NXP Semiconductors_74LVC74APW/S400118
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NXP Semiconductors
74LVC74APW/S400118

706-74LVC74APW/S400118
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IC FF D-TYPE DUAL 1BIT 14TSSOP

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Tech Specifications

Clock Frequency
150 MHz
Output Type
Complementary
Trigger Type
Positive Edge
Product Status
Active
Supplier Device Package
14-TSSOP
Function
Set(Preset) and Reset
Package / Case
14-TSSOP (0.173", 4.40mm Width)
Voltage - Supply
1.2V ~ 3.6V
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74LVC74APW/S400118 Description

74LVC74APW/S400118 Description

The 74LVC74APW/S400118 is a dual D-type flip-flop IC from NXP Semiconductors, designed for high-performance digital logic applications. This IC features a clock frequency of up to 150 MHz, making it suitable for high-speed digital systems. It operates within a wide supply voltage range of 1.2V to 3.6V, ensuring compatibility with various power supply configurations. The device offers complementary outputs, providing flexibility in circuit design and signal processing.

74LVC74APW/S400118 Features

  • High-Speed Operation: With a maximum clock frequency of 150 MHz, the 74LVC74APW/S400118 ensures fast data processing and signal propagation.
  • Wide Voltage Range: The IC operates within a supply voltage range of 1.2V to 3.6V, offering compatibility with different power supply standards.
  • Complementary Outputs: The device provides complementary outputs, which are useful for reducing the need for additional inverters in digital circuits.
  • Positive Edge Triggering: The flip-flops are triggered on the positive edge of the clock signal, ensuring reliable data capture and synchronization.
  • Set and Reset Functionality: The IC includes set (preset) and reset functions, allowing for controlled initialization and clearing of flip-flop states.
  • Low Quiescent Current: The device consumes only 10 µA in quiescent mode, making it energy-efficient for battery-powered and low-power applications.
  • High Output Current Capability: The IC supports up to 24mA for both high and low outputs, ensuring robust signal driving capabilities.
  • Low Propagation Delay: The maximum propagation delay is 5.2ns at 3.3V with a maximum load capacitance of 50pF, ensuring minimal signal delay in high-speed circuits.
  • Moisture Sensitivity Level 3: The device is rated for 168 hours of exposure, making it suitable for manufacturing processes that require reflow soldering.

74LVC74APW/S400118 Applications

The 74LVC74APW/S400118 is ideal for a variety of applications where high-speed, reliable digital signal processing is required. Some specific use cases include:

  • Digital Signal Processing: The high clock frequency and low propagation delay make it suitable for processing high-speed digital signals in communication systems and data processing units.
  • Synchronization Circuits: The positive edge triggering and set/reset functions are useful for synchronizing data streams and managing state transitions in digital circuits.
  • Memory and Storage Systems: The dual D-type flip-flops can be used for temporary data storage and buffering in memory systems, ensuring data integrity and fast read/write operations.
  • Consumer Electronics: The wide voltage range and low quiescent current make it suitable for consumer electronics where power efficiency and compatibility with various power sources are critical.
  • Industrial Control Systems: The robust output current capability and moisture sensitivity level 3 rating make it suitable for industrial applications that require reliable operation in harsh environments.

Conclusion of 74LVC74APW/S400118

The 74LVC74APW/S400118 from NXP Semiconductors is a versatile and high-performance dual D-type flip-flop IC. Its wide operating voltage range, high clock frequency, and low propagation delay make it suitable for a variety of high-speed digital applications. The inclusion of set and reset functions, along with complementary outputs, provides additional flexibility in circuit design. The low quiescent current and high output current capability further enhance its suitability for both low-power and high-current applications. Overall, the 74LVC74APW/S400118 is an excellent choice for engineers seeking a reliable and efficient digital logic solution.

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