Carrier 48PG20-28 specifications Operating Sequence, CO2 Sensor Standard Settings

Page 44

3.Use the Up/Down button to select the preset number. See Table 29.

4.Press Enter to lock in the selection.

5.Press Mode to exit and resume normal operation.

outside air. The design should produce an air temperature somewhat near room conditions to prevent reheat of the air mixture. The energy recovery device should be interlocked with the heat to turn off the device when in the heat mode.

The custom settings of the CO2 sensor can be changed any- time after the sensor is energized. Follow the steps below to change the non-standard settings:

1.Press Clear and Mode buttons. Hold at least 5 seconds until the sensor enters the Edit mode.

2.Press Mode twice. The STDSET Menu will appear.

3.Use the Up/Down button to toggle to the NONSTD menu and press Enter.

4.Use the Up/Down button to toggle through each of the nine variables, starting with Altitude, until the desired setting is reached.

5.Press Mode to move through the variables.

6.Press Enter to lock in the selection, then press Mode to continue to the next variable.

Dehumidification of Fresh Air with DCV Control — Infor- mation from ASHRAE (American Society of Heating, Refrigeration, and Air Conditioning Engineers) indicates that the largest humidity load on any zone is the fresh air intro- duced. For some applications, a device such as a 62AQ energy recovery unit is added to reduce the moisture content of the fresh air being brought into the building when the enthalpy is high. In most cases, the normal heating and cooling processes are more than adequate to remove the humidity loads for most commercial applications.

This makes the control of the of the dehumidification device simple when using the enthalpy or differential enthalpy sensor. The enthalpy sensor or differential enthalpy sensor is installed on the equipment to determine economizer operation. The high enthalpy signal from the enthalpy sensor or differential enthalpy sensor can be used to turn on the outdoor air moisture removal device any time fresh air is required for the space.

The energy recovery device should be sized for maximum latent and sensible conditioning at maximum ventilation on a design day. A calculation for leaving-air temperature on a low ambient, low ventilation day should also be done to determine the mixed-air temperature of the return and pre-conditioned

Operating Sequence

COOLING, UNITS WITHOUT ECONOMIZER — When the thermostat calls for one stage of cooling, Y1 and G are en- ergized. The indoor-fan contactor (IFC) and compressor con- tactor(s) (C.A1 and C.B1 on three-compressor units or C.A1 only on two-compressor units), and outdoor-fan contactors (OFC1 and OFC2 when outdoor temperature is above LTS set- ting) are energized and the indoor-fan motor, compressor(s) (A1 and B1 on three compressor units or A1 only on two- compressor units), and outdoor fans controlled by OFC1 are started. If the outdoor temperature is above the setting of the low temperature switch, the outdoor fans controlled by OFC2 are also started.

If more cooling is required, the thermostat will call for a second stage of cooling, energizing Y2. This will allow relay CR1 to energize, which in turn energizes the compressor contactor (C.C1 on three-compressor units or C.B1 on two-compressor units). The second stage compressor (C1 on three-compressor units or B1 on two-compressor units is then started.

HEATING, UNITS WITHOUT ECONOMIZER NOTE: The 48PG20-28 units have 2 stages of heat.

When the thermostat calls for heating, power is sent to W on the IGC (integrated gas unit controller) board. An LED (light-emitting diode) on the IGC board will be on during nor- mal operation. A check is made to ensure that the rollout switch and limit switch are closed and the induced-draft motor is running. The induced-draft motor is then energized, and when speed is proven with the hall effect sensor on the motor, the ignition activation period begins. The burners will ignite within 5 seconds.

If the burners do not light, there is a 22-second delay before another 5-second attempt. If the burners still do not light, this sequence is repeated for 15 minutes. After the 15 minutes have elapsed, if the burners still have not lit, heating is locked out. To reset the control, break 24-v power to the thermostat.

