onsemi_MC10EP29DTR2G
original

onsemi
MC10EP29DTR2G

706-MC10EP29DTR2G
PDF Datasheet
3GHz ECL Dual D Flip-Flop, 2-Bit, TSSOP, Diff Input

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ISO9001
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Tech Specifications

Package/Case
TSSOP
Clock Edge Trigger Type
Positive Edge
Frequency
3GHz
Halogen Free
Halogen Free
High Level Output Current
-50mA
Input Type
DIFFERENTIAL
Lead Free
Lead Free
Logic Function
D-Type, Flip-Flop
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MC10EP29DTR2G Description

MC10EP29DTR2G Description

The MC10EP29DTR2G is a dual D-type flip-flop IC designed for high-speed digital applications. Manufact byured onsemi, this logic IC chip features a clock frequency of 3 GHz, enabling it to handle fast data processing and signal handling tasks efficiently. It is part of the 10EP series and comes in a 20-TSSOP package, which is ideal for surface mount applications. The IC has a quiescent current (Iq) of 57 mA, making it suitable for applications where power efficiency is a concern. Each flip-flop element in the MC10EP29DTR2G is a single-bit D-type flip-flop with complementary outputs, providing flexibility in digital circuit design.

MC10EP29DTR2G Features

  • High-Speed Performance: With a clock frequency of 3 GHz, the MC10EP29DTR2G is capable of processing signals at extremely high speeds, making it suitable for high-frequency digital circuits.
  • Low Quiescent Current: The IC has a quiescent current of 57 mA, which is relatively low compared to similar high-speed devices, ensuring efficient power usage.
  • Dual Elements: The MC10EP229DTR2G features two D-type flip-flops, each with a single-bit capacity, allowing for compact and efficient digital circuit designs.
  • Complementary Outputs: The flip-flops provide complementary outputs, which can be advantageous in applications requiring both true and complement signals.
  • Positive and Negative Triggering: The flip-flops can be triggered by both positive and negative edges of the clock signal, offering flexibility in clocking schemes.
  • Surface Mount Compatibility: The 20-TSSOP package is designed for surface mount technology, making it suitable for modern PCB designs and automated assembly processes.
  • Moisture Sensitivity Level (MSL) 1: The IC has an MSL rating of 1, indicating that it is not sensitive to moisture and can be stored and handled without special precautions.
  • Obsolete Status: While the product is marked as obsolete, it remains a reliable choice for legacy systems and applications where its specific features are required.

MC10EP29DTR2G Applications

The MC10EP29DTR2G is ideal for a variety of applications requiring high-speed digital signal processing and efficient power usage. Some specific use cases:

include- High-Speed Data Processing: The 3 GHz clock frequency makes it suitable for applications such as high-speed counters, frequency dividers, and digital signal processing circuits.

  • Digital Communication Systems: The dual D-type flip-flops can be used in digital communication systems for data latching and synchronization.
  • Clock Management: The ability to trigger on both positive and negative edges allows for versatile clock management in complex digital systems.
  • Automotive Electronics: The surface mount package and moisture sensitivity level make it suitable for automotive applications where space and environmental conditions are critical.
  • Industrial Control Systems: The low quiescent current and high-speed performance make it a good fit for industrial control systems requiring efficient power usage and fast response times.

Conclusion of MC10EP29DTR2G

The MC10EP29DTR2G is a versatile and efficient dual D-type flip-flop IC designed for high-speed digital applications. Its high clock frequency, low quiescent current, and complementary outputs make it a valuable component in various digital circuits. Despite its obsolete status, the MC10EP29DTR2G remains a reliable choice for legacy systems and applications where its specific features are required. Its compatibility with surface mount technology and moisture resistance further enhance its suitability for modern electronics manufacturing and harsh environmental conditions.

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