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A Logic Resistive Memory Chip for Embedded Key Storage With Physical Security

机译:用于具有物理安全性的嵌入式密钥存储的逻辑电阻存储芯片

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A 64-kB logic resistive random access memory (RRAM) chip for physically secure key storage is presented. The chip has security features of resisting fully invasive attacks such as deprocessing and microscopy observation, resisting side-channel attacks by providing symmetrical power and timing read signals, resisting malicious writing by a reduced write protection scheme with feedback, and resisting data interception attack across pin boundary by the ability of on-chip integration with logic platform. The chip is fabricated in a 0.13- standard logic process and implemented as the key storage for a demonstrative information security platform with a MIPS-based cryptoprocessor. Experiments of reverse engineering and mechanism investigation proved the fully invasive attack-resistant features, and experiments emulating side-channel attacks revealed no difference between 0 and 1. Experiments also showed that the information security platform could correctly encrypt and decrypt with the RRAM key storage. The proposed chip has obvious advantage on area, power, and security features for embedded key storage compared with its Antifuse counterpart.
机译:提出了一种用于物理安全密钥存储的64 kB逻辑电阻型随机存取存储器(RRAM)芯片。该芯片具有以下安全特性:抵制诸如入侵处理和显微镜观察之类的全侵入式攻击;通过提供对称的电源和定时读取信号来抵制旁道攻击;通过具有反馈功能的简化写保护方案来抵制恶意写入;以及抵制跨引脚的数据拦截攻击通过与逻辑平台进行片上集成的能力来实现边界。该芯片采用0.13标准逻辑工艺制造,并实现为具有基于MIPS的密码处理器的演示信息安全平台的密钥存储。逆向工程和机制研究的实验证明了其具有完全的入侵防御能力,而仿真侧信道攻击的实验则表明0和1之间没有差异。实验还表明,信息安全平台可以使用RRAM密钥存储正确加密和解​​密。与Antifuse同类产品相比,该芯片在嵌入式密钥存储方面在面积,功耗和安全性方面具有明显优势。

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