Description
This comprehensive HVAC bundle includes everything you need for an efficient multi-zone heating and cooling system. The Mitsubishi Electric MXZ-SM36NL multi-zone heat pump condenser serves as the backbone, capable of connecting to multiple indoor units for customized climate control. Complementing this are two wall-mounted air handlers, the MSZ-GX06NL and MSZ-GX24NL, which provide efficient heating and cooling for smaller spaces. Additionally, the PAC-LMA30BC branch box ensures optimal refrigerant distribution across the indoor units, making this bundle ideal for both residential and commercial applications.
What's Included
- MITSUBISHI ELECTRIC MXZ-SM36NL - Mitsubishi Electric MXZ-SM36NL Multi-Zone Heat Pump Condenser (Qty x1)
- MITSUBISHI ELECTRIC MSZ-GX06NL - Mitsubishi Electric MSZ-GX06NL R454B 6k BTU Heat Pump Wall Mount Air Handler (Qty x1)
- MITSUBISHI ELECTRIC MSZ-GX24NL - Mitsubishi Electric MSZ-GX24NL R454B 24k BTU Heat Pump Wall Mount Air Handler (Qty x1)
- MITSUBISHI ELECTRIC PAC-LMA30BC - Mitsubishi Electric PAC-LMA30BC 3-Port Branch Box (Qty x1)
Key Details
- Weight of Bundle: 216 lb (Mitsubishi 161 lb + Mitsubishi 22 lb + Mitsubishi 28 lb + Mitsubishi 5 lb)
- MXZ-SM36NL: 36,000 BTU, R454B refrigerant, SEER2: 23, dimensions: 41-11/32 W x 13 D x 52-11/16 H
- MSZ-GX06NL: 6,000 BTU, R454B refrigerant, SEER2: Up to 28.4, dimensions: 31 19/48 W x 11 37/48 H x 9 31/48 D
- MSZ-GX24NL: 24,000 BTU, R454B refrigerant, SEER2: Up to 28.4, dimensions: 43 5/16 W x 12 13/16 H x 10 1/8 D
- PAC-LMA30BC: connects up to 3 indoor units, dimensions: 17-3/4 W x 11-1/16 D x 6-3/4 H
Use & Compatibility
This bundle is designed for use in multi-zone HVAC systems, providing efficient heating and cooling across various indoor spaces. The MXZ-SM36NL condenser is compatible with M-, P-Series, and CITY MULTI indoor units, while the MSZ-GX06NL and MSZ-GX24NL air handlers can be utilized in both single and multi-zone configurations. The PAC-LMA30BC branch box ensures seamless integration and refrigerant distribution for optimal performance.