首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Design and fabrication of a compound-eye system using precision molded chalcogenide glass freeform microlens arrays
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Design and fabrication of a compound-eye system using precision molded chalcogenide glass freeform microlens arrays

机译:使用精密模塑硫族化物玻璃自由形状微透镜阵列的复合眼系的设计和制造

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摘要

In this research, an infrared compound eye system with 80 field of view was developed. This system features a design where a micro aperture array is sandwiched between two freeform microlens arrays. Each microlens array consists of three circles of microlenses. The microlens arrays were designed using Code V software and fabricated using a combination of ultraprecision diamond milling for mold fabrication and infrared glass molding process for microlens arrays. Double-sided anti-reflection coating was applied to both microlens arrays to reduce Fresnel reflection caused by high refractive index of the infrared glass. The micro aperture array imbedded in the camera model was 3D-printed polymer structure with a precision features for assembling the microlens arrays. In addition, the micro aperture array was also used to prevent crosstalks among neighboring channels. Test results showed this compound eye system can form high quality images within the designed field of view.
机译:在该研究中,开发了一种具有80个视野的红外复合眼系。 该系统具有设计,其中微孔阵列夹在两个自由形式微透镜阵列之间。 每个微透镜阵列由三个微透镜组成。 使用CODE V软件设计微透镜阵列,并使用超挑金刚石铣削的组合制造用于微透镜阵列的模具制造和红外玻璃模塑方法。 将双面抗反射涂层应用于微透镜阵列,以减少由红外玻璃的高折射率引起的菲涅耳反射。 嵌入在相机型号中的微孔阵列是3D印刷的聚合物结构,具有精确的特征,用于组装微透镜阵列。 此外,微孔阵列还用于防止相邻通道之间的串扰。 测试结果表明,该复合眼系可以在设计的视野中形成高质量的图像。

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