80
4.1 HEAT PUMP WATER TEMPERATURE CONTROL
Performed by A3 board
•
The Inverter gestion is working or waiting in accordance with the
ᇞ
T
shown below.
ᇞ
T= T
A
– T
Y
T
A
: Water temperature from the installation – read by sensor TW1.
T
Y
: Resulting water temperature Setpoint Y
Note 1: 10-minute mask time of the Inverter Gestion from WORKING to WAITING to avoid cycling.
Note 2: 3-minute mask time of the Inverter Gestion from WAITING to WORKING to avoid cycling.
•
By the control method the frequency of the compressor’s inverter is controlled in accordance with
the
ᇞ
T
and the return water temperature from the installation.
Inverter frequency is controlled as follows:
When
ᇞ
T is high (not yet reached the Controlled so that the inverter frequency is increased.
water temperature setpoint).
When
ᇞ
T is low
Controlled so that the inverter frequency is decreased or kept.
(approxi1.0 or less in the cooling mode or
approximately -1.0 or more in the heating mode).
When the return water temperature is Controlled so that the inverter frequency is increased.
rising in the cooling mode and
dropping in the heating mode.
When the return water temperature is
Controlled so that the inverter frequency is decreased.
dropping in the cooling mode and
rising in the heating mode.
Note: The fluctuations of the compressor inverter frequency adjustments are calculated taking into account not only
ᇞ
T, but
also-fluctuations in T
A
.
Содержание PHIE 095
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Страница 12: ...12 1 3 2 THREE PHASES MODELS...
Страница 13: ...13...
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Страница 17: ...17 1 4 PHYSICAL CHARACTERISTICS...
Страница 18: ...18...
Страница 19: ...19 1 5 DESCRIPTION 1 5 1 SINGLE PHASE MODELS...
Страница 20: ...20 1 5 2 THREE PHASES MODELS...
Страница 22: ...22...
Страница 23: ...23...
Страница 31: ...31 2 1 FRIGORIFIC HYDRAULIC DIAGRAMS 2 1 1 DIAGRAMS FOR MODELS 095 125 155 157 175 177 195 197...
Страница 32: ...32 2 1 2 DIAGRAMS FOR MODELS 257 307...
Страница 34: ...34 Connection diagram for 155 175 195 Connection diagram for 157 177 197 257 307 257 307...
Страница 38: ...38 Speed control input voltage Vsp Revolution pulse output Control 1 Vcc 2 PG 3 Vsp Power 1 Vm 2 not used 3 GND...
Страница 43: ...43 Failure matrix...
Страница 44: ...44 Failure handling...
Страница 49: ...49 3 1 ELECTRICAL DIAGRAMS 3 1 1 MODEL 095 2 HP 230V Single phase...
Страница 50: ...50 3 1 2 MODEL 125 3 HP 230V Single phase...
Страница 51: ...51 3 1 3 MODELS 155 175 4 5 HP 230V Single phase...
Страница 52: ...52 3 1 3 MODEL 195 6 HP 230V Single phase...
Страница 53: ...53 3 1 3 MODELS 157 177 197 4 5 6 HP 400V Three phases...
Страница 54: ...54 3 1 3 MODELS 257 307 8 10 HP 400V Three phases...
Страница 55: ...55 3 1 4 SYMBOLS...
Страница 56: ...56 3 2 MAIN COMPONENTS DESCRIPTION 3 2 1 CONTROL SYNOPTIC FOR HEAT PUMP ELECTRICAL SUPPORT HEATER APPLICATIONS...
Страница 57: ...57 3 2 2 CONTROL SYNOPTIC FOR HEAT PUMP IN BOILER BACK UP APPLICATIONS...
Страница 65: ...65 A3 board A086VH up side FOR UNIT 125 HIC temperature sensor plug Power LED EEPROM LED...
Страница 76: ...76 HIC board for units 257 307 Hybrid Integrated Circuit for inverter compressor Diode bridge HIC board...
Страница 77: ...77 A4 Supply and filter board for units 257 307...
Страница 85: ...85 4 9 AIR HEAT EXCHANGER DEFROST CONTROL Performed by A3 board 4 9 1 FLOWCHART OF DEFROST CONTROL 1 2 3...
Страница 100: ...100 5 1 5 ALARM DIAGNOSIS E31 F04 F06 F07 F08 F12 P22 P26 P29 For models 095 125 155 157 175 177 195 197...
Страница 101: ...101 For models 257 307...
Страница 104: ...104 For models 095 125 Replace A3 PCB...
Страница 105: ...105 For models 155 157 175 177 195 197...
Страница 106: ...106 For models 257 307...
Страница 107: ...107 For models 095 125...
Страница 108: ...108 For models 155 157 175 177 195 197 Check diode bridge...
Страница 109: ...109 For models 257 307 Check diode bridge...