Product Overview: MAX810RESET
The MAX810RESET from Maxim Integrated is a microprocessor (µP) supervisory circuit used to monitor the power supplies in µP and digital systems. It provides a significant level of system reliability and accuracy required by modern electronics. This device is specifically designed to maintain system integrity by monitoring the system voltage and issuing a reset signal whenever necessary.
The MAX810RESET ensures that the µP is reset to a known state during power-up, power-down, or if a brownout condition occurs. It achieves this by asserting a reset signal whenever the VCC supply voltage declines below a preset threshold. The reset output remains asserted for a period after VCC has risen above the reset threshold, ensuring the system has sufficient time to stabilize.
Key Features:
- Precision Monitoring: The device offers precision voltage monitoring suitable for a wide range of applications, ensuring reliable operation of the system it is integrated with.
- Low Power Consumption: Designed for low power consumption, the MAX810RESET is ideal for portable and battery-operated applications.
- Manual Reset Input: A manual reset input is provided, allowing the system to be reset with an external signal, thereby providing an additional layer of system control.
- Reset Timeout: The reset signal is maintained for an adequate period after the supply voltage returns to an acceptable level, which gives the system time to fully stabilize.
- Compact Packaging: The device is available in a variety of compact packages, making it suitable for space-constrained applications.
Applications:
The MAX810RESET is versatile and can be used in numerous applications, including:
- Computers and Controllers
- Embedded Systems
- Portable/Battery-Powered Equipment
- Intelligent Instruments
- Automotive Systems
In conclusion, the MAX810RESET is a robust and reliable solution for system monitoring and reset functions. With its precision voltage monitoring and low power consumption, it's an essential component for maintaining the health and stability of electronic systems.