HONG KONG HAOCHIP TRADING CO., LIMITED

    5CGXBC3B6F23C7N

    11/24/2025 4:43:37 PM

    The 5CGXBC3B6F23C7N is a high-performance, low-power Field-Programmable Gate Array (FPGA) from the Intel Cyclone V series, designed for a wide range of applications in modern engineering.

    This FPGA is particularly significant due to its ability to integrate complex digital systems, offering a balance between performance and power consumption.

    The 5CGXBC3B6F23C7N is well-suited for applications requiring high-speed data processing, such as industrial automation, medical imaging, and communication systems.

    Its programmable logic fabric, combined with embedded hard processors and high-speed I/O interfaces, makes it a versatile solution for engineers looking to optimize system design and performance..

    At the core of the 5CGXBC3B6F23C7N are its advanced technical specifications and key components.

    The FPGA features a dual-core ARM Cortex-A9 processor, which provides up to 800 MHz of processing power, making it suitable for real-time and high-computational tasks.

    The device includes up to 110K Logic Elements (LEs), allowing for the implementation of complex digital circuits.

    Additionally, it supports up to 4.8 Gbps transceivers, enabling high-speed serial communication.

    The 5CGXBC3B6F23C7N also integrates a variety of memory resources, including up to 5.4 Mbits of embedded memory blocks, which can be configured as RAM, ROM, or FIFO buffers.

    The FPGA's power management capabilities are enhanced by its support for multiple voltage domains, allowing for fine-grained control over power consumption.

    The device is fabricated using a 28 nm Low-Power (LP) process, which contributes to its low power dissipation, with a typical static power consumption of less than 100 mW.

    The 5CGXBC3B6F23C7N also supports a wide range of I/O standards, including LVDS, LVTTL, and HSTL, providing flexibility in interfacing with various peripheral devices.

    Furthermore, the FPGA includes a rich set of on-chip peripherals, such as Ethernet MAC, USB 2.0, and SD/SDIO/MMC controllers, which simplify the integration of external interfaces and reduce the overall system complexity..

    The 5CGXBC3B6F23C7N offers numerous practical benefits in real-world engineering applications.

    For instance, in industrial automation, the FPGA's high-speed I/O and processing capabilities enable the development of advanced control systems that can handle complex, time-critical tasks.

    In medical imaging, the 5CGXBC3B6F23C7N's powerful processing and high-bandwidth communication capabilities make it ideal for real-time image processing and data acquisition.

    The FPGA's low power consumption and thermal efficiency are particularly advantageous in portable and battery-powered medical devices.

    In communication systems, the 5CGXBC3B6F23C7N's high-speed transceivers and robust I/O support facilitate the design of high-throughput, low-latency data links.

    For example, in a 5G base station, the FPGA can be used to implement the physical layer (PHY) functions, such as modulation, demodulation, and error correction, ensuring reliable and efficient data transmission.

    The 5CGXBC3B6F23C7N's programmable logic fabric also allows for the customization of these functions, enabling engineers to optimize the system for specific requirements and standards.

    Additionally, the FPGA's support for multiple I/O standards and on-chip peripherals simplifies the integration of different communication protocols and interfaces, reducing the need for external components and minimizing the overall system footprint..

    hkhaochip stands out as the preferred supplier of the 5CGXBC3B6F23C7N FPGA due to several key advantages.

    Firstly, hkhaochip adheres to rigorous certified quality control processes, ensuring that every FPGA meets the highest standards of reliability and performance.

    This commitment to quality is reflected in the consistent performance and long-term stability of the 5CGXBC3B6F23C7N, which is critical for mission-critical applications.

    Secondly, hkhaochip maintains a global inventory availability, allowing for quick and efficient delivery to customers worldwide.

    This global presence ensures that engineers have access to the 5CGXBC3B6F23C7N when and where they need it, minimizing project delays and supply chain disruptions.

    Thirdly, hkhaochip offers unparalleled technical support expertise, with a team of experienced engineers available to provide guidance and assistance throughout the design and implementation process.

    This support is invaluable for engineers who may be new to FPGA technology or require specialized knowledge to fully leverage the capabilities of the 5CGXBC3B6F23C7N.

    Finally, hkhaochip provides fast delivery options, with current stock status indicating that the 5CGXBC3B6F23C7N is readily available for immediate shipment.

    This rapid turnaround time is crucial for projects with tight deadlines, ensuring that engineers can quickly move from design to production without unnecessary delays..

    In conclusion, the 5CGXBC3B6F23C7N FPGA from the Intel Cyclone V series represents a significant advancement in modern engineering, offering a powerful and flexible solution for a wide range of applications.

    Its technical specifications, including the dual-core ARM Cortex-A9 processor, 110K Logic Elements, and 4.8 Gbps transceivers, make it an ideal choice for high-performance, low-power systems.

    The practical benefits of the 5CGXBC3B6F23C7N, such as its suitability for industrial automation, medical imaging, and communication systems, underscore its versatility and value.

    hkhaochip's commitment to quality, global inventory availability, technical support, and fast delivery further enhances the value proposition of the 5CGXBC3B6F23C7N, making it a preferred choice for engineers and technical professionals.

    As the demand for high-performance, low-power solutions continues to grow, the 5CGXBC3B6F23C7N is poised to play a pivotal role in shaping the future of digital system design..

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