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Filter selection and gas concentration computation for shutterless optically stabilized capnograph.

机译:无快门光学稳定二氧化碳分析仪的过滤器选择和气体浓度计算。

摘要

Methods and apparatus for constructing optically stabilized, shutterless infrared capnographs are disclosed. The capnographs of the present invention provide the absolute concentration of the constituents of the respiratory airstream of a patient, without thermal drift problems normally associated with thermopile detectors, thereby providing a device with a high degree of accuracy. The present invention eliminates the need for a mechanical shutter to modulates the incident infrared beam and the need for a modulated source, thereby increasing the reliability and response time of the devices disclosed. Capnographs which are substantially unaffected by changes in the ambient temperature at which they operate are provided by connecting pairs of optically filtered thermopiles in series and processing the resulting differential pair. In addition, techniques are provided for selecting overlapping optical filters for use with thermopiles with a minimum level of cross-talk. A processing technique is also given which allows the concentrations of two or more airstream constituents to be separately quantified even when such overlapping optical filters are used.
机译:公开了用于构造光学稳定的无快门红外二氧化碳描记器的方法和设备。本发明的二氧化碳分析仪提供了患者呼吸气流成分的绝对浓度,而没有通常与热电堆检测器相关的热漂移问题,从而提供了一种高精度的装置。本发明消除了对用于调制入射红外光束的机械快门的需要以及对调制源的需求,从而增加了所公开的设备的可靠性和响应时间。通过串联连接成对的经过光学过滤的热电堆并处理所得的差分对,可以提供基本上不受操作环境温度变化影响的二氧化碳分析仪。另外,提供了用于选择交叠滤光器以与串扰最小的热电堆一起使用的技术。还给出了一种处理技术,即使使用这种重叠的滤光片,也可以分别定量两种或多种气流成分的浓度。

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