Carrier 33ZCSPTCO201 Installation Guide PDF

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Summary of Content for Carrier 33ZCSPTCO201 Installation Guide PDF

Carrier Sensors

Installation Guide

CARRIER CORPORATION 2021 Catalog No. 11-808-423-01 9/21/2021

Verify that you have the most current version of this document from www.hvacpartners.com, the Carrier Partner Community website, or your local Carrier office.

Important changes are listed in Document revision history at the end of this document.

CARRIER CORPORATION 2021. All rights reserved throughout the world. i-Vu is a registered trademark of Carrier Corporation. All other trademarks are the property of their respective owners.

Contents Introduction to Carrier sensors ............................................................................................................................. 1

ZS Sensors ............................................................................................................................................................ 3 Specifications ........................................................................................................................................................ 5 CO2 sensor installation ........................................................................................................................................ 6 Rnet Configuration ............................................................................................................................................... 6 Rnet wiring specifications ................................................................................................................................... 6 To address a ZS Sensor ....................................................................................................................................... 7 Power requirements ............................................................................................................................................. 8 To wire and mount a ZS Sensor.......................................................................................................................... 9 To communicate through the local access port ............................................................................................ 11 Troubleshooting ................................................................................................................................................. 12

SPT Sensors ........................................................................................................................................................ 14 SPT Sensor specifications ................................................................................................................................ 16 Rnet Configuration ............................................................................................................................................ 16 To address an SPT Standard sensor ............................................................................................................... 17 Rnet wiring specifications ................................................................................................................................ 17 Mounting location .............................................................................................................................................. 17 To wire and mount the SPT sensor ................................................................................................................. 18 Using an SPT Sensor ......................................................................................................................................... 20 To change sensor properties ............................................................................................................................ 21 To communicate through the local access port ............................................................................................ 22 Troubleshooting SPT Sensors .......................................................................................................................... 23

Alternate space temperature sensor ................................................................................................................. 24 Sensor specifications ........................................................................................................................................ 25 Wiring specifications ......................................................................................................................................... 26 Mounting location .............................................................................................................................................. 26 To wire and mount the sensor ......................................................................................................................... 27 To change a T59 sensor's options ................................................................................................................... 28

Supply Air Temperature sensor .......................................................................................................................... 31 SAT sensor specifications ................................................................................................................................. 32 Wiring specifications ......................................................................................................................................... 32 Mounting location .............................................................................................................................................. 33 To wire and mount the SAT sensor ................................................................................................................. 33

Duct Air Temperature sensor ............................................................................................................................. 34 DAT sensor specifications ................................................................................................................................ 34 Wiring specifications ......................................................................................................................................... 35 Mounting location .............................................................................................................................................. 35 To wire and mount the DAT sensor ................................................................................................................. 35

Outdoor Air Temperature sensor ........................................................................................................................ 36 OAT sensor specifications ................................................................................................................................ 37 Wiring specifications ......................................................................................................................................... 37 Mounting location .............................................................................................................................................. 38 To wire and mount the OAT sensor ................................................................................................................. 38

Primary Air Temperature sensor ........................................................................................................................ 39 PAT sensor specifications ................................................................................................................................. 40 Wiring specifications ......................................................................................................................................... 40 Mounting location .............................................................................................................................................. 41 To wire and mount the PAT sensor ................................................................................................................. 41

CO2 sensor ......................................................................................................................................................... 42 CO2 sensor specifications ................................................................................................................................ 43

Contents

Wiring specifications ......................................................................................................................................... 43 Mounting location .............................................................................................................................................. 44 To wire and wall-mount the CO2 sensor ........................................................................................................ 45 To wire and duct-mount the sensor ................................................................................................................ 46

CO2/Temperature sensor .................................................................................................................................. 47 CO2/Temperature sensor specifications ....................................................................................................... 48 Wiring specifications ......................................................................................................................................... 48 Mounting location .............................................................................................................................................. 49 To wire and mount the CO2/Temperature sensor........................................................................................ 49

Relative Humidity sensors.................................................................................................................................. 51 Sensor specifications ........................................................................................................................................ 52 Wiring specifications ......................................................................................................................................... 53 Mounting location .............................................................................................................................................. 53 To wire and mount the Space RH sensors ..................................................................................................... 54 Typical power wiring diagrams for Space RH sensors ................................................................................. 56 To wire and mount the Duct RH sensor ......................................................................................................... 57 To wire and mount the Outdoor RH sensor ................................................................................................... 59 Typical power wiring diagrams for Duct RH and Outdoor RH sensors ...................................................... 60 Calibrating and troubleshooting relative humidity sensors ........................................................................ 61

Enthalpy switch/receiver and Enthalpy sensor .................................................................................................. 63 Enthalpy switch/sensor specifications ........................................................................................................... 64 Wiring specifications ......................................................................................................................................... 64 Mounting location .............................................................................................................................................. 64 To wire and mount the switch/sensor ............................................................................................................ 65

Appendix: i-Vu Control System Wiring Specifications and Recommended Vendors ..................................... 67

Document revision history.................................................................................................................................. 68

Index ................................................................................................................................................................... 69

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1

The following Carrier sensors can be used with the specified Open controllers. For information on Carrier PIC controllers, please see the controller's Installation Guide.

Controller

Sensor

Part number V

V T

Z o

n e

V V

T B

yp a

ss

R T

U O

p e n

C h

il le

rV u

U C

O p

e n

U C

O p

e n X

P

M P

C O

p e

n X

P

A p

p C

o n

tr o

ll e

r

V A V

Z o

n e

U P

C O

p e

n

Space temperature sensor (page 14) ZS*

ZSPL* ZSP* ZSPF*

SPS

SPPL SPP SPPF

Alternate space temperature sensor (page 24) 33ZCT55SPT

33ZCT56SPT 33ZCT59SPT

Supply Air Temperature sensor (page 31) 33ZCSENSAT

Duct Air Temperature sensor (page 34) 33ZCSENDAT

Outdoor Air Temperature sensor (page 36) 33ZCSENOAT

Primary Air Temperature sensor (page 39) 33ZCSENPAT

CO2 sensor (page 42) 33ZCSPTCO2-01,

33ZCSPTCO2LCD-01

CO2/Temperature sensor (page 47) ** 33ZCT55CO2 33ZCT56CO2

Wall Relative Humidity sensor (page 51) 33ZCSENSRH-02

Duct Relative Humidity sensor (page 51) 33ZCSENDRH-02

Outdoor Relative Humidity sensor (page 51) 33ZCSENORH-02

Enthalpy switch/receiver (page 63) Enthalpy sensor (page 63)

33CSENTHSW 3CSENTSEN

* ZS Sensors are thermistor-based temperature sensors that may optionally sense humidity, CO2, or VOC.

Introduction to Carrier sensors

Introduction to Carrier sensors

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WARNING Disconnect electrical power to the controller or sensor before wiring it. Failure to follow this warning could cause electrical shock, personal injury, or damage to the device.

CAUTION Do not run sensor or relay wires in the same conduit or raceway with Class 1 AC or DC service wiring.

Do not abrade, cut, or nick the outer jacket of the cable.

Do not pull or draw cable with a force that may harm the physical or electrical properties.

Avoid splices in any control wiring.

ZS Sensors

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ZS Sensors are thermistor-based temperature sensors that may optionally sense humidity, CO2, or VOC. ZS

Sensors are wired to the Rnet on i-Vu Open controllers:

The following table shows the 4 ZS Sensor models and their features.

Part # with Carrier logo

Part # wihout logo

Sensor Features

ZS-CAR

ZS-C-CAR

ZS-H-CAR

ZS-V-CAR

ZS-HC-CAR

ZS-HV-CAR

ZS-BNK

ZS-C-BNK

ZS-H-BNK

ZS-V-BNK

ZS-HC-BNK

ZS-HV-BNK

ZS Standard

Local access port

No user control

ZSPL-CAR

ZSPL-C-CAR

ZSPL-H-CAR

ZSPL-V-CAR

ZSPL-HC-CAR

ZSPL-HV-CAR

ZSPL-BNK

ZSPL-C-BNK

ZSPL-H-BNK

ZSPL-V-BNK

ZSPL-HC-BNK

ZSPL-HV-BNK

ZS Plus

Slide potentiometer to make the zone

warmer or cooler

button to override the schedule and

put the zone in an occupied state, or force the zone to an unoccupied state

Green LED to indicate occupied state

Local access port

ZS Sensors

ZS Sensors

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Part # with Carrier logo

Part # wihout logo

Sensor Features

ZSP-CAR

ZSP-C-CAR

ZSP-H-CAR

ZSP-V-CAR

ZSP-HC-CAR

ZSP-HV-CAR

ZSP-BNK

ZSP-C-BNK

ZSP-H-BNK

ZSP-V-BNK

ZSP-HC-BNK

ZSP-HV-BNK

ZS Pro

LCD display

button to override the schedule and put the zone in an occupied state, or

force the zone to an unoccupied state

and buttons to change any editable property, such as the setpoint

temperature

button to cycle through information defined in the control program

Green LED to indicate occupied state

Local access port

ZSPF-CAR

ZSPF-C-CAR

ZSPF-H-CAR

ZSPF-V-CAR

ZSPF-HC-CAR

ZSPF-HV-CAR

ZSPF-BNK

ZSPF-C-BNK

ZSPF-H-BNK

ZSPF-V-BNK

ZSPF-HC-BNK

ZSPF-HV-BNK

ZS Pro-F

All of the ZS Pro's features plus:

button to turn on heating, cooling,

or fan only, or set to auto control.

button to adjust fan speed

F/C button to set temperatures to

Fahrenheit or Celsius

To configure the control program for the desired user interaction with the sensor, see the ZS Sensor Application Guide.

