EP1S40 (5)

Intel

EP1S40 is available from Intel at Xecor. Designed for high-performance digital logic applications, the EP1S40 offers exceptional flexibility and scalability with 41,250 logic elements, 3,423,744 RAM bits, and 773 I/O pins. Available in a 1020-BBGA package, it is ideal for advanced telecommunications, industrial automation, and high-speed data processing applications. Whether used in network infrastructure, signal processing, or embedded systems, this series ensures reliable performance, low power consumption, and robust functionality for demanding applications. Xecor is an authorized distributor for Intel. Please view our extensive selection of the EP1S40 series below.

Part Number Description Package Inventory Add To Bom
EP1S40F1020I6N EP1S40F1020I6N features 4697 CLBS and is encased in a PBGA1020 package FBGA-1020 5,297
EP1S40F780I6 Cutting-edge technology with advanced functionality and connectivity FBGA-780 9,670
EP1S40F780C7N Stratix FPGA with 40K logic elements and high-speed I/O. Suitable for high-performance embedded applications. 780-BBGA 6,528
EP1S40F780C5 Family of FPGAs from Intel 780-BBGA 8,219
EP1S40F1020C7 High-performance FPGA with 41250 cells 1020-BBGA 6,746

Key Featrues

High Logic Element Count (41,250): The FPGA features 41,250 logic elements, enabling complex digital designs and high-performance processing. This makes it suitable for applications requiring extensive computational power, such as signal processing, machine learning, and high-speed data acquisition.
Large RAM Capacity (3,423,744 Bits): With 3,423,744 bits of total RAM, the FPGA supports memory-intensive tasks, such as buffering large datasets or running algorithms that require significant on-chip storage. This enhances efficiency by reducing the need for external memory components.
Wide I/O Support (773 I/O Pins): The 773 I/O pins provide extensive connectivity options, facilitating integration with multiple peripherals and devices. This is particularly beneficial for applications like industrial automation, telecommunications, and multi-channel data processing.
Voltage Range (1.425V to 1.575V): The FPGA operates within a narrow voltage range, ensuring stable performance while optimizing power consumption. This makes it ideal for energy-sensitive applications, such as portable devices or battery-powered systems.
Surface Mount Packaging (1020-BBGA): The 1020-BBGA package allows for compact and reliable surface mounting, making it suitable for space-constrained designs. Its robust packaging ensures durability in harsh environments, such as automotive or aerospace applications.

Applications

High-Speed Data Acquisition System: The Stratix® FPGA is ideal for high-speed data acquisition systems, where its 41250 logic elements and 3423744 total RAM bits enable real-time processing of large data streams. Its 773 I/O pins allow for extensive connectivity with multiple sensors and peripherals, making it suitable for applications in telecommunications, radar systems, and high-performance computing environments.
Industrial Automation Controller: The Stratix® FPGA is well-suited for industrial automation, where its robust performance and 1.425V to 1.575V operating voltage range ensure reliable operation in harsh environments. With 4125 LABs/CLBs, it can handle complex control algorithms and real-time monitoring of machinery, making it ideal for use in manufacturing plants, robotics, and process control systems.
Advanced Signal Processing Unit: The Stratix® FPGA excels in advanced signal processing applications, such as digital filtering, image processing, and audio signal enhancement. Its high logic density and large RAM capacity enable efficient implementation of complex algorithms, making it a perfect choice for applications in medical imaging, military communications, and multimedia systems.
Customizable Networking Hardware: The Stratix® FPGA is an excellent choice for designing customizable networking hardware, such as routers, switches, and network interface cards. Its 773 I/O pins and high-speed processing capabilities allow for the implementation of custom protocols and high-bandwidth data handling, making it ideal for use in data centers, enterprise networks, and telecommunications infrastructure.