ON Semiconductor NCP802SN1T1 Voltage Supervisor
The ON Semiconductor NCP802SN1T1 is a highly reliable voltage supervisor device designed to maintain system integrity by monitoring the power supply voltage of digital systems. It is an essential component for applications that require precise voltage monitoring to safeguard against unpredictable under-voltage conditions, which can lead to system failures and data corruption.
Key Features:
- Precision Voltage Monitoring: The device ensures accurate monitoring of the system voltage, triggering a reset signal when the voltage drops below a predetermined threshold, thereby protecting the system from erratic behavior.
- Low Power Consumption: With its low power consumption design, the NCP802SN1T1 is ideal for battery-operated devices, contributing to the extension of battery life and overall energy efficiency.
- Manual Reset Input: The inclusion of a manual reset input provides an additional layer of control, allowing users to manually initiate a system reset when necessary.
- Compact SOT-23 Package: The small footprint of the SOT-23 package makes it suitable for space-constrained applications, without compromising on performance.
- Wide Operating Temperature Range: The device operates effectively across a broad temperature range, making it versatile for use in various environments and applications.
Applications:
The NCP802SN1T1 is ideal for a wide range of applications, including:
- Microprocessor/ Microcontroller Systems
- Portable/Battery-Powered Equipment
- Industrial Equipment
- Automotive Systems
- Computers and Communication Systems
Product Specifications:
| Parameter |
Value |
| Threshold Voltage |
Typically set at factory |
| Package Type |
SOT-23 |
| Operating Temperature Range |
-40°C to 85°C |
| Power Consumption |
Low |
Overall, the NCP802SN1T1 from ON Semiconductor is a robust and reliable solution for systems that demand consistent voltage supervision. Its combination of features ensures that it can be integrated into a diverse array of applications, maintaining system stability and protecting against the consequences of power supply anomalies.