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An IC random number generator based on chaos

机译:一种基于混沌的IC随机数发生器

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In this work, an integrated random number generator based on oscillator sampling method is presented. The random number generator exploits a continuous-time chaotic circuit as the entropy source. A source-coupled multivibrator is used to transform the generated chaotic signal into jittered oscillations required in the oscillator sampling method. The random number generator circuit is fabricated using 0.35μm CMOS process. The circuit is supplied with ±1.65V and occupies an area of 0.25mm2. The throughput of the RNG is 2Mbit/s and its average power consumption is measured as 35mW at its typical throughput. It is shown that experimental binary data obtained from the fabricated IC pass the four tests of FIPS-140–1 test suite.
机译:在这项工作中,提出了一种基于振荡器采样方法的集成随机数发生器。随机数发生器利用连续时间混沌电路作为熵源。使用源耦合多谐振荡器将生成的混沌信号转换为振荡器采样方法所需的抖动振荡。随机数发生器电路采用0.35μmCMOS工艺制造。该电路的电源电压为±1.65V,占地为0.25mm 2 。 RNG的吞吐量为2Mbit / s,在其典型吞吐量下,其平均功耗为35mW。结果表明,从制成的IC获得的实验二进制数据通过了FIPS-140-1测试套件的四项测试。

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