For basic user instructions, see the ZS Sensor User Guide.

ZS Sensors

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Specifications

Sensing element accuracy

Temperature Temperature only:

32 to 122F (0 to 50C): 0.36F (0.2C)

Temperature if humidity is included:

50 to 104F (10 to 40C): 0.54F (0.3C)

Humidity 10% to 90%: 1.8% typical. Less than 0.5% drift per year.

CO2 400 to 1250 PPM: 30 PPM or 3% of reading, whichever is greater 1250 to 2000 PPM: 5% of reading plus 30 PPM

See CO2 sensor installation (page 6).

VOC 0 to 2,000 CO2 PPM Equivalent: 100PPM

Power requirements Temperature only

ZS Standard or ZS Plus: ZS Pro or Pro-F:

12 Vdc @ 6 mA 12 Vdc @ 7 mA

Temperature with humidity

ZS Standard or ZS Plus: ZS Pro or Pro-F:

12 Vdc @ 7 mA 12 Vdc @ 8 mA

Temperature with humidity and VOC - All models

12 Vdc @ 60 mA

Temperature with humidity

and CO2 - All models

12 Vdc @ 15 mA (idle) to

190 mA (CO2 measurement cycle)

Temperature and CO2 -

All models

12 Vdc @ 14 mA (idle) to

189 mA (CO2 measurement cycle)

Power supply The 4-conductor Rnet cable from a controller supplies +12 Vdc @ 210 mA. For additional power, use an external power supply. Use the above power requirements to

calculate the size of the external power supply. The controller and the external power supply must share a common ground.

Communication 115 kbps

Local access port

For local access to start up and troubleshoot the system

Environmental operating range

32 to 122F (0 to 50C), 10 to 90% relative humidity, non-condensing

Mounting Standard 4 x 2 in. electrical box using the 6-32 x 1/2 in. mounting screws provided

Overall dimensions Temperature sensor

or temperature with humidity sensor

Width:

Height: Depth:

3 in. (7.62 cm)

4-13/16 in. (12.22 cm) 13/16 in. (2.01 cm)

Sensor with CO2 or VOC Width:

Height: Depth:

2-7/8 in. (7.3 cm)

4-13/16 in. (12.22 cm) 1-1/4 in. (3.18 cm)

Listed by FCC Part 15-Subpart B-Class A, CE

ZS Sensors

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CO2 sensor installation

IMPORTANT Do not install ZS CO2 sensors in continuous occupancy applications. For a ZS CO2 sensor to

maintain accuracy, it must be installed only in a zone that is unoccupied for at least 4 hours a day with enough air

movement during the unoccupied period to return CO2 to background levels.

A ZS sensor with CO2 uses Automatic Background Calibration which waits for the lowest value in a 24-hour period

that deviates no more than 40PPM for at least 15 minutes, and assigns that value to the 400PPM baseline. This daily Automatic Background Calibration may take up to 21 days to fully calibrate the sensor.

After installation, a ZS sensor with CO2 must be powered up for one hour before it attains accurate readings.

NOTE Dropping a sensor can upset the calibration, and it may require 21 days to return to our stated accuracy.

Rnet Configuration

An Rnet can consist of the following devices wired in a daisy-chain configuration:

Up to 15 ZS Sensors

NOTE You cannot have more than 5 sensors per control program

Up to 5 ZS sensors and 1 Equipment Touch device

NOTE You cannot have SPT sensors and ZS sensors on the same Rnet.

Rnet wiring specifications

NOTE Use the specified type of wire and cable for maximum signal integrity.

Description 4 conductor, shielded or unshielded, CMP, plenum rated cable

Conductor 22 AWG (7x0096) bare copper

Maximum length 500 feet (152 meters)

Insulation Low-smoke PVC (or equivalent)

Color Code Black, white, green, red

Shielding If shielded, Aluminum/Mylar shield (100% coverage) with TC drain wire

UL temperature rating 32167F (075C)

Voltage 300 Vac, power limited

Listing UL: NEC CL2P, or better

ZS Sensors

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To address a ZS Sensor

Each ZS Sensor on an Rnet must have a unique address, but addresses do not have to be sequential.

Use the DIP switches on the back of the ZS Sensor to set an address from 0 to 14. (1 is factory default.) Each DIP switch has the value shown in the figure below. Turn on as many DIP switches as you need so that their total value

equals the address.

DIP Switch

value

1 O N

2

4

8

1 2

3 4

EXAMPLE DIP switches 1 and 4 above are on. Their values (1 + 8) total 9, so the sensor's address is 9.

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Power requirements

See Specifications (page 5) for power requirements and power supply information.

CAUTION Do not share power between controller's power and external 12 Vdc unless both devices are half wave.

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To wire and mount a ZS Sensor

PREREQUISITE The Rnet cable is wired to the controller. The shield wire and the ground wire should be inserted

into the controller's GND terminal.

1 Turn off the controller's power.

2 Pull the backplate off the ZS Sensor. You may need to turn the setscrews in the bottom of the sensor clockwise until you can remove the backplate.

3 Pull the Rnet communication cable through the slit in the insulated backing material.

3.30 in. (8.38 cm)

4 Use 2 screws to mount the backplate to the wall or outlet box.

Partially cut, then bend and pull off the outer jacket of the Rnet cable(s). Do not nick the inner insulation.

Inner insulation

Outer jacket

Foil shield

.25 in. (.6 cm)

Shield wire

5 Strip about 0.25 inch (0.6 cm) of the inner insulation from each wire.

6 If wiring 1 cable to the ZS Sensor, cut the shield wire off at the outer jacket, then wrap the cable with tape at the outer jacket to cover the end of the shield wire.

If wiring 2 cables in a daisy-chain configuration, twist together the shield wires, then wrap the shield wires with tape.

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7 Insert the other 4 wires into the ZS Sensor's screw terminal connector. If wiring 2 cables, insert like-colored wires into each terminal.

Carrier recommends that you use the following Rnet wiring scheme:

Connect this wire...

Red

Black

White

Green

To this terminal...

+12V

Rnet-

Rnet+

Gnd

CAUTION Allow no more than 0.06 inch (1.5 mm) bare communication wire to protrude. If bare

communication wire contacts the cable's foil shield, shield wire, or a metal surface other than the terminal

block, the device may not communicate correctly.

8 Attach the sensor's cover and circuit board to the mounted backplate, inserting the top first.

9 Turn the setscrews one full turn counterclockwise so that the cover cannot be removed.

10 Turn on the controller's power.

NOTE Use the same polarity throughout the Rnet.

ZS Sensors

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To communicate through the local access port

You can connect to the Local Access port of the ZS Sensor to perform test and balance or to make changes to any

device on the network.

PREREQUISITES

A computer with a USB port

A USB Link (Part #USB-L)

CAUTION If multiple controllers share power but polarity was not maintained when they were wired, the

difference between the controller's ground and the computer's AC power ground could damage the USB Link and

the controller. If you are not sure of the wiring polarity, use a USB isolator between the computer and the USB Link. Purchase a USB isolator online from a third-party manufacturer.

Connect the USB Link to the computer and to the ZS Sensor's local access port.

USB Link

Connect to

Local Access port

12 ft

Connect to

USB port

7 3/4 in.

NOTE If using a USB isolator, plug the isolator into your computer's USB port, and then plug the USB Link cable into the isolator.

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Troubleshooting

ZS Pro or ZS Pro-F

If display shows... Then...

Incorrect or missing values

Check for errors in the i-Vu application and Snap.

On the control program's Properties page, select the Rnet Points tab. Verify that

values coming in from the sensors and those going out to the sensors are expected values.

In the i-Vu application, double-click the Sensor Binder and ASVI microblocks to check for problems in the Status and/or Error columns.

If the Error column shows Resource Allocation, try formatting the sensor. If the error is not corrected by formatting, the control program engineer should reduce the number of items that the sensor is trying to display.

Nothing The sensor has no power.

The sensor is not communicating with the network. Check:

Software/addressing setup

Wiring connections

Controller operating status

Characters that seem out of place

The sensor may have a memory problem. Try formatting the sensor.

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To format a ZS Sensor

Formatting a sensor clears its flash memory. Do either of the following to format a sensor:

Download the controller that the sensor is connected to.

Do the following:

a) Remove the wiring connector from the sensor.

b) Note the current position of the DIP switches.

c) Set all DIP switches to the ON position.

d) Reattach the wiring connector to format.

e) After approximately 3 seconds, remove the wiring connector.

f) Set the DIP switches back to their original position.

g) Reattach the wiring connector.

NOTE If you move a sensor from one controller to another controller that has a different control program, format the sensor.

SPT Sensors

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Part #SPS, SPPL, SPP, SPPF

An SPT sensor is a thermistor-based, wall-mounted temperature sensor that monitors zone temperature. An SPT sensor is wired to a controller's Rnet port.

Carrier offers the following SPT sensors:

Sensor Features

SPT Standard Part #SPS

Local access port

No operator control

SPT Plus Part #SPPL

Slide potentiometer to adjust setpoint

MANUAL ON button to override schedule

LED to show occupied status

Local access port

SPT Sensors

SPT Sensors

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Sensor Features

SPT Pro Part #SPP

LCD display

MANUAL ON button to override schedule

WARMER and COOLER buttons to adjust

setpoint

INFO button to cycle through zone and outside air temperatures, setpoints, and local override

time

Local access port

SPT Pro Plus Part #SPPF

LCD display

MANUAL ON button to override schedule

WARMER and COOLER buttons to adjust

setpoint

INFO button to cycle through zone and outside air temperatures, setpoints, and local override

time

FAN SPEED button to adjust fan speed

Local access port

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SPT Sensor specifications

Sensor Thermistor. Accuracy 0.45F (0.25C). Less than 0.18F (0.1C) drift over a 10 year period.

