Description
The BTRAC BT7-0105 Multiflow Condenser Coil provides efficient and reliable heat rejection in mobile HVAC systems. Its multiflow (parallel-flow) construction allows refrigerant to move through multiple flat tubes at once. As a result, the condenser transfers heat more quickly and helps reduce system pressure drop.
Because this design improves efficiency, the system responds faster to load changes and maintains more stable operating pressures. In addition, the compact core size allows installers to place the condenser in tight engine compartments without sacrificing cooling performance.
The BT7-0105 uses straight O-ring style inlet and outlet connections, which work with common mobile A/C hose assemblies. Therefore, technicians can integrate this condenser into both replacement and custom HVAC systems without special adapters.
To support long-term durability, the coil includes integrated mounting provisions along the headers. These mounting points help keep the condenser secure in high-vibration environments commonly found in mobile and off-road equipment.
Overall, the BT7-0105 offers a strong balance of efficiency, durability, and packaging flexibility for demanding HVAC applications.
Connection Information
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Inlet Connection: O-ring style fitting
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Outlet Connection: O-ring style fitting
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Connection Orientation: Straight
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Service Compatibility: Standard mobile A/C hose assemblies
Dimensions & Mounting
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Overall Width: 19.50 in
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Core Width (Fin Area): 17.50 in
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Overall Height: 22.00 in
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Core Thickness: ~1.25 in
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Construction Type: Multiflow (parallel flow)
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Mounting Style: Header-mounted provisions with multiple attachment points
Key Features
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Multiflow (parallel flow) condenser design
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High heat-transfer efficiency
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Compact footprint for space-limited installations
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Straight O-ring inlet and outlet connections
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Integrated mounting provisions
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Designed for mobile and heavy-duty HVAC systems
Application Notes
The BT7-0105 condenser coil is intended for mobile, off-road, and heavy-equipment air conditioning systems requiring efficient heat rejection in a compact package. Fitment should be confirmed by system layout, airflow, and mounting requirements.





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