Manufacturer Part Number
BM6202FS-E2
Manufacturer
rohm-semi
Introduction
The BM6202FS-E2 is a high-performance, highly integrated full-bridge (H-bridge) driver IC designed for driving AC motors. It features a robust and reliable design, making it suitable for a wide range of industrial and consumer applications.
Product Features and Performance
Half-bridge configuration with 3 output channels
Capable of driving inductive loads such as AC motors
Low RDS(on) of 2.7Ω for efficient power delivery
Output current of up to 1.5A per channel, with a peak of 2.5A
Wide supply voltage range of 13.5V to 16.5V
Maximum load voltage of 400V
Operating temperature range of -20°C to 150°C
Product Advantages
Efficient and reliable motor control
Compact surface-mount package for easy integration
Robust fault protection features, including current limiting, over-temperature, and UVLO
Bootstrap circuit for simplified gate drive implementation
Key Reasons to Choose This Product
Reliable and robust design for demanding industrial and consumer applications
Excellent power efficiency and thermal performance
Comprehensive fault protection for increased system reliability
Easy integration with a wide range of motor control systems
Quality and Safety Features
Designed and manufactured to high quality standards
Robust protection against overcurrent, overtemperature, and undervoltage conditions
Complies with relevant safety and regulatory requirements
Compatibility
The BM6202FS-E2 is compatible with a wide range of AC motor applications, including industrial equipment, home appliances, and consumer electronics.
Application Areas
AC motor control in industrial equipment
Household appliances (e.g., fans, pumps, compressors)
Consumer electronics (e.g., power tools, garden equipment)
Product Lifecycle
The BM6202FS-E2 is currently an active product and is not designated as 'Not For New Designs'. However, it is always recommended to check with the manufacturer or our website's sales team for the latest product status and availability information, as well as any potential equivalent or alternative models that may be available.