Product Overview: 74HC175D+652 by NXP Semiconductors
The 74HC175D+652 is a high-speed Si-gate CMOS device designed and manufactured by the renowned NXP Semiconductors. This integrated circuit is part of the 74HC series, which is well-known for its robust performance and compatibility with TTL (Transistor-Transistor Logic). The 74HC175D+652 is a quad D-type flip-flop with a clear feature that ensures reliability and precision in digital circuit applications.
The device contains four independent flip-flops with individual D inputs and Q and Q̅ (complementary) outputs. The common clock (CP) and master reset (MR) inputs control all four flip-flops. A low level at the MR input sets all four Q outputs to low, regardless of the other inputs' conditions, providing a synchronous reset function that is essential for various digital applications.
With its wide operating voltage range from 2.0V to 6.0V, the 74HC175D+652 can be used in a variety of environments, making it highly versatile for both hobbyist and industrial applications. The device also boasts low power consumption and a high noise immunity characteristic of the CMOS family, ensuring stable performance even in electrically noisy conditions.
Encased in a space-saving SO-16 package, the 74HC175D+652 is optimized for surface mount technology (SMT), which is beneficial for compact and high-density PCB designs. Its standardized pin configuration allows for easy integration into existing designs or the development of new digital systems.
Applications for the 74HC175D+652 are diverse and include buffer storage, shift registers, data storage, pattern generators, and much more. Engineers and designers will appreciate the robustness and flexibility that this flip-flop provides. Its capability to interface with LS (Low-power Schottky) logic families further enhances its utility in mixed-logic environments.
Overall, the 74HC175D+652 by NXP Semiconductors is a reliable and functional choice for those looking to implement flip-flops in their digital systems. Its high-speed operation, combined with the quality assurance of NXP, makes it an excellent component for both prototyping and mass production requirements.