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Optical Properties of Metal Sandwiched ZnO/Ti/Cu/Ti/ZnO Thin Film., , , , , и . NEMS, стр. 574-577. IEEE, (2018)Effect of Oxidation on Conductivity Characteristics of Tungsten-Rhenium Thin-Film Thermocouples Sensor., , , , , , и . NEMS, стр. 114-117. IEEE, (2019)Research on Measurement and Process of Tungsten-Rhenium Thin Film Thermocouples Sensor., , , , , , и . NEMS, стр. 139-142. IEEE, (2018)Design and Simulation of a Wide-Bandwidth CMUTs Array with Dual-Mixed radii and Multi Operating Modes., , , , , , , , , и 1 other автор(ы). NEMS, стр. 299-302. IEEE, (2021)A Tungsten-Rhenium Thin Film Thermocouples Sensor Based on AlN Transition Layer., , , , , , , , , и . NEMS, стр. 826-829. IEEE, (2021)One kind of wide bandwidth and high radiation efficiency antenna for microwave manipulation of NV color centers., , , , и . NEMS, стр. 502-505. IEEE, (2019)A Flexible Tactile Sensor for Three-dimensional Force Detection Based on Piezoelectric Sensing., , , , , , , , , и . NEMS, стр. 1908-1911. IEEE, (2021)Range Analysis of Thermal Stress and Optimal Design for Tungsten-Rhenium Thin Film Thermocouples Based on Ceramic Substrates., , , , , , , и . Sensors, 17 (4): 857 (2017)Optical Fiber MEMS Micro Pressure Sensor Based On Beam-membrane Structure., , , , , , и . NEMS, стр. 135-138. IEEE, (2019)A Fabry-Perot interferometer for high temperature measurement based on mode analysis., , , , , , , и . NEMS, стр. 812-815. IEEE, (2017)