SN74LV374ADGVRE4 Octal Edge-Triggered D-Type Flip-Flops by Texas Instruments
The SN74LV374ADGVRE4, manufactured by the renowned Texas Instruments, is a high-performance, octal edge-triggered D-type flip-flop integrated circuit. This device is designed to provide storage for 8-bit data in a variety of digital applications. Its cutting-edge technology ensures reliable operation and compatibility with a broad range of systems.
Key Features
- Logic Type: D-Type Flip-Flop - This indicates that the device captures the value of the input data at the moment of the rising edge of the clock signal and holds this value until the next rising edge.
- Number of Bits per Element: 8 - The device contains 8 flip-flops, making it ideal for handling 8-bit data words.
- Output Type: Tri-State - This feature allows for the outputs to be set in a high impedance state, which is particularly useful in bus-oriented systems.
- Supply Voltage: 2 V to 5.5 V - A wide operating voltage range ensures that the device can be used in systems with various power supply levels, enhancing its versatility.
- Operating Temperature: -40°C to 85°C - The device is designed to operate reliably in a wide range of environmental conditions.
- Mounting Type: Surface Mount - The package is suitable for modern, high-density circuit boards, which require components to be mounted directly onto the surface.
- Package / Case: TVSOP - A thin, very small outline package that is both space-saving and ideal for applications where size is a critical factor.
Applications
The SN74LV374ADGVRE4 is suitable for a variety of digital applications, including:
- Temporary data storage
- Data transfer and manipulation
- System address registers
- Buffering for system buses
- Support for synchronous data flow control
With its robust design and Texas Instruments' reputation for quality, the SN74LV374ADGVRE4 is a reliable choice for designers and engineers looking to implement efficient data storage and transfer mechanisms in their digital systems. Its combination of performance, power efficiency, and compact form factor make it an essential component for modern electronic devices.