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    • 1. 发明授权
    • Apparatus for the electrically controlled proportioning and mixing of
gases
    • 用于电控制比例和气体混合的装置
    • US4262686A
    • 1981-04-21
    • US50105
    • 1979-06-19
    • Ulrich HeimScato Albarda
    • Ulrich HeimScato Albarda
    • A61M16/12B01F3/02B01F15/04G05D11/13
    • B01F15/0412A61M16/12B01F15/00162B01F15/00344B01F3/026G05D11/132Y10T137/0352Y10T137/2499Y10T137/2529Y10T137/87692
    • An apparatus for the controlled proportioning of gases to be delivered to a consumer comprises a mixed gas line containing the mixed gases to be delivered to the consumer which is connected to a plurality of separate gas supply lines. Each of the supply lines includes a quick-acting, electrically controlled valve which is controlled by control means which is effective to deliver a control pulse to open and close the valve in accordance with a set time slot pattern. For this purpose, the controller advantageously includes means for sensing the pressure in each of the supply lines and the mixed gas line and for regulating the quick-acting valves in accordance with one or more input signals which are fed to a computer section of a controller which has an actuator section which is operated in accordance with the sensed information and the input signals to carry out the supply of the gases in the set time slot pattern. The controller delivers one pulse per time slot pattern, the minimum length of the pulse being determined by the minimum switching time of the control valve and its maximum length being determined by the division of the time slot pattern. For gas amounts smaller than the corresponding minimum pulse times at each position of the time slot pattern, pulses are delivered only at certain points of the pattern.
    • 用于将被输送到消费者的气体受控配比的装置包括混合气体管线,该混合气体管线包含要输送到消费者的混合气体,其连接到多个单独的气体供应管线。 每个供应管线包括一个快速作用的电控阀,它由控制装置控制,该控制装置根据设定的时间槽图案有效传递控制脉冲以打开和关闭阀门。 为此,控制器有利地包括用于感测每个供应管线和混合气体管线中的压力并根据一个或多个输入信号来调节速动阀的装置,所述输入信号被馈送到控制器的计算机部分 其具有根据感测信息操作的致动器部分和输入信号,以在所设定的时隙模式中执行气体的供应。 控制器每时隙模式提供一个脉冲,脉冲的最小长度由控制阀的最小切换时间确定,其最大长度由时隙图案的划分决定。 对于小于时隙图案的每个位置处的相应最小脉冲时间的气体量,仅在图案的某些点处传送脉冲。
    • 3. 发明授权
    • Electrically-actuable valve
    • 电动执行阀
    • US4750520A
    • 1988-06-14
    • US107293
    • 1987-10-09
    • Ulrich HeimScato Albarda
    • Ulrich HeimScato Albarda
    • F15C5/00F16K31/02F16K1/00
    • F15C5/00F16K31/025Y10T137/86759
    • The invention is directed to an electrically-actuable valve for a fluid such as a gaseous medium. The valve has a valve closure member disposed adjacent a valve plate provided with a plurality of pass-through openings. The valve closure member and the valve plate are displaceable relative to one another in a direction perpendicular to their surfaces by means of a short-stroke drive whereby a plurality of sealing lines are opened. To arrive at a good valve operation especially for relatively small valves, the valve plate is configured with a plurality of pass-through openings or perforations. The surface of the valve plate facing the valve closure member has a plurality of raised portions formed thereon defining respective receiving surfaces for receiving the closure member in contact engagement therewith to form the sealing lines when the valve is in the closed position. Each two mutually adjacent ones of said raised portions define a flow channel open toward the closure member and communicating with the outlet of the valve. The pass-through openings lie within the raised portions and extend from the other side of the valve plate to the receiving surface and communicate with the channels when the valve is open and the valve closure member is displaced away from the valve plate thereby enabling the gaseous medium to flow from the inlet of the valve to the outlet thereof.
    • 本发明涉及用于诸如气体介质的流体的电动可动阀。 该阀具有邻近设置有多个通过开口的阀板设置的阀关闭件。 阀关闭构件和阀板可以通过短行程驱动器在垂直于其表面的方向上相对于彼此移位,由此多个密封线被打开。 为了获得良好的阀门操作,特别是对于相对较小的阀门,阀板构造有多个通孔或穿孔。 面对阀闭合部件的阀板的表面具有形成在其上的多个凸起部分,其形成相应的接收表面,用于接收与其接触接合的闭合部件,以在阀处于关闭位置时形成密封线。 每个两个相互相邻的所述凸起部分限定了朝向封闭构件开口并与阀的出口连通的流动通道。 通过开口位于凸起部分内并且从阀板的另一侧延伸到接收表面并且当阀打开时与通道连通并且阀闭合构件从阀板移开,从而使气态 介质从阀的入口流到其出口。
    • 8. 发明授权
    • Method and apparatus for artificial respiration and the measurement of
breathing gas values
    • 人工呼吸的方法和装置以及呼吸气体值的测量
    • US4617924A
    • 1986-10-21
    • US693016
    • 1985-01-18
    • Ulrich HeimPeter Gebhardt
    • Ulrich HeimPeter Gebhardt
    • A61M16/00A61M16/10
    • A61M16/0096A61M16/1015
    • A ventilating system includes a high frequency controlled breathing gas source in HFJV operation, wherein the exhaled gas is removed through an outlet line through which a flush gas is conducted, is improved to permit a determination, under high frequency ventilation, of both the final expiratory CO.sub.2 concentration and the basic pressure building up in the lungs (the lung-internal PEEP). To this end, the control device is in addition connected to a flush gas valve provided upstream of the breathing gas supply device, and designed to intercalate a measuring interval after a sequence of breathing gas pulses, during which interval the breathing gas valve and the flush gas valve are closed. A system of measuring the breathing gas valves is provided in the outlet line and it is actuated during the measuring interval to perform the measuring operation.
