Bryant 580J*04--12 appendix Troubleshooting Heating System, Cont. Altitude Compensation* A08-A12

Page 31

Table 11 (cont.) - Altitude Compensation* (A08-A12)

ELEVATION

125,000

250,000

180,000, 224,000

BTUH Nominal

BTUH Nominal

BTUH Nominal

ft (m)

NG Orifice

LP Orifice

NG Orifice

LP Orifice

NG Orifice

LP Orifice

 

 

Size

Size

Size

Size

Size

Size

0 --- 2000 (610)

311

493

†30

463

311

483

2000

(610)

321

503

†30

473

321

493

3000

(914)

321

503

311

473

321

493

4000 (1219)

331

503

311

483

331

493

5000 (1524)

331

514

311

483

331

503

6000 (1829)

341

514

311

483

341

503

7000 (2134)

351

514

321

493

351

503

8000 (2438)

361

524

331

493

361

514

9000 (2743)

372

524

341

503

372

514

10000

(3048)

382

524

351

503

382

524

11000

(3353)

392

534

361

514

392

524

12000

(3658)

†41

534

372

514

†41

534

13000

(3962)

†42

544

382

524

†42

534

14000

(4267)

†43

544

†40

534

†43

544

Table 12 – Altitude Compensation* (04-06) - Low NOx Units

ELEVATION

60,000, 90,000

120,000

 

BTUH Nominal

BTUH Nominal

ft (m)

NG Orifice Size

LP Orifice Size

NG Orifice Size

LP Orifice Size

 

 

0 --- 2000 (610)

382

534

321

503

2000

(610)

392

544

331

514

3000

(914)

†40

544

341

514

4000 (1219)

†41

544

351

514

5000 (1524)

†41

544

351

514

6000 (1829)

†42

544

361

524

7000 (2134)

†42

544

361

524

8000 (2438)

†43

554

372

524

9000 (2743)

†43

554

382

534

10000

(3048)

442

554

†40

534

11000

(3353)

442

554

†41

534

12000

(3658)

452

†56

†42

544

13000

(3962)

473

†56

†43

544

14000

(4267)

483

†56

†43

554

LEGEND:

 

NG = Natural Gas LP = Liquid Propane

1 = CRLPELEV001A00

* As the height above sea level increases, there is less oxygen per cubic

2 = CRLPELEV002A00

ft. of air. Therefore, heat input rate should be reduced at higher altitudes.

3 = CRLPELEV003A00

{ Not included in kit. May be purchased separately through dealer.

4 = CRLPELEV004A00

580J

Minimum heating entering air temperature

When operating on first stage heating, the minimum temperature of air entering the dimpled heat exchanger is 50_F continuous and 45_F intermittent for standard heat

setpoint. Indoor comfort may be compromised when heating is initiated using low entering air temperatures with insufficient heating temperature rise.

Thermostat

LCTB

exchangers and 40_F continuous and 35_F intermittent for stainless steel heat exchangers. To operate at lower mixed-air temperatures, a field-supplied outdoor-air thermostat must be used to initiate both stages of heat when the temperature is below the minimum required temperature to ensure full fire operation. Wire the outdoor-air thermostat (part no. HH22AG106) in series with the second stage gas valve as shown below. Set the outdoor-air thermostat at 35_F for stainless steel heat

TH1

TH2

W1

OALT

W2

C08442

exchangers or 45_F for standard heat exchangers. This temperature setting will bring on the second stage of heat whenever the ambient temperature is below the thermostat

Troubleshooting Heating System

Refer to Table 13 and Table 14 for additional troubleshooting topics.

