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HV264
  • HV264

HV264

In Production

HV264 is a quad high voltage amplifier array integrated circuit. It operates on a 200V high voltage supply and a 5.0V low voltage supply. Each channel has its own input and output. When both VOUT and FB pins are connected together and RGND is set at 0V, a non-inverting amplifier is formed with closed loop gain of 66.7V/V. High value internal feedback resistors are used to minimize the power dissipation. The input voltage VIN is designed for a range of 0.05V to 2.85V. The output can swing from 1.0V to VPP -10V. A 2.85V input will cause the output to swing to 190V. The HV264 is designed for maximum performance with minimal high voltage current. The high voltage current for each channel is less than 75µA. The typical output slew rate performance is 9.0V/µs....

Microchip Technology HV264 Product Info

16 April 2026 0

Parameters

Slew Rate (V/µs) 0.02 - 11

9

Closed Loop Gain (V/V) Selected

66.7

Feedback Resistance (MΩ) Selected

5.3

HVOUT Source max (µA) 300-96000

3000

HVOUT Sink max (µA) 300-167000

3000

HVOUT Capacitive Load max (pF) Selected

15

Output Current Limit Selected

Amp only

Features

  • Four independent high voltage amplifiers
  • 215V output swing
  • 9.0V/µs typical output slew rate
  • Fixed gain of 66.7V/V
  • High value internal feedback resistors
  • Very low operating current

Description

HV264 is a quad high voltage amplifier array integrated circuit. It operates on a 200V high voltage supply and a 5.0V low voltage supply. Each channel has its own input and output. When both VOUT and FB pins are connected together and RGND is set at 0V, a non-inverting amplifier is formed with closed loop gain of 66.7V/V. High value internal feedback resistors are used to minimize the power dissipation. The input voltage VIN is designed for a range of 0.05V to 2.85V. The output can swing from 1.0V to VPP -10V. A 2.85V input will cause the output to swing to 190V. The HV264 is designed for maximum performance with minimal high voltage current. The high voltage current for each channel is less than 75µA. The typical output slew rate performance is 9.0V/µs.

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