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This work advances antenna design by integrating intelligent flexibility. Rather than relying on traditional FR4 substrates, it introduces a cost-effective polyamide alternative, closely matching FR4's dielectric properties, to create a resilient, self-correcting dipole antenna. This nuanced approach overcomes the inherent performance challenges of substrate thinning, ensuring consistent operation even under stress. The switch from PDMS to polyamide, coupled with clever design, quietly expands the potential of stretchable electronics in critical fields like communication and biomedicine.

Produktbeschreibung
This work advances antenna design by integrating intelligent flexibility. Rather than relying on traditional FR4 substrates, it introduces a cost-effective polyamide alternative, closely matching FR4's dielectric properties, to create a resilient, self-correcting dipole antenna. This nuanced approach overcomes the inherent performance challenges of substrate thinning, ensuring consistent operation even under stress. The switch from PDMS to polyamide, coupled with clever design, quietly expands the potential of stretchable electronics in critical fields like communication and biomedicine.
Autorenporträt
Dr.Rameez Shamalik Completed his PhD in E&TC from GHRCEM, SPPU and received his BE & ME degree from the Department of Electronics and Telecommunications Engineering of Savitribai Phule Pune University in 2008 & 2013 respectively. He has more than 16 years experience in teaching including research.