Sensor range 50F to 95F (10C to 35C)

Power Supplied by the 4-conductor cable (+12 Vdc @ 210 mA) from the controller.

Communication 115 kbps

Local access port For local access to start up and troubleshoot system

Environmental operating range

32122F (050C), 1090% relative humidity, non-condensing

Mounting Standard 4x2-in. electrical box using provided 6-32 by 1/2 in. mounting screws.

Overall dimensions: Width: Height: Depth:

2-3/4 in. (6.9 cm) 4-3/4 in. (12.1 cm) 5/8 in. (1.6 cm)

Rnet Configuration

You wire SPT sensors to a controller's Rnet port. An Rnet can consist of any of the following combinations of devices wired in a daisy-chain configuration:

1 SPT Plus, SPT Pro, or SPT Pro Plus

14 SPT Standards

14 SPT Standards, and 1 SPT Plus SPT Pro, or SPT Pro Plus

Any of the above combinations, plus up to 2 BACview6's but no more than 6 devices total

NOTE You must set addresses only on the following Rnet devices:

SPT Standard sensors if you have more than one on the Rnet. See To address an SPT Standard sensor (page 17).

BACview6's if you have two on the Rnet. See the BACview Installation and User Guide.

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To address an SPT Standard sensor

If the Rnet has multiple SPT Standard sensors, the first sensor retains its default address of 1. You must give each additional SPT Standard a unique address on the Rnet. To set the address:

1 Pull the back plate off the sensor, pulling from the bottom first.

2 Remove the two hexagonal screws that attach the circuit board to the cover plate.

3 Remove the cover plate.

4 On the circuit board, set the address jumper to 2, 3, or 4.

5 Attach the circuit board to the cover plate with the hexagonal screws.

Rnet wiring specifications

NOTE Use the specified type of wire and cable for maximum signal integrity.

Description 4 conductor, unshielded, CMP, plenum rated cable

Conductor 18 AWG

Maximum length 500 feet (152 meters)

Recommended coloring Jacket: White Wiring: Black, white, green, red

UL temperature rating 32167F (075C)

Voltage 300 Vac, power limited

Listing UL: NEC CL2P, or better

Mounting location

Mount the sensor:

In an area representing the average temperature in the space

On an interior wall

Approximately 5 feet (1.5 meters) from the floor, or as required by local code

At least 4 feet (1.2 meters) from any corner

At least 2 feet (.6 meter) from an open doorway

Do not mount the sensor:

In drafty locations such as near air conditioning or heating ducts, or near open windows

Over heat sources such as baseboard heaters, radiators, directly above wall-mounted lighting dimmers, or in

direct sunlight

NOTE The sensor mounting plate accommodates the NEMA standard 2x4 in. standard single gang electrical box. However, the sensor can be mounted directly on the wall surface if local codes permit.=

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To wire and mount the SPT sensor

NOTE The sensor mounting plate accommodates the NEMA standard 2x4 in. standard single gang electrical box.

However, the sensor can be mounted directly on the wall surface if local codes permit.

1 Remove the mounting plate from the SPT sensor. You may need to turn the setscrew in the bottom of the sensor clockwise until you can remove the mounting plate.

2 Pull the Rnet communication cable through the wire guide in the mounting plate.

3.30 in. (8.38 cm)

3 Use the 2 mounting screws provided to attach the mounting plate to the wall or electrical box.

4 Partially cut, then bend and pull off the outer jacket of the Rnet cable(s). Do not nick the inner insulation. Strip about .25 inch (.6 cm) of the inner insulation from each wire.

Outer Jacket

Inner insulation.25 in. (.6 cm)

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5 Insert the other 4 wires into the sensor's screw terminal connector. If wiring 2 cables, insert like-colored wires into each terminal.

Carrier recommends that you use the following Rnet wiring scheme:

Connect this wire...

Red

Black

White

Green

To this terminal...

+12V

Rnet-

Rnet+

Gnd

CAUTION Allow no more than .06 inch (1.5 mm) bare communication wire to protrude. If bare communication

wire contacts a metal surface other than the terminal block, the sensor may not communicate correctly.

6 Attach the sensor's cover and circuit board to the mounting plate, inserting the top first.

7 Turn the setscrew one full turn counterclockwise to secure the cover to the mounting plate.

8 Wire the sensor to the Open controller. See the controller's Installation and Startup Guide for details.

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Using an SPT Sensor

All SPT Sensors

Feature Usage

Local Access port See To communicate through the Local Access port (page 11).

SPT Plus

Feature Usage

Slide potentiometer Move the potentiometer to raise or lower the zone's setpoint. The maximum you can adjust the setpoint is defined in the Max Adjust field*.

MANUAL ON button Press this button one time to override the schedule and set the zone to occupied

for the amount of time defined in the Each pulse field*. Press the button again to incrementally increase the time. For example, if the Each pulse field is set at five

minutes, press the button once for an occupancy of five minutes, twice for ten

minutes, and so on. The maximum length of time you can override the schedule is defined in the Max Accum field*.

To cancel the override, hold down the MANUAL ON button until the OCCUPIED LED turns off.

OCCUPIED LED The LED lights when the zone is occupied from a regular schedule or a manual override.

SPT Pro

Feature Usage

Display The display shows occupancy, zone temperature, and an alarm bell icon. Celsius

values are to the nearest 0.5 degree; Fahrenheit values are to the nearest full degree.

The display shows Occupied when the zone is occupied from a regular schedule or from a manual override.

MANUAL ON button Press one time to override the schedule and set the zone to occupied for the amount of time defined in the Each pulse field*. Press button again to

incrementally increase the time. For example, if the Each pulse field is set at five minutes, press the button once for an occupancy of five minutes, twice for ten

minutes, and so on. The maximum length of time you can override the schedule is defined in the Max Accum field*.

The display shows the duration of the override in minutes. If the override time exceeds 199 minutes, the display shows the time in hours.

To cancel the override, hold the button down until 0 displays. Wait five seconds for the display to show the current zone temperature again.

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Feature Usage

WARMER and COOLER buttons

To raise or lower the zone's setpoint:

1 Press either button to display the current average setpoint (the average between the heating and cooling setpoints).

2 Press either button again to raise or lower the setpoint. You can adjust the setpoint by no more than the amount defined in the Max Adjust field*.

NOTE Pressing either button overrides an unoccupied schedule and sets the zone to occupied for the amount of time defined in the Each pulse field*.

INFO button Press to cycle through the:

zone temperature

outside air temperature, if enabled in the control program

override time, in minutes

heating setpoint

cooling setpoint

SPT Pro Plus

The SPT Pro Plus has all the features of the SPT Pro plus the additional functionality described below.

Feature Usage

MANUAL ON button The Timed Local Override section of the microblock dialog box determines if

pressing the MANUAL ON button sets the zone to occupied for a set amount of time in the same manner as the SPT Pro or sets the zone to continuously occupied.

INFO button This button cycles through the same information as the SPT Pro.

To change sensor properties

You can use the i-Vu application or Field Assistant, if included with your system, to change sensor properties such as the override time or maximum setpoint adjustment. Go to Properties page > I/O Points tab > and click on

your applicable sensor point, i.e. Space Temp, SPT Temp Sensor, Zone Temp Sensor > Details tab of microblock popup.

Field Assistant runs on a laptop that you connect to an SPT sensor's Local Access port.

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To communicate through the local access port

You can connect to the Local Access port of the ZS Sensor to perform test and balance or to make changes to any

device on the network.

PREREQUISITES

A computer with a USB port

A USB Link (Part #USB-L)

CAUTION If multiple controllers share power but polarity was not maintained when they were wired, the

difference between the controller's ground and the computer's AC power ground could damage the USB Link and

the controller. If you are not sure of the wiring polarity, use a USB isolator between the computer and the USB Link. Purchase a USB isolator online from a third-party manufacturer.

Connect the USB Link to the computer and to the ZS Sensor's local access port.

USB Link

Connect to

Local Access port

12 ft

Connect to

USB port

7 3/4 in.

NOTE If using a USB isolator, plug the isolator into your computer's USB port, and then plug the USB Link cable into the isolator.

SPT Sensors

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Troubleshooting SPT Sensors

Use the following tables to troubleshoot an SPT sensor.

SPT Standard or SPT Plus

If LED on back of circuit board... Then sensor...

Is not lit Has no power

Blinks 1 time per second Has power, but is not communicating

Blinks 2.5 times per second Is correctly wired and communicating

SPT Pro or SPT Pro Plus

If display shows... Then sensor...

Nothing Has no power

All display elements Has power, but is not communicating

Only the temperature and current status Is correctly wired and communicating

NOTE If OF is displayed, cycle the power on the controller.

Alternate space temperature sensor

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Part #33ZCT55SPT, 33ZCT56SPT, 33ZCT59SPT

The following wall-mounted space temperature sensors can be used instead of an SPT sensor to monitor zone

temperature.

Sensor Features

T-55 Part #33ZCT55SPT

Timed override button

T-56 Part #33ZCT56SPT

Timed override button

Setpoint adjustment

T-59 Part #33ZCT59SPT

Timed override button

Setpoint adjustment

LCD display

NOTE The T-59 sensor requires a dedicated 24 Vac, 3 Va transformer to power the sensor.

