The TPS22914CYFPR is a high-performance, single-channel power multiplexer (power MUX) from Texas Instruments. It is designed to provide efficient power distribution and load switching in a variety of applications, including industrial, medical, and automotive systems.
Description:
The TPS22914CYFPR is a 16-pin, 1.2mm pitch, QFN package with an exposed pad for thermal dissipation. It features a low on-resistance (RON) of 2.2mΩ (typical) and a low input current of 2.5μA (typical), which helps to minimize power loss and improve overall system efficiency.
Features:
- Single-channel power multiplexer with high efficiency and low on-resistance.
- Wide input voltage range of 4.75V to 5.5V.
- Low input current of 2.5μA (typical) to minimize power consumption.
- Low on-resistance of 2.2mΩ (typical) to reduce power loss.
- Overcurrent protection to prevent overloading of the power source.
- Thermal shutdown protection to prevent damage due to overheating.
- Active-low enable input for easy control of the power MUX.
- 16-pin, 1.2mm pitch, QFN package with an exposed pad for thermal dissipation.
Applications:
- Industrial systems: Power distribution and load switching in industrial control systems, automation equipment, and motor drives.
- Medical systems: Power management in medical devices, such as patient monitoring systems, diagnostic equipment, and medical imaging systems.
- Automotive systems: Power distribution and load switching in automotive infotainment systems, lighting control, and body control modules.
- Telecommunications: Power management in communication equipment, such as routers, switches, and base stations.
- Consumer electronics: Power distribution and load switching in smartphones, tablets, and laptops.
In summary, the TPS22914CYFPR is a versatile and efficient power multiplexer that can be used in a wide range of applications to improve power distribution and load switching performance. Its low on-resistance, low input current, and various protection features make it an ideal choice for systems that require high efficiency and reliable power management.