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Tunable Dielectric Materials and Devices for Broadband Wireless Communications

机译:宽带无线通信的可调介电材料和器件

摘要

Wireless and satellite communications are a rapidly growing industries which are slated for explosive growth into emerging countries as well as countries with advanced economies. The dominant trend in wireless communication systems is towards broadband applications such as multimedia file transfer, video transmission and Internet access. These applications require much higher data transmission rates than those currently used for voice transmission applications. To achieve these higher data rates, substantially larger bandwidths and higher carrier frequencies are required. A key roadblock to implementing these systems at K-band (18-26.5 GHz) and Ka-band (26.5-40 GHz) is the need to develop hardware which meets the requirements for high data rate transmission in a cost effective manner. In this chapter, we report on the status of tunable dielectric thin films for devices, such as resonators, filters, phased array antennas, and tunable oscillators, which utilize nonlinear tuning in the control elements. Paraelectric materials such as Barium Strontium Titanate ((Ba, Sr)TiO3) have dielectric constants which can be tuned by varying the magnitude of the electric field across the material. Therefore, these materials can be used to control the frequency and/or phase response of various devices such as electronically steerable phased array antennas, oscillators, and filters. Currently, tunable dielectric devices are being developed for applications which require high tunability, low loss, and good RF power-handling capabilities at microwave and millimeter-wave frequencies. These properties are strongly impacted by film microstructure and device design, and considerable developmental work is still required. However, in the last several years enormous progress has occurred in this field, validating the potential of tunable dielectric technology for broadband wireless communication applications. In this chapter we summarize how film processing techniques, microwave test configurations, and prototype devices have combined to drive the field to its current stage of development.
机译:无线和卫星通信是一个快速发展的行业,有望在新兴国家和发达经济体中实现爆炸性增长。无线通信系统的主要趋势是朝着宽带应用程序发展,例如多媒体文件传输,视频传输和Internet访问。这些应用程序需要比当前语音传输应用程序更高的数据传输速率。为了实现这些更高的数据速率,需要实质上更大的带宽和更高的载波频率。在K频段(18-26.5 GHz)和Ka频段(26.5-40 GHz)实施这些系统的关键障碍是需要开发一种硬件,该硬件能够以经济高效的方式满足高数据速率传输的要求。在本章中,我们报告了设备的可调谐介电薄膜的状态,例如谐振器,滤波器,相控阵天线和可调谐振荡器,它们在控制元件中利用了非线性调谐。诸如钛酸锶钡((Ba,Sr)TiO3)之类的顺电材料具有介电常数,可以通过改变材料两端的电场强度来对其进行调节。因此,这些材料可用于控制各种设备的频率和/或相位响应,例如电子可控相控阵天线,振荡器和滤波器。当前,可调谐介电设备正在开发用于需要高可调谐性,低损耗以及在微波和毫米波频率下具有良好的RF功率处理能力的应用中。这些性能受薄膜微结构和器件设计的强烈影响,仍然需要大量的开发工作。但是,在最近几年中,该领域取得了巨大进步,这证明了可调谐介电技术在宽带无线通信应用中的潜力。在本章中,我们总结了胶片处理技术,微波测试配置和原型设备如何结合起来以推动该领域发展到目前的发展阶段。

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