

Torex Semiconductor Ltd.
XC6121C416ER-G
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XC6121C416ER-G Description
XC6121C416ER-G Description
The XC6121C416ER-G is a highly reliable and efficient watchdog circuit designed by Torex Semiconductor Ltd. This IC supervisor is part of the Power Management Integrated Circuits (PMIC) category and offers comprehensive monitoring and control for single power supply systems. The device is housed in a surface-mount package, specifically a Tape & Reel (TR) format, making it suitable for automated assembly processes and high-density PCB designs. It features a reset timeout of 200ms typical, ensuring reliable system resets under various operating conditions. The XC6121C416ER-G is designed to monitor a single voltage threshold of 1.6V, providing precise control and protection for sensitive electronic systems. Its open drain or open collector output configuration offers flexibility in circuit design, allowing for easy integration with a wide range of applications. The device is also compliant with stringent environmental regulations, including REACH and ROHS3, making it suitable for use in environmentally conscious designs. With a moisture sensitivity level (MSL) of 1 (unlimited), the XC6121C416ER-G is highly resistant to moisture, ensuring long-term reliability in various environmental conditions.
XC6121C416ER-G Features
- Single Voltage Monitoring: The XC6121C416ER-G is designed to monitor a single voltage threshold of 1.6V, providing precise and reliable control over power supply levels.
- Reset Timeout: The device features a typical reset timeout of 200ms, ensuring that system resets are executed efficiently and reliably.
- Output Configuration: The open drain or open collector output configuration offers flexibility in circuit design, allowing for easy integration with various electronic systems.
- Surface Mount Packaging: The XC6121C416ER-G is housed in a surface-mount package, making it suitable for automated assembly processes and high-density PCB designs.
- Environmental Compliance: The device is compliant with REACH and ROHS3 regulations, making it suitable for environmentally conscious designs.
- Moisture Resistance: With a moisture sensitivity level (MSL) of 1 (unlimited), the XC6121C416ER-G is highly resistant to moisture, ensuring long-term reliability in various environmental conditions.
- Active Low Reset: The active low reset feature ensures that the device can effectively reset the system when the monitored voltage falls below the threshold.
XC6121C416ER-G Applications
The XC6121C416ER-G is ideal for a wide range of applications where reliable power supply monitoring and system reset functionality are critical. Some specific use cases include:
- Embedded Systems: The device is well-suited for embedded systems where precise power supply monitoring and reliable system resets are essential for maintaining system stability and performance.
- Industrial Control Systems: In industrial environments, the XC6121C416ER-G can be used to monitor power supplies and ensure that critical control systems remain operational and reliable.
- Consumer Electronics: The device can be integrated into consumer electronics to provide reliable power supply monitoring and protection, enhancing the overall reliability and user experience.
- Telecommunications: In telecommunications equipment, the XC6121C416ER-G can be used to monitor power supplies and ensure that critical components remain operational, reducing downtime and improving system reliability.
- Automotive Electronics: The device's robustness and environmental compliance make it suitable for automotive applications where reliability and environmental resistance are critical.
Conclusion of XC6121C416ER-G
The XC6121C416ER-G from Torex Semiconductor Ltd. stands out as a reliable and efficient watchdog circuit, offering precise voltage monitoring and system reset functionality. Its surface-mount packaging, environmental compliance, and moisture resistance make it suitable for a wide range of applications, from embedded systems to automotive electronics. The device's unique features, such as its open drain or open collector output configuration and active low reset, provide significant advantages over similar models, ensuring that it remains a top choice for designers seeking reliable power management solutions.



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