Manufacturer Part Number
LM5101BMA/NOPB
Manufacturer
Texas Instruments
Introduction
The LM5101BMA/NOPB is a high-performance, dual-channel gate driver designed for driving N-channel MOSFET or IGBT power switches in half-bridge or other power conversion topologies. It provides independent gate drive signals for the high-side and low-side switches, enabling efficient and reliable power conversion.
Product Features and Performance
Dual-channel gate driver with independent gate drive signals
Supports N-channel MOSFET or IGBT power switches
Wide supply voltage range of 9V to 14V
Peak output current of 2A source and sink
Fast rise and fall times of 570ns and 430ns, respectively
Operating temperature range of -40°C to 125°C
Surface mount 8-SOIC package
Product Advantages
Efficient and reliable power conversion with independent gate drive channels
Wide supply voltage range for versatile application
High peak output current for driving high-power switches
Fast switching speeds for high-frequency power conversion
Wide operating temperature range for use in various environments
Key Reasons to Choose This Product
Optimized for high-performance, high-reliability power conversion applications
Robust and reliable design for long-term, maintenance-free operation
Seamless integration with N-channel MOSFET or IGBT power switches
Compact surface mount package for space-constrained designs
Quality and Safety Features
Robust and reliable design for long-term, maintenance-free operation
Thermal protection and overcurrent protection for safe operation
Compatibility
The LM5101BMA/NOPB is compatible with a wide range of N-channel MOSFET and IGBT power switches, making it suitable for a variety of power conversion applications.
Application Areas
Switch-mode power supplies (SMPS)
Motor drives
Renewable energy systems
Industrial automation and control
Automotive electronics
Product Lifecycle
The LM5101BMA/NOPB is in the Last Time Buy phase, indicating that it is nearing discontinuation. Customers are advised to contact our website's sales team for information on equivalent or alternative models that may be available.