ON Semiconductor MC33064DM-5R2: Voltage Supervisor IC
The ON Semiconductor MC33064DM-5R2 is a precision voltage supervisor Integrated Circuit (IC) designed to monitor the voltage level of power supplies and other voltage sources. This device is particularly suitable for applications that require a reliable system reset, ensuring that microprocessors and other digital systems operate correctly following power-up, power-down, or brown-out conditions.
Key Features:
- Voltage Threshold: The MC33064DM-5R2 comes with a preset threshold voltage of 4.55V, which makes it ideal for 5V systems. It ensures that the system does not operate under conditions where the supply voltage is insufficient.
- Low Power Consumption: This device is designed for low power consumption, making it suitable for battery-operated applications where power efficiency is a priority.
- Reset Time Delay: It features a built-in delay time which provides a stable reset signal for a specified amount of time (typically 300ms) after the supply voltage has risen above the reset threshold level.
- Temperature Range: The IC operates over a wide temperature range, making it versatile for use in various environments and applications.
- Compact Package: The MC33064DM-5R2 is available in a Micro-8 package, which is compact and suitable for space-constrained applications.
Applications:
- Microprocessor Systems
- Computers and Computer Peripherals
- Battery-Powered Equipment
- Intelligent Instruments
- Automotive Systems
The MC33064DM-5R2 is a robust device that provides critical monitoring of supply voltages, protecting digital systems from unpredictable conditions that can lead to system failure or data corruption. Its precision and reliability make it a go-to choice for engineers and designers looking for a voltage supervisor solution that ensures system stability and a proper start-up sequence.
With ON Semiconductor's reputation for quality and performance, the MC33064DM-5R2 is a dependable component for safeguarding electronic systems across a broad range of applications.