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首页> 外文期刊>International Journal of High Speed Electronics and Systems: Devices, Integrated Circuits and Systems, Optical and Quantum Electronics >Low Pass Filter PUF: Authentication of Printed Circuit Boards Based on Resistor and Capacitor Variations
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Low Pass Filter PUF: Authentication of Printed Circuit Boards Based on Resistor and Capacitor Variations

机译:低通滤波器PUF:基于电阻和电容变化的印刷电路板认证

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摘要

Physical Unclonable Functions (PUFs) are probabilistic circuit primitives that extract randomness from the physical characteristics of a device. PUFs are easy and simple to implement and its random nature makes its behavior hard to predict and model. Most existing PUF designs are based on variation at the chip level and can not be implemented in a printed circuit board (PCB). Therefore, these PUFs can not be used to protect against counterfeit PCBs in a distributed supply chain. In this work, we propose a novel PUF design based on resistor and capacitor variations for low pass filters (LoPUF). We demonstrate the setup in a protoboard for different resistor-capacitor pairs (RC pairs) for reliable low pass filter PUF. Because of process variations, the voltage will be different at the same cut-off frequency for our proposed PUF. Finally, the output of the filter is connected to an inverter to measure the pulse width and best suitable pulses are used for ID generation based on our algorithm.
机译:物理不可渗透的功能(PUF)是从设备的物理特性提取随机性的概率性电路基元。 PUFS简单且易于实现,其随机性使其行为难以预测和模型。大多数现有的PUF设计基于芯片电平的变化,并且不能在印刷电路板(PCB)中实现。因此,这些PUF不能用于防止分布式供应链中的假冒PCB。在这项工作中,我们提出了一种基于电阻器和电容器变化的新型PUF设计,用于低通滤波器(LOPUF)。我们展示了用于不同电阻 - 电容对(RC对)的Protoboard中的设置,用于可靠的低通滤波器PUF。由于处理变化,电压在我们提出的PUF的相同截止频率下将不同。最后,滤波器的输出连接到逆变器以测量脉冲宽度,最佳合适的脉冲基于我们的算法使用ID生成。

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