Product Overview: SN74AUC1G80YZPR by Texas Instruments
The SN74AUC1G80YZPR is a high-performance, single positive-edge-triggered D-type flip-flop integrated circuit (IC) designed and manufactured by the renowned Texas Instruments. This advanced logic chip is part of the AUC family, which is known for its ultra-low-voltage operation and high-speed interface technology. The SN74AUC1G80YZPR is designed to operate on a power supply range of 0.8 V to 2.7 V, making it particularly suitable for portable and battery-powered applications where power efficiency is crucial.
The device features a maximum clock frequency of 175 MHz, which allows for rapid data transfer and processing, making it an ideal choice for high-speed computing and telecommunications systems. It is characterized by reduced power consumption and minimal propagation delay, which is essential for maintaining the integrity of high-speed signals.
One of the key attributes of the SN74AUC1G80YZPR is its small footprint. Housed in a compact DSBGA package, it occupies minimal space on a printed circuit board (PCB), thereby enabling designers to achieve high-density board layouts. This is particularly advantageous in applications where board space is at a premium.
The flip-flop has a single data input (D), a single clock input (C), and a clear input (CLR). The clear input allows for the synchronous reset of the flip-flop, which can be used to initialize or reset the state of the device as required by the system's logic. The output (Q) provides the current state of the flip-flop, which changes on the rising edge of the clock signal, provided the clear input is not asserted.
Texas Instruments' commitment to quality ensures that the SN74AUC1G80YZPR meets stringent industry standards for performance and reliability. Its operating temperature range of -40°C to 85°C guarantees functionality across a wide range of environmental conditions, which is essential for industrial and automotive applications.
In summary, the SN74AUC1G80YZPR is a state-of-the-art flip-flop IC that offers designers a blend of speed, power efficiency, and compact design, making it an excellent choice for a myriad of digital applications where space and power are limited.