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    • 101. 发明授权
    • Cavity ring-down spectroscopy mirror, and methods of using same
    • 腔下降光谱镜及其使用方法
    • US07916395B2
    • 2011-03-29
    • US12037815
    • 2008-02-26
    • Barrett E. Cole
    • Barrett E. Cole
    • G02B1/10
    • 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。
    • 103. 发明授权
    • Ultra violet flame sensor with run-on detection
    • 紫外线火焰传感器,具有连续检测功能
    • US07893615B2
    • 2011-02-22
    • US11901656
    • 2007-09-18
    • Barrett E. Cole
    • Barrett E. Cole
    • H01J40/00
    • F23N5/082F23N5/242F23N2029/00F23N2029/16F23N2031/10
    • A UV flame sensor for detecting a run-on condition in a flame detector tube is disclosed. The UV flame sensor comprises a pair of secondary electrodes that are enclosed in a mesotube to form a breakdown chamber in order to detect the run-on condition. These secondary electrodes are exposed to UV through an aperture in a cathode plate and are energized continuously by a lower voltage. The mesotube is expected to break down when the run-on condition occurs. The secondary electrodes can be placed in the same gas environment as the main electrodes that may take different forms, shapes and locations.
    • 公开了一种用于检测火焰探测器管中的连续状态的紫外线火焰传感器。 UV火焰传感器包括一对次级电极,其被封装在中间管中以形成击穿室,以便检测接通状况。 这些二次电极通过阴极板中的孔暴露于UV,并通过较低电压连续通电。 预期在触发条件发生时,介质管被分解。 次级电极可以放置在与可能采取不同形式,形状和位置的主电极相同的气体环境中。
    • 105. 发明授权
    • Compact gas sensor using high reflectance terahertz mirror and related system and method
    • 采用高反射太赫镜的紧凑型气体传感器及相关系统及方法
    • US07864326B2
    • 2011-01-04
    • US12261823
    • 2008-10-30
    • James Allen CoxBarrett E. Cole
    • James Allen CoxBarrett E. Cole
    • G01B9/02
    • G01N21/3581G01N21/031G01N21/3504
    • A system and method includes a tunable light source and a gas cell configured to detect the presence of gases at terahertz frequencies. The light source is operable to emit a light signal at terahertz frequencies. The gas cell includes at least two high frequency mirrors adapted to reflect signals at terahertz frequencies. The gas cell is adapted to be tuned based on the frequency of the emitted light to obtain a Fabry-Perot resonance of the reflected light signal. A pair of detectors are operable to detect the original light signal and the light signal reflected through absorption paths in the gas cell. The system and method are operable to determine a presence and identity of a gas present in the gas cell.
    • 系统和方法包括可调谐光源和被配置为检测在太赫兹频率处气体的存在的气室。 光源可操作地以太赫兹频率发射光信号。 气室包括至少两个适用于以太赫兹频率反射信号的高频镜。 气室适于基于发射光的频率进行调谐,以获得反射光信号的法布里 - 珀罗共振。 一对检测器可操作以检测原始光信号和通过气室中的吸收路径反射的光信号。 系统和方法可操作以确定存在于气室中的气体的存在和身份。
    • 107. 发明授权
    • Mesotube with header insulator
    • 带头绝缘子的管筒
    • US07750284B2
    • 2010-07-06
    • US12180368
    • 2008-07-25
    • Barrett E. ColeKhanh Nguyen
    • Barrett E. ColeKhanh Nguyen
    • G01J1/04G01J5/02H01J47/00
    • H01J47/02H01J17/40
    • A mesotube apparatus is disclosed which includes a header insulator in order to avoid premature breakdown at lower voltage that occurs between a cathode and an anode in a discharge assembly. A chamber can be mounted on a header base and can be located away from plasma surrounded with dielectric so that breakdown occurs outside the normal voltage operating range. A number of feed-through pins associated with the header base can be electrically isolated from the header base by a dielectric insulator. The dielectric insulator can also be placed over the header base and topside of the chamber in order to passivate from stray electrons and plasma. The header base can be thin which allows welding of the anode and the cathode to the feed-through pins with a weld tool attached to the side of the feed-through pins. The chamber can be located on the header base by tightly fitting to the feed-through pins.
    • 公开了一种中间管设备,其包括集管绝缘体,以避免在放电组件中阴极和阳极之间发生的较低电压下的过早击穿。 腔室可以安装在头部基座上,并且可以远离等离子体包围的等离子体,使得击穿发生在正常电压工作范围之外。 与插头基座相关联的多个馈通引脚可以通过介电绝缘体与插头基座电隔离。 电介质绝缘体也可以放置在集管底座和室顶部之上,以便从杂散电子和等离子体中钝化。 集管底座可以是薄的,其允许阳极和阴极通过附接到馈通销的侧面的焊接工具焊接到馈通销。 通过与馈通销紧密配合,可以将腔室放置在插头底座上。