Product Overview: MC74ACT374DWG
The MC74ACT374DWG is a high-performance, octal D-type flip-flop with a clear function, manufactured by ON Semiconductor, a leader in energy-efficient innovations. This integrated circuit is designed for use in buffering and memory applications where the storage of multiple bits of information is necessary. The device is part of the AC series, which is fabricated with advanced CMOS technology to achieve high-speed operation while maintaining CMOS low power dissipation.
Key Features
- Logic Type: Octal D-Type Flip-Flop with 3-State Outputs
- Operating Voltage: 4.5V to 5.5V, which allows for use in typical 5V logic systems.
- High-Speed Performance: The device is capable of operating at speeds comparable to bipolar devices, with a typical tpd of 8ns.
- Output Drive Capability: 24mA at the outputs, providing good drive capabilities.
- 3-State Outputs: Designed for bus-oriented applications, the outputs can be placed in a high impedance state, effectively disconnecting them from the bus.
- Package Type: Supplied in a 20-pin SOIC package (suffix DWG), which is suitable for surface-mount technology (SMT).
- Lead-Free and RoHS Compliant: The device meets environmental standards, making it suitable for use in environmentally sensitive applications.
Applications
The MC74ACT374DWG is versatile and can be used in various digital applications including:
- Buffer/Storage Registers
- Shift Registers
- Data Storage
- Communications Systems
- Computers and Computer Peripherals
Quality and Reliability
ON Semiconductor is committed to delivering high-quality and reliable components. The MC74ACT374DWG is subjected to rigorous testing and quality control measures to ensure it meets the industry standards for performance and reliability.
Environmental Compliance
The MC74ACT374DWG adheres to ON Semiconductor's commitment to environmentally responsible manufacturing. The device is lead-free, RoHS compliant, and is designed to have a minimal ecological footprint, reflecting the company's dedication to sustainability.