Characterization of IOBUF-based Ring Oscillators

J. Burgiel, Daniel E. Holcomb, Ilias Giechaskiel, Shanquan Tian, Jakub Szefer
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引用次数: 1

Abstract

Ring Oscillators (ROs) are fundamental primitives that are used as building blocks in many other types of circuits. This paper presents an in-depth characterization of ring oscillators which leverage the IOBUF primitive found in modern Xilinx FPGAs. This work first analyzes the impact of the drive strength and slew rate attributes of the IOBUFs on the ROs, and also characterizes the impacts of external temperature, internal voltage, and external voltage fluctuations on the frequency of the proposed ROs. This work further demonstrates that IOBUF-based ROs can detect whether electrical connections to the IOBUF pins have changed, including whether the DRAM module has been physically removed. Finally, the proposed ROs can be realized on cloud FPGAs, bypassing the restrictions that some cloud providers impose on combinatorial loops, and thus presenting a new security threat to remote FPGAs.
基于iobuf的环形振荡器的特性
环形振荡器(ROs)是在许多其他类型的电路中用作构建块的基本基元。本文介绍了利用现代赛灵思fpga中发现的IOBUF原语的环形振荡器的深入表征。这项工作首先分析了iobuf的驱动强度和转换率属性对ROs的影响,并表征了外部温度、内部电压和外部电压波动对所提出的ROs频率的影响。这项工作进一步证明,基于IOBUF的ROs可以检测到与IOBUF引脚的电连接是否发生了变化,包括DRAM模块是否已被物理移除。最后,所提出的ROs可以在云fpga上实现,绕过一些云提供商对组合环路的限制,从而对远程fpga提出新的安全威胁。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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