首页> 外文会议>Proceedings of the 2010 5th IEEE International Conference on Nano/Micro Engineered and Molecular Systems >Optimum electrostatic force control for fabricating a hybrid UV-curable aspheric lens
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Optimum electrostatic force control for fabricating a hybrid UV-curable aspheric lens

机译:最佳静电力控制,用于制造混合型紫外线可固化非球面透镜

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The purpose of this paper is to use a hybrid structure and the electrostatic force to fabricate aspheric lenses with high Blu-Ray transmittance (95% at 405 nm). The hybrid structure is composed of Norland Optical Adhesive 63 (NOA63) (refractive index: 1.5802 at 405 nm) and BK-7 glass (refractive index: 1.5302). OSLO and CFD software was used to simulate the gradient of the electric field between the top and bottom electrodes and to produce the optimum bottom electrode design. Different electrode designs were also tested in order to optimize the morphology of the lens profile design. The resulting lenses have a clear aperture of approximately 0.92 mm, the maximum shape error is less than 0.18 %, and the spot size of the fabricated aspheric lenses can be controlled to approximately 0.504 μm. This technology can be used to fabricate lenses for applications in micro-optical systems.
机译:本文的目的是使用混合结构和静电力来制造具有高蓝光透射率(在405 nm处为95%)的非球面透镜。该混合结构由Norland光学粘合剂63(NOA63)(在405nm处的折射率:1.5802)和BK-7玻璃(折射率:1.5302)组成。使用OSLO和CFD软件来模拟顶部和底部电极之间的电场梯度,并产生最佳的底部电极设计。为了优化镜片轮廓设计的形态,还测试了不同的电极设计。所得的透镜具有约0.92mm的透明孔径,最大形状误差小于0.18%,并且所制造的非球面透镜的光斑尺寸可被控制为约0.504μm。该技术可用于制造用于微光学系统的透镜。

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