Alternate space temperature sensor

Alternate space temperature sensor

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Sensor specifications

Operating range T55 and T56: 32 to 120F (0 to 49C) with a nominal resistance of 10,000 ohms at 77F (25C). See table below.

T59: 40 to 104F (5 to 40C) with a nominal resistance of 10,000 ohms at 77F (25C). See table below.

Sensor tolerance T55 and T56: 0.2C from 0 to 70C

T59: 1F from 40 to 104C (1C from 4 to 40C)

Humidity 0 to 95%, non-condensing

Power 24 Vac, 3 Va

Dimensions: Width:

Height: Depth:

2 3/4 in. (6.98 cm)

4 1/2 in. (11.46 cm) 1 1/5 in. (2.92 cm)

Thermistor Resistance vs. Temperature Values for Space Temperature

Sensor

10K Type II (CP/MCI)

Temp (F) Temp (C) Resistance (Ohms)

-40

-31

-22

-13

-4

5

14

23

32

41

50

59

68

77

86

95

104

113

122

131

140

149

158

-40

-35

-30

-25

-20

-15

-10

-5

0

5

10

15

20

25

30

35

40

45

50

55

60

65

70

335,651

242,195

176,683

130,243

96,974

72,895

55,298

42,315

32,651

25,395

19.903

15,714

12,494

10,000

8,056

6,530

5,325

4,367

3,601

2,985

2,487

2,082

1,752

Alternate space temperature sensor

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Wiring specifications

Cable from sensor to controller: If <100 ft (30.5 meters) 22 AWG, unshielded If >100 ft (30.5 meters) 22 AWG, shielded

Maximum length: 500 feet (152 meters)

Mounting location

Mount the sensor:

In an area representing the average temperature in the space

On an interior wall

Approximately 5 feet (1.5 meters) from the floor, or as required by local code

At least 4 feet (1.2 meters) from any corner

At least 2 feet (.6 meter) from an open doorway

Do not mount the sensor:

In drafty locations such as near air conditioning or heating ducts, or near open windows

Over heat sources such as baseboard heaters, radiators, directly above wall-mounted lighting dimmers, or in direct sunlight

NOTE The sensor mounting plate accommodates the NEMA standard 2x4 in. standard single gang electrical box. However, the sensor can be mounted directly on the wall surface if local codes permit.

Alternate space temperature sensor

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To wire and mount the sensor

1 Turn the 2 setscrews at the bottom of the sensor clockwise to release the sensor's cover from the mounting plate.

2 Lift the cover from the bottom, and then release it from the top fasteners.

3 Feed the wires from the electrical box through the opening in the center of the sensor mounting plate.

4 Use the 2 mounting screws provided to attach the mounting plate to the electrical box.

5 Strip the outer jacket from the cable for at least 3 inches (7.62 cm). Strip .25 inch (.6 cm) of insulation from each wire. Cut the shield and drain wire from the cable.

6 Use the appropriate diagram below to connect the wiring to the sensor's terminals.

7 Reattach the sensor's cover to the mounting plate, inserting the top first.

8 Turn the two Allen screws counterclockwise to secure the cover to the mounting plate.

9 Wire the sensor to the Open controller. See the controller's Installation and Startup Guide for details.

NOTE Clean sensor with damp cloth only. Do not use solvents.

T-55 sensor T-56 sensor T-59 sensor

Red

Blk (Gnd)

White

Jumper terminals

SENSETSEN

Blk (Gnd) Sensor wiring

Red

Sensor wiring

Blu

Blk Brn

Sensor wiring

PWR +

COM -

OPB

Alternate space temperature sensor

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To change a T59 sensor's options

You can change user options and field service options in the T59's display. The options are displayed on pages referenced by page number. See tables below.

NOTE Because the T-59 is not a communicating device, the T-59's setpoint and offset values must be set to

match the same values in the associated controller.

To display an option page

1 In the User Options and Field Service Options tables below, find the option you want to change and its page number.

2 With the sensor displaying the current temperature, simultaneously press and hold the and keys. After 30 seconds, the sensor's display shows option page 100.

3 Release the keys.

4 Press repeatedly until the display shows the page number you want.

NOTE To display a field service option page (126 to 132), press the key until you see 1- -, then simultaneously press and hold and . After

approximately 2 seconds, the display shows 126. Press until you see the page you want.

NOTE If you do not press a key for 30 seconds, the sensor automatically returns to normal operation.

To edit a value 1 When the option page you want is displayed, press to enter edit mode.

2 Press repeatedly to cycle through the numbers 00 to 12. Stop at the number that represents the value you want. See tables below.

3 Press to save the selected value and return to option page.

NOTE If you do not press a key for 10 seconds, the sensor automatically returns to option page.

To return sensor to normal operation

From an option page, press until the display shows 1- -. Then press .

Alternate space temperature sensor

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User Options

Option page Description

100 Firmware version

101 Temperature scale

00 = F 01 = C

102 Temperature Offset (Sensor Trim) F

00 = -5 01 = -4

02 = -3 03 = -2

04 = -1 05 = 0 (typical)

06 = 1 07 = 2

08 = 3 09 = 4 10 = 5

103 Normal Setpoint Display

00 to 09 = Do Not Use

Offset Setpoint Display

10 = -02 to 02F (-02 to 02C) 11 = -03 to 03F (-03 to 03C) 12 = -05 to 05F (-05 to 05C)

104 Keep at 00

105 Setpoint Lockout 00 = Disable Lockout 01 = Enable Lockout

106 Keep at 00

107 Keep at 00

108 Display Mode 00 = Normal 01 = Setpoint Only

109 Keep at 00

Alternate space temperature sensor

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Field Service Options

Page Description

126 Setpoint mode 00 = Use option page 103 setting

01 = Display single offset setpoint 02 = Display Heat/Cool setpoints

03 = Display Heat/Cool setpoints w/Occupied (Occupied icon is shown in setpoint display mode.)

127 Setpoint feedback

00 = Disable feedback 01 = Enable Occupied/unoccupied feedback 02 = Enable Heat/Cool feedback

128 Maximum offset adjustment for setpoint * Note: When using the -00 to +00 selection, option page 105 must be set to value 01.

* 00 = -00 to +00 (F or C)

01 = -01 to +01 (F or C) 02 = -02 to +02 (F or C) (Default)

03 = -03 to +03 (F or C) 04 = -04 to +04 (F or C)

05 = -05 to +05 (F or C) 06 = -06 to +06 (F or C)

07 = -07 to +07 (F or C) 08 = -08 to +08 (F or C)

09 = -09 to +09 (F or C) 10 = -10 to +10 (F or C)

129 Occupied heat setpoint 60 = Default (Range is 10 to 89)

130 Occupied cool setpoint 65 = Default (Range is 10 to 89)

131 Unoccupied heat setpoint 55 = Default (Range is 00 to 99)

132 Unoccupied cool setpoint 90 = Default (Range is 00 to 99)

Supply Air Temperature sensor

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Part #33ZCSENSAT

The Supply Air Temperature (SAT) sensor is required for reheat applications.

.08 in.

(.2 cm)

Foam gasket

.4 in. O.D.

(1.02 cm O.D.)

.39 in. (.99 cm)

5.5 in. .5 (14 cm 1.27 cm)

114 in. (2.9 m)

plenum-rated cable

.25 in. .01 dia. (.6 cm .003 dia.)

.175 in. dia. x .6 in.

(.45 cm dia. x 1.52 cm)

3.9 in. (9.9 cm)

3 in. (7.6 cm)

Probe

NOTE If state or local code requires the use of conduit, use a Primary Air Temperature (page 39) (Part #33ZCSENPAT) sensor instead of an SAT sensor.

Supply Air Temperature sensor

Supply Air Temperature sensor

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SAT sensor specifications

Operating range -40 to 245F (-40 to 118C) with a nominal resistance of 10,000 ohms at 77F (25C). See table below.

Sensor tolerance Accuracy of 0.36F (0.2C) from 0 to 70C

Physical Has a thermistor encased with a 6-inch (15.2-cm) stainless steel probe. Includes a 114-inch plenum-rated cable and 2 mounting screws.

Thermistor Resistance vs. Temperature Values for Supply-air-

Temperature Sensor

10K Type II (CP/MCI)

Temp (F) Temp (C) Resistance (Ohms)

-40

-31

-22

-13

-4

5

14

23

32

41

50

59

68

77

86

95

104

113

122

131

140

149

158

-40

-35

-30

-25

-20

-15

-10

-5

0

5

10

15

20

25

30

35

40

45

50

55

60

65

70

335,651

242,195

176,683

130,243

96,974

72,895

55,298

42,315

32,651

25,395

19.903

15,714

12,494

10,000

8,056

6,530

5,325

4,367

3,601

2,985

2,487

2,082

1,752

Wiring specifications

The sensor includes a 114-inch, plenum-rated cable. To extend the length, use the cable specified below.

Cable from sensor to controller: If <100 ft (30.5 meters) 22 AWG, unshielded If >100 ft (30.5 meters) 22 AWG, shielded

Maximum length: 500 feet (152 meters)

Supply Air Temperature sensor

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Mounting location

Mount the SAT in the duct downstream from the air terminal. If the zone has electric reheat, mount the sensor at

least 2 feet (.6 m) downstream of the electric heater. If the zone has an octopus connected directly at the discharge, mount the sensor in the octopus.

ZC Heat

ZC Heat

Air terminal

unit

Air terminal

unit

Octopus

SAT

SAT

2 ft.

(.6 m) min

2 ft.

