Infineon BTS50060-1TEA: High-Current Smart High-Side Power Switch

Release date:2025-11-05 Number of clicks:117

Infineon BTS50060-1TEA: High-Current Smart High-Side Power Switch

In the realm of power management and control, the demand for robust, intelligent, and highly efficient switching solutions continues to grow across industries such as automotive, industrial automation, and consumer electronics. Addressing these needs, the Infineon BTS50060-1TEA stands out as a premier high-current smart high-side power switch, engineered to deliver superior performance, integration, and protection in a single compact package.

This device is specifically designed to handle high-load currents up to 60 A, making it an ideal choice for demanding applications including motor drives, solenoid control, and power distribution systems. Its advanced MOSFET technology ensures exceptionally low on-state resistance (RDS(on)), which minimizes power losses and thermal dissipation, thereby enhancing overall system efficiency and reliability.

A key feature of the BTS50060-1TEA is its integrated smart protection and diagnostic capabilities. The device provides comprehensive safeguards against overcurrent, overtemperature, short-circuit, and overvoltage conditions, significantly improving system durability and safety. Additionally, it offers diagnostic feedback such as current sense and status flags, enabling real-time monitoring and proactive maintenance—a critical advantage in automated and safety-critical environments.

The product also emphasizes ease of use and design integration. With a wide operating voltage range and compatibility with standard microcontroller interfaces, it simplifies circuit design and reduces external component count. Its efficient electro-thermal performance ensures stable operation even under extreme conditions, supported by a durable and space-saving PG-TO-263-7 package.

ICGOOODFIND:

The Infineon BTS50060-1TEA exemplifies innovation in power switching, combining high-current capability, intelligent protection, and thermal efficiency into a versatile solution suitable for next-generation electronic systems.

Keywords:

High-Current Switch, Smart Power Management, Overcurrent Protection, Thermal Efficiency, Diagnostic Feedback

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