
75
Addresses from the table are recalculated for the Mod-
bus protocol in the following way:
Table no. 19
Recalculating addresses
Address space
Address calculation
0x0000 … 0x1000
Modbus Adres = Adr.
0x1000 … 0x2000
Modbus Adres = Adr.
0x2000 … 0x3000
Modbus Adres = Adr.
0x3000 … 0x4000
Modbus Adres = Adr.
0x4000 … 0x5000
Modbus Adres = (Adr. / 2)
0x5000 … 0x6000
Modbus Adres = (Adr. / 2)
0x6000 … 0x7000
Modbus Adres = (Adr. / 2)
0x7000 … 0x8000
Modbus Adres = (Adr. / 2)
NOTE: you cannot write a single 16-bit register in the
0x1000 … 0x4000 address spaces. In this case you have
to write the registers in pairs using a command: Preset
Multiple Registers (0x10), which is connected with full
value of 32-bit variable. It means that the record start
address and number of registers must be an even value.
Table no. 20
Variables Main menu
DEC address
Variable
name
Description / Variables Main Menu
States
Type
Read [R]
/Write
[W]
BacNet Modbus
BacNet Modbus
0
0
LanguageAct Selected controller menu language
1 – PL, 2 – EN, 4 – RU
MSV Register
R
1
2
ModeOnOffTP Set work mode (for main screen Type 4) – touch screen
0 – stop, 1 – start
MSV Register
R
2
4
ModeStdCal-
LevelTP
Set work mode (for main screen Type 4) – touch screen
0 – manual, 1 – standby, 2 – timer
MSV Register
R/W
3
6
SetLevelTP Manual mode level setting (for main screen Type 4) – touch screen
1 = 1
AV
Register
R/W
4
8
UnitState
System state (current)
0 – stop, 1 – work, level 1, 2 – work, level 2,
4 – work, level 3, 8 – primary heating,
16 – cooling, 32 – heating, 64 – blocking alarm,
128 – maintenance mode
MSV Register
R/W
5
10
WorkMode1 Set work mode (for main screen Type 1)
0 – stop, 1 – speed 1, 2 – speed 2, 4 – speed
3, 8 – standby, 16 – timer
MSV Register
R/W
6
12
WorkMode2 Set work mode (for main screen Type 2)
1°C = 256 (22°C = 22*256 = 5632 = 0x1600)
MSV Register
R/W
7
14
WorkMode3 Set work mode (for main screen Type 3)
1°C = 256 (22°C = 22*256 = 5632 = 0x1600)
MSV Register
R
8
16
WorkMode4 Set work mode (for main screen Type 4)
1°C = 256 (22°C = 22*256 = 5632 = 0x1600)
MSV Register
R
9
18
Tset
Temperature setting
1°C = 256 (22°C = 22*256 = 5632 = 0x1600)
AV
Register
R
10
20
TsetActual
Set point (taking account of the calendar and the start ramp)
1°C = 256 (22°C = 22*256 = 5632 = 0x1600)
AV
Register
R
11
22
Tmain
Temperature control master sensor temperature
1°C = 256 (22°C = 22*256 = 5632 = 0x1600)
AV
Register
R
12
24
B1
Supply temperature
1°C = 256 (22°C = 22*256 = 5632 = 0x1600)
AV
Register
R
13
26
B2
Exhaust temperature
1°C = 256 (22°C = 22*256 = 5632 = 0x1600)
AV
Register
R
14
28
B3
Exhaust temperature
0 – stop, 1 – start
AV
Register
R
15
30
B4
Exhaust temperature down-stream the recuperation (optional)
1% = 256 (22% = 22*256 = 5632 = 0x1600)
AV
Register
R
16
32
B5
Optional master temperature or temperature downstream the main heater
1% = 256 (22% = 22*256 = 5632 = 0x1600)
