EP3C120 (10)
IntelEP3C120 is available from Intel at Xecor. Designed for high-performance and flexible field-programmable gate array (FPGA) applications, the EP3C120 offers exceptional logic capacity with 119,088 logic elements, 3981312 total RAM bits, and 283 I/O pins. Available in a 484-BGA package, it is ideal for industries such as telecommunications, industrial automation, and embedded systems. Whether used in signal processing, data acceleration, or control systems, this series ensures efficiency, scalability, and reliability for demanding applications. Xecor is an authorized distributor for Intel. Please view our extensive selection of the EP3C120 series below.
Part Number | Description | Package | Inventory | Add To Bom |
---|---|---|---|---|
EP3C120F484C8N | With a total of 119088 cells, the FPGA EP3C120F484C8N offers high performance and flexibility for a wide range of applications | FBGA-484 | 7,979 | |
EP3C120F484I7 | The EP3C120F484I7 is a Programmable Logic Device (CPLD/FPGA) that comes in a FBGA-484 package, measuring 23x23, and is ROHS-certified | BGA-484 | 8,378 | |
EP3C120F484I7N | 119088 CLBS EP3C120F484I7N PBGA484 472.5MHZ FIELD PROGRAMMABLE GATE ARRAY CMOS 119088-CELL | FBGA-484 | 7,927 | |
EP3C120F780C7N | High-performance FPGA for complex digital designs and application | FBGA-780 | 8,914 | |
EP3C120F780C7 | Programmable Logic Device EP3C120F780C7 with 7443 configuration | FBGA-780 | 5,865 | |
EP3C120F780C8N | EP3C120F780C8N is a Field Programmable Gate Array with 119088 CLBs and a frequency of 472.5MHz | FBGA-780 | 5,603 | |
EP3C120F780I7N | The EP3C120F780I7N FPGA boasts a low operating voltage of 1.2V, making it energy-efficient | FBGA-780 | 5,039 | |
EP3C120F780C8 | EP3C120F780C8 - Field Programmable Gate Array (FPGA) | BGA-780 | 7,428 | |
EP3C120F484C7N | 484-pin Plastic BGA FPGA | 484-BGA | 7,153 | |
EP3C120F484C7 | 119088 7443 FBGA-484(23x23) Programmable Logic Device (CPLDs/FPGAs) ROHS | 484-BGA | 6,775 |
Key Featrues
Large Total RAM Bits (3,981,312) - With a significant amount of embedded memory, this FPGA can handle data-intensive applications efficiently. This feature is particularly beneficial for tasks like buffering, caching, and real-time data processing, enhancing overall system performance.
Versatile I/O Capability (283 I/O Pins) - The FPGA offers a high number of input/output pins, providing flexibility for interfacing with various peripherals and external devices. This makes it ideal for applications requiring extensive connectivity, such as communication systems, robotics, and multi-sensor environments.
Wide Operating Voltage Range (1.15V to 1.25V) - The low and stable voltage supply range ensures energy-efficient operation, reducing power consumption and heat generation. This feature is crucial for portable and battery-powered devices, as well as systems requiring long-term reliability.
Robust Package Design (484-BGA) - The 484-BGA package ensures a compact and reliable physical form factor, suitable for space-constrained applications. Its surface-mount design enhances durability and thermal performance, making it a reliable choice for demanding industrial and automotive environments.
Applications
Industrial Automation Controller: With 283 I/O pins and a robust operating temperature range of 0°C to 85°C, the Cyclone® III FPGA is perfect for industrial automation controllers. It can handle complex control algorithms, manage multiple input/output signals, and interface with various sensors and actuators, ensuring reliable performance in harsh industrial environments.
Embedded Vision System: The Cyclone® III FPGA can be used in embedded vision systems for real-time image processing and analysis. Its high logic capacity and RAM bits allow for efficient implementation of image processing algorithms, making it suitable for applications in machine vision, surveillance, and autonomous vehicles.
Custom Digital Signal Processing (DSP) Engine: The FPGA's flexibility and high-performance capabilities make it an excellent choice for custom DSP engines. It can be programmed to perform specialized signal processing tasks, such as filtering, modulation, and demodulation, in applications like audio processing, wireless communications, and medical imaging.
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