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A Ferromagnetic Particle Sensor Based on a Honeycomb Permanent Magnet for High Precision and High Throughput., , , , , и . IEEE Trans. Instrum. Meas., (2022)Effect of the Different Substrates and the Film Thickness on the Surface Roughness of Step Structure., , , , , , , , , и . NEMS, стр. 47-50. IEEE, (2021)A Fabry-Perot interferometer for high temperature measurement based on mode analysis., , , , , , , и . NEMS, стр. 812-815. IEEE, (2017)Range Analysis of Thermal Stress and Optimal Design for Tungsten-Rhenium Thin Film Thermocouples Based on Ceramic Substrates., , , , , , , и . Sensors, 17 (4): 857 (2017)A Highly Thermostable In2O3/ITO Thin Film Thermocouple Prepared via Screen Printing for High Temperature Measurements., , , , , , , , , и . Sensors, 18 (4): 958 (2018)Characterization of line edge roughness and line width roughness of nano-scale typical structures., , , , и . NEMS, стр. 299-303. IEEE Computer Society, (2009)Doping Ag in ZnO Nanorods to Improve the Performance of Related Enzymatic Glucose Sensors., , , , , и . Sensors, 17 (10): 2214 (2017)Mechanical properties analysis and process optimization for tungsten-rhenium thin film thermocouples sensor., , , , , , и . IEEE SENSORS, стр. 1-3. IEEE, (2017)A protected tungsten-rhenium thin film thermocouples sensor., , , , , , и . NEMS, стр. 796-799. IEEE, (2017)Measurement study of residual stress on tungsten-rhenium thin film thermocouples by nanoindentation technology., , , , , , и . NEMS, стр. 800-803. IEEE, (2017)