onsemi_74LVX112MTC

onsemi
74LVX112MTC  
Flip Flops

onsemi
74LVX112MTC
706-74LVX112MTC
Ersa
onsemi-74LVX112MTC-datasheets-95226.pdf
IC FF JK TYPE DUAL 1BIT 16TSSOP
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74LVX112MTC Description

74LVX112MTC Description

The 74LVX112MTC is a dual JK-type flip-flop designed by onsemi, a leading manufacturer of semiconductor solutions. This Logic IC Chip offers a robust and versatile solution for digital circuit applications. The 74LVX112MTC features a clock frequency of 150 MHz, ensuring high-speed operation suitable for demanding digital systems. It operates within a supply voltage range of 2V to 3.6V, providing flexibility in power supply requirements.

The flip-flop is triggered on the negative edge, which is advantageous for applications requiring precise timing control. Each flip-flop element supports one bit of data, with complementary outputs that enhance signal integrity and reduce noise. The device also includes set (preset) and reset functions, which allow for easy initialization and control of the flip-flop states.

74LVX112MTC Features

  • High-Speed Operation: With a clock frequency of 150 MHz, the 74LVX112MTC ensures fast and efficient data processing.
  • Flexible Power Supply: The wide voltage range of 2V to 3.6V accommodates various power supply configurations.
  • Negative Edge Triggering: This feature provides precise timing control, making it ideal for synchronous digital systems.
  • Complementary Outputs: The complementary outputs enhance signal integrity and reduce noise, ensuring reliable performance.
  • Low Power Consumption: The quiescent current of 2 µA minimizes power consumption, making it suitable for low-power applications.
  • High Output Current: The device can source and sink up to 4mA, providing strong drive capability for connected circuits.
  • Low Propagation Delay: With a maximum propagation delay of 15ns at 3.3V and 50pF, the 74LVX112MTC ensures minimal latency in signal transmission.
  • Moisture Sensitivity Level 1: The unlimited moisture sensitivity level ensures the device robust is against environmental conditions.
  • REACH Unaffected: The 74LVX112MTC complies with REACH regulations, ensuring it is safe for use in various applications.

74LVX112MTC Applications

The 74LVX112MTC is ideal for a wide range of applications due to its high-speed operation, low power consumption, and robust performance. Some specific use cases include:

  • Digital Clock Circuits: The high clock frequency and precise timing control make it suitable for clock generation synchronization and.
  • Sequential Logic Systems: The set and reset functions, along with the JK-type flip-flops, are ideal for implementing sequential logic circuits.
  • Data Storage and Transmission: The complementary outputs and low propagation delay ensure reliable data storage and transmission in digital systems.
  • Low-Power Embedded Systems: The low quiescent current and flexible power supply range make it an excellent choice for battery-powered and low-power embedded systems.

Conclusion of 74LVX112MTC

The 74LVX112MTC is high a-performance dual JK-type flip-flop that offers a combination of speed, flexibility, and reliability. Its high clock frequency, low power consumption, and robust performance make it suitable for a variety of digital applications. Despite being marked as obsolete, the 74LVX112MTC remains a valuable component for engineers and designers looking for a reliable and efficient solution for their digital circuit needs.

Tech Specifications

Clock Frequency
Output Type
Trigger Type
Product Status
Supplier Device Package
Function
Package / Case
Voltage - Supply
REACH Status
Mfr
Number of Elements
Input Capacitance
Moisture Sensitivity Level (MSL)
Operating Temperature
Max Propagation Delay @ V, Max CL
Current - Quiescent (Iq)
Number of Bits per Element
ECCN
Mounting Type
Series
Type
HTSUS
Package
Base Product Number
Current - Output High, Low

74LVX112MTC Documents

Download datasheets and manufacturer documentation for 74LVX112MTC

Ersa 74LVX112      
Ersa 74LVX112      
Ersa onsemi RoHS       onsemi REACH      

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