Introducing the MCP103T-270E/LB Voltage Supervisor
The MCP103T-270E/LB is a high-quality voltage supervisor component designed and manufactured by Microchip Technology, a leading provider of microcontroller and analog semiconductors. This compact and efficient device is engineered to keep your electronic applications secure by monitoring the voltage levels and ensuring that they remain within the desired thresholds.
Key Features
- Voltage Threshold: The MCP103T-270E/LB has a preset trigger threshold voltage of 2.7V, making it ideal for applications that operate within this voltage range.
- Accuracy: This voltage supervisor boasts a high accuracy level, ensuring that your system is reliably monitored and protected against undervoltage conditions.
- Reset Timeout: It features a minimum reset active timeout of 350 ms, providing ample time for the system to stabilize after a voltage drop before it resumes operation.
- Low Supply Current: With a low supply current of 1 µA (typical), the MCP103T-270E/LB is an energy-efficient solution that won't significantly drain your system's power resources.
- Operating Temperature: This device is designed to operate over a broad temperature range, from -40°C to +125°C, making it suitable for a wide array of environments and applications.
- Package Type: The component is available in a 3-Pin SOT-23 package, which is widely used in the industry and known for its compact footprint.
Applications
The MCP103T-270E/LB is versatile and can be integrated into various electronic systems, including:
- Portable/Battery-Powered Devices
- Microcontroller Systems
- Intelligent Instruments
- Medical Monitoring Equipment
- Automotive Electronics
Whether you are designing a sophisticated medical device or a robust automotive control unit, the MCP103T-270E/LB from Microchip Technology offers the reliability and performance you need to ensure your system operates without a hitch. Invest in this voltage supervisor to safeguard your electronic applications against the dangers of undervoltage conditions.