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Model:

 PUHY-P168TSJMU-A

(Consists of One PUHY-P96TJMU-A, One PUHY-P72TJMU-A, and One CMY-Y100VBK2 Twinning Kit)

OUTDOOR VRF HEAT PUMP SYSTEM FEATURES

• 

3-phase, 208/230V

• 

Modular variable refrigerant flow (VRF) systems;

 

  smaller capacity units can be piped together to form a single, 

  large-capacity two-pipe system

• Required Twinning Kit allows for easy field piping connection

• Selectable fan static, 0.12 or 0.24"WG external static pressure; 

  factory set to 0"WG

• Maximum Total Refrigerant Piping Length: 3,280'; Maximum  

  Refrigerant Line Length: 541'; Maximum Control Wiring Length: 

  1,650'

• Connects to CITY MULTI indoor units; controlled via  

  CITY MULTI Controls Network (CMCN)

• External finish: Pre-coated Galvanized-steel Sheets

• Operating Temperature Range 

  Cooling (Outdoor): 23° ~ 115°F (-5° ~ +46°C) DB

  Heating (Outdoor): -4° ~ +60°F (-20° ~ +16°C) WB

PUHY-P72TJMU-A

OPTIONAL PARTS

□ Twinning Kit*.…………………………………...…….CMY-Y100VBK2

□ T-Branch Joint (≤ 72,000 Btu/h)………………..........CMY-Y102S-G2

□ T-Branch Joint (≤ 144,000 Btu/h)……………….…....CMY-Y102L-G2

□ T-Branch Joint (≤ 234,000 Btu/h)……………….........CMY-Y202-G2

□ Header (4-Branch; ≤ 72,000 Btu/h)........………………CMY-Y104-G

□ Header (8-Branch; ≤ 144,000 Btu/h)......………………CMY-Y108-G

□ Header (10-Branch; ≤ 234,000 Btu/h)....………………CMY-Y1010-G

* Twinning Kit is necessary to combine the refrigerant flows of the  

   modules and is sold separately.

Specifications

System 

Module 1 

Module 2

Unit Type

PUHY-P168TSJMU-A

PUHY-P96TJMU-A

PUHY-P72TJMU-A

Nominal Cooling Capacity

Btu/h

168,000

96,000

72,000

Nominal Heating Capacity

Btu/h

188,000

108,000

80,000

External Dimensions (H x W x D) In. / mm

Refer to Module Data

65 x 48-1/16 x 29-15/16 /  

1,650 x 1,220 x 760

65 x 36-1/4 x 29-15/16 / 

1,650 x 920 x 760

Net Weight

Lbs. / kg

938 / 425

497 / 225

441 / 200

Electrical Power Requirements

Voltage, Phase, Hertz

Refer to Module Data**

208 / 230V, 3-phase, 60Hz**

Cooling Power Input

kW

13.62

Refer to System Data

Heating Power Input

kW

14.65

Cooling Current (208/230V)

R.L.A.

42.0 / 37.9

Refer to System Data

Heating Current (208/230V)

R.L.A.

45.1 / 40.8

Minimum Circuit Ampacity 

(MCA)**

A

Refer to Module Data**

36 / 34**

25 / 24**

Recommended Fuse/Breaker 

Size**

A

Refer to Module Data**

40**

30**

Maximum Fuse Size**

A

Refer to Module Data**

50 / 50**

30 / 30**

Piping Diameter

Refer to System Data

From Twinning Kit to Indoor Units 

(Brazed) (In. / mm)

Liquid (High Pressure)

5/8 / 15.88

Gas (Low Pressure)

1-1/8 / 28.58

From Modules to Twinning Kit 

(Brazed) (In. / mm)

Liquid (High Pressure)

Refer to Module Data

3/8 / 9.52

3/8 / 9.52

Gas (Low Pressure)

7/8 / 22.2

3/4 / 19.05

Indoor Unit

Total Capacity

50 to 130% of ODUs

Refer to System Data

Model / Quantity

P06 ~ P96 / 1 to 36

Sound Pressure Levels

dB(A)

61.0

58.0

58.0

Fan

Refer to Module Data

Type x Quantity

Propeller Fan x 1

Propeller Fan x 1

Airflow Rate

CFM

6,180

6,180

Direct-drive Inverter Motor Output

kW

0.92

0.92

Compressor Operating Range

8% to 100%

Refer to System Data

Compressor Type x Quantity

Refer to Module Data

Inverter-driven Scroll Hermetic x 1 Inverter-driven Scroll Hermetic x 1

Compressor Motor Output

kW

6.8

5.1

Compressor Crankcase Heater

kW

0.045

0.035

Refrigerant

Refer to Module Data

R410A

Lubricant

MEL32

High-pressure Protection Device

Refer to Module Data

601 psi / 4.15 MPa

601 psi / 4.15 MPa

Compressor / Fan Protection Device

Overheat Protection / Thermal Switch Overheat Protection / Thermal Switch

Inverter Protection Device

Overheat / Overcurrent Protection Overheat / Overcurrent Protection

Blue Fin Anti-corrosion Protection: 

Cellulose- and polyurethane-resin coating treatment applied to condenser coil that protects it from air contaminants;  

≥1μm thick; Salt Spray Test Method - no unusual rust development to 480 hours.

PUHY-P96TJMU-A

** Each individual module requires a separate electrical connection. Reference electrical data for each individual module.

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