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Cooling Capacity | : | 47500 Btu/hr |
Dimensions | : | 21-1/2 in W x 22 in D x 55 in H |
Filter Size | : | 18 x 20 in |
Liquid Line Size | : | 3/8 in |
Material | : | Galvanized Steel |
Motor Type | : | Blower/PSC |
Nominal Capacity | : | 4 ton |
Power Source | : | 1 hp 208/230 V 53 A 1 ph 60 Hz |
Refrigerant Type | : | R-410A |
Series | : | BCE5 |
Suction Line Size | : | 7/8 in |
Type | : | Multi-Position Enhanced |
Designed to deliver dependable comfort, the BCE5C's permanent split capacitor PSC motor delivers consistent air throughout the seasons, for the optimal performance, pair this air handler with an Armstrong Air® heat pump or air conditioner.
Armstrong Air® Compact Air Handler, Multi-Position Enhanced, Series: BCE5, 4 ton Nominal Capacity, 47500 Btu/hr Cooling, 1 hp 208/230 V 53 A 1 ph 60 Hz, 3/8 in Liquid Line, 7/8 in Suction Line, 18 x 20 in Filter, R-410A, Blower/PSC Motor, Galvanized Steel, 21-1/2 in W x 22 in D x 55 in H
- Single-speed fan motor - permanent split capacitor PSC motor keeps air flowing efficiently and is engineered to deliver the highest levels of reliability
- Every day performance - reliable and efficient, the BCE3C single-speed air handler delivers every day performance and consistent energy savings
- They're engineered to keep air flowing efficiently and a tight cabinet seal minimizes leakage
- Anti-microbial protection - drain pans are infused with an antibacterial agent that destabilizes the membrane of microorganism cells
- Disrupting the cellular function of odor-causing mold and bacteria so that they can no longer grow or reproduce
- Advanced drain pan design - these air handlers features the industry's lowest water retention rate for extremely effective condensate removal
- MHT™ Technology - Armstrong Air®s proprietary heat transfer system, A specially designed fan shroud pulls air evenly throughout the air conditioners coil surface
- The coil features rifled tubing to enhance refrigerant flow, while lanced coil fins increase surface contact between metal and air
- All combine for maximum heat transfer and efficiency