WeatherKing® W801T0503A14UHSNAS | Insco Distributing
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WeatherKing® Classic Series W801T0503A14UHSNAS Gas Furnace, 115 V, 1305 cfm, 1/2 hp, 0.8% AFUE, Horizontal Upflow

  • Brand Name: WeatherKing®
  • IPN: 6969500
  • MPN: W801T0503A14UHSNAS
  • UPC: 62021625077
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WeatherKing® Gas Furnace, Series: Classic, Input BTU Rating: 50000 Btu/hr, Output BTU Rating: 40000 Btu/hr, 115 V, 8 A, 1305 cfm, 1/2 hp, 0.8 % AFUE Rating, 14.7 kW Wattage, 1 ph, 60 Hz, 1 Stages, Configuration: Horizontal Upflow, NPT Connection, 1/2 in Connection, Electric Fuel, Blower Size: 11 in D x 6 in W, 34 in H x 14 in W x 29.59 in D Cabinet, Constant Torque Motor, Tonnage: 3 ton, Direct Spark Ignition, 0.05 kPa, 25 to 55 deg F Temperature Rise

Note: TACL and EPA license required to buy refrigerant and refrigerant bearing equipment, RUUD® not available in Houston locations

Amperage Rating       8 A
Blower Size       11 in D x 6 in W
Cabinet Dimensions       34 in H x 14 in W x 29.59 in D
Connection Size       1/2 in
Connection Type       NPT
Frequency Rating       60 Hz
Ignition Type       Direct Spark
Motor Type       Constant Torque
Number of Stages       1
Output BTU Rating       40000 Btu/hr
Phase       1 ph
Pressure Rating       0.05 kPa
Series       W801T
Temperature Rise       25 to 55 deg F
Tonnage       3 ton
Wattage       14.7 kW
Input BTU Rating       50000 Btu/hr
Voltage Rating       115 V
CFM Rating       1305 cfm
HP Rating       1/2 hp
AFUE Rating       0.8 %
Configuration       Horizontal Upflow
Fuel Type       Electric
  • Diagnostics - industry first, seven segment LED for quick and easy service
  • Ignition system - proven Direct Spark Ignition (DSI) for reliability and longevity
  • Low profile, 34 in cabinet makes our furnaces ideal for space constrained installations
  • Hemmed cabinet and door edges and quarter turn door fasteners (up flow/horizontal only) - allows for safe, tool less access and serviceability
  • Removable heat exchanger - improves serviceability, aluminized steel construction provides maximum corrosion-resistance and thermal fatigue reliability