Maxim Integrated MAX6332UR18D3-T Precision Voltage Monitor
The MAX6332UR18D3-T is a high-quality precision voltage monitor designed by Maxim Integrated, a leader in analog and mixed-signal engineering. This compact, robust device is tailored to provide reliable monitoring of power supplies, ensuring that systems operate within their specified voltage ranges.
Key Features
- Fixed Voltage Threshold: The device comes with a preset threshold voltage of 1.8V, which is ideal for monitoring low-voltage power supplies.
- High Accuracy: It offers an impressive threshold accuracy of ±2%, ensuring precise voltage monitoring crucial for sensitive electronic applications.
- Low Power Consumption: With a quiescent current of just 5µA, the MAX6332UR18D3-T is an energy-efficient solution that won't significantly drain the power source it's monitoring.
- Reset Timeout Delay: The built-in reset timeout delay feature provides a 140ms minimum delay time before issuing a reset, allowing for transient conditions to subside and preventing unnecessary system resets.
- Operating Temperature Range: Designed to operate over an industrial temperature range of -40°C to +125°C, the device is suited for harsh environments and demanding applications.
- Small Form Factor: Encased in a tiny SOT-23 package, the MAX6332UR18D3-T is perfect for space-constrained applications.
- Push-Pull RESET Output: The device features a push-pull RESET output which eliminates the need for an external pull-up resistor and is capable of sinking and sourcing current.
Applications
The MAX6332UR18D3-T voltage monitor is versatile and can be used across various applications, including:
- Portable/Battery-Powered Equipment
- Microprocessor/System Monitoring
- Computers
- Controllers
- Intelligent Instruments
With its precision monitoring capabilities, the MAX6332UR18D3-T is an essential component for designers who require reliable voltage monitoring to protect sensitive electronics. Its integration into a system ensures that all parts operate at optimal levels, contributing to the longevity and stability of the overall application.