ON Semiconductor MC74HC273ADWG Overview
The MC74HC273ADWG is a high-performance integrated circuit from ON Semiconductor, renowned for its reliability and efficiency in digital applications. This octal D-type flip-flop device is designed with advanced silicon-gate CMOS technology, ensuring low power consumption while maintaining high-speed operation.
Key Features
- Logic Type: D-Type Flip-Flop
- Number of Circuits: 8
- Output Type: Non-Inverted
- Trigger Type: Positive Edge
- Current - Output High, Low: 6mA, 6mA
- Voltage - Supply: 2V ~ 6V
- Lead-Free Status / RoHS Status: Lead free / RoHS Compliant
- Package / Case: SOIC-20W
Performance and Quality
The MC74HC273ADWG is designed to interface directly with TTL levels and is compatible with CMOS logic at 6V. It boasts a high noise immunity characteristic of CMOS devices and can operate at a wide range of supply voltages, making it versatile for various applications. The device features a common clock and a common master reset input to reset all flip-flops, which enhances its performance in control and synchronization tasks.
Applications
Due to its robust design, the MC74HC273ADWG is suitable for a myriad of applications that require high-speed and low-power operation. These applications include:
- Buffer/Storage Registers
- Shift Registers
- Data Storage
- Pattern Generators
- Industrial Control Systems
Environmental and Safety Compliance
The MC74HC273ADWG is lead-free and fully RoHS compliant, reflecting ON Semiconductor's commitment to environmental sustainability. Customers can be assured of a product that meets international standards for hazardous substance restrictions.
Conclusion
With its combination of high-speed performance, low power requirements, and compliance with environmental standards, the MC74HC273ADWG from ON Semiconductor is an excellent choice for designers and engineers looking for a reliable and efficient octal D-type flip-flop. Whether for data storage, industrial controls, or other digital logic applications, this device offers a compelling solution.