ON Semiconductor 74LVX174MX: Hex D-Type Flip-Flop with Clear
The 74LVX174MX from ON Semiconductor is a high-speed CMOS device that encompasses six edge-triggered, D-type flip-flops with individual D inputs and Q outputs. This integrated circuit is part of the low-voltage series, making it suitable for operation at 3.3V while maintaining 5V tolerant inputs. The 74LVX174MX is designed to be used in a wide range of applications, including data storage, data transfers, and signal buffering, among others.
Each flip-flop has a direct clear input, ensuring that you can reset the output to the low state with ease. This feature is particularly useful in system initialization and in circumstances where a quick reset of the flip-flop array is required. The clear input is active low, which means that a low voltage level on this pin will clear the contents of the flip-flops.
The 74LVX174MX is designed to support fast data transfer rates, with edge-triggered flip-flops ensuring precise timing of data capture. This makes the device ideal for applications that require synchronization and timing accuracy, such as digital signal processing and high-speed data communication systems.
ON Semiconductor has packaged the 74LVX174MX in a 16-pin SOIC package, providing a compact footprint for space-constrained applications. The device also offers improved output drive capability, allowing it to drive heavier loads without compromising signal integrity. Moreover, the low-power consumption of the 74LVX174MX makes it an excellent choice for portable and battery-powered devices, where power efficiency is a critical concern.
Key features of the 74LVX174MX include:
- High-speed CMOS technology
- Six D-type flip-flops with individual clears
- 3.3V operation with 5V tolerant inputs
- Edge-triggered flip-flops for precise data capture
- Low power consumption
- Improved output drive capability
- 16-pin SOIC package for compact design
In conclusion, the ON Semiconductor 74LVX174MX is a versatile and reliable component for designers who require a set of flip-flops with fast data rates, low power consumption, and compact packaging. Its capability to work with 3.3V power supplies while being 5V tolerant adds to its flexibility in mixed-voltage systems, making it an essential part of any digital logic designer's toolkit.