    • 通风系统包括HFJV操作中的高频控制呼吸气体源,其中呼出气体通过吹出冲洗气体通过的出口管线被去除,其被改进以允许在高频通气下确定最终呼气 二氧化碳浓度和肺部基础压力(肺内PEEP)。 为此,控制装置另外连接到设置在呼吸气体供应装置上游的冲洗气阀,并设计成在呼吸气体脉冲序列之后插入测量间隔,在该间隔期间呼吸气体阀和冲洗 气阀关闭。 在出口管线处设置测量呼吸气体阀的系统,并且在测量间隔期间致动该系统以执行测量操作。
    • 9. 发明授权
    • Patient data controlled respiration system
    • 患者数据控制呼吸系统
    • US4326513A
    • 1982-04-27
    • US164573
    • 1980-06-30
    • Volker SchulzStefan KunkeUlrich Heim
    • Volker SchulzStefan KunkeUlrich Heim
    • A61M16/00
    • A61M16/00A61M2230/205
    • A respiration system and method for minimizing the oxygen concentration of inspiration gas supplied to a patient while maintaining a desired arterial oxygen partial pressure in the patient comprising a regulator for changing the oxygen concentration of inspiration gas supplied to a respirator according to a desired nominal value therefor and a sensed value therefor taken from the patient, a control device for adjusting parameters of the breathing gas in the respirator supplied to the patient while maintaining the desired arterial oxygen partial pressure, and a minimizer connected to the control device for changing a direction of the adjustment when the oxygen concentration in the inspiration gas cannot be maintained within a range between a first sensed instantaneous value for the oxygen concentration in the inspiration gas and a lower limit set for that value.
    • 一种呼吸系统和方法,用于最小化供应给患者的吸入气体的氧气浓度,同时保持患者期望的动脉氧分压,所述呼吸系统包括用于根据其期望的标称值改变供给到呼吸器的吸入气体的氧气浓度的调节器 以及从患者获取的感测值,控制装置,用于调节在保持所需动脉氧分压的同时供给给患者的呼吸气体中的呼吸气体的参数,以及连接到控制装置的最小化器,用于改变方向 当吸气中的氧气浓度不能维持在吸气中的氧气浓度的第一感测瞬时值与该吸入气体中设定的下限之间的范围内时,进行调整。
    • 10. 发明授权
    • System for measuring the concentration of a gaseous component by
detecting positions of mode jumps in a laser diode
    • 通过检测激光二极管中的模式脉冲的位置来测量气体组分的浓度的系统
    • US5202560A
    • 1993-04-13
    • US904676
    • 1992-06-26
    • Edmund KochJens-Uwe HagenahChristoph MaurerUlrich HeimWilfried DiekmannJohann Otten
    • Edmund KochJens-Uwe HagenahChristoph MaurerUlrich HeimWilfried DiekmannJohann Otten
    • H01S5/0683H01S5/0687
    • H01S5/0687H01S5/06837
    • The invention is directed to a method of operating a laser diode in a measuring system for spectroscopically measuring the concentration of a gaseous component in a gas sample. This method is improved in that the mode jumps of the laser diode are easily recognized when adjusting the temperature-current operating point of the laser diode. An optical filter is placed in the beam path for adjusting the temperature-current operating point of the laser diode and, by changing the temperature T and the operating current I of the laser diode while simultaneously receiving the output signal supplied by an evaluation unit, the spectral positions of the mode jumps of the laser diode are determined which are included in the absorption lines of the gas sample. Thereafter, the temperature-current operating point is adjusted so that the distance of this operating point to the positions of the mode jumps is not less than a fixed spacing. The invention is also directed to a measuring system for spectroscopically measuring the concentration of a gaseous component in a gas sample.
    • 本发明涉及一种在测量系统中操作激光二极管的方法,用于光谱测量气体样品中气态组分的浓度。 改进了这种方法,因为当调节激光二极管的温度 - 电流工作点时,可以容易地识别出激光二极管的模式跳变。 光滤波器被放置在光束路径中,用于调节激光二极管的温度 - 电流工作点,并且通过改变激光二极管的温度T和工作电流I同时接收由评估单元提供的输出信号, 确定激光二极管的模式跳跃的光谱位置,其包括在气体样品的吸收线中。 此后,调整温度 - 电流工作点,使得该工作点与模式跳跃位置的距离不小于固定间距。 本发明还涉及用于光谱测量气体样品中气态组分浓度的测量系统。