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Create a competitive advantage for your trading firm. Whether you need to respond to markets instantly by processing trade orders in nanoseconds or perform complex computations and run AI workloads efficiently – Altera FPGA technology and partner solutions enable you to solve those important business challenges.
FPGA technology is ideal for financial services as it delivers ultra-low latency processing, which is essential for high-frequency trading and real-time risk analysis.
FPGA-based solutions can be tailored to specific algorithms and workloads, providing significant performance improvements while bypassing traditional software bottlenecks.
Altera’s FPGA solution supports parallel data processing and customizable hardware acceleration, enabling firms to manage large data volumes efficiently without straining CPUs.
Agilex™ 7 FPGAs and SoCs
Agilex™ 5 FPGAs and SoCs
Stratix® 10 FPGAs and SoCs
During periods of market volatility, you can rely on Altera and Liquid-Markets-Solutions’ technology to ensure data packets will move to and from the exchange with lossless, sub-microsecond latency and ultra-high bandwidth. Plus, you don’t need FPGA design experience to achieve this level of performance.
Get more information about ÜberNIC— an off-the-shelf Ethernet adapter for Low Latency Trading ›
Reduce data movement by offloading host CPU cores. With Eideticom NoLoad Transparent Compression, offload CPU cores for compression and packet capture – without hands-on FPGA compilation.
Read the Eideticom solution brief ›
Learn more about NoLoad Transparent Compression — a storage offload solution for increased throughput performance ›
Myrtle.ai. The VOLLO inference library on Altera technology allows trading and research teams to retain solid precision while achieving outstanding inference performance when conducting sequence-based analyses like risk assessments and price predictions.
See Myrtle’s results on the STAC-ML benchmark — lowest latency amongst all submissions ›
Learn more about VOLLO — a turnkey software application for low-latency inference ›