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A hybrid system architecture for the readout of a printed physical unclonable function

机译:用于读取打印的物理不可克隆功能的混合系统体系结构

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Uncontrollable manufacturing variations in electrical hardware circuits can be exploited as Physical Unclonable Functions (PUFs). Herein, we present a Printed Electronics (PE)-based PUF system architecture. Our proposed Differential Circuit PUF (DiffC-PUF) is a hybrid system, combining silicon-based and PE-based electronic circuits. The novel approach of the DiffC-PUF architecture is to provide a specially designed real hardware system architecture, that enables the automatic readout of interchangeable printed DiffC-PUF core circuits. The silicon-based addressing and evaluation circuit supplies and controls the printed PUF core and ensures seamless integration into silicon-based smart systems. Major objectives of our work are interconnected applications for the Internet of Things (IoT).
机译:电气硬件电路中无法控制的制造变化可以用作物理不可克隆功能(PUF)。在这里,我们提出了一种基于印刷电子(PE)的PUF系统架构。我们提出的差分电路PUF(DiffC-PUF)是一种混合系统,结合了基于硅和基于PE的电子电路。 DiffC-PUF体系结构的新颖方法是提供一种经过特殊设计的真实硬件系统体系结构,该体系结构能够自动读取可互换的印刷DiffC-PUF核心电路。基于硅的寻址和评估电路提供并控制印刷的PUF内核,并确保无缝集成到基于硅的智能系统中。我们工作的主要目标是物联网(IoT)的互连应用程序。

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