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嵌入低温共烧陶瓷的压电主动镜悬架系统。

A piezoelectric active mirror suspension system embedded into low-temperature cofired ceramic.

机构信息

Microelectronics and Materials Physics Laboratories, Electronics Materials, Packaging, and Reliability Techniques Research Group of Infotech Oulu, University of Oulu, Oulu, Finland.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2012 Sep;59(9):1990-5. doi: 10.1109/TUFFC.2012.2418.

Abstract

Low-temperature cofired ceramic (LTCC) has proven to be a cost-effective, flexible technology for producing complicated structures such as sensors, actuators, and microsystems. This paper presents a piezoelectric active mirror suspension system embedded into LTCC. In the structure, the LTCC was used as a package, for the passive layers of piezoelectric monomorphs, as support for the mirrors, and as a substrate for the conductors. The active mirror structure, 17 mm in diameter, was made by compiling 20 LTCC layers using common LTCC processing techniques. Each sample contained a laser-micromachined bulk lead zirconate titanate (PZT) structure which formed a monomorph with the LTCC during the firing process. A mirror substrate (diameter 4 mm) was mounted in the middle of the monomorph arms for evaluation of the positioning performance, where each of the three arms had independent signal electrodes and a common ground electrode. Electrical and electromechanical properties were investigated with an LCR meter, network analyzer, and laser vibrometer for the different arms and the mirror. The active mirror structure exhibited more than 1 μm dc displacement for mirror leveling and also allowed small changes in mirror angle up to 0.06°. The first bending resonance frequency of the structure with the mirror was detected at 11.31 kHz with 4.0 μm displacement; 13.02 kHz and 2.7 μm were obtained without the mirror. The structure exhibited characteristics feasible for further utilization in tunable Fabry-Perot filter applications, allowing the mounting of active mirrors on both sides with distance and angle control.

摘要

低温共烧陶瓷(LTCC)已被证明是一种具有成本效益的灵活技术,可用于制造复杂结构,如传感器、执行器和微系统。本文提出了一种嵌入 LTCC 的压电主动镜悬浮系统。在该结构中,LTCC 用作封装,用于压电单模的无源层,作为镜子的支撑,以及导体的衬底。直径为 17 毫米的主动镜结构由 20 层 LTCC 层通过普通 LTCC 加工技术编译而成。每个样品都包含一个激光微机械加工的块状锆钛酸铅(PZT)结构,该结构在烧制过程中与 LTCC 形成单模。一个镜基板(直径 4 毫米)安装在单模臂的中间,用于评估定位性能,其中三个臂中的每一个都有独立的信号电极和公共接地电极。使用 LCR 仪表、网络分析仪和激光测振仪对不同的臂和镜子进行了电和机电性能的研究。主动镜结构表现出超过 1μm 的直流位移,用于镜调平,并且允许镜角小至 0.06°的变化。带有镜子的结构的第一弯曲共振频率在 11.31 kHz 时检测到 4.0μm 的位移;没有镜子时,获得了 13.02 kHz 和 2.7μm 的位移。该结构表现出的特性可进一步用于可调谐法布里-珀罗滤波器应用,允许在两侧安装带有距离和角度控制的主动镜。

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