ON Semiconductor MC10H104FN: A Robust Quad 2-Input AND Gate
The ON Semiconductor MC10H104FN is a high-performance integrated circuit that forms part of the 10H series. This quad 2-input AND gate is designed to meet the stringent requirements of fast-switching logic systems. With its advanced features and robust design, the MC10H104FN is an ideal choice for applications requiring high-speed logic operations.
Key Features
- Technology: The device is built on Emitter Coupled Logic (ECL) technology, which ensures fast switching times and high-speed performance.
- Configuration: This IC comprises four independent 2-input AND gates, making it versatile for various logic functions in complex circuits.
- Power Supply: The MC10H104FN operates at a nominal voltage of -5.2V, which is typical for ECL-based components.
- Speed: It features propagation delay times as low as 1.0 ns, making it suitable for high-frequency or time-critical applications.
- Temperature Range: The device can operate over a wide temperature range, making it reliable for use in industrial environments.
- Package: Enclosed in a 20-pin PLCC (Plastic Leaded Chip Carrier) package, the MC10H104FN is compact and offers good thermal characteristics.
Applications
The ON Semiconductor MC10H104FN is commonly used in digital circuits where high-speed logic gating is necessary. Its applications span across various fields such as:
- Telecommunication systems
- Computing and data processing
- Instrumentation
- Aerospace and defense electronics
- High-speed logic boards
Quality and Reliability
ON Semiconductor is known for its commitment to quality, and the MC10H104FN is no exception. It is manufactured to the highest standards, ensuring reliability and performance consistency. This component is a testament to ON Semiconductor's dedication to providing industry-leading solutions for high-speed logic requirements.
Whether you are designing a sophisticated communication system or a high-speed computing device, the ON Semiconductor MC10H104FN is a smart choice for your logic gating needs.