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74LVT74DB,118
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74LVT74DB,118 Description
74LVT74DB,118 Description
The 74LVT74DB,118 is a dual D-type flip-flop IC from NXP Semiconductors, designed for high-speed digital applications. This logic IC chip is part of the 74LVT series, known for its low-voltage operation and high performance. The 74LVT74DB,118 features a clock frequency of 345 MHz, making it suitable for demanding digital circuits. It operates within a supply voltage range of 2.7V to 3.6V, ensuring compatibility with various power supply configurations.
Each flip-flop in the 74LVT74DB,118 is equipped with complementary outputs and is triggered by a positive edge, providing precise control over data latching. The device also includes set (preset) and reset functions, allowing for versatile control over the flip-flop states. With a maximum propagation delay of 5ns at 3.3V and 50pF, this IC ensures fast signal processing and minimal latency.
The 74LVT74DB,118 is packaged in a 14-pin small outline package (SSOP), suitable for surface-mount applications. It is REACH unaffected and RoHS3 compliant, adhering to stringent environmental and safety standards. The device has a moisture sensitivity level (MSL) of 1, indicating unlimited storage time under standard conditions.
74LVT74DB,118 Features
- High-Speed Operation: With a clock frequency of 345 MHz, the 74LVT74DB,118 is capable of handling high-speed digital signals, making it ideal for applications requiring rapid data processing.
- Low-Voltage Compatibility: The supply voltage range of 2.7V to 3.6V ensures compatibility with modern low-voltage systems, enhancing energy efficiency.
- Precise Control: Positive edge triggering and complementary outputs provide precise control over data latching, ensuring reliable signal processing.
- Versatile Control: Set (preset) and reset functions offer additional control over the flip-flop states, enhancing the flexibility of the device.
- Fast Propagation Delay: A maximum propagation delay of 5ns at 3.3V and 50pF ensures minimal latency, making the 74LVT74DB,118 suitable for high-speed applications.
- Environmental Compliance: REACH unaffected and RoHS3 compliant, the 74LVT74DB,118 meets stringent environmental and safety standards.
- Moisture Resistance: An MSL of 1 indicates unlimited storage time under standard conditions, reducing the risk of moisture-related damage.
- Surface-Mount Packaging: The 14-pin SSOP package is suitable for surface-mount applications, ensuring ease of integration into modern PCB designs.
74LVT74DB,118 Applications
The 74LVT74DB,118 is ideal for a variety of high-speed digital applications, including:
- Data Latching: The dual D-type flip-flops provide reliable data latching, ensuring accurate signal processing in digital circuits.
- Clock Synchronization: The positive edge triggering and complementary outputs make the 74LVT74DB,118 suitable for clock synchronization applications.
- Memory Circuits: The set (preset) and reset functions enhance the versatility of the device, making it suitable for memory circuits and state machines.
- High-Speed Communication: The high clock frequency and fast propagation delay make the 74LVT74DB,118 ideal for high-speed communication protocols and interfaces.
- Digital Signal Processing: The low-voltage operation and high performance of the 74LVT74DB,118 make it suitable for digital signal processing applications, ensuring efficient and reliable signal handling.
Conclusion of 74LVT74DB,118
The 74LVT74DB,118 from NXP Semiconductors is a high-performance dual D-type flip-flop IC, offering a combination of speed, versatility, and environmental compliance. Its high clock frequency, low-voltage operation, and precise control features make it suitable for a wide range of high-speed digital applications. The device's compliance with REACH and RoHS3 standards ensures it meets stringent environmental and safety requirements. While the 74LVT74DB,118 is now obsolete, its technical specifications and performance benefits make it a reliable choice for legacy systems and applications requiring high-speed digital processing.



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