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Klimor EVO -T - Page 79

Klimor EVO -T
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77
96 192 Exh3 Maximum exhaust eciency 1% = 256 (22% = 22*256 = 5632 = 0x1600) AV Register R/W
97 194 Rsexh RS485 of exhaust inverter 0 – inactive, 1 – active MSV
Coil 3104
R/W
98 196 RSexh2 RS485 of exhaust inverter 2 0 – inactive, 1 – active MSV
Coil 3136
R/W
99 198 AdrExh RS485 of exhaust inverter 1 = 256 (22 = 22*256 = 5632 = 0x1600) AV Register R/W
100 200 AdrExh2 RS485 of exhaust inverter 2 1 = 256 (22 = 22*256 = 5632 = 0x1600) AV Register R/W
101 202 TaccVent Inverter acceleration time 1s = 256 (22s = 22*256 = 5632 = 0x1600) AV Register R/W
102 204 TdecVent Inverter stopping time 1s = 256 (22s = 22*256 = 5632 = 0x1600) AV Register R/W
103 206 RECproc Share in recuperation temperature control 1% = 256 (22% = 22*256 = 5632 = 0x1600) AV Register R/W
105 210 MIXproc Share in mixing chamber temperature control 1%=256 (22% = 22*256 = 5632 = 0x1600) AV Register R/W
106 212 h_c_proc Share in heater/cooler temperature control 1%=256 (22% = 22*256 = 5632 = 0x1600) AV Register R
107 214 Kp_Heat Temperature controller strengthening – heating 1 = 256 (22 = 22*256 = 5632 = 0x1600) AV Register R/W
108 216 Ti_Heat Temperature controller constant of integration – heating 1s = 256 (22s = 22*256 = 5632 = 0x1600) AV Register R/W
109 218 Kp_Cool Temperature controller strengthening – cooling 1 = 256 (22 = 22*256 = 5632 = 0x1600) AV Register R/W
110 220 Ti_Cool Temperature controller constant of integration – cooling 1s = 256 (22s = 22*256 = 5632 = 0x1600) AV Register R/W
111 222 PIcoolingAct Cooling PI 0 – summer, 1 – summer/winter MSV
Coil 3552
R/W
112 224 DelOnPIcool Contribution in control of temperature recovery 1% = 256 (22% = 22*256 = 5632 = 0x1600) AV Register R/W
113 226 Kp_Blow Minimum and maximum supply temperature controller strengthening 1 = 256 (22 = 22*256 = 5632 = 0x1600) AV Register R/W
114 228 Ti_Blow Minimum and maximum supply temperature controller constant of integration 1s = 256 (22s = 22*256 = 5632 = 0x1600) AV Register R/W
115 230 TminBlow Minimum supply temperature 1°C = 256 (22°C = 22*256 = 5632 = 0x1600) AV Register R/W
116 232 TmaxBlow Maximum supply temperature 1°C=256(22°C = 22*256 = 5632 = 0x1600) AV Register R/W
117 234 TsetBlowAct Current supply set point for type 2 controller 1°C = 256 (22°C = 22*256 = 5632 = 0x1600) AV Register R
118 236 RecDown Recuperation start ramp 1s = 256 (22s = 22*256 = 5632 = 0x1600) AV Register R/W
119 238 TlimRec Minimum allowed exhaust temperature downstream the recuperation (frosting) 1°C = 256 (22°C = 22*256 = 5632 = 0x1600) AV Register R/W
120 240 KpRec Strengthening the controller securing against recuperation-frosting 1 = 256 (22 = 22*256 = 5632 = 0x1600) AV Register R/W
121 242 TiRec Constant of integration of the controller securing against recuperation frosting 1s = 256 (22s = 22*256 = 5632 = 0x1600) AV Register R/W
122 244 InitT100 Primary heating time with 100% valve opening, regardless of min, max T.zewn 1°C=256(22°C = 22*256 = 5632 = 0x1600) AV Register R/W
123 246 InitTscale Primary heating time with percentage valve opening 1s = 256 (22s = 22*256 = 5632 = 0x1600) AV Register R/W
124 248 RampEn Drop ramp 0 – inactive, 1 – active MSV
Coil 3968
R/W
125 250 RampTime Drop ramp time 1s = 256 (22s = 22*256 = 5632 = 0x1600) AV Register R/W
126 252 Init_Tmin Minimum external temperature of the valve control scale during preheating 1°C = 256 (22°C = 22*256 = 5632 = 0x1600) AV Register R/W
