onsemi_MC10EL12DG
original

onsemi
MC10EL12DG

770-MC10EL12DG
PDF Datasheet
ECL Buffer/Inverting Gate IC, SOIC-8, 4.19V Max Input

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Tech Specifications

Package/Case
SOIC
Halogen Free
Halogen Free
High Level Output Current
-50mA
Lead Free
Lead Free
Logic Function
Buffer, Inverting, NOR GATE, OR GATE
Low Level Output Current
50mA
Max Input Voltage
4.19V
Max Operating Temperature
85°C
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MC10EL12DG Description

MC10EL12DG Description

The MC10EL12DG is a high-performance logic IC chip designed by onsemi, a leading manufacturer in the electronics industry. This IC belongs to the 10EL series and is specifically designed for applications requiring reliable and efficient signal buffering and inversion. The MC10EL12DG is housed in an 8SOIC package, making it suitable for surface mount applications. It features a differential output type, which enhances signal integrity and reduces electromagnetic interference (EMI) in high-speed digital circuits.

The MC10EL12DG operates within a temperature range of 0°C to 85°C, making it suitable for a variety of industrial and commercial applications. It is equipped with a buffer/inverter logic type, providing flexibility in circuit design. The IC has one input and four circuits, allowing for efficient signal processing and distribution. The product is REACH unaffected and classified under ECCN EAR99, ensuring compliance with international regulations.

MC10EL12DG Features

  • Operating Temperature Range: The MC10EL12DG operates reliably within a temperature range of 0°C to 85°C, making it suitable for applications in diverse environmental conditions.
  • Differential Output: The differential output type enhances signal integrity and reduces EMI, which is crucial for high-speed digital circuits.
  • Buffer/Inverter Logic: The logic type of the MC10EL12DG provides both buffering and inversion capabilities, offering versatility in circuit design.
  • Surface Mount Compatibility: The surface mount mounting type allows for efficient integration into compact and high-density PCB designs.
  • Single Input and Four Circuits: The IC features one input and four circuits, enabling efficient signal processing and distribution.
  • Moisture Sensitivity Level (MSL) 1: The MSL rating of 1 (unlimited) ensures that the MC10EL12DG is not affected by moisture, making it suitable for a wide range of manufacturing processes.
  • Compliance and Safety: The MC10EL12DG is REACH unaffected and classified under ECCN EAR99, ensuring compliance with international regulations and safety standards.

MC10EL12DG Applications

The MC10EL12DG is ideal for a variety of applications where reliable signal buffering and inversion are required. Its differential output and buffer/inverter logic make it particularly suitable for high-speed digital circuits. Some specific use cases include:

  • Telecommunications: The MC10EL12DG can be used in telecommunication equipment for signal buffering and inversion, ensuring high-speed data transmission with minimal interference.
  • Industrial Control Systems: In industrial control systems, the IC can be employed to buffer and invert signals, enhancing the reliability and efficiency of control circuits.
  • Data Processing Equipment: The MC10EL12DG is well-suited for data processing equipment where signal integrity and EMI reduction are critical.
  • Consumer Electronics: The compact 8SOIC package and surface mount compatibility make the IC suitable for consumer electronics, where space and performance are key considerations.

Conclusion of MC10EL12DG

The MC10EL12DG is a versatile and reliable logic IC chip designed for high-speed digital circuits. Its differential output, buffer/inverter logic, and surface mount compatibility make it an excellent choice for a wide range of applications. The operating temperature range of 0°C to 85°C and MSL rating of 1 ensure that the IC can be used in diverse environmental conditions without compromising performance. While the MC10EL12DG is now obsolete, its unique features and advantages over similar models make it a valuable component for existing designs and legacy systems.

FAQ

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