The MAX6753KA29+T is a highly reliable, low-power voltage supervisor from Maxim Integrated, designed to enhance the performance and safety of your electronic systems. This compact device is specifically engineered to monitor power supplies in digital systems, ensuring that the system operates within its specified voltage range and providing a reset signal whenever necessary.
Key Features
- Voltage Threshold Accuracy: The device offers a ±1.5% reset threshold accuracy over the full temperature range, ensuring precise monitoring and robust performance.
- Low Power Consumption: With its quiescent current of only 1.2µA, the MAX6753KA29+T is optimized for battery-powered and portable applications, helping to extend the life of your system's power source.
- Manual Reset Input: The inclusion of a manual reset input allows for easy and immediate system resets, providing an additional layer of control for system maintenance or troubleshooting.
- Immunity to Short Vcc Transients: The device is designed to ignore fast transients on Vcc, enhancing system stability and reliability in noisy environments.
- Operating Temperature Range: With its wide operating temperature range of -40°C to +125°C, the MAX6753KA29+T is suitable for use in a variety of harsh environments.
Applications
Thanks to its robust feature set, the MAX6753KA29+T is ideal for a wide range of applications, including:
- Computers and Servers
- Consumer Electronics
- Portable/Battery-Powered Devices
- Industrial Controllers
- Embedded Systems
Package and Availability
The MAX6753KA29+T comes in a compact SOT-23 package, which is ideal for space-constrained applications. This device is available in tape and reel format, denoted by the '+T' suffix, facilitating efficient handling and placement during the manufacturing process.
Manufacturer Information
Maxim Integrated is a reputable company known for its high-quality, innovative analog and mixed-signal engineering solutions. Their products are designed with the goal of making systems smaller and smarter, with enhanced security and increased energy efficiency.