(.6 m)

min

Primary

air inlet

Primary

air inlet

To wire and mount the SAT sensor

1 Drill or punch a .5 inch (1.3 cm) hole in the duct.

2 Insert the sensor's probe into the hole.

3 Secure the sensor to the duct using the 2 mounting screws provided.

CAUTION The tip of the sensor's 6-inch (15.2-cm) probe must not touch the inside of the duct. Use field- supplied bushings as spacers when installing the sensor probe in a duct 6 inches (15.2 cm) or less in diameter.

4 Wire the sensor to the Open controller. See the controller's Installation and Startup Guide for details.

Duct Air Temperature sensor

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Part #33ZCSENDAT

The Duct Air Temperature (DAT) sensor monitors supply air and is required for cooling and heating air source applications on non-Carrier dampers and for stand-alone operation.

DAT sensor specifications

Operating range -40 to 245F (-40 to 118C) with a nominal resistance of 10,000 ohms at 77F (25C). See table below.

Sensor tolerance Accuracy of 0.36F (0.2C) from 0 to 70C

Physical Small, epoxy sensor, 1.25 inch (3.2 cm) long. Includes a mounting grommet and 75- inch cable.

Thermistor Resistance vs. Temperature Values for Duct Temperature

Sensor

10K Type II (CP/MCI)

Temp (F) Temp (C) Resistance (Ohms)

-40

-31

-22

-13

-4

5

14

23

32

41

50

59

68

77

86

95

104

113

122

131

140

149

158

-40

-35

-30

-25

-20

-15

-10

-5

0

5

10

15

20

25

30

35

40

45

50

55

60

65

70

335,651

242,195

176,683

130,243

96,974

72,895

55,298

42,315

32,651

25,395

19.903

15,714

12,494

10,000

8,056

6,530

5,325

4,367

3,601

2,985

2,487

2,082

1,752

Duct Air Temperature sensor

Duct Air Temperature sensor

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Wiring specifications

The sensor includes a 75-inch cable. To extend the length, use the cable specified below.

Cable from sensor to controller: If <100 ft (30.5 meters) 22 AWG, unshielded If >100 ft (30.5 meters) 22 AWG, shielded

Maximum length: 500 feet (152 meters)

Mounting location

Mount the sensor in the top or side of the supply duct.

Drill hole in top of duct and let sensor hang down

Alternate location

inside of duct

Supply duct

To wire and mount the DAT sensor

1 Drill or punch a .25 inch (.6 cm) hole in the top or side of the supply duct.

2 Insert the sensor's probe into the hole. The probe can touch side of duct.

3 Snap the grommet into the hole until it is secure.

4 Pull on the sensor's wiring until the sensor is snug against the grommet.

5 Wire the sensor to the Open controller. See the controller's Installation and Startup Guide for details.

Outdoor Air Temperature sensor

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Part #33ZCSENOAT

The outdoor air temperature (OAT) sensor monitors the temperature of the outside air before it enters the equipment.

NOTE If the sensor is to be installed in the outdoor air duct instead of an outdoor location, use a Primary Air Temperature (page 39) (Part #33ZCSENPAT) sensor instead of an OAT sensor.

2 .81 in.

(7 .14 cm)

4 .56 in.

(11 .58 cm)

4 .92 in.

(12 .5 cm)

Outdoor Air Temperature sensor

Outdoor Air Temperature sensor

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OAT sensor specifications

Operating range -40 to 245F (-40 to 118C) with a nominal resistance of 10,000 ohms at 77F (25C). See table below.

Sensor tolerance Accuracy of 0.36F (0.2C) from 0 to 70C

Physical Has a thermistor encased in a plastic resin probe that is enclosed in a PVC housing

Thermistor Resistance vs. Temperature Values for Outdoor Air

Temperature Sensor

10K Type II (CP/MCI)

Temp (F) Temp (C) Resistance (Ohms)

-40

-31

-22

-13

-4

5

14

23

32

41

50

59

68

77

86

95

104

113

122

131

140

149

158

-40

-35

-30

-25

-20

-15

-10

-5

0

5

10

15

20

25

30

35

40

45

50

55

60

65

70

335,651

242,195

176,683

130,243

96,974

72,895

55,298

42,315

32,651

25,395

19.903

15,714

12,494

10,000

8,056

6,530

5,325

4,367

3,601

2,985

2,487

2,082

1,752

Wiring specifications

Cable from sensor to controller: If <100 ft (30.5 meters) 22 AWG, unshielded If >100 ft (30.5 meters) 22 AWG, shielded

Maximum length: 500 feet (152 meters)

Outdoor Air Temperature sensor

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Mounting location

For applications with an economizer, mount the sensor immediately upstream from the outdoor air damper where it will accurately sense the temperature of the outdoor air entering the mixing box.

For applications without an economizer, mount the sensor in the outdoor air duct near the outdoor air intake or on the northern exterior of the building.

Do not mount the sensor:

In direct sunlight

Near the exhaust from air-handling units or compressors

Near leakage drafts of indoor air

Near shrubbery or trees

Under direct water runoff

Building wall

.5-inch EMT male

waterproof conduit adaptor

Wire nuts

Outdoor air

temperature sensor

Wiring in

.5-inch electrical metal tubing (EMT)

7 ft.(min.)

Field wiring

To wire and mount the OAT sensor

1 Drill a 7/8" hole in a vertical wall.

2 Insert a .5-inch piece of electrical metal tubing (EMT).

3 Attach a .5-inch male waterproof conduit adapter to the end of the EMT.

4 Remove the knockout in the back of the OAT sensor.

5 Attach the sensor box to the conduit adapter using the adapter locking nut.

6 Replace sensor gasket and cover using the 2 screws provided.

7 Wire the sensor to the Open controller. See the controller's Installation and Startup Guide for details.

Primary Air Temperature sensor

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Part #33ZCSENPAT

The Primary Air Temperature (PAT) sensor monitors the supply air temperature. Use a PAT sensor if state or local

code requires the use of conduit. If conduit is not required, you can use an SAT sensor.

6 in.

(15.2 cm) probe

4 x 2 in.

(10.2 x 5.1 cm) electrical box

Primary Air Temperature sensor

Primary Air Temperature sensor

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PAT sensor specifications

Operating range -40 to 245F (-40 to 118C) with a nominal resistance of 10,000 ohms at 77F (25C). See table below.

Sensor tolerance Accuracy of 0.36F (0.2C) from 0 to 70C

Physical Has a thermistor encased with a 6-inch (15.2-cm) stainless steel probe. Has a 4x2-inch electrical box. Includes 2 mounting screws.

Thermistor Resistance vs. Temperature Values for Primary Air

Temperature Sensor

10K Type II (CP/MCI)

Temp (F) Temp (C) Resistance (Ohms)

-40

-31

-22

-13

-4

5

14

23

32

41

50

59

68

77

86

95

104

113

122

131

140

149

158

-40

-35

-30

-25

-20

-15

-10

-5

0

5

10

15

20

25

30

35

40

45

50

55

60

65

70

335,651

242,195

176,683

130,243

96,974

72,895

55,298

42,315

32,651

25,395

19.903

15,714

12,494

10,000

8,056

6,530

5,325

4,367

3,601

2,985

2,487

2,082

1,752

Wiring specifications

Cable from sensor to controller: If <100 ft (30.5 meters) 22 AWG, unshielded If >100 ft (30.5 meters) 22 AWG, shielded

Maximum length: 500 feet (152 meters)

Primary Air Temperature sensor

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Mounting location

Mount the sensor in the top or side of the supply duct.

Drill hole in top of duct and let sensor hang down

Alternate location

inside of duct

Supply duct

To wire and mount the PAT sensor

1 Drill or punch a .5 inch (1.3 cm) hole in the duct.

2 Connect a .5 inch (1.3 cm) nominal field-supplied conduit between the zone controller enclosure and the junction box.

3 Pass the sensor wires through the conduit.

4 Insert the sensor's probe into the hole.

5 Secure the sensor to the duct using the 2 mounting screws provided.

CAUTION The tip of the sensor's 6-inch (15.2-cm) probe must not touch the inside of the duct.

6 Wire the sensor to the Open controller. See the controller's Installation and Startup Guide for details.

CO2 sensor

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Part #33ZCSPTCO2LCD-01 (Display model)

Part #33ZCSPTCO2-01 (No display) Wall-mount or duct-mount

Duct installation requires an Aspirator Box (Part #33ZCASPCO2) to house the CO2 sensor.

A CO2 sensor monitors carbon dioxide levels. As CO2 levels increase, the controller adjusts the outside air dampers

to increase ventilation and improve indoor air quality. These sensors monitor temperature using a 10K thermistor, but are not capable of occupancy override.

The figure below shows ventilation rates for various CO2 setpoints when outside air with a typical CO2 level of 350

ppm is used.

20 CFM/person

5 CFM/person

500 700 900 1 100 1300 1500 1700 1900 2100 2300 2500

80

60

40

20

0

CO2 Concentration (PPM)

A ir

fl o

w p

e r

p e

rs o n

O u

ts id

e a

ir (

C F

M )

NOTES

The sensor has a 420 mA output that is converted to 05 Vdc by a 250 Ohm, 1/4 watt, 2% tolerance

resistor connected across the zone controller's CO2 input terminals.

Do not use a relative humidity sensor and CO2 sensor on the same zone controller.

