The ON Semiconductor MC10EL15DR is a high-performance, differential 4:1 multiplexer that is part of the ECLinPS Lite™ family of devices. This integrated circuit is designed to meet the demanding requirements of high-speed data communication systems, providing a reliable and efficient means of routing differential signals.
Key Features
- High-Speed Operation: With a propagation delay of typically 225 ps, the MC10EL15DR is optimized for ultra-fast switching, ensuring minimal signal latency in critical applications.
- Differential 4:1 Mux: The device features four differential inputs and one differential output, allowing for the selection of one of four input pairs to be routed to the output.
- PECL Mode Operating Range: The MC10EL15DR operates with a VCC supply of 4.2 V to 5.7 V within the PECL mode, providing compatibility with ECL 10K logic levels.
- Enhanced Signal Integrity: The differential design of the MC10EL15DR helps to reduce common-mode noise, providing improved signal integrity in noisy environments.
- Functional at Lower ECL Voltages: This device is also functional down to VCC = 3.0 V for ECL mode operation, offering flexibility in different circuit configurations.
- Industry Standard Footprint: The MC10EL15DR is available in an industry-standard SOIC-16 package, ensuring easy integration into existing designs.
Applications
The ON Semiconductor MC10EL15DR is suitable for a variety of applications where high-speed differential signal multiplexing is required. It is commonly used in:
- Telecommunications
- High-speed data transmission systems
- Automated test equipment
- Satellite systems
- High-speed computer servers
Quality and Reliability
ON Semiconductor is committed to delivering high-quality products. The MC10EL15DR is manufactured to stringent standards, ensuring reliability and performance in even the most demanding applications. With its robust design and ON Semiconductor's reputation for quality, this differential multiplexer is an excellent choice for designers looking to optimize their high-speed digital systems.