X Band Test Bench Developement Requiring High Voltage Bias for Electronic Tunable Devices Using Anisotropic Materials

F. Krasinski, B. Splingart, U. Maschke, C. Legrand
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Abstract

In this paper, we present complete operating bench experiments used to characterize a type of tunable devices in the microwave domain. This type of tunable devices requires unusual high AC/DC bias voltage (up to 400V). The experimental characterization system is based on the reflection and transmission parameters of a quadrupole placed between the two ports of a network analyzer, in the 8-12 GHz range. For the dielectric characterizations of materials, it is possible to determine the real part (’) and the imaginary part (’’) of the dielectric constant ( of the material. For tunable devices using polymer dispersed liquid crystals, it is necessary to apply a high electric driving field (up to 4V/µm @1 kHz). In the test bench, we used a microstrip phase shifter which presents a 100µm-thick active part. Therefore a 400V external voltage bias device was developed. We first present an applicative circuit, that is, a phase shifter, which is machined to study the electronic behaviors of anisotropic materials. We then present the design and characteristics of the bias circuit. Secondly, we present experimental results for two Polymer Dispersed Liquid Crystals made with two different monomers (NOA65-Norland, and PolyPropylene Glycol Di Acrylate540), with a commercial liquid crystal (5CB-Merck).
使用各向异性材料的电子可调谐器件需要高电压偏置的X波段试验台的开发
在本文中,我们提出了完整的操作台架实验,用于表征微波领域的一类可调谐器件。这种类型的可调谐器件需要异常高的交流/直流偏置电压(高达400V)。实验表征系统基于放置在网络分析仪两个端口之间的四极杆在8-12 GHz范围内的反射和透射参数。对于材料的介电特性,可以确定材料的介电常数()的实部( ' ')和虚部( ' ' ')。对于使用聚合物分散液晶的可调谐器件,需要施加高电驱动场(高达4V/µm @1 kHz)。在试验台中,我们使用了一个微带移相器,其有源部分厚度为100 μ m。为此,研制了400V外置偏压装置。我们首先提出了一种应用电路,即移相器,它被加工成研究各向异性材料的电子行为。然后给出了偏置电路的设计和特性。其次,我们给出了用两种不同单体(NOA65-Norland和聚丙烯乙二醇二丙烯酸酯540)和商用液晶(5CB-Merck)制成的两种聚合物分散液晶的实验结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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