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A Dynamic and Differential CMOS Lookup Table with Data Independent Power Consumption for Cryptographic Applications on Chip Cards

机译:动态和差分CMOS查找表,具有与数据无关的功耗,用于芯片卡上的加密应用

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Attacks based on a differential power analysis (DPA) are a main threat when designing cryptographic functions for implementation on chip cards. In this paper, a dynamic and differential lookup table (LUT) is presented and evaluated on a case study simulation. The proposed circuit shows a power consumption independent from the input data and can be employed to implement combinatorial functions in cryptographic processors when a high resistance against tampering is required. A typical application is the design of nonlinear functions (for example, substitution boxes) since protecting them with less expensive countermeasures (for example, random masking) implies a significant overhead. In the adopted case study, a 1.02 percent spread in the power consumption has been obtained when parasitic capacitances are taken into account. Moreover, a comparison with a static complementary metal-oxide semiconductor implementation shows an acceptable overhead in terms of area and power consumption.
机译:当设计用于芯片卡上实现的加密功能时,基于差分功率分析(DPA)的攻击是主要威胁。在本文中,提出了动态和差分查找表(LUT)并在案例研究仿真中进行了评估。所提出的电路显示出与输入数据无关的功耗,并且当需要高抗篡改性时,可用于实现密码处理器中的组合功能。一个典型的应用是非线性函数(例如,替换框)的设计,因为使用较便宜的对策(例如,随机掩码)保护它们意味着大量的开销。在所采用的案例研究中,当考虑寄生电容时,已获得1.02%的功耗分布。此外,与静态互补金属氧化物半导体实现方式的比较显示出在面积和功耗方面可接受的开销。

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