AV
Register
R
17
34
B8
Return water temperature from water heater
1A = 256 (22A = 22*256 = 5632 = 0x1600)
AV
Register
R
18
36
Vent
Start/stop signal of unit fans
1Hz = 256 (22Hz = 22*256 = 5632 = 0x1600)
MSV Coil 576
R
19
38
PwrSup
Supply inverter control
1%= 256 (22% = 22*256 = 5632 = 0x1600)
AV
Register
R
20
40
PwrExh
Exhaust inverter control
1% = 256 (22% = 22*256 = 5632 = 0x1600)
AV
Register
R
21
42
Isup
Supply fan motor current
1A = 256 (22A = 22*256 = 5632 = 0x1600)
AV
Register
R
22
44
Fsup
RS485: Supply fan inverter frequency
1Hz = 256 (22Hz = 22*256 = 5632 = 0x1600)
AV
Register
R
23
46
RPMsup
RS485: Supply fan EC motor revolutions
1rpm=256(22rpm = 22*256 = 5632 = 0x1600)
AV
Register
R
24
48
Usup
RS485: Inverter output voltage or DV voltage of supply fan EC motor
1V = 256 (22V = 22*256 = 5632 = 0x1600)
AV
Register
R
25
50
FaultSup
RS485: Supply fan inverter of EC motor alarm code
1A = 1A (HEX) www.el-piast.com/alarms-decoder
AV
Register
R
26
52
ComSup
RS485: Correctness of Modbus communication of ELP controller with supply fan inverter 1% = 256 (22% = 22*256 = 5632 = 0x1600)
AV
Register
R
27
54
Isup2
RS485: Supply fan 2 motor current
1A = 256 (22A = 22*256 = 5632 = 0x1600)
AV
Register
R
28
56
Fsup2
RS485: Supply fan 2 inverter frequency
1Hz = 256 (22Hz = 22*256 = 5632 = 0x1600)
AV
Register
R
29
58
RPMsup2
RS485: Supply fan 2 EC motor revolutions
1rpm=256(22rpm = 22*256 = 5632 = 0x1600)
AV
Register
R
30
60
Usup2
RS485: Inverter output voltage or DV voltage of supply fan 2 EC motor
1V = 256 (22V = 22*256 = 5632 = 0x1600)
AV
Register
R
31
62
FaultSup2
RS485: Supply fan 2 inverter of EC motor alarm code
1A = 1A (HEX) www.el-piast.com/alarms-decoder
AV
Register
R
32
64
ComSup2
RS485: Correctness of Modbus communication of ELP controller with supply fan 2 inverter
1% = 256 (22% = 22*256 = 5632 = 0x1600)
AV
Register
R
Summary of Contents for EVO -T
Page 2: ...SERWIS SERVICE 48 587839950 51 48 587839888 48 510098081 serwis klimor com...
Page 39: ...37...
Page 41: ...39...
Page 55: ...53 NOTATKI...
Page 56: ...SERWIS SERVICE 48 587839950 51 48 510098081 serwis klimor com...
Page 91: ...89 CONTROL AUTOMATION CONTROL...
Page 107: ...105 NOTES...
Page 108: ...SERWIS SERVICE 48 587839950 51 48 510098081 serwis klimor com...
Page 109: ...A Y EVO T EVO T COMPACT KLIMOR EVO T_CS...
Page 115: ...113 5 7 1 2 1 2 DX 1 2 13 C 1 2 1 C 1 2 30...
Page 145: ...143 26 2S 27 2S...
Page 146: ...144 EVO T EVO T COMPACT 28 EH M 18kW 1 PE_ PE_ Max 18...
Page 147: ...145...
Page 148: ...146 EVO T EVO T COMPACT 29 EH M 36 kW 3 Max 12 Max 12 Max 12 PE_ 0 5mm2 blue 0 5mm2 white...
Page 149: ...147 0 5mm2 0 5mm2 0 5mm2 0 5mm2 0 5mm2 0 5mm2 0 5mm2...
Page 150: ...148 EVO T EVO T COMPACT 30 4S 31 4S...
Page 155: ...153 1 2 3 40 15 1 8 HMI HMI OK C HMI 15 1 9 HMI 3 C Alarms history 41 42...
Page 161: ...159 16...
Page 162: ...160 EVO T EVO T COMPACT...
Page 163: ......