Manufacturer Part Number
IRS21867SPBF
Manufacturer
Infineon Technologies
Introduction
The IRS21867SPBF is a high-performance, dual-channel IGBT and N-Channel MOSFET gate driver IC from Infineon Technologies. It is designed to provide efficient and reliable control for a wide range of power conversion applications, including industrial motor drives, power supplies, and renewable energy systems.
Product Features and Performance
Dual-channel gate driver with independent control of each channel
Supports IGBT and N-Channel MOSFET gate drive
Wide operating voltage range from 10V to 20V
High peak output current of 4A (source and sink)
Fast rise and fall times of 22ns and 18ns, respectively
CMOS/TTL-compatible logic inputs
High-side voltage up to 600V (bootstrap)
Wide operating temperature range of -40°C to 150°C
Product Advantages
Efficient and reliable power control
Versatile support for various power semiconductor devices
Optimized for high-speed, high-power applications
Robust design with wide operating voltage and temperature ranges
Key Reasons to Choose This Product
Proven performance and reliability from a trusted manufacturer
Comprehensive feature set to address a broad range of power conversion needs
Cost-effective solution for high-volume applications
Easy integration into various system designs
Quality and Safety Features
Robust design with advanced protection mechanisms
Compliance with relevant safety and regulatory standards
Rigorous quality control and testing processes
Compatibility
The IRS21867SPBF is designed to be compatible with a wide range of IGBT and N-Channel MOSFET power semiconductor devices, making it suitable for use in a variety of power conversion applications.
Application Areas
Industrial motor drives
Power supplies
Renewable energy systems
Induction heating
Servo drives
Uninterruptible power supplies (UPS)
Product Lifecycle
The IRS21867SPBF is currently in the obsolete product phase. Customers are advised to contact our website's sales team for information on available equivalent or alternative models that may suit their specific requirements.