A Capacitive Digital Isolator Featuring 160 kV/μs CMTI and 11 ns Delay

Conventional capacitive digital isolators face an inherent trade-off between high-speed operation and robustness against common-mode transient disturbances, as the parasitic coupling capacitance introduces a path for high-frequency common-mode noise. To address this issue, this paper proposes an on-off keying (OOK)-modulated capacitive isolator with a differential-output transmitter and a receiver front-end that combines an active-inductor-loaded preamplifier, a dynamic clamping circuit, and a dedicated common-mode transient immunity (CMTI) enhancement stage. The active-inductor load shapes a band-pass frequency response that maximizes gain at the carrier frequency while rejecting low-frequency interference, and the auxiliary clamping and enhancement circuits collectively suppress large-amplitude common-mode transients. Measured results from a 0.18 μm CMOS process show a CMTI of 160 kV/μs, delay of 11 ns, PWD of 4.7 ns, and breakdown voltage of 6.51 kV. The proposed design thus achieves high robustness, validating its effectiveness for isolated interface applications.

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Publication Details

Journal
Electronics
Published
2026-09-16
DOI
https://doi.org/10.3390/electronics15184208
Primary Topic
Electromagnetic Compatibility and Noise Suppression
Type
article
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article

A Capacitive Digital Isolator Featuring 160 kV/μs CMTI and 11 ns Delay

Peilei Xiao, Yuqing Deng, Wen Lv, Jiajun Liu
Electronics
Electromagnetic Compatibility and Noise Suppression
article

A Capacitive Digital Isolator Featuring 160 kV/μs CMTI and 11 ns Delay

Peilei Xiao, Yuqing Deng, Wen Lv, Jiajun Liu
article en

Abstract

Conventional capacitive digital isolators face an inherent trade-off between high-speed operation and robustness against common-mode transient disturbances, as the parasitic coupling capacitance introduces a path for high-frequency common-mode noise. To address this issue, this paper proposes an on-off keying (OOK)-modulated capacitive isolator with a differential-output transmitter and a receiver front-end that combines an active-inductor-loaded preamplifier, a dynamic clamping circuit, and a dedicated common-mode transient immunity (CMTI) enhancement stage. The active-inductor load shapes a band-pass frequency response that maximizes gain at the carrier frequency while rejecting low-frequency interference, and the auxiliary clamping and enhancement circuits collectively suppress large-amplitude common-mode transients. Measured results from a 0.18 μm CMOS process show a CMTI of 160 kV/μs, delay of 11 ns, PWD of 4.7 ns, and breakdown voltage of 6.51 kV. The proposed design thus achieves high robustness, validating its effectiveness for isolated interface applications.

ElectronicsVol. 15(18)
China Electronics Technology Group Corporation (CN)
Openalex Percentile: Top 20%
Electromagnetic Compatibility and Noise Suppression
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A Capacitive Digital Isolator Featuring 160 kV/μs CMTI and 11 ns Delay — Peilei Xiao, Yuqing Deng, et al. · Electronics (2026) | TGRS Research Map | TGRS