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TC4427AEOA713

FOB Reference Price:
MOQ:
10
Quantity:
2000
Port:
SHENZHEN
Payment:
T/T
Overview

Quick Details
  • Part Number:
  • TC4427AEOA713
  • Package:
  • SOP8
  • Manufacturer:
  • MICROCHIP
  • D/C:
  • N/A
  • Place of Origin:
Packing & Delivery
  • Packing Details:
  • Delivery Time:
  • 24H
  • Supply Ability:
Payment
Shipping
Product Description

Features:

• High Peak Output Current – 1.5A

• Wide Input Supply Voltage Operating Range:

- 4.5V to 18V

• High Capacitive Load Drive Capability – 1000 pF

in 25 ns (typ.)

• Short Delay Times – 30 ns (typ.)

• Matched Rise, Fall and Delay Times

• Low Supply Current:

- With Logic ‘1’ Input – 1 mA (typ.)

- With Logic ‘0’ Input – 100 μA (typ.)

• Low Output Impedance – 7Ω (typ.)

• Latch-Up Protected: Will Withstand 0.5A Reverse

Current

• Input Will Withstand Negative Inputs Up to 5V

• ESD Protected – 4 kV

• Pin-compatible with TC426/TC427/TC428 and

TC4426/TC4427/TC4428

• Space-saving 8-Pin MSOP and 8-Pin 6x5 DFN

Packages

Applications:

• Switch Mode Power Supplies

• Line Drivers

• Pulse Transformer Drive

General Description:

The TC4426A/TC4427A/TC4428A are improved

versions of the earlier TC4426/TC4427/TC4428 family

of MOSFET drivers. In addition to matched rise and fall

times, the TC4426A/TC4427A/TC4428A devices have

matched leading and falling edge propagation delay

times.

These devices are highly latch-up resistant under any

conditions within their power and voltage ratings. They

are not subject to damage when up to 5V of noise

spiking (of either polarity) occurs on the ground pin.

They can accept, without damage or logic upset, up to

500 mA of reverse current (of either polarity) being

forced back into their outputs. All terminals are fully

protected against Electrostatic Discharge (ESD) up to

4 kV.

The TC4426A/TC4427A/TC4428A MOSFET drivers

can easily charge/discharge 1000 pF gate

capacitances in under 30 ns. These devices provide

low enough impedances in both the on and off states to

ensure the MOSFET’s intended state will not be

affected, even by large transients.


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