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Design of Monitor and Protect Circuits against FIB Attack on Chip Security

机译:防止FIB攻击芯片安全的监控电路设计

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摘要

As information security chips are more widely used in the field of information security, the security of chips becomes increasingly important, which has also been a hot research field of information security. With the advances in technology, a chip-invasive method of attack which uses laser or focused ion beam (FIB) to change the chip's internal signal line, and then probe the chip's secret information with the electron microprobe, becomes a serious threat to information security chip. Such an attack makes the shielding metal wire an effective mean to improve chip security. The protection circuit module monitoring the shielding metal line is to ensure the layer of the metal wire is undamaged, in order to ensure that the chip has not been attacked by laser or FIB. This paper studies the design and implementation of Monitor and Protect Circuits (MPC) based on RC delay, which monitor if the shielding metal wires are damaged. The circuit is designed in SMIC0.18um CMOS process and an entire layout is completed. The gate count of MPC is about 642, which is 2.9% of that of AES. And its power consumption is about 81uw.
机译:随着信息安全芯片在信息安全领域的广泛应用,芯片的安全性变得越来越重要,这也是信息安全领域的研究热点。随着技术的进步,使用激光或聚焦离子束(FIB)改变芯片的内部信号线,然后用电子微探针探测芯片的秘密信息的芯片侵入式攻击方法,严重威胁信息安全。芯片。这种攻击使屏蔽金属线成为提高芯片安全性的有效手段。监视屏蔽金属线的保护电路模块是为了确保金属线的层没有损坏,以确保芯片不受激光或FIB的攻击。本文研究了基于RC延迟的监视和保护电路(MPC)的设计和实现,该监视和保护电路监视屏蔽金属线是否损坏。该电路采用SMIC0.18um CMOS工艺设计,并完成了整个布局。 MPC的门数约为642,是AES的2.9%。它的功耗约为81uw。

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