The MAX6466XR22+T is a robust, low-power voltage supervisor from Maxim Integrated, designed to ensure the reliable operation of microprocessors (µPs), microcontrollers (MCUs), and other voltage-sensitive digital systems. This component monitors the supply voltage (V_CC) and provides a reset signal to the connected system whenever V_CC drops below the factory-set threshold of 2.2V, thus safeguarding against data corruption caused by low voltage conditions.
Key Features
- Precision Voltage Monitoring: With a preset threshold voltage of 2.2V, the MAX6466XR22+T provides highly accurate monitoring to maintain system integrity.
- Low Power Consumption: Designed for power-sensitive applications, this device consumes minimal power, making it ideal for portable and battery-operated devices.
- Manual Reset Input: It features a manual reset input that allows for an external trigger to reset the system whenever necessary.
- Reset Timeout: The reset output remains asserted for a fixed timeout period after V_CC rises above the reset threshold, ensuring system stability.
- High Operating Temperature Range: With an operating temperature range of -40°C to +125°C, the MAX6466XR22+T is suitable for use in harsh environments.
- Compact Package: The device is available in a small, 3-pin SC70 package, providing a space-saving solution for densely packed PCBs.
Applications
The MAX6466XR22+T voltage supervisor is versatile and can be used in a wide range of applications. It is particularly useful in:
- Portable/Battery-Powered Equipment
- Computers and Servers
- Embedded Systems
- Data Storage Systems
- Medical Devices
- Automotive Systems
Product Specifications
| Parameter |
Value |
| Threshold Voltage |
2.2V |
| Operating Temperature Range |
-40°C to +125°C |
| Package Type |
SC70 |
| Number of Pins |
3 |
The MAX6466XR22+T from Maxim Integrated is an essential component for systems that require a reliable and precise voltage monitoring solution. Its low power consumption, high accuracy, and compact form factor make it an excellent choice for designers looking to enhance system reliability without compromising on space or power efficiency.