Can’t find a match for your specs? We can design and manufacture turnkey custom power systems that meet your specific needs!
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 Vicor's 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 300 Vdc and outputs from 2 to 48 Vdc at power levels up to 500 watts 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 power / redundancy. Fully connectorized input and output terminations speed system installation and a versatile coldplate chassis simplifies thermal management.
Component Power Solutions for Industrial High Voltage Applications »
Wide Range Trimming with Variable Loads »
High Efficiency Battery Charger Using Power Components »
Using Modular DC-DC Converters to Meet European Standards for Railway Applications »
Adjustable Latching Output Over Current Circuit »
Hot Swap Capability Eliminates Down Time »
Military COTS VIPAC Array Data Sheet »
Maxi, Mini and Micro Data Sheets
24 Vdc (18 - 36 V) Input
24 V Micro Family Data Sheet »
24 V Mini Family Data Sheet »
24 V Maxi Family Data Sheet »
28 Vdc (10 - 36 V: Maxi; 9 - 36 V: Micro) Input
28 V Micro Family Data Sheet »
28 V Maxi Family Data Sheet »
300 Vdc (180 - 375 V) Input
300 V Micro Family Data Sheet »
300 V Mini Family Data Sheet »
300 V Maxi Family Data Sheet »
These calculator programs allow users to determine values that help with accessory
component selection for power system design.
Trim Resistor Calculators
Trim resistors for fixed output voltage trimming
»
Trim resistors for variable output voltage trimming »
Thermal Calculators
Thermal data and heat sink selection tool »
This is a downloadable Excel file.
| 2-D VIPAC Array Drawings (Configuration "A") | ||||
| Drwg. Number | Description | Download | RoHS | |
| 24822 | Outline drawing for VIPAC Array Configuration "A" | DXF | PDF | ||
| 3-D VIPAC Array Drawings Configuration "A" (referring to drawing number 24822) | ||||
| 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 | |||
| 2-D VIPAC Array Drawings (Configuration "B") | ||||
| Drwg. Number | Description | Download | RoHS | |
| 24823 | Outline drawing for VIPAC Array Configuration "B" | DXF | PDF | ||
| 3-D VIPAC Array Drawings Configuration "B" (referring to drawing number 24823) | ||||
| 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 | |||
| 2-D VIPAC Array Drawings (Configuration "C") | ||||
| Drwg. Number | Description | Download | RoHS | |
| 24824 | Outline drawing for VIPAC Array Configuration "C" | DXF | PDF | ||
| 3-D VIPAC Array Drawings Configuration "C" (referring to drawing number 24824) | ||||
| 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 | |||
| 2-D VIPAC Array Drawings (Configuration "D") | ||||
| Drwg. Number | Description | Download | RoHS | |
| 24825 | Outline drawing for VIPAC Array Configuration "D" | DXF | PDF | ||
| 3-D VIPAC Array Drawings Configuration "D" (referring to drawing number 24825) | ||||
| Using LugMate, 1 Output | STEP | 3D PDF | |||
| Using PlugMate, 1 Output | STEP | 3D PDF | |||
| 2-D VIPAC Array Drawings (Configuration "E") | ||||
| Drwg. Number | Description | Download | RoHS | |
| 24826 | Outline drawing for VIPAC Array Configuration "E" | DXF | PDF | ||
| 3-D VIPAC Array Drawings Configuration "E" (referring to drawing number 24826) | ||||
| 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 | |||
| 2-D VIPAC Array Drawings (Configuration "F") | ||||
| Drwg. Number | Description | Download | RoHS | |
| 24827 | Outline drawing for VIPAC Array Configuration "F" | DXF | PDF | ||
| 3-D VIPAC Array Drawings Configuration "F" (referring to drawing number 24827) | ||||
| 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 | |||
| 2-D VIPAC Array Drawings (Configuration "G") | ||||
| Drwg. Number | Description | Download | RoHS | |
| 25335 | Outline drawing for VIPAC Array Configuration "G" | DXF | PDF | ||
| 3-D VIPAC Array Drawings Configuration "G" (referring to drawing number 25335) | ||||
| Using LugMate, 1 Output | STEP | 3D PDF | |||
| Using PlugMate, 1 Output | STEP | 3D PDF | |||
| 2-D VIPAC Array Drawings (Configuration "H") | ||||
| Drwg. Number | Description | Download | RoHS | |
| 25336 | Outline drawing for VIPAC Array Configuration "H" | DXF | PDF | ||
| 3-D VIPAC Array Drawings Configuration "H" (referring to drawing number 25336) | ||||
| 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 | |||
PowerBench™– VIPAC Array Design Center (VCAD) »
VCAD allows you to configure AC-DC and DC-DC power systems with the lowest profile in the industry. With VCAD you can configure your design, and receive a part number, price, and delivery date.
