Manufacturer Part Number
MIC4424BN
Manufacturer
Microchip Technology
Introduction
The MIC4424BN is a dual N-Channel, P-Channel MOSFET gate driver that operates from a 4.5V to 18V supply. It provides independent control of two MOSFET gates, enabling the implementation of half-bridge or full-bridge topologies. The device features low propagation delays and rise/fall times, making it suitable for a variety of power conversion applications.
Product Features and Performance
Dual Independent MOSFET Gate Drivers
Operates from a 4.5V to 18V Supply Voltage
3A Peak Output Current (Source and Sink)
28ns Typical Rise Time, 32ns Typical Fall Time
Non-Inverting Logic Inputs
-40°C to 150°C Operating Temperature Range
Through-Hole 8-DIP Package
Product Advantages
Enables Efficient MOSFET Switching in Power Conversion Circuits
Simplifies Circuit Design with Integrated Gate Driver Function
Robust Performance Across Wide Temperature Range
Compact Through-Hole Package Suitable for various Applications
Key Reasons to Choose
High-performance gate driver for reliable MOSFET switching
Wide operating voltage range accommodates diverse power requirements
Fast rise and fall times enable high-frequency operation
Flexible independent channel design supports various power topologies
Rugged temperature capability for demanding applications
Quality and Safety Features
Microchip's Proven Quality and Reliability Standards
Automotive-Grade Components and Manufacturing Process
Compatibility
The MIC4424BN is a direct replacement for the obsolete MIC4424 gate driver. There are no direct equivalents or alternative models available from Microchip. For more information, please contact our sales team.
Application Areas
Switched-Mode Power Supplies (SMPS)
Motor Drives
Industrial Automation and Control
Lighting Applications
Renewable Energy Systems
Product Lifecycle
The MIC4424BN is an obsolete product, meaning it is no longer in active production. Microchip recommends customers contact our website's sales team to discuss alternative or replacement options that may better suit their current design needs.