A Quantitative Analysis of Physical Security and Path Loss With Frequency for IBOB Channel

Author:

Datta Arunashish1ORCID,Nath Mayukh1ORCID,Chatterjee Baibhab1ORCID,Maity Shovan1,Sen Shreyas1ORCID

Affiliation:

1. School of Electrical and Computer Engineering, Purdue University, West Lafayette, IN, USA

Funder

National Science Foundation (NSF) Career Award

Publisher

Institute of Electrical and Electronics Engineers (IEEE)

Subject

Electrical and Electronic Engineering,Condensed Matter Physics

Reference20 articles.

1. BodyWire-HCI

2. Sub-μWRComm: 415-nW 1–10-kb/s Physically and Mathematically Secure Electro-Quasi-Static HBC Node for Authentication and Medical Applications

3. 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 Resonant Power Tracking

4. A 1.15?W 5.54 mm³ implant with a bidirectional neural sensor and stimulator SoC utilizing bi-phasic quasi-static brain communication achieving 6kbps-10Mbps uplink with compressive sensing and RO-PUF based collision avoidance;chatterjee;Proc Symp VLSI Circuits,2021

5. A 65nm 63.3?W 15Mbps transceiver with switched-capacitor adiabatic signaling and combinatorial-pulse-position modulation for body-worn video-sensing AR nodes;chatterjee;IEEE ISSCC Dig Tech Papers,2022

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