Carrier PCV015-060 specifications Wshp Open Control

Page 20

RED

+ 24vac

 

 

 

 

WHT

 

 

 

 

 

BRN

 

 

 

 

 

 

 

 

 

 

 

 

 

GRN

 

 

 

 

 

 

PINK

 

 

 

 

 

ORN

 

SPACE RH

 

SPACE CO2

 

YLW

 

 

 

SENSOR

 

SENSOR

 

BLU

 

 

 

 

 

 

+24vac

 

+24vac

 

 

 

 

 

 

 

RED

 

 

+

 

+

 

BLU

 

 

 

 

 

 

 

 

 

ORN

 

 

 

 

 

4-20mA

 

4-20mA

 

 

 

 

 

BRN

-

 

-

 

 

 

 

 

 

 

 

 

 

 

PINK

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

VIO

FIELD INSTALLED (OPTIONAL) – SEE NOTE 2

PINK

J1

 

J2

6

5

4

3

2

1

10

1

7

1

 

 

 

J4

8

7

6

5

4

3

2

1

J5

Condensate

(DI-3/Dry Contact)

Overflow Switch

 

- Gnd

Fan (DO-1) (Fan On or Low Speed)

Aux Heat (DO-2)

Reversing Valve (DO-3)

Comp #2 (DO-4)

Comp #1 (DO-5)

Comp Status (DI-5) (If not installed, it must be connected to DO-5) LWT (Input 6)

SAT (LAT) (Input 7)

AO1 – Aux Reheat or Cond.

WTR. Loop Econ. (AO 1)

OA DAMPER (AO-2)

 

 

 

 

 

LEGEND

AI

 

 

 

Analog Input

AO

 

 

 

Analog Output

BI

 

 

 

Binary Input

BO

 

 

 

Binary Output

SPT

 

 

 

Space Temperature

 

 

 

 

 

 

 

 

 

Factory Wiring

 

 

 

 

 

 

 

 

 

Field Wiring

 

 

 

 

 

 

 

 

 

NOTES:

1.Mount the water source heat pump controller in the equipment controls enclosure with at least two #6 x 1 in. self-tapping screws. Allow adequate clearance for wiring.

2.Verify sensor power and wiring requirements prior to making any terminations. Sen- sors requiring a separate isolated 24 vac power source will not utilize WSHP termi- nals J4-1, or 4.

20

J12

MSB LSB

9 0

1

2

9 0

1

8

 

8

2

7

 

3

7

3

6

4

 

6

4

5

 

 

5

 

MSTP Baud

Field Installed

Local Access Port

4

RED4

3

BLACK3

2

WHITE2

1

GREEN1

J13

 

1 2

J22

To

SPT PLUS

J11

1 2 3 4 5 6 7 8

DEHUMIDIFY OUTPUT CONTACT (DO-6) (FACTORY OPTION)

FAN SPEED (DO-7) (MED OR LOW)

FAN SPEED (DO-8) (HIGH OR FAN ON )

WSHP Open Inputs and Outputs Table

9600

19.2k

38.4k

76.8k

 

J17

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

SW3

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

1

2

3

J14

 

 

 

 

 

 

 

 

N

4

3

2

1

J19

 

 

 

8

7

6

5

4

3

2

1

O

 

 

 

 

J20

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

FIELD INSTALLED

 

INPUT/OUTPUT TYPE

 

 

 

 

 

 

 

 

SPT PLUS Sensor

 

 

Inputs

 

Shown

 

 

Space Temperature Sensor

 

 

Space Relative Humidity

Rnet Terminals (J1

To WSHPController

Indoor Air Quality

Condensate Switch

StageRED

1 Compressor Status

BLACK

WHITE

GREEN

Leaving Condenser Water Temperature

Supply Air Temperature

 

 

 

PART NUMBERS

TYPE OF I/O

CONNECTION

CHANNEL

PIN NUMBERS

DESIGNATION

 

 

SPS, SPPL, SPP

Communicating

J13, 1 - 4

Local Access Port

33ZCSENSRH-01

AI (4 - 20mA)

