LTC2902-2CGN#PBF - Precision Quad Supply Monitor
The LTC2902-2CGN#PBF is a sophisticated monitoring solution from Linear Technology designed to ensure the reliability and stability of electronic systems. It is a precision quad supply monitor that can keep a vigilant eye on four different supply voltages, making it an invaluable component in a wide range of applications, including computer systems, network servers, and telecommunications equipment.
This device comes in a compact 16-lead SSOP package, offering a space-efficient solution for systems where board real estate is at a premium. The LTC2902-2CGN#PBF is characterized by its ability to monitor four supply voltages simultaneously, which are factory programmed and can range from 0.675V to 4.65V with a tight accuracy of ±1.5%.
Key features of the LTC2902-2CGN#PBF include an adjustable reset timeout period, a manual reset capability, and a reset for power-on reset functionality. The adjustable reset timeout allows designers to set the duration of the reset signal according to specific system requirements, ensuring that the system has adequate time to stabilize before normal operation resumes.
The manual reset input is an additional feature that provides designers with the flexibility to initiate a system reset independently of the automatic monitoring function. This can be particularly useful during system maintenance or troubleshooting procedures. The power-on reset function ensures that the system resets from an off-state, providing a clean start-up sequence every time the power is applied.
Moreover, the LTC2902-2CGN#PBF offers a low supply current, which is crucial for power-sensitive designs, and it operates over a wide temperature range, making it suitable for industrial and automotive environments where temperatures can vary significantly.
With its combination of precision voltage monitoring, compact form factor, and robust feature set, the LTC2902-2CGN#PBF from Linear Technology is an essential component for engineers looking to enhance system reliability and performance.