TPS63050RMWT is a highly integrated step-down converter (buck converter) from Texas Instruments. It is designed to provide efficient and compact power conversion solutions for a wide range of applications. Here's a description of the TPS63050RMWT, including its features and applications:
Description:
The TPS63050RMWT is a synchronous, step-down converter that offers a wide input voltage range of 3V to 40V. It is available in a compact 10-pin, 2mm x 2mm WQFN package. The device is suitable for battery-powered applications, as it provides high efficiency and low quiescent current.
Features:
- Wide input voltage range: 3V to 40V
- High efficiency: up to 95% depending on the operating conditions
- Low quiescent current: 2.5μA in normal operation mode and 1μA in low power mode
- Synchronous rectification: reduces switching losses and improves efficiency
- Programmable soft-start: minimizes inrush current and provides flexibility in system design
- Integrated power MOSFETs: reduces component count and solution size
- High output current: capable of delivering up to 2A of continuous output current
- Small form factor: 10-pin, 2mm x 2mm WQFN package
- Thermal shutdown and over-current protection: ensures safe operation and reliability
- Wide operating temperature range: -40°C to 125°C
Applications:
- Portable devices: smartphones, tablets, and wearables
- IoT devices: sensors, smart home devices, and IoT gateways
- Wireless communication devices: routers, access points, and modems
- Battery-powered devices: handheld instruments, portable medical devices, and remote monitoring systems
- Automotive applications: infotainment systems, telematics, and advanced driver-assistance systems (ADAS)
- Industrial control systems: motor drives, sensors, and actuators
- Consumer electronics: portable gaming devices, Bluetooth speakers, and smart TVs
The TPS63050RMWT is a versatile and efficient step-down converter that can be used in a variety of applications where a compact, high-performance power solution is required. Its wide input voltage range, high efficiency, and low quiescent current make it an ideal choice for battery-powered and energy-sensitive applications.