Product Overview: LTM2887CY-5S#PBF
The LTM2887CY-5S#PBF is a high-performance isolated μModule transceiver from Linear Technology, which now operates under Analog Devices. This product is designed to provide a complete isolated data communication and power interface in a single compact package. It is ideally suited for breaking ground loops and allowing for large common mode voltage variations, which is particularly beneficial in industrial, automotive, and instrumentation applications.
Key Features
- Integrated Power Isolation: The LTM2887CY-5S#PBF includes an isolated DC/DC converter, providing isolated power up to 1W, ensuring reliable operation even in noisy environments.
- Data Isolation: With 2500Vrms of galvanic isolation, this transceiver ensures that data signals are transmitted securely without interference from high voltage or noisy grounds.
- High-Speed Operation: The device supports high-speed full-duplex communication, making it suitable for applications requiring fast data transfer rates.
- Robust Design: The transceiver is designed to withstand harsh environments and is compliant with regulatory standards, ensuring a robust and reliable communication interface.
- Easy Implementation: The LTM2887CY-5S#PBF comes in a surface-mount package that simplifies PCB design and manufacturing, allowing for easy integration into a wide range of systems.
Applications
This transceiver is versatile and can be used in multiple applications where isolation is critical, including:
- Industrial Control Systems
- Test and Measurement Equipment
- Automotive Systems
- Medical Equipment
- Isolated Sensor Interfaces
Technical Specifications
The LTM2887CY-5S#PBF operates over a wide temperature range and features a compact footprint. It is characterized by the following specifications:
- Supply Voltage: 5V
- Operating Temperature Range: -40°C to +105°C
- Package: Surface Mount LGA
- Isolation Voltage: 2500Vrms
- Data Rate: Up to 20Mbps
In summary, the LTM2887CY-5S#PBF by Linear Technology is a highly integrated solution that simplifies the design and enhances the reliability of isolated communication systems.