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Blazar Bandwidth Accelerator Engines are cutting-edge solutions designed to enhance in-memory computing performance in FPGAs. They provide high capacity, low latency memory access with bandwidths up to 640 Gbps, making them perfect for high-demand data processing environments. These devices incorporate optional RISC cores for added computational power, supporting applications that require simultaneous processing of vast data sets. The in-memory compute capabilities of Blazar engines accelerate application performance by executing operations directly within memory, eliminating the need for external processing. This approach is pivotal in managing smartNICs and smart switch performance, allowing closer integration and more efficient data handling. Blazar engines also boast dual port memory functionality and include 576Mb or 1Gb memory options. Typical applications involve metering, statistics collection, and 5G user plane functions, showcasing their versatility in modern digital infrastructure. This powerful combination of speed, efficiency, and reduced processing overhead marks Blazar as an indispensable tool for next-generation FPGA acceleration.
The Stellar Packet Classification Platform is an innovative IP designed for sophisticated network applications necessitating rapid and complex data lookup processes. It utilizes advanced Access Control Lists (ACL) and Longest Prefix Match (LPM) technologies to deliver ultra-high search performance, managing hundreds of millions of lookups per second. Equipped to handle a data range of 25 Gbps to 1 Tbps, Stellar offers unmatched rule processing capacity, supporting millions of complex rules with keys up to 480b. Live updates and high reliability are key features, ensuring the platform is adaptable to ever-evolving network requirements and threats, such as DDoS attacks. This platform is primarily suited for next-generation data centers, high-reliability systems, and robust network firewall solutions. It is engineered to address the stringent demands of IP routing and packet classification, providing effective solutions for 5G network applications and beyond.
The LineSpeed FLEX family consists of a set of sophisticated 100G PHY products that facilitate a range of communication functionalities including retimer, gearbox, multiplexing, and redundant link operations. These components are typically employed within line cards and modules, adhering to multiple data rates and industry standards to ensure robust, high-speed connectivity. Designed to be protocol-independent, each retimer is equipped with a PLL for each lane, allowing for mixed port speeds and simplified connectivity with self-adapting receivers. LineSpeed products support key industry specifications such as IEEE and OIF standards, including optional 100G 802.3bj Clause 91 RS-FEC, making them versatile for numerous networking applications. These flexible options, commonly used in Ethernet and optical transceivers, support diverse configurations such as 10x10GE to 4x25GE mappings. Their adaptability and comprehensive support for industry standards ensure they provide efficient solutions for today's networking demands, particularly in high-reliability systems and high-density network infrastructures.
Quazar Quad Partition Rate Memories are designed for high-speed, low-latency applications requiring sizable random access memory. This advanced technology can replace 4 to 8 traditional QDR devices, offering a substantial increase in onboard FPGA memory capacity while reducing board complexity and costs. With a bandwidth potential of up to 640 Gbps and support for dual port memory, these memories effectively surpass the capabilities of typical QDR options in terms of power and performance. The Quazar QPR memories utilize up to 16 serial SERDES connections and are ideal for applications involving oversubscription buffers and table lookups. They are well-suited for use in line cards and switches, providing a versatile memory solution for high-performance networking equipment. These devices feature capacities of 576Mb to 1Gb, ensuring they meet a range of different application needs while maintaining a streamlined and efficient design. Additionally, the Quazar QPR memories are configured to operate in two modes: DEEP and WIDE, with varying word widths and performance options. The DEEP mode enables memory access as 4 independent SRAM partitions, while the WIDE mode allows operation as 8 independent SRAMs, thereby maximizing bandwidth and flexibility in data-intensive applications.
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