Product Overview: 74HCT163N - NXP
The 74HCT163N is a high-speed Si-gate CMOS device and is pin compatible with Low-power Schottky TTL (LSTTL). Manufactured by NXP, a leading semiconductor company, this integrated circuit is part of the 74HCT series that is designed for high-performance and robust digital logic operations. It is particularly well-suited for applications where a reliable and efficient synchronous counter is required.
Key Features
- Synchronous Reset: The 74HCT163N features a synchronous reset function that allows the counter to be quickly and directly reset to zero on the application of a high level at the reset input.
- 4-bit Binary Counter: This IC is a 4-bit binary counter with a count sequence from 0 to 15, making it ideal for a wide range of counting applications.
- Look-Ahead Carry: It includes a look-ahead carry function that facilitates high-speed counting, which is essential for high-performance digital systems.
- Output Capability: The device offers standard output capability with the ability to drive 10 LSTTL loads, ensuring compatibility with a range of other digital components.
- Power Requirements: Operating on a 5V power supply, the 74HCT163N is suitable for typical TTL environments, while also offering the benefits of CMOS technology, such as low power consumption.
Applications
The 74HCT163N is versatile and can be used in a variety of applications, including:
- Industrial control systems
- Frequency dividers
- Timers and counters in consumer electronics
- General purpose synchronous counting applications
Quality and Reliability
NXP's commitment to quality ensures that the 74HCT163N meets the industry's highest standards for performance and reliability. With its robust design and proven technology, this product is a reliable choice for designers and engineers seeking a dependable synchronous counter solution.
For detailed technical specifications, application notes, and support resources, please refer to the official NXP datasheets and product documentation available on the NXP website.