onsemi_MC10H113M

onsemi
MC10H113M  
Gates and Inverters

onsemi
MC10H113M
705-MC10H113M
Ersa
onsemi-MC10H113M-datasheets-1239580.pdf
IC GATE XOR 4CH 2-INP 16SOEIAJ
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MC10H113M Description

MC10H113M Description

The MC10H113M is a high-performance XOR (Exclusive OR) logic gate IC designed for a wide range of digital applications. Manufactured by onsemi, this device is part of the 10H series and is housed in a surface-mount package, specifically a 16SOEIAJ. The MC10H113M features four independent XOR gates, each with two inputs, providing robust and reliable digital logic functionality. It operates within a temperature range of 0°C to 75°C, making it suitable for various industrial and commercial environments.

MC10H113M Features

  • Operating Temperature: The MC10H113M operates reliably within a temperature range of 0°C to 75°C, ensuring stable performance across diverse environmental conditions.
  • Logic Type: The device implements XOR (Exclusive OR) logic, which is essential for applications requiring digital signal processing and error detection.
  • Mounting Type: Surface mount technology (SMT) allows for efficient and compact PCB designs, enhancing the overall system integration.
  • Number of Circuits: The MC10H113M contains four independent XOR circuits, each with two inputs, providing flexibility and scalability in digital circuit design.
  • Output Current Capability: The device supports a high output current of 50mA for both high and low states, ensuring robust performance in driving various loads.
  • Moisture Sensitivity Level (MSL): With an MSL of 3 (168 hours), the MC10H113M is well-suited for manufacturing processes that require extended exposure to moisture.
  • Compliance: The MC10H113M is REACH unaffected and classified under ECCN EAR99, ensuring compliance with international regulations and standards.
  • Packaging: The device is packaged in a tube, facilitating easy handling and storage during manufacturing and assembly processes.

MC10H113M Applications

The MC10H113M is ideal for a variety of applications that require reliable digital logic functionality. Its XOR logic gates make it particularly suitable for:

  • Digital Signal Processing: The XOR gates can be used to perform bitwise operations, essential for data manipulation and processing in digital systems.
  • Error Detection and Correction: XOR logic is commonly used in parity checking and error detection schemes, making the MC10H113M a valuable component in systems requiring high data integrity.
  • Control Systems: The device can be employed in control systems where digital signals need to be processed and manipulated to achieve desired outcomes.
  • Communication Systems: XOR gates are fundamental in communication protocols, such as Manchester encoding, making the MC10H113M suitable for digital communication applications.

Conclusion of MC10H113M

The MC10H113M is a versatile and reliable XOR logic gate IC, offering robust performance and compliance with industry standards. Its surface-mount package and high output current capability make it suitable for compact and efficient PCB designs. While the product is now obsolete, its unique features and advantages over similar models make it a valuable component for applications requiring XOR logic functionality. The MC10H113M remains a reliable choice for digital signal processing, error detection, control systems, and communication applications, ensuring continued relevance in the electronics industry.

Tech Specifications

Operating Temperature
Max Propagation Delay @ V, Max CL
Logic Type
ECCN
Mounting Type
Input Logic Level - Low
Product Status
Supplier Device Package
Series
Package / Case
Voltage - Supply
Input Logic Level - High
REACH Status
Number of Inputs
Mfr
Features
HTSUS
Package
Number of Circuits
RoHS Status
Base Product Number
Current - Output High, Low
Moisture Sensitivity Level (MSL)

MC10H113M Documents

Download datasheets and manufacturer documentation for MC10H113M

Ersa MC10H113      
Ersa Multiple Devices 20/Aug/2008      
Ersa MC10H113      
Ersa onsemi RoHS       onsemi REACH      

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