Mechanical Specifications
General
The units shall be convertible airflow. The operating range shall be between 46°C and
Casing
Unit casing shall be constructed of zinc coated, heavy gauge, galvanized steel. Exterior surfaces shall be cleaned, phosphatized, and finished with a
Unit Top
The top cover shall be one piece, or where seams exist, double hemmed and gasket sealed to prevent water leakage. The ribbed top adds extra strength and prevents water from pooling on unit top.
Filters
25 mm (1 inch), throwaway filters shall be standard on all 5 ton units.. The filter rack can be converted to two inch capability. 50 mm (2 inch) filters shall be factory supplied on all
Compressors
All units shall have
Refrigerant Circuits
Each refrigerant circuit shall have independent fixed orifice or thermal expansion devices, service pressure ports, and refrigerant line filter driers
Evaporator and Condenser Coils Internally finned, 8mm (5/16 inch) copper tubes mechanically bonded to a configured aluminum plate fin shall be standard. Coils shall be leak tested at the factory to ensure the pressure integrity.The evaporator coil and condenser coil shall be leak tested to 1,375 kPa (200 psig) and pressure tested to 3,100 kPa (450 psig). The condenser coil shall have a patent pending 1 + 1 + 1 hybrid coil designed with slight gaps for ease of cleaning. A reversible, removeable, double sloped condensate drain pan with provision for through the base condensate drain is standard.
Outdoor Fans
The outdoor fan shall be
Indoor Fan
All units shall be belt driven. Units with
Controls
Unit shall be completely factory wired with necessary controls and contactor pressure lugs or terminal block for power wiring. Unit shall provide an external location for mounting a fused disconnect device. Microprocessor controls shall be provided for all 24 volt control functions. The resident control algorithms shall make all heating, cooling, and/or ventilating decisions in response to electronic signals from sensors measuring indoor and outdoor temperatures. The control algorithm maintains accurate temperature control, minimizes drift from set point, and provides better building comfort. A centralized microprocessor shall provide
Defrost Controls
Adaptive demand defrost shall be provided to permit defrost wherever coil icing conditions begin to significantly reduce unit capacity.
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