On-chip substrate-bounce monitoring for laser-fault countermeasure
Kohei Matsuda, Noriyuki Miura, Makoto Nagata, Yu‐ichi Hayashi, Tatsuya Fujii, Kazuo Sakiyama · 2016
This paper presents a reactive sensor-based IC countermeasure against a laser-fault injection attack on a cryptographic processor. IC substrate potential bounce due to laser injection is in-situ monitored by distributed 1bit compact comparators to raise the alarm against the attack. Since the laser power to induce fault is very high, the associated substrate bounce is large and wide-spread over a broad chip area. The efficient attack detection is thus possible with small hardware overhead. To further squeeze the overhead, an optimal sensor design methodology is proposed. An in-situ precise measurement of the bounce by utilizing an on-chip monitor successfully pre-characterizes the magnitude of the critical substrate bounce causing fault injection. The sensor sensitivity, position, and pitch could be optimized accordingly. A test chip is designed and fabricated in 0.18μm CMOS to evaluate the efficiency and validity of the proposed countermeasure.