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首页> 外文期刊>IEEE Transactions on Nuclear Science >Redundant-Configuration Scrubbing of SRAM-Based FPGAs
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Redundant-Configuration Scrubbing of SRAM-Based FPGAs

机译:基于SRAM的FPGA的冗余配置清理

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摘要

Static RAM-based field programmable gate arrays (SRAM-based FPGAs) are widely adopted in trigger and data acquisition systems of high-energy physics detectors for implementing fast logic due to their reconfigurability, large real-time processing capabilities and embedded high-speed serial IOs. These devices are sensitive to radiation-induced upsets, which may alter the functionality of the implemented circuit. Presently, their usage on-detector is limited and there is a strong interest in finding solutions for improving their tolerance to radiation-induced upsets. In this paper, we show a novel configuration-redundancy generation and scrubbing technique for SRAM-based FPGAs. It leads to a power saving with respect to other solutions in the literature. Moreover, our technique is compatible with several Xilinx FPGA families. Our solution does not require neither the usage of external memories nor third-party layout tools. We describe an example of our solution applied to a benchmark design implemented in a Xilinx Kintex-7 FPGA. In order to prove the effectiveness of the solution, we present results from a proton irradiation test.
机译:基于静态RAM的现场可编程门阵列(基于SRAM的FPGA)因其可重新配置,强大的实时处理能力和嵌入式高速串行功能而广泛用于高能物理探测器的触发和数据采集系统中,以实现快速逻辑IO。这些设备对辐射引起的干扰很敏感,这可能会改变所实现电路的功能。当前,它们在探测器上的使用受到限制,并且强烈希望找到解决方案以提高其对辐射诱发的不安定性的耐受性。在本文中,我们展示了一种用于基于SRAM的FPGA的新颖的配置冗余生成和清理技术。与文献中的其他解决方案相比,它可以节省功耗。此外,我们的技术与多个Xilinx FPGA系列兼容。我们的解决方案既不需要使用外部存储器,也不需要第三方布局工具。我们描述了一个解决方案的示例,该解决方案应用于在Xilinx Kintex-7 FPGA中实现的基准设计。为了证明该解决方案的有效性,我们提供了质子辐照试验的结果。

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