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HV508
  • HV508

HV508

In Production

HV508 is a 45V liquid crystal shutter driver in an 8-Lead SOIC surface mount package. It consists of two outputs that provide square waves of opposite phase. The liquid crystal shutter is connected between the two outputs. Its equivalent load can be approximated as a resistor in parallel with a capacitor. Minimum resistance is 1.0M? and maximum capacitance is 0.1µF. The HV508 has three input supply voltages, HVIN, LVIN, and VDD. The output’s amplitude will be either LVIN or HVIN. A logic high on the HVEN input will set the output to operate from the HVIN supply. A logic low on the HVEN input will set the output to operate from the LVIN supply. The output frequency is set by the logic input frequency applied on the POL input....

Microchip Technology HV508 Product Info

16 April 2026 0

Parameters

Type

Source-Sink

Output Channels

2

Vout Operating (V) - Transient

60

Vout Operating (V) - Sustained

45

Iout (mA) per Channel

-2.8, +0.38

Output Structure

Half-Bridge

Input Structure

Parallel

Minimum Data Clock (MHz)

--

General Description

H-Bridge output with two output voltage level selections and polarity; Specially targetd as LCD Shutter Driver

Package

8/SOIC 150mil

Features

    • HVCMOS® technology for high performance
    • Logic-selectable output voltage
    • 100nF drive capability
    • Up to 90VP-P
    • 25µs response time

Description

HV508 is a 45V liquid crystal shutter driver in an 8-Lead SOIC surface mount package. It consists of two outputs that provide square waves of opposite phase. The liquid crystal shutter is connected between the two outputs. Its equivalent load can be approximated as a resistor in parallel with a capacitor. Minimum resistance is 1.0M? and maximum capacitance is 0.1µF. The HV508 has three input supply voltages, HVIN, LVIN, and VDD. The output’s amplitude will be either LVIN or HVIN. A logic high on the HVEN input will set the output to operate from the HVIN supply. A logic low on the HVEN input will set the output to operate from the LVIN supply. The output frequency is set by the logic input frequency applied on the POL input.

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