SI5338G-B03963-GMR

SI5338G-B03963-GMR

Manufacturer No:

SI5338G-B03963-GMR

Manufacturer:

Description:

I2C CONTROL, 4-OUTPUT, ANY FREQU

Datasheet:

Datasheet

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SI5338G-B03963-GMR Specifications

  • Type
    Parameter
  • Supplier Device Package
    24-QFN (4x4)
  • Package / Case
    24-VFQFN Exposed Pad
  • Mounting Type
    Surface Mount
  • Operating Temperature
    -
  • Voltage - Supply
    -
  • Differential - Input:Output
    -
  • Output
    -
  • Input
    -
  • Main Purpose
    -
  • PLL
    -
  • DigiKey Programmable
    Not Verified
  • Product Status
    Active
  • Packaging
    Tape & Reel (TR)
The SI5338G-B03963-GMR is a specific model of integrated circuit (IC) chip manufactured by Silicon Labs. It is a highly versatile clock generator and jitter attenuator chip with several advantages and application scenarios. Some of these advantages and scenarios include:1. High Flexibility: The SI5338G-B03963-GMR chip offers a wide range of programmable features, allowing users to configure it for various clocking requirements. It supports up to 12 differential clock outputs, each independently programmable, making it suitable for complex systems.2. Low Jitter: Jitter refers to the variation in the timing of clock signals, which can cause issues in sensitive applications. The SI5338G-B03963-GMR chip incorporates advanced jitter attenuation techniques, resulting in low jitter clock outputs. This makes it ideal for applications that require precise and stable timing, such as high-speed data communication or audio/video processing.3. Frequency Synthesis: The chip supports frequency synthesis, enabling it to generate a wide range of clock frequencies from a single reference input. This feature is useful in applications where multiple clock frequencies are required, such as in networking equipment, data centers, or telecommunications systems.4. Redundancy and Failover: The SI5338G-B03963-GMR chip supports redundancy and failover mechanisms. It can automatically switch to a backup clock source in case of a failure or loss of the primary reference clock. This feature is crucial in critical systems that require high reliability and uptime.5. Industrial Temperature Range: The chip is designed to operate reliably in a wide temperature range, typically from -40°C to +85°C. This makes it suitable for industrial applications that require operation in harsh environments, such as industrial automation, automotive, or aerospace systems.6. Programmability and Control: The SI5338G-B03963-GMR chip can be easily programmed and controlled through an I2C interface. This allows for dynamic reconfiguration of clock frequencies, output formats, and other parameters, making it adaptable to changing system requirements.Application scenarios for the SI5338G-B03963-GMR chip include:1. Networking Equipment: The chip can be used in routers, switches, and other networking devices to generate and distribute clock signals for data transmission and synchronization.2. Data Centers: In large-scale data centers, the chip can provide clocking solutions for servers, storage systems, and network switches, ensuring precise timing and synchronization across the infrastructure.3. Telecommunications: The chip can be utilized in telecom equipment, such as base stations, optical networking devices, or digital cross-connect systems, to generate and distribute clock signals for reliable communication.4. Test and Measurement: The chip's low jitter and frequency synthesis capabilities make it suitable for test and measurement equipment, where accurate timing and synchronization are essential for precise measurements.5. Industrial Automation: The chip can be employed in industrial automation systems, such as programmable logic controllers (PLCs) or motion control systems, to provide stable and synchronized clock signals for precise control and coordination.Overall, the SI5338G-B03963-GMR chip offers a combination of flexibility, low jitter, and programmability, making it suitable for a wide range of applications that require reliable clock generation and distribution.