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A 65 nm CMOS key establishment core based on tree parity machines

机译:基于树型奇偶校验机的65 nm CMOS密钥建立内核

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摘要

A low-area ASIC implementation of a fully-synthesized symmetric key establishment architecture based on tree parity machines (TPMs) in 130 nm and 65 nm standard-cell CMOS technologies is presented. The proposed circuit architecture has a re-keying characteristic enabled by two new circuit implementations. The behavioral simulations shows that synchronization time can be reduced from 1.25 ms to less 0.7 ms with a weight misalignment of 20% in re-keying mode. Relative area and power consumption are studied by comparing synthesized TPMs with an implementation of a CRC16 error detection code used within security applications. Scalability of the architecture is shown by mean of a proposed figure of merit. Further verification is applied for fabrication in 130 nm CMOS technology.
机译:提出了一种在130 nm和65 nm标准单元CMOS技术中基于树奇偶校验机(TPM)的全合成对称密钥建立体系结构的低区域ASIC实现。所提出的电路架构具有通过两种新的电路实现方式实现的密钥更新特性。行为仿真表明,在重新键入模式下,重量失准为20%时,同步时间可以从1.25 ms减少到0.7 ms以下。通过将合成的TPM与安全应用程序中使用的CRC16错误检测代码的实现方式进行比较,研究了相对面积和功耗。该体系结构的可伸缩性通过提出的品质因数表示。进一步的验证适用于130 nm CMOS技术的制造。

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  • 来源
    《Integration》 |2017年第6期|430-437|共8页
  • 作者单位

    Univ Ind Santander Bucaramanga, Design Grp Integrated Syst CIDIC, Santander, Colombia;

    Univ Ind Santander Bucaramanga, Design Grp Integrated Syst CIDIC, Santander, Colombia;

    Univ Ind Santander Bucaramanga, Design Grp Integrated Syst CIDIC, Santander, Colombia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    TPM; Re-keying; Digital flow; ASIC; 65 nm;

    机译:TPM;密钥更新;数字流;ASIC;65 nm;

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