5CGXFC5 (10)

Intel

The 5CGXFC5 is available from Intel at Xecor. Designed for high-performance programmable logic applications, the 5CGXFC5 offers exceptional flexibility, scalability, and efficiency with features such as 77,000 logic elements, 5,001,216 total RAM bits, and 240 I/O pins. Available in a 484-BGA package, it is ideal for demanding applications in industries like telecommunications, industrial automation, and embedded systems. Whether used in data processing, signal routing, or custom logic implementations, this series ensures reliable performance and low power consumption for complex designs. Xecor is an authorized distributor for Intel. Please view our extensive selection of the 5CGXFC5 series below.

Part Number Description Package Inventory Add To Bom
5CGXFC5C6F23I7N FPGA integrated circuit with 240 I/O pins FBGA-484 6,494
5CGXFC5C6U19I7N Boasting a capacity of 610.5kB, this FPGA is suitable for a wide range of applications in various industries BGA-484 7,704
5CGXFC5C7F23C8N FPGA with 77000 Cells in PBGA484 Package FBGA-484 5,335
5CGXFC5C6F27I7N FPGA with lead-free design, RoHS 2013 compliant, running at 800MHz and 1.13V FBGA-672 9,498
5CGXFC5C7F27C8N Advanced field programmable gate array with 77000 cells FBGA-672 9,252
5CGXFC5C6F27C6N 77000 29080 FBGA-672 FBGA-672 6,402
5CGXFC5C6F27C7N Development Demo for Product Description BGA-672 8,223
5CGXFC5F7M11C8N Programmable Logic Device MBGA-301 6,396
5CGXFC5C6U19A7N Reconfigurable Computing Chip 484-FBGA 9,918
5CGXFC5C6F23C6N Advanced field-programmable gate array with 77000 cells, utilizing 28nm technology 484-BGA 8,751

Key Featrues

High Logic Element Count: With 77,000 logic elements, the Cyclone® V GX FPGA offers extensive computational and processing capabilities, making it suitable for complex digital designs and high-performance applications such as signal processing and embedded systems.
Large On-Chip Memory: Featuring 5,001,216 bits of total RAM, this FPGA provides ample on-chip memory for data storage and manipulation, reducing the need for external memory components and enhancing system efficiency and speed.
Versatile I/O Support: The FPGA includes 240 I/O pins, enabling robust connectivity and interfacing with a wide range of external devices and peripherals, which is ideal for applications requiring extensive data exchange and control.
Low Power Consumption: Operating within a voltage range of 1.07V to 1.13V, the Cyclone® V GX FPGA is designed for energy efficiency, making it suitable for power-sensitive applications and contributing to lower overall system power consumption.
Wide Operating Temperature Range: With an operating temperature range of 0°C to 85°C (TJ), this FPGA is reliable in various environmental conditions, ensuring stable performance in industrial, automotive, and other demanding applications.

Applications

High-Speed Data Acquisition System: The Cyclone® V GX FPGA is ideal for high-speed data acquisition systems, where it can process and manage large volumes of data from multiple sensors simultaneously. Its 77000 logic elements and 5001216 total RAM bits enable real-time data processing and storage, making it suitable for applications in scientific research, industrial automation, and telecommunications.
Industrial Control and Automation: The Cyclone® V GX FPGA is well-suited for industrial control and automation systems, where it can handle complex control algorithms and interface with various sensors and actuators. Its 240 I/O pins and robust operating temperature range (0°C to 85°C) make it reliable for harsh industrial environments, ensuring precise control and monitoring of machinery and processes.
Video and Image Processing: The Cyclone® V GX FPGA is an excellent choice for video and image processing applications, such as surveillance systems, medical imaging, and automotive vision systems. Its high logic capacity and RAM bits allow for efficient implementation of image processing algorithms, enabling real-time video analysis, object detection, and image enhancement.
Communications Infrastructure: The Cyclone® V GX FPGA is highly effective in communications infrastructure, including base stations, network switches, and routers. Its ability to handle high-speed data streams and complex signal processing tasks makes it ideal for implementing advanced communication protocols, error correction, and data encryption, ensuring reliable and secure data transmission in modern communication networks.