


Why Choose Us?
Professional Platform
B2B & B2C purchasingDelivery at full speed
1-2 days deliveryWide variety
Original manufacturers365 days guarantee
Responsible qualityTech Specifications
AND8400QF65 Description
AND8400QF65 Description
The AND8400QF65 is a high-performance, multi-output Power Management Integrated Circuit (PMIC) designed by AnDAPT, Inc. This IC is specifically engineered to deliver reliable and efficient power solutions for a variety of electronic applications. The AND8400QF65 features four adjustable output channels, each capable of providing up to 6A of current. It operates within a wide input voltage range of 4.5V to 17V, making it suitable for diverse power supply requirements.
The device is equipped with a sequencer, ensuring that power is delivered in a controlled and orderly manner, which is crucial for complex systems with multiple power rails. The switching frequency of the AND8400QF65 ranges from 500kHz to 800kHz, allowing for efficient power conversion with minimal losses. This PMIC is designed for surface mount applications, packaged in a tray format, and is RoHS3 compliant, adhering to stringent environmental standards.
AND8400QF65 Features
- Multiple Outputs: The AND8400QF65 offers four adjustable output channels, each capable of delivering up to 6A of current. This flexibility allows for precise power management tailored to specific system requirements.
- Wide Input Voltage Range: With input an voltage range of 4.5V to 17V, the AND8400QF65 can accommodate a variety of power sources, enhancing its versatility.
- Sequencer Integration: The inclusion of a sequencer ensures that power is applied in a controlled sequence, which is essential for systems with multiple power rails to prevent potential damage during startup and shutdown.
- Efficient Power Conversion: The switching frequency range of 500kHz to 800kHz allows for high efficiency and minimal power loss, contributing to overall system efficiency.
- Surface Mount Technology: The AND8400QF65 is designed for surface mount applications, making it ideal for compact and high-density designs.
- Environmental Compliance: The device is RoHS3 compliant, ensuring it meets the latest environmental standards and regulations.
- Moisture Sensitivity Level: With an MSL rating of 3 (168 hours), the AND8400QF65 is suitable for manufacturing processes that require controlled environments prevent to moisture-related issues.
AND8400QF65 Applications
The AND8400QF65 is ideal for a wide range of applications where efficient and reliable power management is critical. Some specific use cases include:
- Telecommunications Equipment: The AND8400QF65 can provide stable power to various components within telecommunication systems, ensuring reliable operation and minimizing downtime.
- Industrial Control Systems: Its ability to handle multiple power rails and high current outputs makes it suitable for industrial control systems that require precise power management.
- Embedded Systems: The compact design and surface mount technology make it an excellent choice for embedded systems where space is limited but power efficiency is paramount.
- Data Centers: The AND8400QF65 can be used to power servers and other critical infrastructure within data centers, ensuring efficient power delivery and reducing overall energy consumption.
Conclusion of AND8400QF65
The AND8400QF65 from AnDAPT Inc,. stands out as a versatile and efficient PMIC, offering multiple adjustable output channels and a wide input voltage range. Its integrated sequencer ensures reliable power delivery, while the high switching frequency contributes to efficient power conversion. The surface mount design and RoHS3 compliance make it suitable for modern, environmentally conscious manufacturing processes. Whether used in telecommunications, industrial control systems, embedded systems, or data centers, the AND8400QF65 provides a robust and reliable power management solution that meets the demands of today's high-performance electronic systems.



.png)


















.png?x-oss-process=image/format,webp/resize,h_32)










