York D7CG 036, D7CG 048, D7CG 060, D2CG 072 installation instructions Start-Up

Page 16

530.18-N8Y

The limit switch operates when a high temperature condition, caused by inadequate supply air flow, occurs shutting down the ignition control and closing the main gas valve.

TABLE 16 - LIMIT CONTROL SETTING

Units

Capacity, MBH

Limit Control

(Tons)

Input

Output

Opens, °F

3

50

40

165

4

75

60

165

3

100

79

165

4

125

99

165

5

100

79

165

5

125

99

165

6

100

79

165

6

125

99

165

2.Centrifugal Switch (CS-36). If the draft motor should fail, the centrifugal switch attached to the shaft of the motor prevents the ignition control and gas valve from being energized.

3.Redundant Gas Valve. This valve is an integral part of the main gas valve and is located up stream of the main gas valve. Should the main gas valve fail in the open position the redundant valve serves as a back up and shuts off the flow of gas.

4.Flame Sensor Rod. This sensor rod is located on the far side of the carryover tube. If the ignition control does not receive a signal from the flame sensor indicating that the pilot flame has ignited properly, the main gas valve will not open. If the flame sensor fails to detect the pilot flame during

operation of the main burners, a signal is sent to the ignition control to close the main gas valve.

5.Rollout Switch. This switch is located in the burner vestibule. In the event of a sustained main burner flame rollout, it shuts off the ignition control and closes the main gas valve.

6.Auxiliary Limit Switch. This control is located inside the heat exchanger compartment and is set to open at 180°F. It is a manual reset switch. If the auxiliary limit switch trips, then the primary limit switch has not functioned properly. Replace the primary limit switch.

HEAT ANTICIPATOR SETPOINTS

The anticipator must be set correctly. Too high of a setting will result in longer heat cycles and a greater temperature swing in the conditioned space.

Gas Valve

Anticipator Setpoint

Honeywell VR8204M

0.60 amp

White-Rodgers 36E36

0.54 amp

Reducing the value below the correct setpoint will give shorter “ON” cycles and may result in the lowering of the temperature within the conditioned space.

PRE-START CHECK LIST

Complete the following checks before starting the unit.

1.Check the type of gas being supplied. Be sure that it is the same as listed on the unit nameplate.

2.Make sure that the vent and combustion air hoods have been properly installed.

START-UP

OPERATING INSTRUCTIONS

CAUTION: This furnace is equipped with an intermittent pilot and automatic re-ignition system. DO NOT attempt to manually light the pilot.

TO LIGHT PILOT AND MAIN BURNERS:

1.Turn “off” electric power to unit.

2.Turn room thermostat to lowest setting.

3.Turn gas valve knob to “on” position.

4.Turn “on” electric power to unit.

5.Set room thermostat to desired temperature.

(If thermostat “set” temperature is above room temperature, pilot burner ignition will occur and, after an interval to prove pilot flame, main burners will ignite).

TO SHUT DOWN:

1.Turn “off” electric power to unit.

2.Depress knob of gas valve while turning to “off” position.

POST-START CHECK LIST (GAS)

After the entire control circuit has been energized and the heating section is operating, make the following checks:

1.Check for gas leaks in the unit piping as well as the supply piping.

2.Check for correct manifold gas pressures. See “Checking Gas Input”.

3.Check the supply gas pressure. It must be within the limits shown on rating nameplate. Supply pressure should be checked with all gas appliances in the building at full fire. At no time should the standby gas line pressure exceed 13", nor the operating pressure drop below 4.5" for natural gas units. If gas pressure is outside these limits, contact the local gas utility for corrective action.

MANIFOLD GAS PRESSURE ADJUSTMENT

Small adjustments to the high-fire gas flow may be made by turning the pressure regulator adjusting screw on the automatic gas valve. Refer to Figure 11.

Adjust as follows:

PILOT ADJ.

“ON”-"OFF"

(UNDER

CONTROL

SCREW)

HIGH FIRE ADJ.

