Manufacturer Part Number
S-80930CLMC-G60T2G
Manufacturer
ablic
Introduction
The S-80930CLMC-G60T2G is a voltage detector integrated circuit (IC) that continuously monitors a single voltage rail and provides an active-low reset signal when the monitored voltage falls below a fixed threshold. It is designed to ensure reliable system operation by resetting the microcontroller or other critical components when the supply voltage drops to an unsafe level.
Product Features and Performance
Monitors a single voltage rail
3V voltage threshold
Push-pull, totem-pole output
Active-low reset signal
Minimum reset timeout of 18ms
Wide operating temperature range of -40°C to 85°C
Small surface-mount package (SC-74A, SOT-753)
Product Advantages
Ensures reliable system operation by resetting the microcontroller or other critical components when the supply voltage drops
Compact surface-mount package saves valuable board space
Wide temperature range allows for use in a variety of applications
Key Reasons to Choose This Product
Robust voltage monitoring and reset function to protect your system
Compact and space-saving package design
Reliable performance across a wide temperature range
Quality and Safety Features
Manufactured using high-quality materials and processes to ensure reliable operation
Complies with relevant safety standards for electronic components
Compatibility
The S-80930CLMC-G60T2G is compatible with a wide range of microcontrollers and other electronic components that require voltage monitoring and reset functionality.
Application Areas
Industrial control systems
Automotive electronics
Consumer electronics
Medical devices
IoT applications
Product Lifecycle
The S-80930CLMC-G60T2G is designated as 'Not For New Designs', which means it is nearing the end of its product lifecycle. However, there are equivalent or alternative models available, such as the S-80930CLMC-G60T2 and S-80930CLMC-G60T2B. Customers are advised to contact our website's sales team for more information on the availability and suitability of these alternative models.