The ON Semiconductor MC10H211FNR2 is a high-performance, dual 4-input OR/NOR gate, designed to meet the stringent requirements of high-speed digital systems. This integrated circuit is a part of the 10H series, which is well-known for its high-speed ECL logic operations. The MC10H211FNR2 utilizes advanced silicon-gate technology, providing users with a combination of fast switching speeds and low power consumption.
Key Features
- Logic Type: OR/NOR Gate
- Number of Circuits: Dual 4-Input
- Output Type: Differential
- High-Speed Performance: The device features a typical propagation delay time of 1.0 ns, ensuring rapid signal processing for demanding applications.
- Power Supply: The MC10H211FNR2 operates at a voltage range of -4.94V to -5.46V, which is standard for ECL logic circuits.
- Temperature Range: This device can operate over a full military temperature range, ensuring reliability and performance under extreme conditions.
- Mounting Type: Surface Mount
- Package / Case: PLCC-20
Applications
The ON Semiconductor MC10H211FNR2 is ideally suited for high-speed logic systems where rapid data processing is crucial. It is commonly used in:
- High-frequency timing circuits
- Fast data communication systems
- Signal processing units
- Computing and networking equipment
Quality and Reliability
ON Semiconductor is committed to providing high-quality products that meet the needs of their customers. The MC10H211FNR2 is manufactured under strict quality control standards, ensuring high reliability and performance consistency. The device is also RoHS compliant, minimizing the environmental impact by restricting the use of certain hazardous substances in its construction.
Conclusion
With its fast switching capabilities, low power consumption, and robust design, the ON Semiconductor MC10H211FNR2 is an excellent choice for designers looking to implement high-speed logic operations in their systems. Its dual 4-input OR/NOR functionality, combined with a differential output, makes it a versatile component for a wide range of electronic applications.