J4, 5 and 6

Analog Input 1

33ZCSENCO2

AI (4 -20mA)

J4, 2 and 3

Analog Input 2

N/A

BI (Dry Contacts)

J1, 2

Binary Input 3

N/A

BI (Dry Contacts)

J1, 10

Binary Input 5

10K Type II

AI (10K Thermistor)

J2, 1 and 2

Analog Input 6

33ZCSENSAT

AI (10K Thermistor)

J2, 3 and 4

Analog Input 7

FIELD INSTALLED

 

 

 

 

SPT PLUS Sensor

 

 

 

 

Shown

To WSHP Controller Rnet Terminals (J13)

RED

BLACK

WHITE

GREEN

 

+12V

Rnet-

Rnet+

Gnd

 

 

 

 

 

DB

 

 

 

 

 

 

 

5BT81BT4-012207

Install BT485 where device is located at the end of network segment only.

3)

 

 

 

Outputs

 

Modulating Valve (Auxiliary Heat/Water

Economizer)

+12V

Rnet-

Rnet+

Gnd

Outside Air Damper

Supply Fan On/Low Speed

(3 Speed Only)

Auxiliary Heat or 2-Position Water Loop Economizer

Reversing Valve (B or O Operation)

Compressor 2nd Stage

Compressor 1st Stage

Dehumidification Relay

Fan Speed Medium/Low (3 Speed Only)

Fan Speed High/Low (3 Speed Only)

*These inputs are configurable.

N/A

AO (0-10Vdc/2 - 10Vdc)

J2 4 and 5*

Analog Output 1

N/A

AO (0-10Vdc/2 - 10Vdc)

J22 1 and 2*

Analog Output 2

N/A

BO Relay (24VAC, 1A)

J1, 4*

Binary Output 1 (G)

N/A

BO Relay (24VAC, 1A)

J1, 5*

Binary Output 2

N/A

BO Relay (24VAC, 1A)

J1, 6*

Binary Output 3 (RV)

N/A

BO Relay (24VAC, 1A)

J1, 7

Binary Output 4 (Y2)

N/A

BO Relay (24VAC, 1A)

J1, 8

Binary Output 5 (Y1)

N/A

BO Relay (24VAC, 1A)

J11, 7 and 8 (NO)

Binary Output 6

N/A

BO Relay (24VAC, 1A)

J11, 5 and 6 (NO)*

Binary Output 7

N/A

BO Relay (24VAC, 1A)

J11, 2 and 3 (NO)*

Binary Output 8

 

 

 

 