127 254 InitVTmin Valve control during preheating for external temperature equal to Min T.zewn 1% = 256 (22% = 22*256 = 5632 = 0x1600) AV Register R/W
128 256 Init_Tmax Maximum external temperature of the valve control scale during preheating 1°C = 256 (22°C = 22*256 = 5632 = 0x1600) AV Register R/W
129 258 InitVTmax Valve control during preheating for external temperature equal to Max T.zewn 1% = 256 (22% = 22*256 = 5632 = 0x1600) AV Register R/W
130 260 Tlim1 Pump activation temperature 1°C = 256 (22°C = 22*256 = 5632 = 0x1600) AV Register R/W
131 262 DelOM1 Delay in deactivation of the water heater circulating pump 1s = 256 (22s = 22*256 = 5632 = 0x1600) AV Register R/W
132 264 MinValve Minimum heater valve opening 1% = 256 (22% = 22*256 = 5632 = 0x1600) AV Register R/W
133 266 TbActive Activation of heater protection via return water temperature sensor 0 – inactive, 1 – active MSV
Coil 4256
R/W
134 268 Tlim2
Activation of Frost protection function on the side of the water in relation to the
temperature lower than this parameter
1°C = 256 (22°C = 22*256 = 5632 = 0x1600) AV
Register
R/W
135 270 TbStopFrost
Return temperature threshold setting below which the system switches to he-
ating mode (during standstill), connected with blocking alarm A_ThHWwater
1°C = 256 (22°C = 22*256 = 5632 = 0x1600) AV Register R/W
136 272 TbStartFrost
Return temperature threshold setting below which the system switches to he-
ating mode (during work), connected with blocking alarm A_ThHWwater
1°C = 256 (22°C = 22*256 = 5632 = 0x1600) AV Register R/W
137 274 TbStopReg
Heater water return temperature setting, valve is opened at low temperature,
regardless of the main heater control signal (during standstill)
1°C = 256 (22°C = 22*256 = 5632 = 0x1600) AV Register R/W
138 276 TbStartReg
Heater water return temperature setting, valve is opened at low temperature,
regardless of the main heater control signal (during work)
1°C = 256 (22°C = 22*256 = 5632 = 0x1600) AV Register R/W
139 278 KpBack Strengthening the heater return water temperature controller 1 = 256 (22 = 22*256 = 5632 = 0x1600) AV Register R/W
140 280 TiBack Constant of integration of the heater return water tempera-ture controller 1s = 256 (22s = 22*256 = 5632 = 0x1600) AV Register R/W
141 282 HW_Sec Activation of water heater pump protection 0 – inactive, 1 – active MSV
Coil 4512
R/W
142 284 HW_SecDP Water heater pump standstill time 1day= 256(22days=22*256=5632=0x1600) AV Register R/W
143 286 HW_SecT Water heater pump start time 1s = 256 (22s = 22*256 = 5632 = 0x1600) AV Register R/W
144 288 mBreak Minimum DX cooler standstill time 1s = 256 (22s = 22*256 = 5632 = 0x1600) AV Register R/W
145 290 mWork Minimum working time of DX cooler 1s = 256 (22s = 22*256 = 5632 = 0x1600) AV Register R/W
146
292 Tout_min Minimum external temperature above which a DX cooler may work 1°C = 256 (22°C = 22*256 = 5632 = 0x1600) AV Register R/W
147 294 II_IIIactive Activation of the 2nd degree of the DX cooler 0 – inactive, 1 – active MSV
Coil 4704
R/W
148 296 CascadeCX Activation of cascade work of the DX cooler 0 – inactive (1->2), 1 – active (1->2->1+2) MSV
Coil 4736
R/W
149 298 II stage Percentage division for the 2nd degree of the DX cooler 1%=256 (22% = 22*256 = 5632 = 0x1600) AV Register R/W
150 300 III stage Percentage division for the 3rd degree of the DX cooler 1%=256 (22% = 22*256 = 5632 = 0x1600) AV Register R/W

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