Product Overview: MAX6747KA46+T from Maxim Integrated
The MAX6747KA46+T is a highly reliable and versatile microprocessor (µP) supervisory circuit, designed and manufactured by Maxim Integrated, a leader in analog and mixed-signal engineering. This compact and efficient device is engineered to monitor power supplies in µP and digital systems, providing excellent circuit protection and ensuring system stability.
The MAX6747KA46+T offers a precise, factory-trimmed VCC reset threshold, ensuring that your system operates within safe voltage levels. It is ideal for use in a wide range of applications, including portable devices, computers, controllers, and intelligent instruments, where maintaining accurate voltage thresholds is critical for optimal performance and reliability.
Key Features:
- Adjustable Reset Threshold: The device allows for precise monitoring of the VCC supply voltage with a factory-trimmed reset threshold, providing reliable reset operation without external components.
- Low Power Consumption: Designed for power-sensitive applications, the MAX6747KA46+T consumes minimal power, thereby extending battery life in portable devices.
- Manual Reset Input: It features a manual reset input that enables a system reset to be triggered with an external push-button or logic signal, allowing for greater system control.
- Immune to Short VCC Transients: The device is designed to ignore brief perturbations on the VCC line, preventing false resets and ensuring system stability.
- Wide Operating Temperature Range: Suitable for various environments, it operates effectively across a broad temperature range from -40°C to +125°C.
The MAX6747KA46+T is offered in a small, 8-pin SOT23 package, making it an ideal choice for space-constrained applications. Its extended temperature range ensures reliable operation under extreme conditions, and with its robust design, it provides an additional layer of protection against unpredictable voltage fluctuations.
With its combination of features, the MAX6747KA46+T from Maxim Integrated is an indispensable component for system designers seeking to enhance the reliability and performance of their digital systems. Its precise voltage monitoring capabilities, low power consumption, and compact form factor make it a smart choice for safeguarding critical applications.