CO2 sensor

CO2 sensor

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CO2 sensor specifications

Method Dual Beam Absorption InfraredTM

Patented TEMA (time extended measurement algorithm) self-calibration software

Optional thermistor temperature measurement

Sample Method: Diffusion or flow-thru (50 to 100 ml/min)

Measurement range Analog Output: 02000 ppm factory default adjustable to 10,000 ppm

Digital display: 010,000 ppm

Sensitivity: 10 ppm Resolution: 1 ppm

Sensor tolerance Accuracy: Typical Conditions: 60 to 90F (15 to 32C)

02000 ppm: 50 ppm or 3% of reading, whichever is greater 200010,000 ppm: 5% of reading

Extended Conditions : 32 to 122 (0 to 50C)

02000 ppm: 100 ppm or 5%, whichever is greater 200010,000 ppm: 7% of reading, whichever is greater

Pressure Dependence: Add 0.13% of reading per mm Hg decrease from 760 (On board correction, user set)

Annual drift 10 ppm (negligible) with TEMA on 20 ppm typical with TEMA off

Response Time: 090% FS < 2 minutes

Warm-Up Time: 25 C < 2 minutes

Operating Conditions: 32 to 122F (0 to 50C) 095% RH (relative humidity), non-condensing

Storage Conditions: 40 to 158F (40 to 70C)

Power Requires a dedicated 24 Vac, 3 Va transformer

Certification FCC Part 15 Class B

Calibration Interval: Five years/zero ppm gas offset adjust

Wiring specifications

Cable from sensor to controller: If <100 ft (30.5 meters) 22 AWG, unshielded If >100 ft (30.5 meters) 22 AWG, shielded

Maximum length: 500 feet (152 meters)

CO2 sensor

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Mounting location

A CO2 sensor can be wall-mounted or mounted in a return air duct. (Duct installation requires an Aspirator Box

Accessory - Part #33ZCASPCO2.)

Wall mounting

Mount the sensor:

Near the return air grill to sense the concentration of CO2 leaving the space

At least 3 feet (.9 m) from any corner

Do not mount the sensor:

Where it can have direct breath contact

In drafty areas such as near supply ducts, open windows, or fans

Over heat sources

Where it can be influenced by the supply air. The sensor gives inaccurate readings if the supply air blows directly onto the sensor or the supply air does not have a chance to mix with the room air before it is drawn

into the return air stream.

NOTE The sensor mounting plate accommodates the NEMA standard 2x4 in. standard single gang electrical box.

However, the sensor can be mounted directly on the wall surface if local codes permit.

Duct mounting

Mount the sensor:

In a duct that has a diameter or depth of at least 9 inches (22.9 cm)

At least 6 inches (15.2 cm) upstream or 15 inches (38.1 cm) downstream of a 90-degree turn in the return

air duct. The downstream location is preferred.

In the center of the duct

Where at least 1 foot (.3 m) of space in front of the sensor is free of obstruction

CO2 sensor

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To wire and wall-mount the CO2 sensor

1 Turn the setscrew at the bottom of the sensor clockwise to release the sensor's cover from the mounting plate.

2 Lift the cover from the bottom, and then release it from the top fasteners.

3 Feed the wires from the electrical box through the opening in the center of the sensor mounting plate.

4 Use the 2 mounting screws provided to attach the mounting plate to the electrical box.

5 Wire the 24 Vac transformer to the sensor. See diagram below.

6 Turn the two Allen screws at the bottom of the unit counterclockwise to secure the cover to the mounting plate.

7 Wire the sensor to the Open controller. See the controller's Installation and Startup Guide for details.

To controller

CO2 sensor

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To wire and duct-mount the sensor

Duct installation requires the Aspirator Box Accessory (Part #33ZCASPCO2) to house the CO2 sensor.

To mount the aspirator box and sensor:

1 Drill a 1.25 inch (3.18 cm) hole in the return duct.

2 Remove the aspirator box cover.

3 Insert the aspirator box sampling tube into the hole.

4 Secure the box to the duct using 2 field-supplied #8 x 1" sheet metal screws.

5 Remove .5 inch (1.3 cm) conduit knockout, then install the conduit fittings.

6 Mount the CO2 sensor in the aspirator box using 2 field-supplied #8 x 32 machine screws.

7 To wire the CO2 sensor, see the instructions above in To wire and wall-mount the CO2 sensor (page 45).

8 Install the aspirator box cover.

CO2/Temperature sensor

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Part #33ZCT55CO2

Part #33ZCT56CO2

A CO2/space temperature sensor houses two sensors in a single unit. This sensor uses Single Beam Absorption

Infrared diffusion technology to monitor carbon dioxide (CO2) levels and has a 10K thermistor to measure space

temperature. The controller uses this information to adjust the outside air dampers to provide proper ventilation and control space temperature.

Sensor Features

33ZCT55CO2

CO2 sensor

Space temperature sensor

Push-button override

33ZCT56CO2

CO2 sensor

Space temperature sensor

Push-button override

Set point adjustment

NOTES

The sensor has a 420 mA or 010 V output.

Push button override

Do not use a relative humidity sensor and CO2 sensor on the same zone controller.

CO2/Temperature sensor

CO2/Temperature sensor

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CO2/Temperature sensor specifications

Method Dual Beam Absorption InfraredTM

Patented TEMA (time extended measurement algorithm) self-calibration software

10K Temperature sensor

Sample Method: Diffusion

Measurement range Analog Output: 02000 ppm factory default adjustable to 10,000 ppm

Sensor tolerance Accuracy:

Typical Conditions: 60 to 90F (15 to 32C) 02000 ppm: 110 ppm

Annual drift 10 ppm (negligible) with TEMA on 20 ppm typical with TEMA off

Response Time: 090% FS < 2 minutes

Warm-Up Time: 25 C < 2 minutes

Operating Conditions: 32 to 122F (0 to 50C) 095% RH (relative humidity), non-condensing

Storage Conditions: 4 to 158F (20 to 70C)

Power 18-30 Vac RMS, 50/60 Hz - half wave rectified (dedicated)

18-42 Vdc polarity protected (dedicated)

1.75 Va maximum average power

2.75 Va peak power

Analog CO2 Output 4-20 mA (RLmax=500 Ohms) and 010 V (Source 100 mA, Sink 10 mA)

Temperature Sensor 10 kOhm Thermistor, 10 kOhm 2.5% at 77F (25C)

Temperature Control (#33ZCT56CO2 only)

Slide potentiometer position

Left stop

Right stop

Resistance

0 kOhms (+5 kOhms)

100 kOhms ( 10 kOhms)

Certification FCC Part 15 Class B

Calibration Interval: Five years/zero ppm gas offset adjust

Mounting 5 1/4 in. (13.3 cm) x 3 in. (7.6 cm) molded plastic. Includes 6x32 machine screws.

Wiring specifications

Cable from sensor to controller: If <100 ft (30.5 meters) 22 AWG, unshielded If >100 ft (30.5 meters) 22 AWG, shielded

Maximum length: 500 feet (152 meters)

CO2/Temperature sensor

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Mounting location

This sensor must be placed in an area that is representative of the conditional space or zone.

Wall mounting

Mount the sensor:

On an internal wall near a return air grille or duct

At least 3 feet (.9 m) from any corner, 2 feet from an open doorway and 4 to 6 feet from the floor

Proximal to the wiring egress on the wall

Where the temperature operating limits are 32 to 122F

Do not mount the sensor:

Close to a window, on an outside all, or next to a door leading to the outside

Close to or in direct airflow of areas such as open windows, drafts or over heat sources

In areas with poor circulation

Where it may be exposed to direct occupant breathing such as near water coolers or coffee machines

NOTE The sensor mounting plate accommodates the NEMA standard 2x4 in. standard single gang electrical box. However, the sensor can be mounted directly on the wall surface if local codes permit.

To wire and mount the CO2/Temperature sensor

1 Disassemble the sensor into these three parts: sensor cover, sensor base and mounting plate.

2 Feed the wires from the electrical box through the opening in the center of the sensor mounting plate.

3 Use the 2 mounting screws provided to attach the mounting plate to the electrical box.

4 Run the wiring through the wire hole in the sensor base. See diagram below.

5 Reattach the sensor's base to the mounting plate, inserting the top first.

6 Separate the wires into two bundles: one bundle for the CO2 sensor wires (J4 and J1), the other bundle for

the temperature sensor and CCN wires (J5 and J6).

7 Use the diagram below to connect the wiring to the sensor's J1, J4, J5, and J6 terminals.

NOTE On a large number of sensors, J6 was labeled incorrectly with CCN+ and CCN-. Ignore the labels on the circuit board and use the wiring diagram in this book.

8 Push excess wire back through the hole.

9 Reattach the sensor's cover to the base and mounting plate.

10 Turn the two Allen screws counterclockwise to secure the cover to the mounting plate.

11 Wire the sensor to the Open controller. See the controller's Installation and Startup Guide for details.

CO2/Temperature sensor

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Relative Humidity sensors

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Carrier offers 4 Relative Humidity sensors:

Sensor Usage

Space Relative Humidity

sensor Part #33ZCSENSRH-02

Controls zone humidity

(dehumidification) if the rooftop unit has a dehumidification

device. If not, the sensor only monitors humidity.

Can output 05 or 0-10 Vdc or 420 mA.

Duct Relative Humidity sensor Part #33ZCSENDRH-02

Measures humidity in duct.

Relative Humidity sensors

Relative Humidity sensors

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Sensor Usage

Outdoor Relative Humidity sensor Part #33ZCSENORH-02

Measures outdoor humidity.

CAUTION Do not use a relative humidity sensor and CO2 sensor on the same zone controller.

