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    • 56. 发明申请
    • TRANSDUCER-MIRROR STRUCTURE
    • 传感器 - 反射器结构
    • US20090316245A1
    • 2009-12-24
    • US12144382
    • 2008-06-23
    • Barrett E. Cole
    • Barrett E. Cole
    • G02B26/08B29D11/00
    • G02B5/0808G01N21/0303G01N21/031
    • An approach for obtaining a transducer mirror structure made from silicon. The structure may have a center portion and a perimeter portion that have an attachment between them which is made flexible after certain etching between the two portions. The attachment may be a web of links or legs. A force applied to the center portion at one end of the structure may cause the center portion to move relative to the perimeter portion. A piezo electric transducer or actuator may be attached to apply the force. An oxide layer, a thin layer of silicon and a mirror may be formed on the other end of the structure. The web of links or legs between the center and the perimeter portions may be established with an RIE etch of gaps through the structure to the oxide layer and an undercutting of the gaps with a KOH etch.
    • 用于获得由硅制成的传感器镜面结构的方法。 该结构可以具有在它们之间具有附接的中心部分和周边部分,其在两个部分之间的某些蚀刻之后被制成是柔性的。 附件可以是链接或腿的网。 在结构的一端处施加到中心部分的力可能导致中心部分相对于周边部分移动。 可以附接压电换能器或致动器以施加力。 可以在结构的另一端上形成氧化物层,薄的硅层和反射镜。 中心和周边部分之间的连接或腿的腹板可以通过RIE蚀刻通过结构到氧化物层的间隙和用KOH蚀刻的间隙的底切来建立。
    • 57. 发明申请
    • CAVITY RING-DOWN SPECTROSCOPY MIRROR, AND METHODS OF USING SAME
    • CAVITY RING-DOWN SPECTROSCOPY MIRROR,及其使用方法
    • US20090213463A1
    • 2009-08-27
    • US12037815
    • 2008-02-26
    • Barrett E. Cole
    • Barrett E. Cole
    • G02B5/08G02B1/10G01N21/59
    • G02B5/0833G01J3/02G01J3/021
    • A cavity ring-down spectroscopy (CRDS) mirror is constructed to resist migration of a maximum reflectance peak during use where the CRDS mirror may become accreted with contamination that would otherwise cause the maximum reflectance peak to migrate. The mirror includes a mirror stack disposed on a mirror substrate and a plurality of alternating laminates including a first film with a first index of refraction and a second film with a second index of refraction. Each film is a one-quarter wavelength thickness of a given light energy that is to illuminate the mirror. A subsequent laminate is disposed on the plurality of alternating laminates. The subsequent laminate includes a quarter wavelength thickness first film and a second film with a wavelength thickness in a range from greater than 1.5 quarter wavelength and less than 2 quarter wavelength.
    • 构造空腔衰落光谱(CRDS)镜,以抵抗在使用过程中最大反射峰的迁移,其中CRDS镜可能会被污染引起,否则会导致最大反射峰迁移。 反射镜包括设置在镜面基板上的反射镜叠层以及包括具有第一折射率的第一膜和具有第二折射率的第二膜的多个交替层压板。 每个胶片是照明镜子的给定光能的四分之一波长厚度。 随后的层压板设置在多个交替层压板上。 随后的层压板包括四分之一波长厚度的第一膜和波长厚度在大于1.5四分之一波长和小于二分之一波长的范围内的第二膜。
    • 59. 发明申请
    • Mesotube burn-in manifold
    • 中间管燃烧式歧管
    • US20080298934A1
    • 2008-12-04
    • US11807561
    • 2007-05-29
    • Barrett E. Cole
    • Barrett E. Cole
    • B65G49/00
    • H01J9/385H01J9/395H01J9/445H01J17/40
    • A two chamber system with fill gas in one chamber and vacuum in the other provides a means of burning in one or more vacuum tubes while avoiding contamination from environmental gases. Vacuum tubes are often burned in after being sealed. Some processes burn-in the tubes before sealing them. The burn in process can take days and provide ample opportunity for environmental gases to contaminate the vacuum tube. The vacuum tube's fill tube passes through the vacuum chamber and into the fill gas chamber. Environmental gases leaking past the fill tube are evacuated by the vacuum. Similarly, fill gas leaking past the fill tube is also evacuated to vacuum. As such, the environmental gases are drawn away before contaminating the vacuum tube.
    • 具有一个室中的填充气体和另一个室中的真空的两室系统提供了在一个或多个真空管中燃烧的装置,同时避免环境气体的污染。 真空管经常在密封后燃烧。 一些过程在密封它们之前烧坏管。 燃烧过程可能需要几天时间,为环境气体提供充足的机会污染真空管。 真空管的填充管通过真空室并进入填充气室。 通过填充管泄漏的环境气体被真空排空。 类似地,通过填充管泄漏的填充气体也被抽真空。 因此,在污染真空管之前,环境气体被抽走。