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HV2201
  • HV2201
  • HV2201
  • HV2201

HV2201

In Production

HV2201 is a low charge injection, 8-channel, high voltage analog switch integrated circuit (IC). The device can be used in applications requiring high voltage switching controlled by low voltage control signals, such as medical ultrasound imaging, piezoelectric transducer drivers, and printers. The HV2201 is an enhanced version of the HV20220. Input data is shifted into an 8-bit shift register that can then be retained in an 8-bit latch. To reduce any possible clock feed-through noise, the latch enable bar should be left high until all bits are clocked in. Data is clocked in during the rising edge of the clock. Using HVCMOS technology, this device combines high voltage bilateral DMOS switches and low power CMOS logic to provide efficient control of high voltage analog signals. The devic...

Microchip Technology HV2201 Product Info

16 April 2026 0

Parameters

Interface

Serial

Configuration

8-SPST

Supply Voltage Vpp - Vnn (V)

200

Analog Signal Voltage (V)

180

Switch Current (A)

±2

Switch Resistance typ (Ω)

16

Output Bleed Resistors

No

Package

PLCC-28, LQFP-48

Features

    • HVCMOS technology for high performance
    • 8 Channels of high voltage analog switch
    • 3.3 or 5.0V CMOS input logic level
    • 20MHz data shift clock frequency
    • Very low quiescent power dissipation (-10µA)
    • Low parasitic capacitance
    • DC to 50MHz analog signal frequency
    • -60dB typical off-isolation at 5.0MHz
    • CMOS logic circuitry for low power
    • Excellent noise immunity
    • Cascadable serial data register with latches
    • Flexible operating supply voltages

Description

HV2201 is a low charge injection, 8-channel, high voltage analog switch integrated circuit (IC). The device can be used in applications requiring high voltage switching controlled by low voltage control signals, such as medical ultrasound imaging, piezoelectric transducer drivers, and printers. The HV2201 is an enhanced version of the HV20220. Input data is shifted into an 8-bit shift register that can then be retained in an 8-bit latch. To reduce any possible clock feed-through noise, the latch enable bar should be left high until all bits are clocked in. Data is clocked in during the rising edge of the clock. Using HVCMOS technology, this device combines high voltage bilateral DMOS switches and low power CMOS logic to provide efficient control of high voltage analog signals. The device is suitable for various combinations of high voltage supplies, e.g., VPP/VNN: +40V/-160V, +100V/-100V, and +160V/-40V.

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