HomeNewsIndia NewsAchronix Introduces acceleration board for data center applications

    Achronix Introduces acceleration board for data center applications

    QSFP

    Achronix Semiconductor Corporation today announced the availability of the new PCIe form factor Accelerator-6D accelerator board which is the industry’s highest single-FPGA memory bandwidth, PCIe add-in card for high-speed data center acceleration applications. The board integrates a Speedster™22i HD1000 FPGA with 700,000 look-up-tables that connects to six independent memory controllers allowing for up to 192 GB of memory and 690 Gbps of total memory bandwidth.

    Each DRAM controller on the HD1000 runs at 1,600 MT/s and connects to two SODIMMs allowing for single, dual- and quad-rank SODIMM and SORDIMM DDR3 operation. The board also has four QSFP+ connectors for 10G/40G Ethernet connectivity and supports PCIe Gen3 ×8 operation. The controllers for the DDR3, Ethernet and PCIe interfaces are implemented as embedded hard blocks inside the HD1000 FPGA, which eliminates the requirement to use valuable programmable resources inside the FPGA to implement these functions. In addition, the embedded hard controllers guarantee timing on these complex high-performance interfaces, enabling designers to focus their valuable time on developing data center acceleration applications.

    The Accelerator-6D board is the only FPGA-based PCIe board that has 6 independent DRAM memory ports connected to a single FPGA. Each independent port can be configured with up to 32 GB of DDR3 memory. The memory ports combined with the 4 QSFP+ modules that support 4x 40G Ethernet is the perfect platform for data center architects to develop intelligent NIC cards for NFV network acceleration or network security.

    “The Accelerator-6D board offers a unique value proposition to the data center, high-performance compute market segment that uses PCIe add-in cards,” said Steve Mensor, Vice President of Marketing, Achronix Semiconductor. “The Accelerator-6D board offers the highest memory bandwidth for an FPGA-based PCIe form factor board, and memory bandwidth is typically the bottleneck of high performance computer systems.”

    ELE Times Bureau
    ELE Times Bureauhttps://www.eletimes.ai/
    ELE Times provides a comprehensive global coverage of Electronics, Technology and the Market. In addition to providing in depth articles, ELE Times attracts the industry’s largest, qualified and highly engaged audiences, who appreciate our timely, relevant content and popular formats. ELE Times helps you build awareness, drive traffic, communicate your offerings to right audience, generate leads and sell your products better.

    Related News

    Must Read

    What is Fashion Tech? Providing New Product Value and Customer Experiences with Technology

    Courtesy: Murata Electronics What is fashion tech? - diverse technologies...

    Emergency Screaming Detection: How AI Recognizes Human Screams and Saves Lives

    Courtesy: Renesas Detecting human screams for help is important in...

    India’s Electronics Push: Ambition Is Clear. Execution Will Decide the Outcome

    India’s electronics story has entered a decisive phase. The...

    India on the Road to Semicon Self-Reliance with Three More Plants

    India to welcome three more semiconductor plants after PM...

    Upcoming years to Bring Boom for Semiconductors and Electronics

    Union Minister for Electronics and Information Technology Ashwini Vaishnaw...

    R&S Propels 6G Readiness With FR1–FR3 Carrier Demonstration

    Rohde & Schwarz and Qualcomm Technologies, Inc. have reached...

    ROHM and Suchi Semicon Establish a Strategic Semicon Manufacturing Partnership in India

    ROHM and Suchi Semicon have announced the establishment of...

    Keysight to Demonstrate NR-NTN devices Mobility Testing at MWC 2026 in Collaboration with Samsung

    Keysight Technologies, Inc. will demonstrate lab-based validation of new...

    ROHM Strengthens Supply Capability for GaN Power Devices

    Combining TSMC’s Process Technology to Build an End-to-End, In-Group...