Fig. 22 — WSHP Open Control

Image 20
Contents Contents Safety ConsiderationsInstallation General209 224 50PCH,PCV Unit Physical Data203 218 8412 Connections 50PCHOpening Unit IPTTypical Installation 50PCH Units A50-8413 Typical Vertical Installation 50PCV Units A50-8489 Install Condensate DrainMount the Unit Slope to drain A50-6261tfMetal Hose Minimum Bend Radii Wire Field Power Supply FittingLOC BMCMves NECRVS TXVHigh-Pressure Water Switch Power BlockHpws Clippable Field Selection JumperLoss of Charge Pressure Switch Condensate Pan Motorized Valve End Switch Temperature SwitchA50-8493 LONNational Electrical Code Temperature Switch A50-8440A50-8355 A50 83548356 LWT Wshp Open Control 50PCH,PCV Unit Electrical Data A50-8162MCA FLA HacrA50-8442 Wire Field ControlsA50-8441 Rnet Wiring Specifications Rnet WiringField-Supplied Sensors for Wshp Open Controller SPT SensorsPRE-START-UP Blower Speed Selection50PCV Blower Performance with Hot Water Reheat HWR Option 50PCV Blower Performance with Wet Coil50PCH,PCV Blower Performance Standard Unit 50PCH,PCV Blower Performance High-Static UnitField Selectable Inputs Complete C Control Jumper Settings Refer toDeluxe D Control Jumper Settings Refer to , 15, DIP Switch Block S2 Accessory 1 Relay Options DIP Switch Block S2 Accessory 2 Relay OptionsSTART-UP Operating LimitsOperating Limits 50PCH,PCV Units Unit Start-Up Cooling ModeWater Temperature Change Through Heat Exchanger 50PC036 Typical Unit Operating Pressures and Temperatures 50PC024 Typical Unit Operating Pressures and Temperatures50PC030 Typical Unit Operating Pressures and Temperatures 50PC042 Typical Unit Operating Pressures and Temperatures 50PC048 Typical Unit Operating Pressures and Temperatures50PC060 Typical Unit Operating Pressures and Temperatures Temp GPM/ton Pressure HeatUnit Start-Up Heating Mode Unit Start-Up with Wshp Open ControlsCoaxial Water Pressure Drop 50PC Pressure DROP, psi kPaGpm 30 F 50 F 70 F 90 F SizeApproximate Fluid Volume gal Per 100 Ft of Pipe Antifreeze Percentages by VolumeOperation Units with Aquazone Complete C ControlUnits with Wshp Open Multiple Protocol Auxiliary Modulating Hot Water/Steam Heating Reheat Page Aquazone Deluxe D Control LED Indica Complete C Control LED Code Fault DescriptionsComplete C and Deluxe D Board System Test ESD ServiceDescription Status LED Test LED ’ to 4’ Refrigerant ChargingAir Coil Fan Motor Removal A50-8163 TroubleshootingReplacing the Wshp Open Controller’s Bat Troubleshooting Air temperature out of rangeCooling mode FP1125 F or Reduced or no airflow in heatReduced or no water flow Reduced airflow in coolingAppendix a Wshp Open Screen Configuration Alarm StatusStatus SensorAppendix a Wshp Open Screen Configuration MaintenanceSystem Settings ConfigurationSchedule Test Appendix a Wshp Screen Open ConfigurationService Screen Name Configuration ServicePoint Name Password Editable Range Default Level Alarm Page Copyright 2009 Carrier Corporation 50PCH,PCV START-UP Checklist II. START-UPHeating Cycle Analysis Cooling Cycle AnalysisA50-8445 A50-8446

PCV015-060 specifications

The Carrier PCV015-060 is a cutting-edge packaged cooling and heating unit designed for commercial applications that demand high efficiency, reliability, and adaptability. This model is particularly renowned for its robust performance, making it an ideal choice for businesses seeking optimal indoor climate control.

One of the standout features of the PCV015-060 is its impressive energy efficiency. Equipped with advanced scroll compressors, this unit operates with a higher energy efficiency ratio (EER), translating to lower operational costs and reduced environmental impact. The incorporation of eco-friendly refrigerants further bolsters its sustainability credentials, ensuring compliance with modern environmental regulations.

The PCV015-060 showcases superior airflow design, which minimizes noise levels while maximizing thermal comfort. Its high-efficiency evaporator and condenser coils facilitate enhanced heat transfer, ensuring effective cooling and heating performance even in extreme weather conditions. This model is also designed with multiple fan speed options, allowing users to customize air distribution according to specific requirements.

Built with user-friendly controls, the Carrier PCV015-060 supports advanced digital thermostat interfaces, enabling precise temperature management. Optional integration with building management systems allows for remote monitoring and control, enhancing operational efficiency and simplifying maintenance tasks.

Durability is another hallmark of the PCV015-060. The unit is constructed using high-quality materials designed to withstand varying environmental conditions, which enhances the lifespan of the system. Additionally, its modular design simplifies installation and service access, reducing downtime for businesses.

The versatility of the PCV015-060 is underscored by its capability to function effectively in numerous configurations, including rooftop installations and ground-mounted setups. It can efficiently handle diverse applications, from offices to retail spaces, making it an adaptable choice for many commercial needs.

In summary, the Carrier PCV015-060 offers a blend of energy efficiency, advanced technology, and durable construction, making it a formidable solution for businesses seeking reliable climate control. Its commitment to sustainability, user-friendly features, and versatile configurations solidify its standing as a premier choice for commercial heating and cooling needs. With the PCV015-060, businesses can ensure a comfortable environment for both employees and customers while maintaining operational efficiency.