Build small, lighter power systems by eliminating bulk capacitance
MIL-COTS VIPAC Array™ Chassis Mount DC-DC Converter
VIPAC Arrays are a highly flexible system of DC input; power building blocks that can be configured with as many as four user-definable outputs on a low-profile, coldplate chassis. Using the Vicor PowerBench™ design tool, designers are able to specify VIPAC Arrays with Maxi, Mini and Micro product series H- or M-Grade converters with inputs of 24, 28 or 300VDC and outputs from 2 to 48VDC at power levels up to 500W per output. VIPAC Arrays are ideal for use in distributed and modular power systems where power density and reliable operation are critical. A current-share option is available on single-output models enabling them to be used in applications requiring high redundancy. Fully connectorized input and output terminations speed system installation and a versatile coldplate chassis simplifies thermal management.

Power System Designer
Features and Benefits
Features and Benefits
Configurable single, dual, triple & quad outputs
Fully connectorized input & output for simplified hook up
Rugged, low‑profile, coldplate chassis
Compliant to MIL‑STD810F for vibration & shock
Resources
Resources for the design engineer
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Note: 24, 28, 48, 72, 110, and 150 V input VIPAC Arrays are designed primarily for military COTS and industrial applications and do not carry safety agency approvals
- Outline drawing for VIPAC Array Configuration "A"
DXF PDF - Outline drawing for VIPAC Array Configuration "B"
DXF PDF - Outline Drawing for VIPAC Array Configuration "C"
DXF PDF - Outline drawing for VIPAC Array Configuration "D"
DXF PDF - Outline drawing for VIPAC Array Configuration "E"
DXF PDF - Outline drawing for VIPAC Array Configuration "F"
DXF PDF - Outline drawing for VIPAC Array Configuration "G"
DXF PDF - Outline drawing for VIPAC Array Configuration "H"
DXF PDF
- Using LugMate, 1 Output
STEP 3D PDF - Using LugMate, 2 Outputs
STEP 3D PDF - Using PlugMate, 1 Output
STEP 3D PDF - Using PlugMate, 2 Outputs
STEP 3D PDF - Using LugMate, 2 Outputs
STEP 3D PDF - Using LugMate, 3 Outputs
STEP 3D PDF - Using PlugMate, 2 Outputs
STEP 3D PDF - Using PlugMate, 3 Outputs
STEP 3D PDF - Using LugMate, 2 Outputs
STEP 3D PDF - Using LugMate, 3 Outputs
STEP 3D PDF - Using PlugMate, 2 Outputs
STEP 3D PDF - Using PlugMate, 3 Outputs
STEP 3D PDF - Using LugMate, 1 Output
STEP 3D PDF - Using PlugMate, 1 Output
STEP 3D PDF - Using LugMate, 2 Outputs
STEP 3D PDF - Using LugMate, 3 Outputs
STEP 3D PDF - Using PlugMate, 2 Outputs
STEP 3D PDF - Using PlugMate, 3 Outputs
STEP 3D PDF - Using LugMate, 2 Outputs
STEP 3D PDF - Using LugMate, 3 Outputs
STEP 3D PDF - Using LugMate, 4 Outputs
STEP 3D PDF - Using PlugMate, 2 Outputs
STEP 3D PDF - Using PlugMate, 3 Outputs
STEP 3D PDF - Using PlugMate, 4 Outputs
STEP 3D PDF - Using LugMate, 1 Output
STEP 3D PDF - Using PlugMate, 1 Output
STEP 3D PDF - Using LugMate, 1 Output
STEP 3D PDF - Using LugMate, 2 Outputs
STEP 3D PDF - Using PlugMate, 1 Output
STEP 3D PDF - Using PlugMate, 2 Outputs
STEP 3D PDF
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