


Fairchild (onsemi)
74LCX00M
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74LCX00M Description
74LCX00M Description
The 74LCX00M from Fairchild Semiconductor (now onsemi) is a low-voltage quad 2-input NAND gate designed for high-performance, low-power applications. Packaged in a 14-pin SOIC format, it operates within a 2V to 3.6V supply range, making it ideal for 3.3V systems and mixed-voltage environments. With a maximum propagation delay of 5.2ns at 3.3V and 50pF load, it ensures fast signal processing while maintaining low power consumption (10 µA quiescent current max). This device is compliant with EAR99 export control regulations and is RoHS-compliant, suitable for modern electronics manufacturing.
74LCX00M Features
- Low-Voltage Operation: Supports 2V–3.6V, compatible with 3.3V and lower-voltage logic systems.
- High-Speed Performance: 5.2ns propagation delay ensures efficient signal transmission.
- Balanced Output Drive: 24mA output current (sink/source) for robust interfacing.
- Low Power Consumption: 10 µA max quiescent current reduces energy usage.
- Wide Input Tolerance: 0.7V–0.8V (Low) / 1.7V–2V (High) for flexible signal compatibility.
- Surface-Mount Design: 14-SOIC package for compact PCB integration.
- Quad NAND Configuration: Four independent 2-input NAND gates in a single IC.
74LCX00M Applications
- Portable Electronics: Ideal for battery-powered devices due to low-voltage and low-power operation.
- Data Communication Systems: Used in signal conditioning, level shifting, and bus interfacing.
- Industrial Control: Reliable for PLC I/O modules and sensor interfaces.
- Consumer Electronics: Suitable for smartphones, tablets, and IoT devices requiring efficient logic operations.
- Automotive Electronics: Supports infotainment and control systems with robust performance.
Conclusion of 74LCX00M
The 74LCX00M stands out as a high-speed, low-power NAND gate solution for modern digital systems. Its wide voltage range, strong output drive, and compact packaging make it a versatile choice for portable, industrial, and communication applications. Compared to traditional 5V logic families, it offers better power efficiency and compatibility with advanced low-voltage designs, ensuring long-term relevance in evolving electronics markets.



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