Analog Pin Directionality as an Exfiltration Attack Surface in Mixed-Signal ICs

📅 2026-09-16
📈 Citations: 0
Influential: 0
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🤖 AI Summary
研究发现并验证了混合信号IC中基于方向性的数据外泄攻击,通过电路偏移调制将输入引脚转换为信息输出通道,并提出了防御措施。
📝 Abstract
Mixed-signal SoCs rely on nominally input-only analog pins to acquire off-chip signals, but the directionality of these interfaces is generally treated as a functional property rather than explicitly verified as a security property. This work identifies and experimentally demonstrates a directionality-based class of analog and mixed-signal (AMS) exfiltration attacks in which data-dependent circuit-offset modulation converts a nominally input-only pin into an outbound information channel. We analytically model the attack mechanism and identify three enabling host conditions: a closed-loop amplifier, an exposed amplifier input, and sufficiently high impedance at that pin. This attack class is validated through a representative silicon case study using a photoplethysmography (PPG) analog front-end (AFE) fabricated in a commercial 55-nm CMOS process. The payload incurs $<$0.001\% area overhead relative to typical biosensing AFEs. Under the evaluated conditions, payload activation reduces the filtered PPG-output SNR by only 0.03~dB, while the maximum HT-induced perturbation of 5.9\% of the PPG amplitude remains within the 34.3\% benign variation at the exposed sensor-input pin across process and temperature. The raw exfiltration SINR remains below -20~dB, while targeted filtering increases it above 14~dB and enables signal recovery. Silicon measurements demonstrate data exfiltration through the input pin at bit rates up to 10~kbps and error-free recovery of a PRBS message. These results expose a conventional test-observability gap and establish analog pin directionality as an AMS security property requiring explicit verification, test coverage, and defense rather than being inferred from nominal signal flow.
Problem

Research questions and friction points this paper is trying to address.

Analog Pin Directionality
Exfiltration Attack
Mixed-Signal ICs
Innovation

Methods, ideas, or system contributions that make the work stand out.

analog pin directionality
exfiltration attack
mixed-signal ICs
circuit-offset modulation
security property
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