Product Overview: SN74LV574ADGVR by Texas Instruments
The SN74LV574ADGVR is a high-performance, octal edge-triggered D-type flip-flop integrated circuit (IC) designed and manufactured by Texas Instruments (TI). This device is part of TI's advanced low-voltage (LV) CMOS logic family, which is known for its low-power consumption and high-speed operation. The SN74LV574ADGVR is specifically designed to be used in applications that require the capture and storage of data in a stable and reliable manner.
With its 3.3V technology, the SN74LV574ADGVR is optimized for use in 3.3V systems, making it ideal for interfacing with microprocessors, microcontrollers, and other digital systems that operate at this voltage level. It features 8 D-type flip-flops with 3-state outputs, allowing for the storage of 8 bits of data. Each flip-flop is triggered on the rising edge of the clock input signal, ensuring precise timing for data capture.
The IC comes in a compact TVSOP (Thin Shrink Small Outline Package) form factor under the part number SN74LV574ADGVR, which is suitable for surface-mount technology (SMT) and offers space-saving advantages on printed circuit boards (PCBs). This package type is particularly beneficial for designs where board space is at a premium.
Key features of the SN74LV574ADGVR include:
- Wide operating voltage range of 2V to 3.6V, allowing for flexible use in various power environments.
- High drive capability with low static power consumption, contributing to energy-efficient designs.
- Output drive capability of up to 24mA, enabling the IC to drive LEDs or other low-power devices directly.
- Inputs and outputs are protected by a high ESD (Electrostatic Discharge) tolerance, ensuring robustness and reliability in harsh electrical environments.
This IC is suitable for a broad range of applications, including data storage, communication systems, computing devices, and any other systems that require high-speed, low-power, and reliable data latching capabilities. The SN74LV574ADGVR is a testament to Texas Instruments' commitment to providing advanced logic solutions that meet the needs of modern electronic designs.