Manufacturer Part Number
IXDF602SI
Manufacturer
Littelfuse
Introduction
The IXDF602SI is a dual-channel low-side gate driver from Littelfuse, designed to provide efficient and reliable control for IGBT, N-Channel, and P-Channel MOSFET power switches. This versatile gate driver offers advanced features and performance to meet the demands of various power conversion applications.
Product Features and Performance
Dual independent gate driver channels
Supports IGBT, N-Channel, and P-Channel MOSFET gate control
Wide supply voltage range of 4.5V to 35V
Fast rise and fall times of 7.5ns and 6.5ns, respectively
Inverting and non-inverting input options
Peak output current capability of 2A (source and sink)
Operating temperature range of -55°C to 150°C (junction temperature)
Surface mount package (8-SOIC with exposed pad)
Product Advantages
Efficient and reliable power switch control
Flexible gate driver configuration options
Compact and thermally-enhanced package design
Suitable for a wide range of power conversion applications
Key Reasons to Choose This Product
Robust performance in high-power, high-switching-frequency applications
Versatile gate driver functionality to accommodate various power device types
Exceptional thermal management capabilities for reliable operation
Cost-effective solution for power conversion system design
Quality and Safety Features
Rigorous quality control and testing processes
Compliance with industry safety standards
Compatibility
The IXDF602SI gate driver is designed to be compatible with a variety of IGBT, N-Channel, and P-Channel MOSFET power devices commonly used in power conversion applications.
Application Areas
Switch-mode power supplies
Motor drives
Uninterruptible power supplies (UPS)
Inverters and converters
Industrial and automotive power electronics
Product Lifecycle
The IXDF602SI is an active, in-production product. There are no immediate plans for discontinuation. Customers are advised to check with our website's sales team or their authorized distributors for the latest product availability and any potential alternative or equivalent models.