Sensor specifications

Operating temperature 40 to 130F (-4 to 54C)

Humidity 0 to 99%, non-condensing

Sensor tolerance Accuracy at 25C: 2% RH from 1080% 3% RH from 8099%

Power 18-36 Vdc 24 Vac half-wave rectified

Output

#33ZCSENSRH-02, #33ZCSENDRH-02, and #33ZCSENORH-02:

4-20 mA, 0-5 Vdc, and 010 Vdc

Physical Includes a 499 Ohm 1 Watt resistor for conversions of the 420 mA signal to a +210 Vdc output signal

Relative Humidity sensors

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Wiring specifications

Cable from sensor to controller: If <100 ft (30.5 meters) 22 AWG, unshielded If >100 ft (30.5 meters) 22 AWG, shielded

Maximum length: 500 feet (152 meters)

Mounting location

Mount this sensor... In this location

Space RH sensor On an interior wall

Approximately 5 feet (1.5 meters) from the floor, beside the space temperature

sensor

At least 4 feet (1.2 meters) from any corner. Reduced airflow in corners results in erratic sensor readings.

Vertically so that the Carrier logo is correctly oriented

Do not mount the sensor:

In drafty areas such as near heating or air-conditioning ducts, open windows, or fans

Over heat sources such as baseboard heaters, radiators, or wall-mounted light

dimmers

In areas of excessive moisture, corrosive fumes, or vibration

Sensors mounted in these areas will produce inaccurate readings.

NOTE The sensor mounting plate accommodates the NEMA standard 2x4 in.

standard single gang electrical box. However, the sensor can be mounted directly on the wall surface if local codes permit.

Duct RH sensor The zone's return air duct

Outdoor RH sensor Where the sensor is protected from the elements and direct sunlight, such as under an eave

Relative Humidity sensors

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To wire and mount the Space RH sensors

1 Remove the sensor's cover from the mounting plate.

2 Feed the wires from the electrical box through the wire access hole in the center of the sensor mounting plate.

3 Use the 2 screws provided to attach the mounting plate to the electrical box.

4 Strip the outer jacket from the cable for at least 4 inches (10.2 cm). Strip .25 inch (.6 cm) of insulation from each wire.

5 Wire the unit for power. See Typical power wiring diagrams for Space RH sensors (page 56).

Relative Humidity sensors

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6 Wire the sensor to the Open controller. See diagrams below and the controller's Installation and Startup Guide for details.

Input Output Wiring diagram

1836 Vdc 420 mA

1836 Vdc or 21.626.4 Vac

010 Vdc

7 Reattach the cover to the mounting plate.

8 Turn the two Allen screws at the bottom of the unit counterclockwise to secure the cover to the mounting plate.

NOTES

All wiring should be in accordance with all Local and National Electrical Code guidelines.

If using shielded cable, connect only one end of the shield to ground at the controller. Connecting both ends to ground may cause a ground loop.

Relative Humidity sensors

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Typical power wiring diagrams for Space RH sensors

CAUTION If using a 24 Vac transformer, use an isolated transformer. If sharing the transformer with your controller or another device, be sure to connect all of the devices with the proper polarity, since most controllers are earth grounded. Failure to do so could cause a ground loop that could damage the devices.

Relative Humidity sensors

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To wire and mount the Duct RH sensor

1 Drill a .75 inch (1.9 cm) diameter hole in the duct where the sensor is to be mounted.

2 Insert the stainless steel probe into the hole until the foam contacts the duct, then attach the RH sensor using the 2 self-tapping screws provided.

3 Remove the cover.

4 On the probe unit, remove the knockout's inner ring.

5 If you are not using a .5 inch (1.3 cm) NPT conduit fitting, remove the knockout's outer ring. Tap the ring in 1 or 2 locations with a screwdriver, then remove the ring.

6 Install your conduit connectors or watertight fittings.

7 Wire the unit for power. See Typical power wiring diagrams for Duct RH and Outdoor RH sensors (page 60).

Relative Humidity sensors

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8 Wire the sensor to the Open controller. See diagrams below and the controller's Installation and Startup Guide for details.

Input Output Wiring diagram

1836 Vdc 420 mA

1836 Vdc or 21.626.4 Vac

010 Vdc

9 Place the sensor's cover onto the probe unit and gently turn until it is tight.

10 Verify that you are getting a humidity reading.

NOTE Allow up to 20 minutes after powering up for the sensor reading to stabilize.

Relative Humidity sensors

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To wire and mount the Outdoor RH sensor

See sensor diagram in To wire and mount the Duct RH sensor (page 57).

1 Use the 2 mounting screws provided to secure the sensor.

2 Remove the cover and install conduit connectors, watertight fittings, and/or 1/2 vent plug.

NOTE The inner ring will knock out first. Then tap the outer ring in 1 or 2 locations with a screwdriver to peel it out. The cover will be connected to the housing by the sensor leads.

3 At the sensor end of the cable, strip back the jacket from the cable for at least 3 inches. Strip 1/4 inch of insulation from each conductor. If using shielded cable, cut the shield and drain wire from the cable.

4 Wire the unit for power. See Typical power wiring diagrams for Duct RH and Outdoor RH sensors (page 60).

5 Wire the sensor to the Open controller. See diagrams below and the controller's Installation and Startup Guide for details.

Input Output Wiring diagram

1536 Vdc 420 mA

1836 Vdc or 21.626.4 Vac

010 Vdc

6 Place the cover onto the unit and gently turn until it is tight.

7 Verify that you are getting a humidity reading.

NOTE Allow up to 20 minutes after powering up for the sensor reading to stabilize.

Relative Humidity sensors

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Typical power wiring diagrams for Duct RH and Outdoor RH sensors

CAUTION If using a 24 Vac transformer, use an isolated transformer. If sharing the transformer with your

controller or another device, be sure to connect all of the devices with the proper polarity, since most controllers are earth grounded. Failure to do so could cause a ground loop that could damage the devices.

Relative Humidity sensors

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Calibrating and troubleshooting relative humidity sensors

Troubleshooting the RH sensor

No reading Verify that:

You have the correct supply voltage at the power terminal blocks.

The wiring configuration and DIP switch settings are correct.

All terminal screw connections are tight and that all wires are firmly in place.

Erratic readings

Verify that:

All wires are terminated properly.

The board does not have condensation on it.

The input power is clean. In areas of high RF interference or noise, shielded cable may be

needed to stabilize the signal.

Inaccurate readings

If you suspect the transmitter is not reading within the specified tolerance, contact the factory for assistance.

Using SW1 DIP switches to calibrate and troubleshoot

This is a single point calibration only. All transmitters are factory-calibrated to meet/exceed published specifications. Field adjustment should not be necessary.

The DIP switch allows you to calibrate the sensor through software. Setting DIP switch 4 ON puts the transmitter into setup mode, allowing the increment and decrement to work. Once in setup mode, the output changes to 50%

(5V for 0-10V, 12mA for 4-20mA). Each increment or decrement step causes the output to change by 0.2V for 0- 10V, and 0.32mA for 4-20mA in setup mode. This shows how far offset the transmitter is. To see the starting point

again, set DIP switch 1 to ON. This shows the 50% output again. When the unit is out of setup mode, the output returns to RH output.

When all calibration is completed, remember to place the switches back into positions that correspond to the output needed.

Normal Operating Condition

Setting DIP switch 4 ON puts the transmitter into setup mode. Once in setup mode, the output changes to 50% (5V for 0-10V, 12mA for 4-20mA).

0% RH Output

Transmitter outputs a 4 mA or 0 Vdc signal regardless of sensor reading. (For troubleshooting only.)

50% RH Output

Transmitter outputs a 12 mA, 2.5 Vdc, or 5 Vdc signal regardless of sensor reading. (For troubleshooting only.)

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100% RH Output

Transmitter outputs a 20 mA, 5 Vdc, or 10 Vdc signal regardless of sensor reading. (For troubleshooting only.)

Increment RH Output

Shifts the RH output linearly up in 0.5% steps. Switch 4 must be set to ON first. After switch 4 is ON, each time switch 5 if set to ON, the RH output increases by 0.5%.

Decrement RH Output

Shifts the RH output linearly down in 0.5% steps. Switch 4 must be

set to ON first. After switch 4 is ON, each time switch 6 if set to ON, the RH output decreases by 0.5%.

Reset to Original Calibration

Resets the RH output back to the original calibration. Switch 4 must be set to ON first. After switch 4 is ON, toggle switches 5 and 6 ON then OFF. After 5 and 6 are OFF, slide switch 4 OFF.

RH conversion formulas

Use the following table to convert transmitter output signal to %RH.

Output

Example:

If signal output is...

Calculation is...

4-20 mA

4 mA = 0% RH 20 mA = 100% RH

12 mA (12mA-4mA)/0.16 = 50% RH

0-10 Vdc

0 Vdc = 0% RH 10 Vdc = 100% RH

8 Vdc 8 Vdc/0.10 = 80%RH

0-5 Vdc

0 Vdc = 0% RH 5 Vdc = 100% RH

2 Vdc 2 Vdc/0.05 = 40% RH

Enthalpy switch/receiver and Enthalpy sensor

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Enthalpy switch/receiver - Part #33CSENTHSW Enthalpy sensor - Part #33CSENTSEN

Outdoor enthalpy control

Requires a field-installed enthalpy switch/receiver. The enthalpy switch/receiver, mounted in the outdoor air intake, senses temperature and humidity of the surrounding air and calculates the enthalpy.

The enthalpy switch/receiver:

Energizes the relay output when the outdoor enthalpy is above 28 BTU/lb OR dry bulb temperature is above 75 F

De-energizes the relay output when the outdoor enthalpy is below 27 BTU/lb AND dry bulb temperature is

below 74.5 F.

