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EV-VNQ5E160AK
Development Boards, Kits, Programmers

EV-VNQ5E160AK

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STMicroelectronics

VNQ5E160AK EVALUATION BOARD

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EV-VNQ5E160AK
Development Boards, Kits, Programmers

EV-VNQ5E160AK

Active
STMicroelectronics

VNQ5E160AK EVALUATION BOARD

Deep-Dive with AI

Technical Specifications

Parameters and characteristics for this part

SpecificationEV-VNQ5E160AK
ContentsBoard(s)
FunctionHigh Side Driver (Internal FET)
Primary Attributes [custom]4-Channel (Quad)
TypePower Management
Utilized IC / PartVNQ5E160AK

EV-VNQ5E160AK Series

VNQ5E160AK Evaluation Board

PartTypeFunctionPrimary Attributes [custom]Utilized IC / PartContents
EV-VNQ5E160AK
STMicroelectronics
Power Management
High Side Driver (Internal FET)
4-Channel (Quad)
VNQ5E160AK
Board(s)

Pricing

Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly

DistributorPackageQuantity$
DigikeyN/A 0$ 13.17

Description

General part information

EV-VNQ5E160AK Series

EV-VNQ5E160AK provides you an easy way to connect ST’s surface mounted VIPower®drivers into your existing prototype circuitry. This evaluation board comes pre-assembled with VNQ5E160AK-E high-side driver.

The VNQ5E160AK-E is a quad channel high-side driver manufactured using ST proprietary VIPower M0-5 technology and housed in PowerSSO-24 package. The VNQ5E160AK-E is designed to drive 12 V automotive grounded loads, providing protection, diagnostics and easy 3 V and 5 V CMOS-compatible interface with any microcontroller.

The device integrates advanced protective functions such as load current limitation, inrush and overload active management by power limitation, overtemperature shut-off with auto-restart and overvoltage active clamp. A dedicated analog current sense pin is associated with every output channel provides enhanced diagnostic functions including fast detection of overload and short-circuit to ground through power limitation indication, overtemperature indication, short-circuit to VCCdiagnosis and ON-state and OFF-state open-load detection.