首页> 外文会议>Conference on Optoelectronic Interconnects, Integrated Circuits, and Packaging Jan 22-25, 2002 San Jose, USA >Microjet Printing of High Precision Microlens Array for Packaging of Fiber-Optic Components
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Microjet Printing of High Precision Microlens Array for Packaging of Fiber-Optic Components

机译:高精度微透镜阵列的微喷射印刷,用于包装光纤组件

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A significant advance in technical capability has recently been achieved in the fabrication of refractive microlens arrays by microjet printing. This advance enables control of lens diameter and center-to-center distances to accuracies on the order of +-1μm, and of focal length variations within an array to less than the +-1%. Such accuracies are especially important for microlens arrays used for MOEMS device interconnects to optical fibers because of the relatively long free space optical path lengths required for such applications. The new process also enables the printing of microlenses of a given diameter with aspect ratios and focal lengths varying over a wide range (e.g., f/l-f/5). The profile of plano-convex microlenses printed by this method have exhibited less than a quarter wavelength of deviation from spherical surface. The thermal durability of the optical epoxies used for microlens printing enables both cycling temperature up to 200℃ and continuous exposure to thousands of hours at 85℃, without affecting microlens performance. The microjet printing of lensed fibers provides another solution for fiber beam shaping and collimation with low production cost.
机译:最近在通过微喷射印刷制造折射微透镜阵列中已经实现了技术能力的重大进步。这一进步使得能够将透镜直径和中心距控制到+-1μm的精度,并将阵列内的焦距变化控制在小于+ -1%的范围内。由于用于此类应用所需的相对较长的自由空间光程长度,这种精度对于用于MOEMS器件互连至光纤的微透镜阵列尤为重要。该新方法还能够打印具有宽高比和焦距在宽范围内变化的给定直径的微透镜(例如f / l-f / 5)。通过这种方法印刷的平凸微透镜的轮廓显示出与球形表面的偏差小于四分之一波长。用于微透镜印刷的光学环氧树脂的热耐久性可实现高达200℃的循环温度以及在85℃下连续暴露数千小时,而不会影响微透镜的性能。透镜纤维的微喷射印刷以较低的生产成本为纤维束成形和准直提供了另一种解决方案。

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