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Honeywell EEM400-D-MO Montage- Und Bedienungsanleitung Seite 4

65 a-wirkenergiezähler 3-phasig mit modbus schnittstelle, pic. 1
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Registers
For double registers (4–5, 16–17, 28–29, 30–31, 32–33) the high register is sent first (big_Endian).
Partial counters (30–31, 34-35) can be reset by writing 0 in both registers in the same message.
R
Read Description
1
R Firmware-Version
2
R Number of
supported registers
3
R Number of
supported flags
4–5
R Baudrate
6
R Not Used
7
R Type / ASN function Will give «EE»
8
R Type / ASN function Will give «M4»
9
R Type / ASN function Will give «00»
10
R Type / ASN function Will give «-»
11
R Type / ASN function Will give «D-»
12
R Type / ASN function Will give «MO»
13
R Type / ASN function Will give « » for not MID
14
R Type / ASN function Will give « » for not MID
15
R HW vers. Modif.
16–17
R Serial number low
18
R Serial number high Unique ASCII
19
R Not Used
20
R Not Used
21
R Not Used
22
R Status
23
R Modbus Timeout
24 R/W
Modbus Address
1)
25
R Error register
26
R Not Used
27
R Tariff register
28–29
R WT1 total
Counter Energy
Total Tariff 1
30–31 R/W WT1 partial
Counter Energy
Partial Tariff 1
32–33
R WT2 total
Counter Energy
Total Tariff 2
Unit
Ex: 11 = FW 1.1
34–35 R/W WT2 partial
Will give 52
Will give 0
Ex: Baudrate High = 1
Baudrate Low = 49'664
1 × 65'536 + 49'664 =
115'200 bps
Will give 0
or «–M» for MID Version
or «ID» for MID Version
Ex: 11 = HW 1.1
Unique ASCII
serial number
serial number
Will give 0
Will give 0
Will give 0
0 = no Problem
1 = problem with last
communication request
ms
Range 1–247
0 : No error
1 : Error Phase 1
2 : Error Phase 2
3 : Error Phase 1 + 2
4 : Error Phase 3
5 : Error Phase 1 + 3
6 : Error Phase 2 + 3
7 : Error Phase 1, 2 + 3
Will give 0
0 is Tariff 1
4 is tariff 2
10
kWh (multiplier 0,01)
–2
Ex: WT1 total High = 13
WT1 total Low = 60'383
13 × 65'536 + 60'383 =
912'351 = 9123.51 kWh
10
kWh (multiplier 0,01)
–2
Ex: WT1 partial High = 13
1)
WT1 partial Low = 60'383
broadcast message.
13 × 65'536 + 60'383 =
912'351 = 9123.51 kWh
10
–2
kWh (multiplier 0,01)
Ex: WT2 total High = 13
WT2 total Low = 60'383
13 × 65'536 + 60'383 =
912'351 = 9123.51 kWh
R
Read Description
Unit
10
Counter Energy
Ex: WT2 partial High = 13
Partial Tariff 2
WT2 partial Low = 60'383
13 × 65'536 + 60'383
=912'351=9123.51 kWh
36
R URMS phase 1
V
Effective Voltage of
Ex: 230 = 230 V
Phase 1
37
R IRMS phase 1
10
Effective Current of
Ex: 314 = 31.4 A
Phase 1
38
R PRMS phase 1
10
Effective active
Ex: 1545 = 15,45 kW
Power of Phase 1
39
R QRMS phase 1
10
Effective reactive
Ex: 1545 = 15,45 kvar
Power of Phase 1
40
R cos phi phase 1
10
Ex: 67 = 0,67
41
R URMS phase 2
V
Effective Voltage of
Ex: 230 = 230 V
Phase 2
42
R IRMS phase 2
10
Effective Current of
Ex: 314 = 31.4 A
Phase 2
43
R PRMS phase 2
10
Effective active
Ex: 1545 = 15,45 kW
Power of Phase 2
44
R QRMS phase 2
10
Effective reactive
Ex: 1545=15,45 kvar
Power of Phase 2
45
R cos phi phase 2
10
Ex: 67 = 0,67
46
R URMS phase 3
V
Effective Voltage of
Ex: 230 = 230 V
Phase 3
47
R IRMS phase 3
10
Effective Current of
Ex: 314 = 31.4 A
Phase 3
48
R PRMS phase 3
10
Effective active
Ex: 1545 = 15,45 kW
Power of Phase 3
49
R QRMS phase 3
10
Effective reactive
Ex: 1545=15,45 kvar
Power of Phase 3
50
R cos phi phase 3
10
Ex: 67 = 0,67
51
R PRMS total
10
Effective active
Ex: 1545 = 15,45 kW
Power of all phases
52
R QRMS total
10
Effective reactive
Ex: 1545 = 15,45 kvar
power of all phases
The Modbus Address register is not writable with a
kWh (multiplier 0,01)
–2
A (multiplier 0,1)
–1
kW (multiplier 0,01)
–2
kvar (multiplier 0,01)
-2
(multiplier 0,01)
–2
–1
A (multiplier 0,1)
kW (multiplier 0,01)
–2
kvar (multiplier 0,01)
–2
(multiplier 0,01)
–2
A (multiplier 0,1)
–1
kW (multiplier 0,01)
–2
kvar (multiplier 0,01)
–2
(multiplier 0,01)
–2
kW (multiplier 0,01)
–2
kvar (multiplier 0,01)
–2

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