Product Overview: 74LVT273PW by NXP Semiconductors
The 74LVT273PW is a high-performance, octal D-type flip-flop with a clear function, manufactured by NXP Semiconductors. This integrated circuit is designed to operate at a 3.3V power supply while offering 5V tolerant inputs, which makes it suitable for interfacing with 5V systems and thus providing a great deal of flexibility in mixed-voltage environments.
Encased in a TSSOP20 package, the 74LVT273PW is a space-saving solution for modern electronic applications that demand high-density surface mount technology. Its slim profile is ideal for compact circuit boards where space is at a premium, without compromising on performance or functionality.
Key Features
- Power Supply: Designed for a 3.3V VCC operation, while 5V tolerant inputs allow for interfacing with higher voltage logic levels without the need for external level shifters.
- High-Speed Performance: The device offers a high-speed throughput which is essential for fast data processing applications.
- Low Power Consumption: The 74LVT273PW is part of the LVT family, which is known for low power consumption, making it ideal for battery-operated and power-sensitive designs.
- Bus-Hold Data Inputs: This feature eliminates the need for external pull-up or pull-down resistors, simplifying PCB design and reducing component count.
- Edge-Triggered Flip-Flops: Each flip-flop is controlled by a clock input (CP) and an asynchronous clear input (MR).
- Output Capability: Capable of driving 50 Ohm transmission lines, the device is suitable for backplane driving and other demanding applications.
Applications
The 74LVT273PW is a versatile component that can be used in a wide range of applications. It is particularly well-suited for use in:
- Storage registers
- Communication systems
- Data manipulation
- Embedded processing
- Industrial control systems
With its robust design and reliable performance, the 74LVT273PW from NXP Semiconductors is a solid choice for designers looking to incorporate a dependable flip-flop logic device into their electronic systems. Its compatibility with both 3.3V and 5V logic levels, combined with power efficiency and high-speed operation, makes it a versatile and essential component in the creation of sophisticated digital circuits.