Product Description
The Qualcomm PM-8956-0-163FOWNSP-TR-02-1-01 is engineered to meet the demanding power management needs of modern mobile devices and embedded systems. Its multi-channel architecture allows it to efficiently manage power distribution to various components, ensuring that each part of the system receives the appropriate voltage and current.
One of the standout features of this PMIC is its high efficiency, which is crucial for battery-operated devices. By minimizing power loss during voltage conversion, the PM-8956 helps extend the operational time of devices between charges. The dynamic voltage scaling capability further enhances efficiency by adjusting the output voltage in real-time based on the processing load, which is particularly beneficial in applications with varying power demands.
The integrated protection features are essential for maintaining system integrity. By preventing conditions such as over-voltage and over-current, the PMIC safeguards sensitive components from damage, thereby enhancing the overall reliability of the device. Additionally, the thermal management capabilities ensure that the PMIC operates within safe temperature limits, which is vital for maintaining performance and longevity.
The compact QFN package of the PM-8956 is designed for ease of integration into tight spaces, making it an ideal choice for smartphones, tablets, and other portable devices. Its flexible configuration options allow designers to tailor the PMIC to their specific application needs, providing versatility in various design scenarios.
In summary, the Qualcomm PM-8956-0-163FOWNSP-TR-02-1-01 is a robust and efficient power management solution that combines advanced features, high performance, and compact design, making it suitable for a wide range of modern electronic applications.
Specification
High Efficiency: Optimized for high efficiency across a wide range of load conditions, which helps to minimize power loss and extend battery life.
Dynamic Voltage Scaling: Capable of adjusting output voltages dynamically based on real-time workload requirements, optimizing overall power consumption.
Integrated Protection Features: Includes over-voltage, under-voltage, and over-current protection mechanisms to ensure the safety and reliability of the system.