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Teaching Experiment Design and Research ofFlexible Wireless Driven LED Devices
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QIN Guofeng,TANG Liuyan ,LEI Sheng,QlAO Yurun,WANG Gaobin ,ZHANG Yuguo,JlA Qingyan*,LI Peng*
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Abstract
Electromagnetic induction , as an important theoretical basis of wireless power technology , usesmagnetic flux changes to generate induced electromotive force, providing a more convenient and securecontaetless power supply for electronie produets. In order to enhanee students’ experimental interest and skillsas well as further cultivate their awareness of scientific research and innovation .a flexible wireless driven LE)device manulfacturing experiment based on the principle of magnetic coupling resonance was designed. Through actively participating in the whole process of fabrieating the flexible wireless LED device , students can fullyunderstand and learn the principle of magnetic coupling resonance ,circuit design ,circuit simulation modelingcircuit board printing and production, electrical performance detection, and other related knowledge. Meanwhile , this experiment aims to develop students’abilities in analyzing experimental data and problem-solving.
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Published: 25 August 2024
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[1] |
XIANG Yangqin, CHEN Yating , LIN Fangzhu , WANG Xiangyu , ZHU Fayu , CHEN Shanshan , XU Luoyuan .
Design and Implementation of Simulation Experimental Platform for Pulse Nuclear Magnetic Resonance
[J]. Physical Experiment of College, 2024, 37(1): 92-98. |
[2] |
WANG Cuiping, YAO Mengyu, YE Liu, LI Aixia, ZHANG Ziyun, DAI Peng.
Progress and Applications of Electron Spin Resonance in Biology
[J]. Physical Experiment of College, 2020, 33(1): 29-33. |
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