Maxim Integrated MAX809L-4.63 Voltage Monitor
The MAX809L-4.63 is a precision voltage monitor designed by Maxim Integrated, a leader in analog and mixed-signal engineering. This compact and efficient device is specifically tailored to provide a reliable monitoring solution for systems that require a stable and accurate voltage threshold. The MAX809L-4.63 is engineered to safeguard sensitive electronic components by triggering a reset signal whenever the monitored voltage falls below a predefined threshold, ensuring the proper operation of microprocessors, microcontrollers, and other digital systems.
Key Features
- Precision Voltage Monitoring: The MAX809L-4.63 offers precise monitoring of voltages with a factory-set threshold of 4.63 volts, ideal for 5V-powered systems.
- Low Power Consumption: With its low power consumption, the device is an excellent choice for power-sensitive applications.
- Manual Reset Capability: The inclusion of a manual reset input allows for an external trigger to reset the system, providing additional control to the user.
- Reset Timeout: The device features an internally fixed delay time after which the reset signal is deactivated, ensuring system stability during power-up or transient conditions.
- Compact SOT23 Packaging: Housed in a small SOT23 package, the MAX809L-4.63 is suitable for high-density PCB designs, saving valuable board space.
Applications
The MAX809L-4.63 is versatile and can be integrated into a wide range of applications, including:
- Computers and Servers
- Embedded Systems
- Portable/Battery-Powered Devices
- Industrial Controllers
- Automotive Systems
Reliability and Support
Maxim Integrated stands behind the reliability of the MAX809L-4.63 with rigorous testing and quality assurance processes. Customers can also take advantage of Maxim's comprehensive technical support to integrate the voltage monitor seamlessly into their designs.
Overall, the MAX809L-4.63 from Maxim Integrated is a robust and reliable solution for voltage monitoring, providing the necessary protection and stability for advanced electronic systems.