MAX6319LHEUK29C - Precision Voltage Supervisor
The MAX6319LHEUK29C is a high-quality voltage supervisor component designed and manufactured by Maxim Integrated, a leader in analog and mixed-signal engineering. This device is specifically engineered to provide precision monitoring of power supplies, ensuring reliable system operation by supervising voltage levels and providing a reset signal when necessary.
The MAX6319 series is characterized by its low power consumption and small size, making it an ideal choice for portable and space-constrained applications. The MAX6319LHEUK29C variant comes in a compact SOT23-5 package, optimized for surface-mount technology and suitable for automated assembly processes.
Key Features
- Accurate Monitoring: The device is designed to monitor a 2.93V voltage threshold, which is crucial for systems that require a precise voltage to operate correctly.
- Low Power Consumption: It has a quiescent current of just 1µA, making it highly efficient and suitable for battery-powered devices.
- Reset Output: The supervisor provides an active-low reset signal, ensuring that the system can recover from brown-out conditions or power-on resets.
- Manual Reset Input: A manual reset input is also available, providing an additional layer of control to the system operators.
- Debounce Timer: The device features a built-in debounce timer, which prevents false triggering due to transient conditions.
Applications
The MAX6319LHEUK29C is versatile and can be used in a wide range of applications where voltage supervision is critical. These include:
- Portable/Battery-Powered Equipment
- Computers and Controllers
- Intelligent Instruments
- Embedded Systems
- Industrial Equipment
With its precision voltage monitoring and low power consumption, the MAX6319LHEUK29C from Maxim Integrated is an excellent choice for designers looking to enhance the reliability and performance of their electronic systems. Its small form factor and robust feature set make it a highly valuable component in any power management solution.