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Armstrong Air® A93UH1E045B12A
Armstrong Air® 17A94 A931E 1-Stage Gas Furnace, Upflow/Horizontal, 45000 Btu/hr Input, 42000 Btu/hr Output, 120 V, 93 % AFUE, 1200 cfm Flow Rate, High Efficiency Constant Torque Blower Motor
Manufacturer: Allied Air Enterprises
Brand Name: Armstrong Air®
Part#: A93UH1E045B12A
MPN: 17A94
Min. Order Qty: 1
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AFUE Rating | : | 93 % |
Connection Size | : | 1/2 in |
Dimensions | : | 17-1/2 in W x 28-1/2 in D x 33 in H |
Flow Rate | : | 1200 cfm |
Furnace Position | : | Upflow/Horizontal |
Fuse Size | : | 15 A |
Ignition Type | : | Silicon Nitride |
Input Capacity | : | 45000 Btu/hr |
Low NOX | : | No |
Material | : | Aluminized Steel |
Motor HP | : | 1/2 hp |
Motor Type | : | High Efficiency Constant Torque Blower |
Output Capacity | : | 42000 Btu/hr |
Series | : | A931E |
Type | : | 1-Stage |
Voltage Rating | : | 120 V |
Armstrong Air® Gas Furnace, 1-Stage, Series: A931E, 45000 Btu/hr Input, 42000 Btu/hr Output, 120 V, 93 % AFUE, 1200 cfm, Upflow/Horizontal Furnace Position, No Low NOX, High Efficiency Constant Torque Blower Motor, 1/2 hp Motor, 1/2 in, Silicon Nitride Ignition, 15 A Fuse, Aluminized Steel, 17-1/2 in W x 28-1/2 in D x 33 in H
- 93% AFUE efficiency rating - this means 93% of your fuel is converted into usable heat, compared to an older furnace, this can potentially save you hundreds of dollars per year in energy cost
- Constant torque motor - like a variable speed furnace, constant torque furnaces provide lower operating costs and increase overall system efficiency
- Compared to standard PSC motors, constant torque delivers more consistent airflow and quieter operation
- Quiet Combustion™ technology - uses a smaller btu input per burner for quieter start-up and operation while providing more even heat distribution
- EHX™ technology - every Armstrong Air® furnace is engineered and built with EHX™ technology, a patented design that eliminates the hot spots that can shorten furnace life
- EHX™ technology makes heat exchangers more durable and with its advanced airflow system, more air contacts the heat exchanger surface area for greater heat exchange, enhancing efficiency and comfort