2009Digest - IEEE Antennas and Propagation Society. International SymposiumRequires access

Resistive loading implemented by direct-write fabrication

Andrew W. Downs, Thomas P. Montoya

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Abstract

In this paper, results are presented for resistive loads constructed by direct-write fabrication on rigid microwave substrates. The key innovation in this work is the implementation of distributed resistive loading by direct-write fabrication at microwave/RF frequencies, as opposed to using discrete surface mount chip resistors. The goal of this research is to extend the range of devices that can be constructed by direct-write fabrication at these frequencies on non-ceramic substrates.

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What this paper is about

In this paper, results are presented for resistive loads constructed by direct-write fabrication on rigid microwave substrates. The key innovation in this work is the implementation of distributed resistive loading by direct-write fabrication at microwave/RF frequencies, as opposed to using discrete surface mount chip resistors. The goal of this research is to extend the range of devices that can be constructed by direct-write fabrication at these frequencies on non-ceramic substrates.

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Available abstract

In this paper, results are presented for resistive loads constructed by direct-write fabrication on rigid microwave substrates. The key innovation in this work is the implementation of distributed resistive loading by direct-write fabrication at microwave/RF frequencies, as opposed to using discrete surface mount chip resistors. The goal of this research is to extend the range of devices that can be constructed by direct-write fabrication at these frequencies on non-ceramic substrates.

Key concepts: Fabrication, Resistive touchscreen, Resistor, Microwave, Materials science, Optoelectronics, Electronic engineering, Ceramic

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