Polymer–ceramic composites for microwave applications: fabrication and performance assessment
S Koulouridis, G Kiziltas, Y Zhou… - IEEE Transactions …, 2006 - ieeexplore.ieee.org
IEEE Transactions on Microwave Theory and Techniques, 2006•ieeexplore.ieee.org
We present a novel technique to fabricate conformal and pliable substrates for microwave
applications including systems-on-package. The produced materials are fabricated by
combining ceramic powders with polymers to generate a high-contrast substrate that is
concurrently pliable (bendable). Several such polymer-ceramic substrates are fabricated
and used to examine the performance of a patch antenna and a coupled line filter. This
paper presents the substrate mixing method while measurements are given to evaluate the …
applications including systems-on-package. The produced materials are fabricated by
combining ceramic powders with polymers to generate a high-contrast substrate that is
concurrently pliable (bendable). Several such polymer-ceramic substrates are fabricated
and used to examine the performance of a patch antenna and a coupled line filter. This
paper presents the substrate mixing method while measurements are given to evaluate the …
We present a novel technique to fabricate conformal and pliable substrates for microwave applications including systems-on-package. The produced materials are fabricated by combining ceramic powders with polymers to generate a high-contrast substrate that is concurrently pliable (bendable). Several such polymer-ceramic substrates are fabricated and used to examine the performance of a patch antenna and a coupled line filter. This paper presents the substrate mixing method while measurements are given to evaluate the loss performance of the substrates. Overall, the fabricated composites lead to flexible substrates with a permittivity of up to epsiv r =20 and sufficiently low loss
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