The relay output is wired to the unit economizer which opens or closes based on the output of the switch.

Differential enthalpy control

Requires an enthalpy switch/receiver and an enthalpy sensor. The enthalpy switch/receiver, mounted in the

outdoor air intake, calculates outdoor air enthalpy. The enthalpy sensor, mounted in the return airstream, calculates the indoor air enthalpy.

The enthalpy switch/receiver energizes:

The HI Enthalpy relay output when the outdoor enthalpy is greater than the indoor enthalpy

The LOW Enthalpy terminal when the outdoor enthalpy is lower than the indoor enthalpy

The relay output is wired to the unit economizer which opens or closes based on the output of the switch.

NOTE The enthalpy is calculated using an average altitude of 1000 ft above sea level.

Enthalpy switch/receiver

33CSENTHSW RETURN AIR

ENTH SENSOR

- +

Model #: HH57ZC003

Power: 24 VAC

Output: 10 A Form 1C Relay w/

24 VAC Sourced Power

HI LOW GND 24 Enthalpy VAC

4-20 mA In

24-36 VDC out

4.25 in. (10.8 cm)

3.35 in. (8.5 cm)

3.75 in. (9.5 cm)

Enthalpy sensor

33CSENTSEN

+ -

Model #: HH57ZC001

Power: 24 to 36 VDC

Span: 0 to 50 BTU/lb

Output: 4 to 20 mA

4-20 mA In

24-36 VDC out

4.25 in. (10.8 cm)

3.35 in. (8.5 cm)

3.75 in. (9.5 cm)

Enthalpy switch/receiver and Enthalpy sensor

Enthalpy switch/receiver and Enthalpy sensor

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Enthalpy switch/sensor specifications

The following specifications are the same for the switch/receiver and sensor unless noted.

Supply voltage Switch/Receiver: Sensor:

24 Vac 15% 24 to 36 Vdc

Operating range -40 to 140F (-40 to 60C)

Operating relative humidity 0 to 100%, non-condensing

Output Switch/Receiver: Sensor:

Sourced 24 Vac through 10 Amp Form 1C relay 2-wire, 420 mA loop powered

Enthalpy range Sensor only 050 Btu/lb

Enthalpy accuracy 1 Btu/lb at 77F (25C)

Temperature accuracy 0.36F (0.2C) from 32 to 158F (0 to 70C)

Relative humidity accuracy 35 at 77F (25C)

Sensitivity 0.1% RH

Repeatability 0.5% RH

Hysteresis < 0.4% RH

Stability < 2% drift over 5 years

Wiring specifications

Cable from sensor to controller: If <100 ft (30.5 meters) 22 AWG, unshielded If >100 ft (30.5 meters) 22 AWG, shielded

Maximum length: 500 feet (152 meters)

Mounting location

Mount the enthalpy switch/receiver in the outdoor air intake.

Mount the enthalpy sensor in the return air duct.

Do not mount the enthalpy switch/receivers and sensors where they could be exposed to outdoor elements such as rain or snow. These units are not NEMA 4 enclosures.

Enthalpy switch/receiver and Enthalpy sensor

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To wire and mount the switch/sensor

For Outdoor Enthalpy Control

1 To mount the enthalpy switch/receiver, insert 2 field-supplied 8 x 3/4-in. TEK screws through its side holes.

2 Remove the 4 screws holding the cover on, then remove cover.

3 Set the M1 to M3 jumper to M2. Leave the other jumper on Off.

4 Replace the cover and the 4 screws.

5 Connect the GND and 24 Vac terminals on the enthalpy switch/receiver to the controller's power terminals.

6 Connect the HI or LOW terminals on the enthalpy switch/receiver to the controller's J2-6 input.

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For Differential Enthalpy Control

1 To mount the enthalpy sensor, insert 2 field-supplied 8 x 3/4-in. TEK screws through its side holes.

2 Repeat step 1 to mount the enthalpy switch/receiver.

3 On the switch/receiver, remove the 4 screws holding the cover on, then remove cover.

4 Set the M1 to M3 jumper to M2. Leave the other jumper on Off.

NOTE The enthalpy sensor's jumpers should be left at their factory settings of M3 and Off.

5 Replace the switch/receiver's cover and the 4 screws.

6 Wire the sensor to the switch/receiver. See figure below.

7 Connect the GND and 24 Vac terminals on the enthalpy switch/receiver to the controller's power terminals.

8 Connect the HI or LOW terminals on the enthalpy switch/receiver to the controller's J2-6 input.

Appendix: i-Vu Control System Wiring Specifications and Recommended Vendors

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Wiring specifications Recommended vendors & part numbers

Wire type

Description

Connect Air International

Belden

Ramcorp

Contractors Wire & Cable

MS/TP and ARC156

network (RS-485)

22 AWG, single twisted shielded

pair, low capacitance, CL2P, TC foam FEP, plenum rated. See

MS/TP Installation Guide for specifications.

W221P-2227 -- 25160PV CLP0520LC

MS/TP and ARC156 network (RS-485)

24 AWG, single twisted shielded pair, low capacitance, CL2P, TC

foam FEP, plenum rated. See MS/TP Installation Guide for specifications.

W241P-2000FB 82841 25120-OR --

Rnet 4 conductor, unshielded, CMP, 18 AWG, plenum rated.

W184C-2099BLB 6302UE 21450 CLP0442

Power - 24 Vac

2 conductor, CM, 18 AWG, unshielded.

W181P-2051 5300UE 21251 CLP0440

Analog & discrete sensor wiring < 100 ft

Single twisted pair, unshielded, CM, 22AWG, plenum rated.

W221P-2005 6500UE 21281 CLP0410

Analog & discrete

sensor wiring 100500 ft

Single twisted shielded pair, CM, 22AWG, plenum rated.

W221P-2044 6500FE 21280 CLP0520

Appendix: i-Vu Control System Wiring Specifications and Recommended Vendors

Document revision history

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Installation Guide All rights reserved

68

Important changes to this document are listed below. Minor changes such as typographical or formatting errors are not listed.

Date Topic Change description Code*

9/21/21 Rnet Configuration Removed hybrid wiring configuration for Rnet port X-TS-AK-E

3/3/20 Cover Updated logo C-D

8/2/17 Alt space temp sensor specifications

SAT sensor specifications

DAT sensor specifications

OAT temp sensor specifications

PAT sensor specifications

Corrected all 10K Type III (CP/MCI) to Type II. C-TS-ZL-E-RD

3/10/16 Specifications Added drift statement to Humidity specification. X-TS-EE-F

5/28/15

Introduction to Carrier sensors Carrier ChillerVu added and WSHP Open removed from table C-TS-RD-E

ZS sensors - CO2 sensor installation New section C-TS-RD-E

11/24/14 Power requirements Made corrections to wiring diagram X-TS-JM-O

8/6/14 To address a ZS Sensor Changed ZS Sensor default address to 1 from 0. C-TS-RD-O

Introduction to Carrier sensors Added MPC Open XP controller to the table C-D

Entire document BACview removed C-D

Introduction to Carrier Sensors ZS Sensors added to the table C-TS-RD-E

* For internal use only

Document revision history

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Installation Guide All rights reserved

69

#

#33CSENTHSW 61

#33ZCASPCO2 41 #33ZCSENDAT 32

#33ZCSENOAT 35 #33ZCSENORH-02 13

#33ZCSENPAT 29, 35, 38 #33ZCSENSAT 29, 38

#33ZCSENSRH-02 48 #33ZCT55CO2 46

#33ZCT55SPT 22 #33ZCT56CO2 46

#33ZCT56SPT 22 #33ZCT59SPT 22

#3CSENTSEN 61 #SPP 13

#SPPF 13 #SPPL 13

#SPS 13

A

Alternate space temperature sensor 22 aspirator box 41, 44

C

CO2 sensor 41

CO2/Temperature sensor 3, 46

D

Duct Air Temperature sensor 32 Duct sensors

Duct Air Temperature sensor 32

Enthalpy sensor 61 Enthalpy switch/receiver 61

Outdoor Air Temperature sensor 35 Primary Air Temperature sensor 29, 35, 38

Supply Air Temperature sensor 29, 38

E

Enthalpy sensor 61 Enthalpy switch/receiver 61

H

Humidity sensor 3

O

Outdoor Air Temperature sensor 35

outdoor sensors Outdoor Air Temperature sensor 35

P

Primary Air Temperature sensor 29, 35, 38

R

Rnet 13, 15

Rnet wiring specifications 15

S

space temperature sensors 13, 22 SPT Plus 13, 15, 18, 20

SPT Pro 13, 15, 18, 20 SPT Pro Plus 13, 15, 18, 20

SPT sensors 13 SPT Standard 13, 15, 20

Supply Air Temperature sensor 29, 38

T

T55 / T56 22, 46 temperature sensors

Alternate space temperature sensor 22 CO2/Temperature sensor 3, 46

Duct Air Temperature sensor 32 Outdoor Air Temperature sensor 35

Primary Air Temperature sensor 29, 35, 38 SPT sensors 13

Supply Air Temperature sensor 29, 38 ZS Sensors 3

W

wall-mounted sensors

CO2 sensor 41 CO2/Temperature sensor 3, 46

Wiring specifications Rnet 15

Z

ZS 3

ZS Plus 3

ZS Pro 3

Index

CARRIER CORPORATION 2021 Catalog No. 11-808-42

Manualsnet FAQs

If you want to find out how the 33ZCSPTCO201 Carrier works, you can view and download the Carrier 33ZCSPTCO201 Installation Guide on the Manualsnet website.

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