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Contents Safety Considerations Table of ContentsGeneral Unit Arrangement and AccessRoutine Maintenance Seasonal MaintenanceReturn Air Filters HeatingEconomizer or Outside Air Damper Air Filters and ScreensElectrical Shock Hazard Adjustable-Pitch Pulley on MotorSupply FAN Blower Section Supply Fan Belt-DriveRemove Surface Loaded Fibers Condenser Coil Maintenance and Cleaning RecommendationCooling Condenser CoilTwo-Row Coils Periodic Clean Water RinseRoutine Cleaning of Coil Surfaces One-Row CoilUnit Damage Hazard Refrigerant System Pressure Access PortsCleaning the Evaporator Coil Evaporator CoilNo Charge To Use Cooling Charging ChartsPuronr R410A Refrigerant Refrigerant ChargeCooling Charging Charts Cooling Charging ChartsCooling Charging Charts C08437 C08438 C08439 Condenser-Fan Location Troubleshooting Cooling SystemCompressor Filter DrierProblem Cause Remedy Cooling Service AnalysisUnit Connect Primary Transformer Convenience OutletsConnections Controller Smoke DetectorsSystem SensorSmoke Detector Locations Completing Installation of Return Air Smoke SensorReturn Air Sensor Operating Position Fiop Smoke Detector Wiring and ResponseDirty Controller Test Sensor Alarm TestController Alarm Test Sensor and Controller TestsRemote Station Test Remote Test/Reset Station Dirty Sensor TestDetector Cleaning Changing the Dirt Sensor TestControl or Indicator Description IndicatorsDetector Indicators Alarm StateRelief Device TroubleshootingProtective Devices Compressor ProtectionNatural Gas Supply Line Pressure Ranges GAS Heating SystemControl Circuit Fuel Types and PressuresLiquid Propane Manifold Pressure Ranges Flue Gas PassagewaysCombustion-Air Blower Liquid Propane Supply Line Pressure RangesEquipment Damage Hazard Removal and Replacement of Gas TrainCleaning and Adjustment Burners and IgnitersLimit Switch Check Unit Operation and Make Necessary Adjust- mentsBurner Ignition Spark Adjustment LED Error Code Description Orifice ReplacementLED Indication Error Code Description Outputs Integrated Gas Control IGC Board IGC ConnectionsDrill Size Part Number Orifice SizesAltitude Compensation* 04-07 Small Chassis Orifice BryantAltitude Compensation* 04-06 Low NOx Units Troubleshooting Heating SystemMinimum heating entering air temperature Cont. Altitude Compensation* A08-A12Problem Cause Remedy Heating Service AnalysisEconomizer Systems IGC Board LED Alarm CodesEconoMi$er2 Component Locations RUN Inputs OutputsEconoMi$er Supply Air Temperature SAT SensorTemp Resistance EconoMi$er IV Control Modes Outdoor Air Lockout SensorOutdoor Dry Bulb Changeover Outdoor Enthalpy Changeover Differential Enthalpy ControlMinimum Position Control Exhaust Setpoint AdjustmentOccupancy Control CO2 Sensor ConfigurationDamper Movement ThermostatsDifferential Enthalpy DCV Demand Controlled Ventilation and Power ExhaustEconoMi$er IV Sensor Usage EconoMi$er IV PreparationPRE-START-UP Wiring DiagramsPersonal Injury Hazard START-UP, General Operating Sequences Torque Values Fastener Torque ValuesDemand Controlled Ventilation Heating With EconoMi$erC08308 580J Unit Wiring Diagram Control 06A, B, C Position Number Appendix I. Model Number SignificanceModel Number Nomenclature Serial Number FormatPhysical Data Cooling Tons Standard Refrigeration System Appendix II. Physical DataRefrigeration System 580J*08 580J*09 580J*12 Physical Data Cooling 10 Tons Standard Refrigeration SystemPhysical Data Heating 10 Tons General Fan Performance Notes Appendix III. FAN PerformanceCFM RPM BHP 580J*04Ton Horizontal Supply Ton Vertical SupplyMedium Static Option High Static Option 580J*05 580J*05 Phase Ton Horizontal Supply1486 580J*05 Phase Ton Vertical Supply1493 15061482 580J*06580J*06 Phase Ton Vertical Supply 580J*06 Phase Ton Horizontal Supply580J*07 580J*08 580J*09 580J*12 Unit MOTOR/DRIVE Motor Pulley Turns Open Combo Pulley AdjustmentType Appendix IV. Electrical DataIFM Range RLA LRAFLA Appendix IV. Electrical DataRLA LRA 580J*08 Tons580J*09 Tons IFM RangeMCA/MOCP Determination No C.O. or Unpwrd C.O NOM Unbalanced 3-Phase Supply VoltageWiring Diagrams Appendix V. Wiring Diagram List580J*04A, B, C Outdoor Circuiting Appendix VI. Motormaster Sensor LocationsCatalog No. SM580J---01 580J*09/12A, C Outdoor CircuitingElectrical START-UP ChecklistTemperatures Remove and Store in Job File

580J*04--12 specifications

The Bryant 580J*04--12 is a notable unit in the realm of residential air conditioning, exemplifying efficiency and reliability. Designed to offer optimal cooling solutions, this model incorporates advanced technologies and features that cater to modern comfort needs.

One of the standout features of the Bryant 580J is its energy efficiency. With a high Seasonal Energy Efficiency Ratio (SEER) rating, this air conditioning unit is engineered to minimize energy consumption while maximizing cooling performance. This efficiency not only reduces monthly utility bills but also aligns with environmentally friendly practices by using less energy.

The 580J model is equipped with advanced compressor technology, which contributes to its smooth and quiet operation. This is particularly important for residential settings, where noise can be a significant concern. The unit consistently maintains comfortable indoor temperatures without disruptive sound levels, enhancing the overall living experience.

This air conditioning system is designed with durability in mind. Constructed from robust materials, it withstands the rigors of various weather conditions. Additionally, its components are engineered for longevity, reducing the need for frequent repairs and maintenance. The 580J also comes with a comprehensive warranty, which provides homeowners with peace of mind regarding their investment.

Smart technology integration is another key feature of the Bryant 580J. Homeowners can take advantage of programmable thermostats and compatibility with home automation systems. This allows for remote access and control, making it easier to manage indoor climates efficiently. Users can set schedules, adjust temperatures, and monitor energy usage from their smartphones, adding a layer of convenience to everyday living.

Furthermore, the Bryant 580J includes advanced air filtration systems that improve indoor air quality. By effectively trapping dust, allergens, and pollutants, this unit promotes a healthier living environment. This feature is particularly beneficial for individuals with allergies or respiratory issues.

In summary, the Bryant 580J*04--12 stands out for its energy efficiency, quiet operation, durability, smart technology integration, and air quality improvement capabilities. By blending advanced engineering with user-friendly features, this model continues to be a top choice for homeowners seeking reliable and efficient air conditioning solutions.