The SCN2661BC1A28 is a versatile and high-performance Enhanced Programmable Communications Interface (EPCI) chip developed by NXP Semiconductors. It is designed to provide a reliable solution for serial communication in a wide range of applications, including industrial control systems, network infrastructure, and advanced computing systems.
Key Features:
- Compatibility: The device is compatible with the industry-standard 2661 Enhanced Programmable Communications Interface, ensuring easy integration into existing systems.
- Dual Channels: It offers two independent full-duplex channels, allowing for simultaneous transmission and reception of data, which enhances communication efficiency.
- Baud Rate: The SCN2661BC1A28 supports a wide range of programmable baud rates, making it suitable for various data transfer requirements.
- Interface Options: This EPCI includes versatile interface options, including RS-232, RS-422, and RS-485, providing flexibility for different communication standards.
- Integrated Features: It integrates several features such as a baud rate generator, digital phase-locked loop, and on-chip oscillator to minimize external components.
- Error Detection: Advanced error detection capabilities, including parity, framing, and overrun error detection, ensure data integrity during transmission.
Applications:
The SCN2661BC1A28 is ideal for a variety of applications that require reliable and efficient serial communication. Some of the typical applications include:
- Telecommunications equipment
- Data acquisition systems
- Industrial automation and control
- Networking equipment such as routers and switches
- Point-of-sale terminals
Technical Specifications:
| Parameter |
Value |
| Supply Voltage |
5V ± 10% |
| Operating Temperature |
0°C to +70°C |
| Package |
28-Pin Plastic DIP |
| Data Format |
5, 6, 7, or 8 bits |
With its robust feature set and flexible interface options, the NXP SCN2661BC1A28 stands out as a powerful EPCI solution for any application requiring standardized and efficient serial communication.