Table 29 — CO2 Sensor Standard Settings

 

 

 

VENTILATION

ANALOG

CO2

OPTIONAL

RELAY

SETTING

EQUIPMENT

OUTPUT

RATE

CONTROL RANGE

RELAY SETPOINT

HYSTERESIS

OUTPUT

 

 

 

(cfm/Person)

(ppm)

(ppm)

(ppm)

 

 

 

 

1

 

Proportional

Any

0-10V

0-2000

1000

50

 

4-20 mA

 

 

 

 

 

 

 

2

Interface w/Standard

Proportional

Any

2-10V

0-2000

1000

50

Building Control System

7-20 mA

 

 

 

 

 

 

3

 

Exponential

Any

0-10V

0-2000

1100

50

 

4-20 mA

 

 

 

 

 

 

 

4

 

Proportional

15

0-10V

0-1100

1100

50

 

4-20 mA

 

 

 

 

 

 

 

5

 

Proportional

20

0-10V

0- 900

900

50

 

4-20 mA

 

Economizer

 

 

 

 

 

6

Exponential

15

0-10V

0-1100

1100

50

 

 

4-20 mA

 

 

 

 

 

 

 

7

 

Exponential

20

0-10V

0- 900

900

50

 

4-20 mA

 

 

 

 

 

 

 

8

Health & Safety

Proportional

0-10V

0-9999

5000

500

4-20 mA

 

 

 

 

 

 

 

9

Parking/Air Intakes/

Proportional

0-10V

0-2000

700

50

Loading Docks

4-20 mA

 

 

 

 

 

 

LEGEND

PPM — Parts Per Million

44

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Contents Installation, Start-Up and Service Instructions Installation Provide Unit SupportRoof Curb Details Shipping Rail Removal Base Unit Dimensions Physical Data CompressorFan Motor and Drive Data Vertical Supply/Return Fan Motor and Drive Data Horizontal Supply/Return Make Unit Duct Connections Alignment Hole DetailsInstall Flue Hood and Inlet Hood Concentric Duct DetailsMake Electrical Connections Condensate Drain DetailsField Power Wiring Connections Supply Optional Hacr Size Supply Optional Hacr Size Voltage Breaker Outdoor-Air Hood Details Outdoor-Air Hood Assembled Power Exhaust or Barometric Relief Damper Mounting Details PRE-START-UP Fan Performance 48PGD20 Vertical Supply/Return Units Fan Performance 48PGE20 Vertical Supply/Return Units Fan Performance 48PGF20 Vertical Supply/Return Units 8500 940Fan Performance 48PGD24 Vertical Supply/Return Units Fan Performance 48PGE24 Vertical Supply/Return Units Fan Performance 48PGF24 Vertical Supply/Return Units 500 940Fan Performance 48PGD28 Vertical Supply/Return Units 10,50011,000 1310 11.76 1342 12.33 11,500Fan Performance 48PGE28 Vertical Supply/Return Units 1327 11.47 11,0001304 000 1309 1341 10.09 500Fan Performance 48PGF28 Vertical Supply/Return Units Fan Performance 48PGD20 Horizontal Supply and Return Units Fan Performance 48PGE20 Horizontal Supply and Return Units Fan Performance 48PGF20 Horizontal Supply and Return Units Fan Performance 48PGD24 Horizontal Supply and Return Units Fan Performance 48PGE24 Horizontal Supply and Return Units Fan Performance 48PGF24 Horizontal Supply and Return Units 1354 1391 000 1381 500 10,000Fan Performance 48PGD28 Horizontal Supply and Return Units 1328 10.37 1358 10.87 10,000Fan Performance 48PGE28 Horizontal Supply and Return Units 1308 1340 10.08 500Fan Performance 48PGF28 Horizontal Supply and Return Units General Notes for FAN Performance Data TablesOperation Air Quantity Limits Power Exhaust Fan Performance 48PG20-28Evaporator Fan Motor Specifications Evaporator Fan Motor Specifications Accessory/FIOP Static Pressure in. wg* 48PG20-28 Fan Rpm at Motor Pulley SettingsEconoMi$er IV Sensor Usage EconoMi$er IV Wiring Enthalpy Changeover Set Points Page CO2 Sensor Standard Settings Operating SequenceSubcooler Operation Service Lubrication Removing Heat Exchanger CeramicEvaporator-Fan Motor Adjustment Condenser-Fan Adjustment Fig Belt Tension AdjustmentSensor Temperature/Resistance Values Unit Model Number PositionGas Valve Adjustment Charging Chart 48PG20Gas Valve Protective Devices Altitude CompensationTypical Low Voltage Control Schematic Typical Power Schematic Typical Component Arrangement 48PG20,24 Typical Component Arrangement 48PG28 Troubleshooting Cooling Service AnalysisGas Heating Service Analysis Burners Will Not IgniteIGC Control Heating and Cooling EconoMi$er IV Troubleshooting IGC Board LED Alarm CodesFlash FlashesLED Status Function Copyright 2005 Carrier Corporation Page Unit START-UP Checklist