Datasheets
SI32260-C-GM2 by:
Silicon Laboratories Inc
Silicon Laboratories Inc
Skyworks Solutions Inc
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IC PROSLIC FXS DC-DC CTLR 47LGA

Part Details for SI32260-C-GM2 by Silicon Laboratories Inc

Results Overview of SI32260-C-GM2 by Silicon Laboratories Inc

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Applications Internet of Things (IoT) Environmental Monitoring Industrial Automation Financial Technology (Fintech) Smart Cities Transportation and Logistics Agriculture Technology Telecommunications Virtual Reality (VR), Augmented Reality (AR), and Vision Systems Automotive Consumer Electronics Education and Research Security and Surveillance Audio and Video Systems Computing and Data Storage Healthcare Renewable Energy Entertainment and Gaming Robotics and Drones

SI32260-C-GM2 Information

SI32260-C-GM2 by Silicon Laboratories Inc is a Digital Transmission Interface.
Digital Transmission Interfaces are under the broader part category of Telecommunication Circuits.

A telecommunications circuit transmits and receives information between points. Key components include transmitters, receivers, amplifiers, and multiplexers. Read more about Telecommunication Circuits on our Telecommunication Circuits part category page.

Part Details for SI32260-C-GM2

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SI32260-C-GM2 Part Data Attributes

SI32260-C-GM2 Silicon Laboratories Inc
Buy Now Datasheet
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SI32260-C-GM2 Silicon Laboratories Inc IC PROSLIC FXS DC-DC CTLR 47LGA
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Pbfree Code Yes
Rohs Code Yes
Part Life Cycle Code Transferred
Ihs Manufacturer SILICON LABORATORIES INC
Reach Compliance Code unknown
HTS Code 8542.39.00.01
Date Of Intro 2019-11-11
Telecom IC Type DIGITAL SLIC

SI32260-C-GM2 Frequently Asked Questions (FAQ)

  • A 4-layer PCB with a solid ground plane and a separate power plane is recommended. Keep the analog and digital sections separate, and use a common mode filter to reduce EMI.

  • Use a reliable clock source, ensure proper signal termination, and implement error detection and correction mechanisms such as CRC and retries. Also, follow the recommended pin configuration and signal routing guidelines.

  • The device has a maximum junction temperature of 150°C. Ensure good airflow, use a heat sink if necessary, and avoid blocking the thermal pads. Follow the recommended thermal design guidelines for optimal performance.

  • Use the built-in diagnostic features, such as the error registers and debug modes. Analyze the device's behavior using oscilloscopes, logic analyzers, or protocol analyzers. Consult the datasheet, application notes, and Silicon Laboratories' support resources for guidance.

  • Yes, the device requires a compatible firmware or software driver to operate correctly. Ensure you use the recommended firmware version and follow the provided API and programming guidelines.