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    • 121. 发明授权
    • High temperature adjustable sensor housing system apparatus
    • 高温可调传感器外壳系统装置
    • US08245670B2
    • 2012-08-21
    • US12047905
    • 2008-03-13
    • David W. Schmitt
    • David W. Schmitt
    • F22B37/42
    • G01J5/041G01J5/0014G01J5/0018G01J5/0044G01J5/02G01J5/029G01J5/042
    • A sensor housing system maintains a sensor—which is used in monitoring an extreme temperature environment such as a combustion unit—at a desired ambient temperature. The system comprises one or more sensors housed within an internal chamber and cooled by air or an inert gas. Gas within the chamber cools the sensor and then exhausts to a second internal chamber which, in turn, exhausts to atmosphere. Both chambers are housed in a directional ball pivot that provides access to the extreme temperature environment and adjusts the angle of the sensor. An air tube having a sweep is directed toward the external surface of the glass wafer and directs a hot gas stream across the surface of the wafer. A failsafe device retracts the chambers from the extreme temperature environment in case of power failure or if for some reason the sensor becomes too hot.
    • 传感器外壳系统保持传感器,其用于监测极端温度环境,例如燃烧单元 - 在期望的环境温度。 该系统包括一个或多个传感器,该传感器容纳在内部室内并由空气或惰性气体冷却。 室内的气体冷却传感器,然后排放到第二内室,而第二内室依次排放到大气中。 两个腔室均容纳在方向球枢轴中,可提供进入极端温度环境并调节传感器的角度。 具有扫掠的空气管指向玻璃晶片的外表面,并引导热气流穿过晶片的表面。 故障安全装置在电源故障或者由于某种原因导致传感器变得太热时,将室从极端温度环境中退回。
    • 123. 发明授权
    • Method for standardizing the derivation of the temperature in the mesopause region from hydroxyl (OH*) airglow
    • 用于从羟基(OH *)气泡中推导中间区域温度的方法
    • US08007168B2
    • 2011-08-30
    • US12310863
    • 2007-09-20
    • Michael BittnerKathrin Hoeppner
    • Michael BittnerKathrin Hoeppner
    • G01J5/00
    • G01J5/0014G01J5/007G01J5/58G01J2005/0048
    • In order to derive the temperature in the mesopause region from hydroxyl (OH*) airglow, in which intensities of three lines of OH* emission and a basic position are measured during the night using ground-based IR spectrometers, a noisy OH* spectrum is smoothed by filtering out white noise superimposed on the measured OH* intensities, by means of a spectral analysis method in the form of a harmonic analysis and by means of adaptation using the Voigt function which is carried out in the form of a combination of a Lorentz distribution and a Doppler distribution. A decision is made on the quality of the adaptation of the smoothed spectrum obtained to the original spectrum using statistical characteristic variables and by selecting one of the two methods, harmonic analysis function or Voigt function, and the temperature is thus accurately determined.
    • 为了从羟基(OH *)气泡中导出中间区域的温度,其中使用地面红外光谱仪在夜间测量三行OH *发射和基本位置的强度,噪声OH *光谱是 通过滤波叠加在测量的OH *强度上的白噪声,通过谐波分析形式的光谱分析方法和通过使用Voigt函数的适应进行平滑,该Voigt函数以洛伦兹组合的形式进行 分布和多普勒分布。 使用统计特征变量,通过选择谐波分析函数或Voigt函数中的两种方法,对获得的原始频谱的平滑频谱的适应质量进行判定,从而精确地确定温度。
    • 124. 发明授权
    • Intrinsically safe NDIR gas sensor in a can
    • 本体安全的NDIR气体传感器在罐中
    • US08003945B1
    • 2011-08-23
    • US12868628
    • 2010-08-25
    • Jacob Y Wong
    • Jacob Y Wong
    • G01J5/02
    • G01J5/04G01J5/0014G01J5/02G01J5/0215G01J5/022G01J5/045G01J5/08G01J5/0803G01J5/0809G01J5/0818G01J5/0846G01J5/0862G01J5/0875H01L2224/48091H01L2924/1461H01L2924/00014H01L2924/00
    • An NDIR gas sensor is housed within a mechanical housing made up of a can and a header housing. The header housing body contains a tunnel waveguide sample chamber. The header housing also has a top surface with a pair of windows formed in it and a signal detector, a reference detector, a MEMS source and a signal processor mounted to it. The can has inner reflective surfaces and the reference detector and the signal detector are affixed to the top surface so that the inner reflective surfaces of the can and the tunnel waveguide sample chamber create a signal channel path length detected by the signal detector that is greater than a reference channel path length detected by the reference detector and an absorption bias between the signal and reference outputs can be used to determine a gas concentration in the sample chamber. Both the signal detector and the reference detector have an identical narrow band pass filter with the same Center Wavelength (“CWL”), Full Width Half Maximum (FWHM) and transmittance efficiency at the CWL.
    • NDIR气体传感器安装在由罐和集管壳体组成的机械壳体内。 插头壳体包含隧道波导样品室。 头部外壳还具有形成在其中的一对窗口的顶表面和安装到其上的信号检测器,参考检测器,MEMS源和信号处理器。 罐具有内部反射表面,并且参考检测器和信号检测器固定在顶部表面上,使得罐和隧道波导样品室的内部反射表面产生由信号检测器检测到的信号通道路径长度大于 可以使用由参考检测器检测的参考通道路径长度和信号与参考输出之间的吸收偏差来确定样品室中的气体浓度。 信号检测器和参考检测器都具有相同的窄带通滤波器,具有相同的中心波长(“CWL”),全宽度最大值(FWHM)和CWL处的透射率效率。