Maxim Integrated DS1707EUA+T&R
The Maxim Integrated DS1707EUA+T&R is a highly reliable, low-power microprocessor supervisory circuit designed to monitor system voltage and provide essential control functions during power-up, operation, and power-down conditions. This integrated circuit (IC) is particularly well-suited for portable and battery-powered applications due to its low power consumption and small package size.
This supervisory IC ensures that the microprocessor (µP) and other critical system components operate correctly during various system voltage conditions. It provides a precise voltage monitor with a programmable reset threshold, allowing designers to tailor the reset function to their specific system requirements. The reset timeout period is also programmable, offering additional flexibility in system design.
The DS1707EUA+T&R features a manual reset input, which can be used to initiate a system reset from an external source, such as a button or switch. This manual reset allows for a controlled system restart, which can be invaluable for troubleshooting and maintenance purposes.
With its small 8-pin µSOP (Micro Small Outline Package), the DS1707EUA+T&R minimizes the required board space, making it an excellent choice for space-constrained applications. The T&R suffix indicates that this product is provided in tape and reel packaging, which is optimized for automated manufacturing processes, ensuring efficient and cost-effective assembly.
Key features of the DS1707EUA+T&R include:
- Precision monitoring of 3V, 3.3V, and 5V supply voltages
- Low power consumption, ideal for battery-powered applications
- Programmable reset threshold and timeout period
- Manual reset input for external control
- Power-fail warning to anticipate power loss
- Active-low reset output
- Compact 8-pin µSOP package
- Tape and reel packaging for automated assembly
Overall, the DS1707EUA+T&R from Maxim Integrated is a versatile and essential component for system reliability and stability, providing designers with the tools to maintain control over their systems' power supply and reset functions.