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首页> 外文期刊>Microsystem Technologies >Fabrication and analysis of the reflowed microlens arrays using JSR THB-130 N photoresist with different heat treatments
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Fabrication and analysis of the reflowed microlens arrays using JSR THB-130 N photoresist with different heat treatments

机译:使用不同热处理的JSR THB-130 N光致抗蚀剂制作和分析回流微透镜阵列

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摘要

This paper reports that the fabrication of the reflowed microlens by the negative tone JSR THB-130 N photoresist can be treated with different thermal treatments using hotplate and oven. The different disk or thin cylinder arrays with diameters of 40–70 μm and thickness of about 7.4 μm were patterned using photolithography technology, and baked at 220°C by two kinds of thermal treatments using hotplate and oven to form reflowed microlens arrays. The spot size of the refractive microlens was then measured by optical microscopy and the total focal length of refractive microlens was simulated by curve fitting the lens profiles. The resolution of the microlens arrays approaches to 400 dpi as coated with Hexamethyldisilizane material. The smallest spot size of about 2.72 μm at the nominal 40 μm microlensis is obtained by the oven heat treatment, and the shortest total focal length of about 150 μm at the nominal 40 μm microlens is achieved by the hotplate heat treatment. The reduced spot size and total focal length of the microlens could improve the density and performance of optical devices and imaging systems.
机译:本文报道负型JSR THB-130 N光致抗蚀剂制造的回流微透镜可以使用电炉和烤箱进行不同的热处理。使用光刻技术对直径为40-70μm,厚度约为7.4μm的不同的圆盘或薄圆柱阵列进行构图,然后使用加热板和烘箱通过两种热处理在220°C下烘烤,以形成回流的微透镜阵列。然后通过光学显微镜测量折射微透镜的光斑尺寸,并通过对透镜轮廓进行曲线拟合来模拟折射微透镜的总焦距。当用六甲基二硅氮烷材料涂覆时,微透镜阵列的分辨率接近400 dpi。标称40μmmicrolensis的最小光斑尺寸约为2.72μm,可通过烤箱热处理获得,标称40μmmicrolens的最短总焦距可通过热板热处理获得,约为150μm。微透镜的减小的光斑尺寸和总焦距可以提高光学设备和成像系统的密度和性能。

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  • 来源
    《Microsystem Technologies》 |2007年第6期|523-530|共8页
  • 作者

    C. K. Chung; Y. Z. Hong;

  • 作者单位

    Department of Mechanical Engineering and Center for Micro/Nano Science and Technology National Cheng Kung University Tainan Taiwan R.O.C.;

    Department of Mechanical Engineering and Center for Micro/Nano Science and Technology National Cheng Kung University Tainan Taiwan R.O.C.;

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