Debayan Das

Debayan Das

Purdue University

H-index: 20

North America-United States

About Debayan Das

Debayan Das, With an exceptional h-index of 20 and a recent h-index of 20 (since 2020), a distinguished researcher at Purdue University, specializes in the field of Mixed Signal IC Design, Hardware Security, Biomedical Circuits/Systems.

His recent articles reflect a diverse array of research interests and contributions to the field:

SNOW-SCA: ML-assisted Side-Channel Attack on SNOW-V

Optimal Placement of TDC Sensor for Enhanced Power Side-Channel Assessment on FPGAS

Switch Capacitor-based Time-Varying Transfer Function for FCN and CNN MLSCA-resistant AES256 in 65nm CMOS

Physical Time-Varying Transfer Function as Generic Low-Overhead Power-SCA Countermeasure

PG-CAS: Pro-Active EM-SCA Probe Detection using Switched-Capacitor based Patterned-Ground Co-planar Capacitive Asymmetry Sensing

Power Side-Channel Vulnerability Assessment of Lightweight Cryptographic Scheme, XOODYAK

Power and EM SCA Resilience in 65nm AES-256 Exploiting Clock-Slew Dependent Variability in CMOS Digital Circuits

A - - ASIC for Post-Quantum Key-Encapsulation Mechanism Saber With Low-Latency Striding Toom–Cook Multiplication

Debayan Das Information

University

Position

PhD Research Scholar Bilsland Fellow ECE

Citations(all)

1574

Citations(since 2020)

1477

Cited By

512

hIndex(all)

20

hIndex(since 2020)

20

i10Index(all)

37

i10Index(since 2020)

34

Email

University Profile Page

Google Scholar

Debayan Das Skills & Research Interests

Mixed Signal IC Design

Hardware Security

Biomedical Circuits/Systems

Top articles of Debayan Das

SNOW-SCA: ML-assisted Side-Channel Attack on SNOW-V

arXiv preprint arXiv:2403.08267

2024/3/13

Optimal Placement of TDC Sensor for Enhanced Power Side-Channel Assessment on FPGAS

2024/1/6

Switch Capacitor-based Time-Varying Transfer Function for FCN and CNN MLSCA-resistant AES256 in 65nm CMOS

IEEE Transactions on Circuits and Systems II: Express Briefs

2023/8/4

Physical Time-Varying Transfer Function as Generic Low-Overhead Power-SCA Countermeasure

IEEE Open Journal of Circuits and Systems

2023/8/4

PG-CAS: Pro-Active EM-SCA Probe Detection using Switched-Capacitor based Patterned-Ground Co-planar Capacitive Asymmetry Sensing

IEEE Open Journal of Circuits and Systems

2023/7/24

Power Side-Channel Vulnerability Assessment of Lightweight Cryptographic Scheme, XOODYAK

2023/7/9

Power and EM SCA Resilience in 65nm AES-256 Exploiting Clock-Slew Dependent Variability in CMOS Digital Circuits

2023/4/23

A - - ASIC for Post-Quantum Key-Encapsulation Mechanism Saber With Low-Latency Striding Toom–Cook Multiplication

IEEE Journal of Solid-State Circuits

2023/3/23

Improved EM side-channel analysis attack probe detection range utilizing co-planar capacitive asymmetry sensing

IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems

2023/1/6

A digital cascoded signature attenuation countermeasure with intelligent malicious voltage drop attack detector for EM/power SCA resilient parallel AES-256

2022/4/24

Electromagnetic analysis of integrated on-chip sensing loop for side-channel and fault-injection attack detection

IEEE Microwave and Wireless Components Letters

2022/4/13

EM SCA & FI self-awareness and resilience with single on-chip loop & ML classifiers

2022/3/14

EQS Res-HBC: A 65-nm Electro-Quasistatic Resonant 5–240 μW Human Whole-Body Powering and 2.19 μW Communication SoC With Automatic Maximum …

IEEE Journal of Solid-State Circuits

2022/1/25

EM SCA White-Box Analysis-Based Reduced Leakage Cell Design and Presilicon Evaluation

IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems

2022/1/18

Countermeasures against hardware side-channel attacks on cryptographic operations

2022/1/4

Istellar: Intermittent signature attenuation embedded crypto with low-level metal routing

2021/11/1

Syn-STELLAR: An EM/power SCA-resilient AES-256 with synthesis-friendly signature attenuation

IEEE Journal of Solid-State Circuits

2021/10/1

Em-x-dl: efficient cross-device deep learning side-channel attack with noisy em signatures

ACM Journal on Emerging Technologies in Computing Systems (JETC)

2021/9/29

Advanced EM/Power Side-Channel Attacks and Low-overhead Circuit-level Countermeasures

2021/7/26

See List of Professors in Debayan Das University(Purdue University)

Co-Authors

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