Highly integrated elastic island-structured printed circuit board with controlled young's modulus for stretchable electronics

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Abstract

Astretchable printed circuit board (PCB), which is an essential component of next-generation electronic devices, should be highly stretchable even at high levels of integration, as well as durable under repetitive stretching and patternable. Herein, an island-structured stretchable PCB composed of materials with controlled Young's modulus and viscosity by adding a reinforcing agent or controlling the degree of crosslinking is reported. Each material was fabricated with the most effective structures through a 3D printer. The PCB was able to stretch 71.3% even when highly integrated and was patterned so that various components could be mounted. When fully integrated, the stress applied to the mounted components was reduced by 99.9% even when stretched by over 70%. Consequently, a 4 x 4 array of capacitance sensors in a stretchable keypad demonstration using our PCB was shown to work, even at 50% stretching of the PCB.

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Cho, D., Kim, J., Jeong, P., Shim, W., Lee, S. Y., Choi, Y., & Jung, S. (2020). Highly integrated elastic island-structured printed circuit board with controlled young’s modulus for stretchable electronics. Micromachines, 11(6), 1–13. https://doi.org/10.3390/mi11060617

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