The DS1233-10+T&R from Maxim Integrated is a robust power supply monitor and microprocessor (µP) supervisory circuit designed to enhance system reliability by monitoring the power supply voltage in digital systems. This device is particularly suitable for applications that require precise voltage monitoring to safeguard sensitive electronic components.
Key Features:
- Voltage Monitoring Precision: The DS1233-10+T&R ensures accurate monitoring with a threshold of 4.37V, providing a reliable safeguard against power supply variations.
- Reset Signal: Upon detecting an out-of-tolerance power supply condition, the device generates a reset signal that lasts for a minimum of 250ms after the power supply returns to an acceptable level. This feature ensures that the µP and associated circuitry reset in a controlled manner.
- Low Power Consumption: This device is optimized for low power consumption, making it an ideal choice for power-sensitive applications.
- Temperature Range: The DS1233-10+T&R operates over a wide temperature range, making it suitable for industrial applications that may experience extreme temperature conditions.
- Package and Availability: The device is available in a Tape and Reel (T&R) format, facilitating efficient assembly during the manufacturing process, especially for high-volume production.
Applications:
The DS1233-10+T&R is versatile in its applications, serving a wide array of industries including:
- Computers and computer peripherals
- Embedded systems
- Industrial controllers
- Portable/battery-powered equipment
Technical Specifications:
| Parameter |
Value |
| Threshold Voltage |
4.37V |
| Reset Timeout |
Minimum 250ms |
| Operating Temperature Range |
-40°C to +85°C |
| Supply Current |
Low |
| Package Type |
Tape and Reel |
The DS1233-10+T&R from Maxim Integrated is an essential component for systems that require reliable voltage monitoring and controlled reset functionalities. Its precision, low power consumption, and wide operating temperature range make it an excellent choice for a variety of demanding applications.