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首页> 外文期刊>Journal of Microelectromechanical Systems >Ceramic Film Packaging for 2-D Thermal Wind Sensor Using LTCC Technology
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Ceramic Film Packaging for 2-D Thermal Wind Sensor Using LTCC Technology

机译:采用LTCC技术的二维热风传感器陶瓷膜包装

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摘要

In this paper, the design, fabrication, and characterization of a robust MEMS thermal wind sensor utilizing ceramic film packaging are proposed. The ceramic film is fabricated by means of low temperature co-fired ceramic (LTCC) technology, achieving the excellent adhesion between silicon substrate and ceramic film without any thermal adhesive. The most important is that the adverse effects of the packaging on the performance of the thermal wind sensor can be minimized by adjusting the thickness and thermal conductivity of the ceramic film during the preparation of the ceramic slurry. The influences of thickness and thermal conductivity of ceramic film on the performance of sensor have been simulated by finite element method, and the results are in reasonable agreement with theoretical analysis. The proposed sensors were tested and calibrated in a wind tunnel. Experiments results demonstrate that the sensitivity of the proposed sensor is decreased only 4.7, compared with the sensor without ceramic film. The maximum measurement error of the proposed sensor in wind speed and direction is 0.66 m/s and 5, respectively. Compared with the sensor packaged with $250mu ext{m}$ ceramic carrier, the heating power of the proposed sensor is reduced by nearly 50 and the sensitivity is increased by an order of magnitude at the same time.
机译:本文提出了一种利用陶瓷膜封装的鲁棒MEMS热风传感器的设计,制造和特性。陶瓷薄膜是通过低温共烧陶瓷(LTCC)技术制成的,在没有任何热粘合的情况下,可在硅基板和陶瓷薄膜之间实现出色的粘合。最重要的是,通过在陶瓷浆料的制备过程中调节陶瓷膜的厚度和导热率,可以将包装对热风传感器性能的不利影响降至最低。用有限元方法模拟了陶瓷膜的厚度和导热系数对传感器性能的影响,其结果与理论分析相吻合。拟议的传感器在风洞中进行了测试和校准。实验结果表明,与不带陶瓷膜的传感器相比,该传感器的灵敏度仅降低了4.7。所提出的传感器在风速和风向上的最大测量误差分别为0.66 m / s和5。与包装有$ 250 mu text {m} $陶瓷载体的传感器相比,该传感器的加热功率降低了近50倍,同时灵敏度提高了一个数量级。

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