Refrigerant System Diagram - Mitsubishi Electric PUHZ-W50VHA Service Manual

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7

REFRIGERANT SYSTEM DIAGRAM

PUHZ-W50VHA(-BS)
PUHZ-W85VHA(-BS)
Water OUT
Plate HEX
TH32
Water IN
TH6
Symbol
COMP
Compressor
H/P SW
High pressure switch (63H)
Plate HEX
Plate Heat Exchanger
REV/V
Reversing (4-way) valve (21S4)
S/V
Solenoid valve
CHECK/V
Check valve
P-Sensor
Pressure sensor (63HS)
P/B
Power board
LEV-A
Linear expansion valve -A
LEV-B
Linear expansion valve -B
TH32
Inlet water temperature thermistor
TH3
Liquid temperature thermistor
TH4
Discharge temperature thermistor
Plate HEX liquid temperature thermistor
TH6
TH7
Ambient temperature thermistor
TH8
Heatsink temperature thermistor
TH33
Comp.shell temperature thermistor
Receiver
Receiver
CHECK/V
REV/V
CHECK/V
Receiver
Strainer
(#100)
LEV-B
Strainer(#100)
Part name
DC inverter twin rotary compressor (Mitsubishi Electric Corporation)
For protection (OFF:4.15MPa)
ACH30 - 30 Plates (Alfa Laval):W50 / ACH30 - 40 Plates (Alfa Laval):W85
Change the refrigerant circuit (Heating / Cooling) and for Defrosting
For production test use
High pressure / Low pressure / For production test use
For calculation of the condensing temperature from high pressure
Inverter power board
Heating:Secondary LEV
Heating:Primary LEV
For freeze protection and for compressor frequency control
Heating:Evaporating temperature
For LEV control and for compressor protection
Heating:Sub cool liquid temperature
For fan control and for compressor frequency control
For power board protection
For compressor protection
For accumulation of refrigerant
P-Sensor
S/V
CHECK/V
H/P SW
TH33 (W50 only)
TH4
Strainer
(#100)
COMP
LEV-A
Strainer(#100)
Detail
Cooling:Primary LEV
Cooling:Secondary LEV
19
TH7
Distributor
TH8
P/B
Refrigerant flow in heating
Refrigerant flow in cooling
Cooling:Sub cool liquid temperature
Cooling:Evaporating temperature
TH3

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