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Design and Implementation of a New Real-Time Frequency Sensor Used as Hardware Countermeasure

机译:新型实时频率传感器作为硬件对策的设计与实现

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A new digital countermeasure against attacks related to the clock frequency is –presented. This countermeasure, known as frequency sensor, consists of a local oscillator, a transition detector, a measurement element and an output block. The countermeasure has been designed using a full-custom technique implemented in an Application-Specific Integrated Circuit (ASIC), and the implementation has been verified and characterized with an integrated design using a 0.35 μm standard Complementary Metal Oxide Semiconductor (CMOS) technology (Very Large Scale Implementation—VLSI implementation). The proposed solution is configurable in resolution time and allowed range of period, achieving a minimum resolution time of only 1.91 ns and an initialization time of 5.84 ns. The proposed VLSI implementation shows better results than other solutions, such as digital ones based on semi-custom techniques and analog ones based on band pass filters, all design parameters considered. Finally, a counter has been used to verify the good performance of the countermeasure in avoiding the success of an attack.
机译:提出了一种新的针对与时钟频率有关的攻击的数字对策。这种对策称为频率传感器,由本地振荡器,转换检测器,测量元件和输出模块组成。该对策已使用专用集成电路(ASIC)中实现的全定制技术进行了设计,并且该实现已通过使用0.35μm标准互补金属氧化物半导体(CMOS)技术的集成设计进行了验证和表征(非常大规模实施-VLSI实施)。所提出的解决方案在分辨率时间和允许的周期范围内是可配置的,实现的最小分辨率时间仅为1.91 ns,初始化时间为5.84 ns。拟议的VLSI实施方案显示出比其他解决方案更好的结果,例如基于半定制技术的数字解决方案和基于带通滤波器的模拟解决方案,其中考虑了所有设计参数。最后,使用了一个计数器来验证该对策在避免攻击成功方面的良好性能。

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