首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >DE-TETHERING OF METALLIC AND POLYMERIC MEMS/NEMS PARTS FOR THE DIRECT PICK-AND-PLACE ASSEMBLY OF 3D MICROSYSTEM
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DE-TETHERING OF METALLIC AND POLYMERIC MEMS/NEMS PARTS FOR THE DIRECT PICK-AND-PLACE ASSEMBLY OF 3D MICROSYSTEM

机译:金属和聚合物MEMS / NEMS零件的去系剖去3D微系统的直接拾取和放置组件

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We report our study on several de-tethering methods for various metallic and polymeric MEMS and NEMS parts including thick (30~100μm) metallic (nickel and its alloys) MEMS parts, sub-micron (350 nm) feature size 1μm thick metallic NEMS parts, and thick polymer/metal bi-layer (polymer ~50μm, metal ~2μm) MEMS parts. The conventional stress-based de-tethering used in silicon would not be effective for all of these three types of devices. High current injection through narrow tethers was found to be effective and reproducible means of de-tethering thick metallic MEMS parts. But such a method could not be applied for metallic NEMS and polymer/metal bi-layer MEMS parts, as large areas near tethers were burned even with significantly reduced amount of currents. In order to de-tether these NEMS and polymer/metal bi-layer devices, we performed the milling of tethers using a focused ion beam. Very low current (20 pA) ion beam was found to be very effective means of de-tethering the metallic NEMS parts. Relatively larger current (0.3 nA) was found to be good for the polymer/metal bi-layer parts. We demonstrated 3D assembly and/or complete packaging of some of the de-tethered MEMS parts.
机译:我们向各种金属和聚合物MEMS和NEMS部件的几种去系束性方法报告了我们的研究,包括厚(30〜100μm)金属(镍及其合金)MEMS部件,亚微米(350nm)特征尺寸1μm厚的金属NEMS部件,厚聚合物/金属双层(聚合物〜50μm,金属〜2μm)MEMS部件。在硅中使用的常规应力的脱胸部对于所有这三种类型的设备都不是有效的。发现通过窄的系绳的高电流注射是有效的和可再现的脱脂金属MEMS部件的可生活方法。但是这种方法不能应用于金属NEM和聚合物/金属双层MEMS部件,因为即使电流大量减少,也会燃烧近硝基的大区域。为了使这些NEM和聚合物/金属双层器件去系,我们使用聚焦离子束进行测量的铣削。发现非常低的电流(20Pa)离子束是非常有效的脱节金属NEMS部件的方法。发现相对较大的电流(0.3 NA)对于聚合物/金属双层部件有利。我们展示了3D组装和/或完全包装的一些脱丝MEMS部件。

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