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Shock and vibration testing of digital micromirror devices (DMDs) for space-based applications

机译:用于太空应用的数字微镜设备(DMD)的冲击和振动测试

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Digital micromirror devices (DMDs) are a mature commercial technology, with several potential applications in space-based instruments. In particular, DMDs are currently the only practical alternative to microshutter arrays as slit mask generators for space-based multi-object spectrometers (MOS). A DMD is an array of micromirrors which can be addressed individually and tilted into one of two states (+/- 12 w.r.t. the device plane), which makes it a very versatile binary light modulator. These devices are widely utilized in a variety of optical systems, especially projectors. Recently, the use of DMDs for ground-based multi-object spectrometers has been demonstrated. The compact size and small weight of DMDs makes them especially attractive for a space-based MOS, where the only current alternative is an array of microshutters. DMDs were originally designed for visible range applications; therefore the protective glass window they are supplied with does not have sufficient throughput in the UV or IR and has to be replaced. In this work, we describe the procedure by which we replaced the standard window with UV-grade fused silica, sapphire and magnesium fluoride. We performed initial shock and vibrational tests to evaluate the mechanical robustness of the re-windowed devices, to investigate the ability of these devices to survive launch conditions. We performed residual gas analysis to study the outgassing properties of the new DMDs and evaluate the ability of the new seals to protect the device. The tested devices show near-hermetic seals before and after the mechanical testing.
机译:数字微镜设备(DMD)是一项成熟的商业技术,在天基仪器中有多种潜在应用。特别是,DMD目前是微快门阵列的唯一实用替代品,它是天基多目标光谱仪(MOS)的狭缝掩模发生器。 DMD是微镜阵列,可以单独寻址并倾斜成两种状态之一(器件平面+/- 12 w.r.t.),这使其成为一种非常通用的二进制光调制器。这些设备广泛用于各种光学系统,尤其是投影仪中。最近,已证明将DMD用于地面多目标光谱仪。 DMD的紧凑尺寸和较小的重量使其特别适合于基于空间的MOS,而目前唯一的替代方案是微快门阵列。 DMD最初是为可见范围的应用而设计的。因此,提供给他们的防护玻璃窗在紫外线或红外光下没有足够的通过量,必须更换。在这项工作中,我们描述了用UV级熔融石英,蓝宝石和氟化镁替换标准窗口的过程。我们进行了初始冲击和振动测试,以评估重新开窗设备的机械强度,以调查这些设备在发射条件下的承受能力。我们进行了残留气体分析,以研究新型DMD的除气性能,并评估了新型密封件保护装置的能力。在进行机械测试之前和之后,被测设备均显示出接近气密的密封。

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