ON Semiconductor MC10H113FN - Product Overview
The MC10H113FN is a high-performance, triple 4-input OR/NOR gate integrated circuit, part of the 10H series from ON Semiconductor. Designed for use in ECL (Emitter Coupled Logic) systems, this device offers exceptional speed and logic flexibility, making it an ideal choice for high-speed computing, telecommunication, and industrial applications where rapid signal processing is crucial.
Key Features
- Logic Type: Triple 4-input OR/NOR gate, providing versatile logic operations in a single IC.
- High Speed: Fast propagation delay times, which are essential for applications requiring quick data processing and throughput.
- Power Supply: Designed to operate with a power supply voltage of -4.94V to -5.46V, suitable for standard ECL power environments.
- Temperature Range: The MC10H113FN can operate over a full military temperature range, offering reliable performance under extreme conditions.
- Package: Housed in a 20-lead PLCC (Plastic Leaded Chip Carrier) package, providing a compact footprint and ease of integration into system designs.
Applications
The versatility and high-speed operation of the MC10H113FN make it an ideal component for a wide range of applications, including:
- High-speed digital systems
- Telecommunication infrastructure
- Computing and data storage networks
- Industrial control systems
- Test and measurement equipment
Quality and Reliability
ON Semiconductor is known for its commitment to quality and reliability. The MC10H113FN is manufactured under stringent conditions to ensure high standards of performance and durability. Customers can trust this product to deliver consistent operation and to withstand the demands of rigorous industrial environments.
Support and Resources
ON Semiconductor provides comprehensive technical support and resources for the MC10H113FN, including detailed datasheets, application notes, and design tools. Engineers and designers can access these resources to facilitate the integration of this IC into their projects, ensuring a smooth design process and optimal use of the device's capabilities.