Product Overview: SN74AUCH16374ZQLR
The SN74AUCH16374ZQLR is a high-performance, 16-bit edge-triggered D-type flip-flop designed by Texas Instruments. This integrated circuit is part of the advanced high-speed CMOS family and is particularly suitable for implementing buffer registers, I/O ports, bidirectional bus drivers, and working registers in a wide array of applications.
With a 1.8-V to 3.6-V VCC operating voltage range, the SN74AUCH16374ZQLR is optimized for low-voltage operations, making it ideal for portable and battery-powered devices. The device offers a bus hold on the data inputs, which eliminates the need for external pull-up or pull-down resistors, thus simplifying the design and reducing the overall component count.
The SN74AUCH16374ZQLR features 16 D-type flip-flops with individual D inputs and O outputs. The flip-flops are edge-triggered by a clock input (CLK) and can be cleared by a low-level asynchronous clear input (CLR). This allows for precise control and synchronization of data flow within digital systems.
One of the key advantages of this product is its high-speed performance, with a typical tpd of 3.2 ns. This ensures rapid data transfer and processing, which is essential for high-speed computing and communication systems. Furthermore, the device is equipped with 3-state outputs, which support wired-OR configurations and enable multiple devices to share the same output lines, enhancing the flexibility of system design.
The SN74AUCH16374ZQLR comes in a 48-pin BGA (Ball Grid Array) package, providing a compact footprint that is beneficial for space-constrained applications. The package is also designed for enhanced thermal dissipation, ensuring reliable operation even under high-speed or high-temperature conditions.
Overall, the SN74AUCH16374ZQLR from Texas Instruments is a robust and reliable choice for designers looking to implement high-speed data storage and transfer in their digital systems. Its low-voltage operation, advanced features, and compact design make it a versatile component for a multitude of electronic applications.