Simultaneous Digital Communication and Deformation Sensing over a Single Stretchable Interconnect

📅 2026-08-26
📈 Citations: 0
Influential: 0
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🤖 AI Summary
该研究通过在可拉伸液态金属互连中调制数字信号幅度,实现同时进行数字通信和变形感知,无需额外的传感元件。
📝 Abstract
Stretchable hybrid electronics integrate rigid solid-state electronics with stretchable materials and structures to achieve both high deformability and stable electronic performance. However, most existing systems treat stretchability only as a mechanical attribute without exploiting device deformation to encode its own mechanical state. This problem arises from adapting conventional rigid circuit architectures to stretchable substrates, affording a loss in compatibility with the sensors required for strain measurement. This study addresses this issue by proposing a communication-integrated deformation sensing architecture for stretchable hybrid devices. In the proposed approach, standard universal asynchronous receiver-transmitter digital signals transmitted between rigid nodes are amplitude-modulated by strain-induced resistance changes in stretchable liquid metal interconnects. By reading both amplitude changes and digital patterns, the system enables simultaneous digital communication and self-deformation sensing without requiring additional stretchable sensing elements. The architecture is demonstrated in a multi-node system and applied to wearable sensing and self-deformation mapping devices. By extending the integration of rigid circuits and soft elements from the hardware level to the system level, this study provides a novel design paradigm for stretchable electronic systems that inherently utilize their own deformation as functional information.
Problem

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

stretchable hybrid electronics
deformation sensing
rigid circuit architectures
strain measurement
liquid metal interconnects
Innovation

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

deformation sensing
digital communication
stretchable interconnects
amplitude modulation
liquid metal
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Y
Yuji Isano
Department of Mechanical Engineering, Yokohama National University, Yokohama, Kanagawa, Japan
H
Hiroki Ota
Graduate School of System Integration, Yokohama National University, Yokohama, Kanagawa, Japan; Institute of Advanced Sciences, Yokohama National University, Yokohama, Kanagawa, Japan