 

(UNDER SCREW)

Honeywell

VR8204M

“ON”-"OFF" CONTROL

PILOT ADJ. (UNDER SCREW)

 

White-Rodgers

PRESSURE REGULATOR

36E36

 

MANIFOLD ADJUST. SCREW

1/2-14 NPT (OUTLET)

 

FIG. 11 - GAS VALVES

1.Remove the cap on the regulator. (High Fire adjusting screw on valve).

2.To decrease the gas pressure, turn the adjusting screw counterclockwise.

3.To increase the gas pressure, turn the adjusting screw clockwise.

NOTE: Check the unit data plate for the proper manifold pres- sure and orfice size of the furnace.

16

Unitary Products Group

Image 16
Contents Sunline Installation InstructionSingle Package AIR Conditioners Table of Contents Installation Service Access Power and Control WiringFilters Condensate DrainDisconnect Switch Bracket for Units With Optional BELT-DRIVE BlowerPipe Sizing GAS PipingExternal SHUT-OFF GAS ConnectionPropane UNITS, Tanks and Piping Never USE a FlameVent and Combustion AIR Hoods Optional Economizer Rain Hood1000 1600 18002200 2400 2600 Economizer1 Bottom Duct Connections1Physical Data Center of GravityUnit AIR Flow TON Side Duct Connections @ 230/460/575 VoltsSize CFM RPM 1560 1077 1095 16301650 1660Superheat Charging Table for Model Blower Circuit Size Breaker Supply Motor AmpacityMIN MAX RLA LRA FLA Amps18.1 20.1 22.2 24.3 28.431.7 34.2 35.4 14.5 16.6 18.7 20.8Utilities Entry Data Knockout Hole Size Used forOperation Cooling SystemCooling Sequence of Operation Heating Sequence of OperationSTART-UP Burner AIR Shutter Adjustment Supply AIR Blower and Temperature Rise AdjustmentsPilot Checkout Burner InstructionsGAS Rate Cubic Feet PER Hour Checking GAS InputNatural GAS Maintenance TroubleshootingNormal Maintenance Cleaning Flue Passages and Heating ElementsModels only

D2CG 072, D7CG 060, D7CG 048, D7CG 036 specifications

The York D7CG 060, D7CG 048, D7CG 036, and D2CG 072 are advanced rooftop unit models designed for enhanced energy efficiency, reliability, and ease of use in commercial HVAC applications. These models are known for their robust features and technologies aimed at providing optimal indoor climate control.

The D7CG series, including the 060, 048, and 036 models, is built around a highly efficient design. They incorporate scroll compressors that operate quietly, contributing to a comfortable environment. The units are designed for high-ambient performance, enabling them to function efficiently even in extreme temperature conditions. The D7CG series also features an intelligent control system that allows for seamless integration with building management systems, optimizing energy usage and enhancing overall system performance.

One of the standout features of the D7CG models is their advanced heat exchanger technology, which improves heat transfer and overall efficiency. The coil design allows for superior airflow and enhanced temperature regulation, ensuring consistent comfort levels throughout the space. With variable-speed fans, these units adjust airflow dynamically, providing further energy savings and tailored climate control.

The D2CG 072 model, on the other hand, accentuates versatility and robustness. This unit also boasts a high-efficiency compressor and features a unique multi-stage heating and cooling process. Its modular design allows for easy installation and maintenance. The D2CG 072 is engineered for flexible configurations, accommodating various building sizes and layouts without compromising performance.

All four models are equipped with user-friendly digital controls that offer precise adjustments and monitoring capabilities. This feature allows building operators to quickly respond to changing conditions, ensuring optimal comfort for occupants while maintaining energy efficiency. Furthermore, they adhere to stringent environmental standards, incorporating low-GWP refrigerants that minimize their ecological footprint.

In summary, the York D7CG 060, D7CG 048, D7CG 036, and D2CG 072 models represent cutting-edge technology and innovative design in the commercial HVAC sector. Their high efficiency, advanced features, and user-centric controls make them suitable for a wide range of applications, ensuring reliable performance and comfort in diverse environments.