ON Semiconductor MC74HCT273ADWG Overview
The ON Semiconductor MC74HCT273ADWG is a high-performance, octal D-type flip-flop integrated circuit designed for use in a wide range of digital applications. This device features eight edge-triggered flip-flops with individual D-type inputs and Q outputs. The flip-flops are designed to store the values present on their D inputs when a rising edge occurs on the clock (CLK) input, making it ideal for applications requiring data storage, transfer, and manipulation.
Key Features
- Logic Type: Octal D-type Flip-Flop with Clear
- Output Type: Non-Inverted
- Propagation Delay Time: Fast propagation delay times enable high-speed operation, improving overall system performance.
- Operating Temperature Range: The device is designed to operate reliably over a wide temperature range, making it suitable for industrial and automotive applications.
- Mounting Type: Surface Mount
- Package / Case: SOIC-20 Wide
- Supply Voltage: Compatible with 5V supply voltage, allowing for easy integration into 5V logic systems.
Applications
The MC74HCT273ADWG is versatile and can be employed in various digital systems, including:
- Data storage and retrieval systems
- Registers and buffers
- Communication systems
- Control systems
- Microprocessor support circuits
Quality and Reliability
ON Semiconductor is known for its commitment to quality, and the MC74HCT273ADWG is no exception. It is manufactured to high standards, ensuring reliable performance in your electronic designs. The device is also RoHS compliant, adhering to environmental standards by minimizing the use of hazardous substances.
Conclusion
With its robust design, high-speed operation, and compatibility with 5V systems, the ON Semiconductor MC74HCT273ADWG is an excellent choice for designers looking to implement reliable flip-flops in their digital applications. Its wide operating temperature range and surface mount package make it suitable for a diverse set of environments and applications, reinforcing its position as a versatile component in the ON Semiconductor logic device portfolio.