Maxim Integrated MAX6719UTTZD3 Microprocessor Supervisor
The MAX6719UTTZD3 is a highly reliable and robust microprocessor (µP) supervisory circuit designed and manufactured by Maxim Integrated. This compact, triple-voltage supervisor is engineered to maintain the integrity of power supply and system operation, ensuring that microprocessors and digital systems function optimally even under conditions of power instability.
This device operates over a wide voltage range and provides excellent circuit reliability and low power consumption, making it an ideal choice for a variety of applications, including portable/battery-powered devices, computers, controllers, and intelligent instruments.
Key Features:
- Voltage Monitoring: The MAX6719UTTZD3 monitors three voltages simultaneously, ensuring that all system voltages remain within specified thresholds for proper operation.
- Adjustable Thresholds: Voltage threshold levels are externally adjustable, giving designers the flexibility to set precise voltage parameters according to specific system requirements.
- Low Power Consumption: With its low quiescent current, this supervisor is an energy-efficient solution that contributes to the overall power management of the system.
- Manual Reset Input: A manual reset input allows for a system reset to be triggered by an external signal, providing an additional layer of control.
- Reset Timeout: The device offers a programmable reset timeout period, which can be set to ensure that the system has adequate time to return to a stable state before resuming operation.
- Small Package: Housed in a compact SOT23 package, the MAX6719UTTZD3 saves valuable board space, which is crucial for space-constrained applications.
Applications:
- Portable and Battery-Powered Equipment
- Computers and Servers
- Embedded Systems
- Data Storage Systems
- Industrial Controllers
The MAX6719UTTZD3 from Maxim Integrated is a testament to the company's commitment to delivering products that combine innovation with reliability. By integrating this supervisor into your design, you can enhance the safety and stability of your electronic systems, ensuring they perform consistently in the face of power irregularities.