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.
M-FIAM – Filter Input Attenuator Module - DC input, front-end module providing transient protection, inrush current limiting and EMI filtering for Maxi, Mini, and Micro DC-DC converters.
| M-FIAM Model | Module Compatibility | Input Voltage | Output Current | Transient Compliance | Data Sheet | ||||||||||
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| M-FIAM3 | 300 Vin Maxi, Mini, Micro |
180 – 375 Vdc | 3 Amps |
MIL-STD-704E/F | |||||||||||
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| M-FIAM5B | 24 / 28 Vin Maxi, Mini, Micro | 14 – 36 Vdc | 20 Amps |
MIL-STD-704E/F | |||||||||||
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| M-FIAM9 | 24 / 28 Vin Maxi, Mini, Micro | 10 – 36 Vdc | 18 Amps |
MIL-STD-704A-F MIL-STD-1275A/B/D |
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MicroRAM - Output Ripple Attenuator Module - The MicoRAM conbines both active and passive filtering to achieve greater than 40 dB of noise attenuation from over a range of 3 to 30 Vdc.
QPO Family Output Filters - QPO filters use active filtering to reduce power supply ripple and noise in a 1.0" x 1.0"
(25 x 25 mm) surface mount package.
MIL-COTS Maxi, Mini and Micro DC-DC Converters - Our Maxi, Mini and Micro models (full, half, quarter-brick) DC-DC converters feature a patented low noise design with the highest reliability and power density available.
MI-MegaMod Family DC-DC Converters - The MI-MegaMod family of single, dual, and triple output DC-DC converters provide power system designers with cost-effective, high-performance, off-the-shelf solutions.
MI-ComPAC – DC Power Supply - The MI-ComPAC is a complete single, dual, or triple output DC-DC power supply that delivers up to 300 W from inputs of 28 or 270 Vdc.
MIL-COTS VIPAC – Chassis Mount DC-DC Converter - The MIL-COTS VIPAC is a class of user-defined, modular power that incorporates Vicor's M-FIAM5B or M-FIAM9, which provides EMI filtering and transient protection, Vicor's Maxi, Mini, and Micro H- or M-Grade DC-DC converters, and a choice of output connections and mechanical platforms.
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Click on part number below. |
| Click img. to enlarge | Description | P/N | Technical Drawing | |||||
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Maxi PlugMate Housing (for 24 Pins) | 25044 | – | |||||
| Maxi PlugMate Pins (24) | 24796 | – | ||||||
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| Maxi PlugMate Connector Kit |
25061*
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| * Includes Housing and (24) Pins | – | |||||||
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Mini PlugMate Housing (for 18 Pins) | 25050 | – | |||||
| Mini PlugMate Pins (18) | 24796 | – | ||||||
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| Mini PlugMate Connector Kit |
25067*
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| * Includes Housing and (18) Pins | – | |||||||
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Micro PlugMate Housing (for 8 Pins) | 25056 | – | |||||
| Micro PlugMate Pins (8) | 24796 | – | ||||||
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| Micro PlugMate Connector Kit |
25073*
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| * Includes Housing and (8) Pins | – | |||||||
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Click on part number below. |
| Longitudinal Heat Sinks | ||||||||||
| Click img. to enlarge | Description | Model Type | P/N | Technical Drawing |
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Dual Mini | VA-A |
32161
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| Singlle Mini / Dual Micro | VA-B |
32161
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| Triple Micro | VA-C |
32161
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| Single Maxi | VA-D |
32161
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Dual Mini / Single Micro | VA-E |
32176
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| Quad Micro | VA-F |
32176
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Single Mini | VA-G |
32177
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| Dual Micro | VA-G |
32177
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| Transverse Heat Sinks | ||||||||||
| Click img. to enlarge | Description | Model Type | P/N | Technical Drawing |
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Dual Mini | VA-A |
32178
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| Singlle Mini / Dual Micro | VA-B |
32178
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| Triple Micro | VA-C |
32178
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| Single Maxi | VA-D |
32178
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Dual Mini / Single Micro | VA-E |
32179
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| Quad Micro | VA-F |
32179
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Single Mini | VA-G |
32180
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| Dual Micro | VA-G |
32180
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