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HV7361
  • HV7361

HV7361

In Production

HV7361 is a high voltage, high-speed, pulse generator with built-in, fast return to zero damping FETs, and an integrated, two terminal, low noise T/R switch. This high voltage and high-speed integrated circuit is designed for portable medical ultrasound image devices, but can also can be used for NDT and test equipment applications. The HV7361 consists of a controller logic interface circuit, level translators, AC coupled MOSFET gate drivers and high voltage and high current P-channel and N-channel MOSFETs as the output stage. The peak output currents of each channel are guaranteed to be over ±2.5A with up to ±100V of pulse swing. The AC coupling topology for the gate drivers not only saves two floating voltage supplies, it also makes the PCB layout easier....

Microchip Technology HV7361 Product Info

16 April 2026 0

Parameters

# of Channels

1

Output Voltage (V)

±100

Output Current (A)

±2.5

Type

Hybrid

Package

LFGA-22

Features

Built-in T/R switch, 8 capacitors

Features

    • HVCMOS® technology for high performance
    • High density integration AC coupled pulser
    • 0 to ±100V output voltage
    • ±2.5A source and sink minimum pulse current
    • Up to 35MHz operating frequency
    • 2.0ns matched delay times
    • 2.5, 3.3 or 5.0V CMOS logic interface
    • Built-in two terminal, low noise T/R switch
    • Low power consumption and very simple to use

Description

HV7361 is a high voltage, high-speed, pulse generator with built-in, fast return to zero damping FETs, and an integrated, two terminal, low noise T/R switch. This high voltage and high-speed integrated circuit is designed for portable medical ultrasound image devices, but can also can be used for NDT and test equipment applications. The HV7361 consists of a controller logic interface circuit, level translators, AC coupled MOSFET gate drivers and high voltage and high current P-channel and N-channel MOSFETs as the output stage. The peak output currents of each channel are guaranteed to be over ±2.5A with up to ±100V of pulse swing. The AC coupling topology for the gate drivers not only saves two floating voltage supplies, it also makes the PCB layout easier.

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