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MC10EL35DR2G Description
MC10EL35DR2G Description
The MC10EL35DR2G is a single-bit D-type flip-flop IC designed for high-performance digital applications. Manufactured by onsemi, this device is part of the 10EL series and features a clock frequency of 2.2 GHz, ensuring rapid and reliable data processing. The flip-flop operates with a quiescent current (Iq) of 32 mA, making it energy-efficient for various electronic systems. It is designed with a single element per bit, providing a straightforward and efficient data storage solution. The output type is complementary, which enhances signal integrity and reduces noise. The MC10EL35DR2G is triggered by a positive edge, ensuring precise timing control. It is available in a surface-mount package, specifically in a Tape & Reel (TR) format, making it suitable for automated assembly processes. The device has a moisture sensitivity level (MSL) of 1, indicating it is unaffected by moisture, and is classified under HTSUS code 8542.39.0001. Although the product status is obsolete, it remains a viable option for legacy systems and specific applications where its unique features are required.
MC10EL35DR2G Features
- High Clock Frequency: The 2.2 GHz clock frequency enables fast data processing, making it suitable for high-speed digital systems.
- Low Quiescent Current: With a quiescent current of 32 mA, the MC10EL35DR2G is energy-efficient, reducing power consumption and heat generation.
- Single Bit per Element: This design simplifies data handling and storage, providing a clear and efficient solution for single-bit operations.
- Complementary Output: The complementary output type enhances signal integrity, reducing noise and improving overall system performance.
- Positive Edge Triggering: Ensures precise timing control, making it ideal for applications requiring accurate clock synchronization.
- Surface Mount Packaging: The Tape & Reel (TR) format is compatible with automated assembly processes, facilitating efficient manufacturing.
- Moisture Sensitivity Level 1: The device is unaffected by moisture, ensuring reliability in various environmental conditions.
- REACH Unaffected: Complies with REACH regulations, ensuring environmental and safety standards are met.
- Obsolete but Reliable: Despite its obsolete status, the MC10EL35DR2G remains a reliable choice for legacy systems and specific applications.
MC10EL35DR2G Applications
The MC10EL35DR2G is ideal for a variety of digital applications where high-speed data processing and reliable performance are critical. Its high clock frequency and low quiescent current make it suitable for systems requiring efficient power usage and rapid data handling. The complementary output and positive edge triggering ensure precise timing and signal integrity, making it ideal for clock synchronization and data storage applications. Specific use cases include:
- High-Speed Digital Systems: Ideal for systems requiring rapid data processing and reliable performance.
- Clock Synchronization: Ensures accurate timing control in digital circuits.
- Data Storage: Provides efficient single-bit storage solutions.
- Automated Assembly: The surface-mount package is compatible with automated manufacturing processes.
- Legacy Systems: Despite its obsolete status, the MC10EL35DR2G remains a viable option for maintaining legacy systems.
Conclusion of MC10EL35DR2G
The MC10EL35DR2G is a robust and reliable D-type flip-flop IC designed for high-speed digital applications. Its high clock frequency, low quiescent current, and complementary output type make it an efficient and effective solution for various digital systems. Although it is now considered obsolete, its unique features and performance benefits continue to make it a valuable component for legacy systems and specific applications. The surface-mount packaging and moisture sensitivity level 1 ensure compatibility with modern manufacturing processes and reliability in diverse environments. For engineers and designers seeking a reliable and efficient flip-flop solution, the MC10EL35DR2G remains a worthy consideration.



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