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Design, fabrication, and testing of silicon microgimbals for super-compact rigid disk drives

机译:设计,制造和测试用于超紧凑型刚性磁盘驱动器的硅微片

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摘要

This paper documents results related to design optimization, fabrication process refinement, and micron-level static/dynamic testing of silicon micromachined microgimbals that have applications in super-compact computer disk drives as well as many other engineering applications of microstructures and microactuators requiring significant out-of-plane motions. The objective of the optimization effort is to increase the in-plane to out-of-plane stiffness ratio in order to maximize compliance and servo bandwidth and to increase the displacement to strain ratio to maximize the shock resistance of the microgimbals, while that of the process modification effort is to simplify in order to reduce manufacturing cost. The testing effort is to characterize both the static and dynamic performance using precision instrumentation in order to compare various prototype designs.
机译:本文记录了与硅微加工微型微球的设计优化,制造工艺优化和微米级静态/动态测试相关的结果,这些微微型微球具有超小型计算机磁盘驱动器的应用,以及许多其他需要大量结构设计的微结构和微致动器的工程应用。平面运动。优化工作的目标是增加平面内与平面外的刚度比,以最大程度地提高柔韧性和伺服带宽,并增加位移应变比,以最大程度地提高微梁的抗冲击性,而为了减少制造成本,简化了工艺修改工作。测试工作是使用精密仪器表征静态和动态性能,以便比较各种原型设计。

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