Product Overview: MC10EL35DR2 - ON Semiconductor
The MC10EL35DR2 is a high-performance, 5V ECL D-Type Flip-Flop with differential clock and data inputs from ON Semiconductor, known for its reliability and cutting-edge technology. This advanced flip-flop is designed for use in systems requiring very high-speed data paths and clock frequencies, making it an ideal choice for applications in telecommunications, computing, and high-speed data processing.
Key Features
- Differential Clock and Data Inputs: Provides improved noise immunity and allows for high-speed operation.
- Metastable Hardened: Minimizes the probability of failure due to metastability, ensuring stable operation even under challenging conditions.
- Positive ECL Logic Levels: Utilizes positive emitter-coupled logic levels for compatibility with other ECL devices.
- Internal Input Pulldown Resistors: Offers convenience by eliminating the need for external pulldowns, simplifying the design and reducing component count.
- Extended Supply Voltage Range: Operates over a supply voltage range of 4.2V to 5.5V, providing flexibility in various power environments.
- Fast Propagation Delay: Features a typical propagation delay of 1.0 ns, enabling high-speed operation that can keep pace with demanding system requirements.
Applications
The MC10EL35DR2 is versatile and can be used in a wide range of applications, such as:
- High-speed data transmission systems
- Networking and telecommunication equipment
- High-frequency clock distribution networks
- Servers and data centers
- Test and measurement equipment
Quality and Environmental Compliance
ON Semiconductor is committed to providing environmentally friendly solutions. The MC10EL35DR2 adheres to rigorous quality standards and is compliant with RoHS directives, ensuring both high performance and sustainability.
In summary, the MC10EL35DR2 from ON Semiconductor is a robust and high-speed D-Type Flip-Flop that offers designers a reliable solution for the most demanding applications where speed and accuracy are paramount.