Description
This comprehensive HVAC bundle features essential components designed to work seamlessly together, providing efficient heating and cooling solutions for both residential and commercial applications. The Mitsubishi Electric MXZ-SM36NL Multi-Zone Heat Pump Condenser serves as the powerhouse, supporting up to 11 zones when paired with the included PEAD-AA09NL and PEAD-AA18NL concealed duct indoor units. The PAC-LMA30BC branch box ensures balanced refrigerant distribution, optimizing performance across all connected units. With this bundle, you can achieve customized climate control tailored to your specific needs.
What's Included
- MITSUBISHI ELECTRIC MXZ-SM36NL - Multi-Zone Heat Pump Condenser (Qty x1)
- MITSUBISHI ELECTRIC PEAD-AA09NL - 9k BTU P-Series Concealed Horizontal-Ducted Indoor Unit (Qty x2)
- MITSUBISHI ELECTRIC PEAD-AA18NL - 18k BTU P-Series Concealed Horizontal-Ducted Indoor Unit (Qty x1)
- MITSUBISHI ELECTRIC PAC-LMA30BC - 3-Port Branch Box (Qty x1)
Key Details
- Weight of Bundle: 331 lb (Mitsubishi 161 lb + Mitsubishi 98 lb + Mitsubishi 67 lb + Mitsubishi 5 lb)
- Cooling Capacity: 36,000 BTU (MXZ-SM36NL), 9,000 BTU (PEAD-AA09NL), 18,000 BTU (PEAD-AA18NL)
- Heating Capacity: 41,000 BTU (MXZ-SM36NL), 12,000 BTU (PEAD-AA09NL), 20,000 BTU (PEAD-AA18NL)
- Refrigerant Type: R454B
- Voltage: 208/230 Volts
- Dimensions: 41-11/32 W x 13 D x 52-11/16 H (MXZ-SM36NL); 9 7/8 H x 35 7/16 W x 28 7/8 D (PEAD-AA09NL); 9 7/8 H x 35 7/16 W x 28 7/8 D (PEAD-AA18NL); 17-3/4 W x 11-1/16 D x 6-3/4 H (PAC-LMA30BC)
- Weight: 58 lbs (PEAD-AA09NL), 58 lbs (PEAD-AA18NL), 15 lbs (PAC-LMA30BC)
Use & Compatibility
This bundle is ideal for both residential and commercial HVAC systems, providing efficient heating and cooling through a multi-zone setup. The MXZ-SM36NL condenser is compatible with M-, P-Series, and CITY MULTI indoor units, while the concealed duct units (PEAD-AA09NL and PEAD-AA18NL) are designed for unobtrusive installation. The PAC-LMA30BC branch box facilitates connections to multiple indoor units, ensuring optimal refrigerant flow and temperature control.