STMicroelectronics VN9E30FTR High Side, High Side High Side Power Switch IC 32-Pin, QFN 6 x 6

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Sous-total (1 unité)*

2,51 €

(TVA exclue)

3,04 €

(TVA incluse)

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N° de stock RS:
285-635
Référence fabricant:
VN9E30FTR
Fabricant:
STMicroelectronics
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Marque

STMicroelectronics

Power Switch Topology

High Side

Power Switch Type

High Side

Product Type

High Side Power Switch IC

Number of Outputs

6

Power Rating

4.0625W

Interface Type

SPI

Package Type

QFN 6 x 6

Pin Count

32

Maximum Supply Voltage

28V

Minimum Operating Temperature

-60°C

Maximum Operating Temperature

150°C

Operating Current

35A

Standards/Approvals

IEC/EN 60947-7-1, IEC/EN 2

Automotive Standard

No

The STMicroelectronics VN9E30F is a device made using STMicroelectronics VIPower technology. It is intended for driving resistive or inductive loads directly connected to ground. The device is protected against voltage transient on the VCC pin (see ISO7637 transient compatibility table). Programming, control and diagnostics are implemented via the SPI bus. A digital current sense feedback for each channel is provided through an integrated 10-bit ADC with 0.1% of FSR. Dedicated trimming bits allow to adjust the ADC reference current. The device detects open-load in OFF-state conditions. Real time diagnostics is available through the SPI bus (open-load, output short to VCC, over temperature, communication error, power limitation or latch off). Output current limitation protects the device in an overload condition.

Integrated PWM engine with independent phase shift and frequency generation for each channel

Integrated 10 bit ADC for digital current sense

Programmable bulb or LED mode for all channels

Advanced limp home functions for robust fail safe system

Very low electromagnetic susceptibility

Control through direct inputs and/or SPI

Compliant with European directive 2002 or 95 or EC

Synchronous diagnostics of overload and short to GND and output shorted to VCC and OFF state open load events

Programmable case over temperature warning

Two level load current limitation

Self limiting of fast thermal transients

Liens connexes

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