首页> 外文会议>IEEE International Symposium on Circuits and Systems >An RS (255,239) Decoder with e-PIBM Algorithm, 25.6Gb/s Throughput and 623 TSNT FoM Value Using Fractional Folding Technique in 40nm Technology
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An RS (255,239) Decoder with e-PIBM Algorithm, 25.6Gb/s Throughput and 623 TSNT FoM Value Using Fractional Folding Technique in 40nm Technology

机译:具有E-PIBM算法的RS(255,239)解码器,25.6GB /份吞吐量和623 TSNT FOM值,在40nm技术中使用分数折叠技术

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This paper proposes a novel Fractional Folding (FF) architecture for digital signal processing integrated circuits. With this new structure, a Fractional Folding based enhanced Parallel Inversionless Berlekamp-Massey (FF-ePIBM) Reed-Solomon Decoder is presented of which the number of processing element (PE) can be reduced to only one, resulting in ultra-low hardware complexity. The FF-ePIBM VLSI architecture can greatly reduce the hardware cost by about 60% compare to the fully expanded parallel ePIBM architecture. A polyphase clock signal is needed in order to achieve fractional folding function according to specific fractional-factor. It is generated from Delay Locked Loop (DLL) commonly embedded in almost all VLSI circuit and system. To maximize the throughput of decoder, pipelined architecture is adopted to optimize critical path delay. The RS (255, 239) decoder with FF-ePIBM architecture is finally implemented with 40nm CMOS technology. The synthesized results demonstrate that the decoder has a gate count of 12.6k and can operate at 3.2GHz to achieve a highest throughput of 25.6Gb/s and a best TSNT FoM value of 623 to this date.
机译:本文提出了一种用于数字信号处理集成电路的小型分数折叠(FF)架构。利用这种新结构,介绍了一种基于分数的基于增强的并行的伯雷克普拉姆(FF-EPIBM)REED-SOLOMON解码器,其中处理元件(PE)的数量可以减少到仅一个,导致超低的硬件复杂度。与完全扩展的并行EPIBM架构相比,FF-EPIBM VLSI架构可以大大降低硬件成本约60%。需要多相时钟信号,以便根据特定的分数因子实现分数折叠功能。它是从几乎所有VLSI电路和系统中嵌入的延迟锁定环路(DLL)产生的。为了最大化解码器的吞吐量,采用流水线架构来优化关键路径延迟。最终用40nm CMOS技术实现具有FF-EPIBM架构的RS(255,239)解码器。合成结果表明解码器具有12.6k的栅极计数,并且可以在3.2GHz下运行,以实现25.6GB / s的最高吞吐量,以及在此日期的最佳TSNT FOM值为623。

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