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Complex MEMS Device: Microshutter Array System for Space Applications

机译:复杂MEMS设备:用于空间应用的MicroShutter阵列系统

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A complex MEMS device, microshutter array system, is being developed at NASA Goddard Space Flight Center for use as an aperture array for a Near-Infrared Spectrometer (NirSpec). The instrument will be carried on the James Webb Space Telescope (JWST), the next generation of space telescope after Hubble Space Telescope retires. The microshutter arrays (MSAs) are designed for the selective transmission of light with high efficiency and high contrast. Arrays are close-packed silicon nitride membranes with a pixel size close to 100×200 μm. Individual shutters are patterned with a torsion flexure permitting shutters to open 90 degrees with a minimized mechanical stress concentration. Light shields are made on to each shutter for light leak prevention so to enhance optical contrast. Shutters are actuated magnetically, latched and addressed electrostatically. The shutter arrays are fabricated using MEMS bulk-micromachining technologies and packaged using single-sided indium flip-chip bonding technology. The MSA flight concept consists of a mosaic of 2 × 2 format of four fully addressable 365 × 171 arrays placed in the JWST optical path at the focal plane.
机译:在NASA戈达德太空飞行中心开发了一个复杂的MEMS器件MicroShutter阵列系统,以用作近红外光谱仪(NIRSPEC)的光圈阵列。该仪器将在詹姆斯韦布斯望远镜(JWST)上进行,下一代太空望远镜在哈勃太空望远镜退休后。 Microshuter阵列(MSA)设计用于具有高效率和高对比度的光选择性传输。阵列是近填充硅氮化硅膜,像素尺寸接近100×200μm。单个百叶窗采用扭转挠度,允许百叶窗以最小化的机械应力浓度打开90度。将遮光罩用于每个快门,用于防漏,从而增强光学对比度。百叶窗被磁性,锁定和静电致动。使用MEMS散装微机械技术和使用单面铟倒装芯片键合技术进行包装的快门阵列。 MSA飞行概念由2×2格式的MOSAIC组成,其四个完全可寻址的365×171阵列放置在焦平面的JWST光路中。

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