Manufacturer Part Number
LM5101M
Manufacturer
texas-instruments
Introduction
The LM5101M is a dual-channel, high-speed MOSFET gate driver capable of driving high-side and low-side N-channel power MOSFETs in half-bridge or other power conversion topologies. It features independent gate drive channels with separate inputs, outputs, and supply pins, providing flexibility in circuit design.
Product Features and Performance
Dual-channel, independent gate drive
High-speed MOSFET gate driver
Capable of driving high-side and low-side N-channel power MOSFETs
Separate inputs, outputs, and supply pins for each channel
Wide supply voltage range: 9V to 14V
Peak output current: 1.6A source/sink
Propagation delay: 600ns (typical) rise/fall time
Operating temperature range: -40°C to 125°C
Product Advantages
Flexible circuit design with independent gate drive channels
High-speed switching for efficient power conversion
Wide supply voltage range for various applications
Capable of driving high-side and low-side power MOSFETs
Key Reasons to Choose This Product
Reliable and efficient gate driving solution for power conversion circuits
Flexible design with independent channel control
Robust performance across a wide temperature range
Cost-effective option for power management applications
Quality and Safety Features
Tested and qualified for industrial and automotive applications
Complies with relevant safety standards
Robust design for reliable operation
Compatibility
The LM5101M is compatible with a variety of N-channel power MOSFETs in half-bridge or other power conversion topologies.
Application Areas
Switch-mode power supplies
Motor drives
Inverters
Power factor correction circuits
Other power conversion applications
Product Lifecycle
The LM5101M is an obsolete product, meaning it is no longer in active production. However, there are several equivalent or alternative models available from Texas Instruments that offer similar functionality and performance. Customers are advised to contact our website's sales team for more information on available alternatives.