标题: | 钻石表面声波滤波器之制作与特性分析 Fabrication and Characterization Analysis of Diamond SAW Filter |
作者: | 管正平 Cheng-Ping Kuan 陈家富 Chia-Fu chen 材料科学与工程学系 |
关键字: | 表面声波滤波器;热灯丝CVD;钻石;氧化锌;SAW filter;HFCVD;Diamond;ZnO |
公开日期: | 2000 |
摘要: | 钻石表面声波滤波器之制作与特性分析 研究生 : 管正平 指导教授 : 陈家富 博士 国立交通大学材料与工程研究所 摘要 在各种不同的CVD钻石应用中,由于钻石的高表面声波传递速度,和即使是多结晶的钻石膜,亦得以应用在表面声波元件中,而且在钻石膜厚上的要求,只需要几个微米的厚度就足够了,因为其能量都只集中在表面,所以能够在低成本下大量地生产.。 想要到达GHz范围内的高频表面声波元件,一般较传统的表面声波元件的材料例如石英、铌酸锂、钽酸锂是很难做到的。由于近几年来CVD钻石成长技术,我们可以来研究表面声波元件在含有钻石结构上的制作,而且这个结构和系统也已经可以实际应用在表面声波滤波器上了。此外,钻石的高热传导率和其优异的高弹性常数也被发现能够用在超高功率控制方面,所以钻石除了在高频应用上的特性,比一般的传统材料优秀外,甚至应用在低频时,也比传统材料胜出了许多。 在本研究中,我们成功的利用热灯丝CVD法,在矽晶片成长了大面积的多晶钻石膜,其厚度将近30毫米。而氧化锌由于其极佳的压电特性,及其易于利用溅渡法沉积于各种基板上的特性,近年来广泛地被选取为成长压电薄膜的材料。高均匀品质的钻石膜结合上高优选方向的氧化锌薄膜及利用举离法所研制出的5毫米的交趾状电极而制作出完美性能的钻石表面声波滤波器。 而且,我们还比较了在相同的交趾状电极下,氧化锌/钻石/矽,以及氧化锌/矽,这二种结构的表面声波滤波器的特性差异。结果发现钻石表面声波滤波器在各方面的特性皆优于无钻石薄膜者。详细的流程及结果,都会列在本篇论文之中。 最后,我们也相信在未来的通讯系统之中,以钻石为基材的表面声波元件也将被会发现具有广大的应用在高频元件上。 Fabrication and Characterization Analysis of Diamond SAW Filter Student : Cheng-Ping Kuan Advisor : Dr. Chia-Fu Chen Institute of Materials Science and Engineering National Chiao Tung Unversity Abstract Amongst the varieties of applications of Chemical Vapor Deposition (CVD) diamond, the Surface Acoustic Wave (SAW) device using its high SAW velocity, is supposed to be one of the practical applications, because polycrystalline film can be utilized. And the thicknesses of only several microns are sufficient because the energy concentration is on the surface, which enables low-cost manufacturing. The SAW devices with a high frequency, on the GHz range, and which are hard to realize via SAW devices using conventional materials such as quartz, lithium niobate (LiNbO3), and lithium tantalate (LiTaO3). Due to the recent progress in CVD-diamond growth technology, we have studied SAW devices fabricated by structures with polycrystalline diamond. And it has been found that systems involving these materials are practical for high-frequency SAW filters. Moreover, the high thermal conductivity, as well as the high elastic constant, of diamond are found to enable super-high power-handing capabilities, which surpass the characteristics of conventional materials even at low frequency. In this work, we have been successfully developed the large areas of polycrystalline diamond on silicon by Hot Filament CVD (HFCVD). The thickness of diamond films are about 30µm. Zinc Oxide, which has strong piezoelectric effect and can be sputtered on a variety of substrates, is a nature choice as the piezoelectric film layer in recent years. High uniformity and quality of diamond films associated with highly preferred orientation ZnO thin film on above and the 5µm interdigital transducers (IDTs) fabricated by lift-off process exhibit wonderful performance of diamond SAW filters. Moreover we compare the structures of ZnO/Diamond/Silicon and ZnO/Silicon on the characteristics of SAW filters with the same interdigital transducers (IDTs). We found the Diamond SAW Filter was much better than the ZnO SAW Filter. The details and results will be presented in this thesis. And we believe that the SAW devices based on diamond will also find broad applications on high frequency devices in future communication systems. Keywords: SAW filter; HFCVD; Diamond; ZnO |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#NT890159052 http://hdl.handle.net/11536/66675 |
显示于类别: | Thesis |