage pour les panneaux 68 Panneau SMS standard avec sortie de contacteur PWM MT2211 ...
Страница 229: ...NOTES 77 NOTES ...
Страница 230: ...NOTES 78 NOTES ...
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