[{"title":"( 14 个子文件 966KB ) FDTD滤波器仿真与传感模型构建:涵盖MZI、微环谐振器、亚波长光栅等结构的光子晶体微腔仿真指导及Q值优化与电场Ey图研究,关于FDTD滤波器仿真及多种光传感模型搭建指导,包括微环谐振器、亚波长光栅等","children":[{"title":"2.jpg <span style='color:#111;'> 17.10KB </span>","children":null,"spread":false},{"title":"中的传感器模型设计与滤波器仿真深入探讨微.html <span style='color:#111;'> 225.12KB </span>","children":null,"spread":false},{"title":"中的滤波器仿真建立与光子晶体微腔的仿真搭建一滤波.docx <span style='color:#111;'> 67.99KB </span>","children":null,"spread":false},{"title":"1.jpg <span style='color:#111;'> 18.01KB </span>","children":null,"spread":false},{"title":"标题多维光子晶体与滤波器仿真之路探寻亚波长下的.docx <span style='color:#111;'> 66.67KB </span>","children":null,"spread":false},{"title":"技术博客文章中的滤波器与传感模型研究一引.docx <span style='color:#111;'> 66.53KB </span>","children":null,"spread":false},{"title":"基于的单片机超声波测距技术结合温度补偿与显示.docx <span style='color:#111;'> 65.80KB </span>","children":null,"spread":false},{"title":"中的滤波器仿真与传感模型构建在这个快速发展的科.docx <span style='color:#111;'> 66.67KB </span>","children":null,"spread":false},{"title":"基于聚类的最优聚类个数确定策略分析.docx <span style='color:#111;'> 67.99KB </span>","children":null,"spread":false},{"title":"是一种常用的电磁波传播仿真方法具有模拟宽频带.docx <span style='color:#111;'> 66.53KB </span>","children":null,"spread":false},{"title":"中的传感模型与滤波器仿真深入解析微结构的应用随.docx <span style='color:#111;'> 66.09KB </span>","children":null,"spread":false},{"title":"3.jpg <span style='color:#111;'> 68.68KB </span>","children":null,"spread":false},{"title":"中的滤波器仿真的建立传感模型的建立包括微环.html <span style='color:#111;'> 225.22KB </span>","children":null,"spread":false},{"title":"4.jpg <span style='color:#111;'> 43.20KB </span>","children":null,"spread":false}],"spread":true}]