The SCC2681AE1N28,112 is a versatile integrated circuit from NXP Semiconductors, designed to provide a reliable solution for serial communication applications. This dual asynchronous receiver/transmitter (DUART) is an essential component for systems that require serial port expansion, offering high-speed data transfer and efficient interfacing capabilities.
Key Features
- Integrated DUART: The device contains two independent UART channels, each capable of handling serial data communication in full-duplex mode. This allows for simultaneous transmission and reception of data on each channel.
- Programmable Baud Rate: With a programmable baud rate generator, the SCC2681AE1N28,112 can support a wide range of data rates, making it suitable for various communication standards and protocols.
- Flexible Character Length: It supports 5, 6, 7, or 8-bit character lengths, allowing customization based on specific application requirements.
- Error Detection: The device includes parity, framing, and overrun error detection mechanisms to ensure data integrity during transmission and reception.
- Multiple Interrupt Levels: It offers multiple interrupt levels for efficient processor alerts, ensuring optimal system responsiveness and performance.
- Versatile Interface: The SCC2681AE1N28,112 is compatible with a variety of microprocessors, providing a flexible interface for easy integration into existing systems.
Applications
The SCC2681AE1N28,112 is ideal for a broad range of applications, including but not limited to:
- Industrial control systems
- Data communication equipment
- Networking equipment
- Point-of-sale terminals
- Computer peripheral interfacing
Product Specifications
This product comes in a 28-pin plastic dual in-line package (PDIP-28), ensuring easy mounting on printed circuit boards. It operates over a wide temperature range, making it suitable for industrial environments. With its robust design and comprehensive features, the SCC2681AE1N28,112 from NXP is a reliable choice for developers looking to implement advanced serial communication capabilities in their electronic designs.