Manufacturer Part Number
IXDI504PI
Manufacturer
littelfuse
Introduction
The IXDI504PI is a high-performance dual channel IGBT and MOSFET gate driver from Littelfuse. It is designed to provide reliable and efficient control of power switching devices in a wide range of industrial and automotive applications.
Product Features and Performance
Dual independent gate driver channels
Supports IGBT, N-Channel, and P-Channel MOSFET devices
Wide supply voltage range of 4.5V to 30V
Low input voltage thresholds of 0.8V (VIL) and 3V (VIH)
Peak output current of 4A for both source and sink
Fast rise and fall times of 9ns and 8ns, respectively
Wide operating temperature range of -55°C to 150°C
Product Advantages
Reliable and efficient control of power switching devices
Flexible support for different gate drive requirements
Compact and space-saving 8-DIP package
Suitable for a wide range of industrial and automotive applications
Key Reasons to Choose This Product
Robust and dependable gate driver solution
Optimized for high-performance power electronics designs
Ease of integration and compatibility with various power devices
Proven reliability and long-term performance
Quality and Safety Features
Designed and manufactured to high-quality standards
Overcurrent and thermal protection features
Meets safety and regulatory requirements for industrial and automotive applications
Compatibility
The IXDI504PI is compatible with a variety of IGBT, N-Channel, and P-Channel MOSFET devices commonly used in power electronics and motor control applications.
Application Areas
Industrial motor drives and servo systems
Power converters and inverters
Welding equipment
Renewable energy systems
Hybrid and electric vehicles
Product Lifecycle
The IXDI504PI is an obsolete product, and Littelfuse no longer manufactures this specific model. However, there are several equivalent or alternative gate driver products available from Littelfuse and other manufacturers that may meet your requirements. We recommend contacting our website's sales team for more information on suitable replacement options.