Method of controlling a modular ceramic oxygen generating system
    4.
    发明授权
    Method of controlling a modular ceramic oxygen generating system 失效
    控制模块化陶瓷氧气发生系统的方法

    公开(公告)号:US06368491B1

    公开(公告)日:2002-04-09

    申请号:US09708091

    申请日:2000-11-08

    CPC classification number: C01B13/0251 B01D53/326

    Abstract: The invention relates generally to ceramic oxygen generating modules, and more particularly, to an apparatus and method for controlling a duty cycle for each of a plurality of ceramic oxygen generating modules in a modular ceramic oxygen generating system.

    Abstract translation: 本发明一般涉及陶瓷氧气发生模块,更具体地,涉及用于在模块化陶瓷氧气发生系统中控制多个陶瓷氧气发生模块中的每一个的占空比的装置和方法。

    Method and apparatus for monitoring oxygen concentration
    5.
    发明授权
    Method and apparatus for monitoring oxygen concentration 有权
    监测氧浓度的方法和装置

    公开(公告)号:US06279377B1

    公开(公告)日:2001-08-28

    申请号:US09192211

    申请日:1998-11-16

    Applicant: Tuan Q. Cao

    Inventor: Tuan Q. Cao

    CPC classification number: G01N27/4175

    Abstract: Apparatus for measuring concentration of oxygen includes a plurality of status displays, identifying concentration status relative to a plurality of thresholds, an alarm for immediate and prominent identification of status relative to a threshold of particular significance, and a quantitative display indicative of an actual concentration. Although measurements are performed and results are indicated relative to a number of thresholds, only a single calibration procedure is required, using only a single calibration gas. The apparatus is calibrated by adjusting a circuit parameter of one of the circuit components to vary a sensed output value to correspond to a narrow range surrounding the known concentration of the calibration gas. Both the circuit parameter and the actually sensed output value are stored. In a monitoring operation, the circuit parameter is retrieved to reset the circuit component to its calibrated setting. The monitored unknown value of concentration is scaled based on a value in a look-up table and on the actually sensed output value of the calibration process. An interpolation between values of the look-up table is then used to identify a concentration corresponding to the scaled value.

    Abstract translation: 用于测量氧浓度的设备包括多个状态显示器,其识别相对于多个阈值的浓度状态,相对于特定重要性的阈值立即和显着地识别状态的报警以及指示实际浓度的定量显示。 虽然执行测量并且相对于多个阈值指示结果,但是仅使用单个校准气体仅需要单个校准过程。 该装置通过调整电路组件之一的电路参数来校准,以改变感测的输出值以对应于围绕校准气体的已知浓度的窄范围。 存储电路参数和实际检测的输出值。 在监视操作中,检索电路参数以将电路组件复位到其校准设置。 监测的未知浓度值根据查找表中的值和校准过程的实际感测输出值进行缩放。 然后使用查找表的值之间的内插来识别与缩放值对应的浓度。

    CERAMIC OXYGEN GENERATING OVEN
    8.
    发明申请
    CERAMIC OXYGEN GENERATING OVEN 有权
    陶瓷氧气发生器

    公开(公告)号:US20070158329A1

    公开(公告)日:2007-07-12

    申请号:US11613041

    申请日:2006-12-19

    Applicant: Tuan Q. Cao

    Inventor: Tuan Q. Cao

    CPC classification number: C01B13/0233 C01B2210/0046

    Abstract: An oven (10) for a gas generating system (C) of the type that includes an interior chamber (22), heating elements (12), at least one gas generating module (14) mounted within the interior chamber (22), an air inlet (26) providing an input source of air, and a product gas outlet (16) includes an air amplifier member (2) that is mounted within the interior chamber (22). The air amplifier (20) generates an amplification of the air flow characteristics of the input source of air as the input air is introduced into the interior chamber (22) of the oven (10). The amplification promotes the oven air recirculation improving thermal uniformity and air distribution inside the oven (10).

    Abstract translation: 一种用于气体发生系统(C)的烤箱(10),其包括内部腔室(22),加热元件(12),安装在内部腔室(22)内的至少一个气体发生模块(14), 提供输入空气源的空气入口(26)和产品气体出口(16)包括安装在内部室(22)内的空气放大器构件(2)。 空气放大器(20)当输入空气被引入烤箱(10)的内部空间(22)时,产生输入空气源的气流特性的放大。 该扩增促进烘箱空气再循环,从而改善炉内(10)内的热均匀性和空气分布。

    Deployable oxygen charging system
    9.
    发明授权
    Deployable oxygen charging system 有权
    可部署充氧系统

    公开(公告)号:US06719019B2

    公开(公告)日:2004-04-13

    申请号:US10183442

    申请日:2002-06-28

    Abstract: A gas cylinder charging system includes (1) at least two gas inlet ports and (2) at least two gas outlet ports, (3) a gas compressor having an input port and an output port, where the input port selectively receives gas from a gas inlet port and selectively transfers the gas to a gas outlet port, and (4) a controller, receiving status signals and transmitting control signals, and connected to and controlling the gas compressor. A method aspect of filling a gas cylinder using the described cylinder charging system further including an input/output selector valve for selecting one of the gasses to transfer to the gas cylinder, includes the following steps. A gas cylinder is connected to one of the cylinder connectors. A user manipulates the selector valve selecting the gas to be transferred to the gas cylinder and activates the cylinder charging system filling the gas cylinder with the selected gas.

    Abstract translation: 气瓶充气系统包括(1)至少两个气体入口和(2)至少两个气体出口,(3)具有输入端口和输出端口的气体压缩机,其中输入端口选择性地从 气体入口并选择性地将气体传送到气体出口,以及(4)控制器,接收状态信号和发送控制信号,并连接到气体压缩机并控制气体压缩机。 使用所述的气瓶充气系统来填充气瓶的方法方面还包括用于选择一个气体转移到气瓶的输入/输出选择阀,包括以下步骤。 气瓶连接到气缸连接器之一。 用户操纵选择阀,选择要传送到气瓶的气体,并启动用选定气体填充气瓶的气瓶充气系统。

    Oxygen concentrator system
    10.
    发明授权
    Oxygen concentrator system 有权
    氧气浓缩器系统

    公开(公告)号:US06712877B2

    公开(公告)日:2004-03-30

    申请号:US10228134

    申请日:2002-08-27

    Abstract: An oxygen concentrator system includes at least one oxygen concentrator sub-system and a plenum subsystem. The at least one oxygen concentrator sub-system produces oxygen-enriched air which is outputted to both the oxygen concentrator system output and to a plenum chamber within the plenum subsystem. The plenum chamber is trickle charged with the oxygen-enriched air when the at least one oxygen concentrator sub-system produces an excess amount of oxygen-enriched air. Should the demand for oxygen-enriched air exceed the capability of the at least one oxygen concentrator sub-system, additional oxygen-enriched air is provided by the plenum chamber until such time that the capability of the at least one oxygen concentrator sub-system exceeds the demand of oxygen-enriched air. At that time, oxygen-enriched air is no longer provided by the plenum chamber but rather the plenum chamber is again trickle charged.

    Abstract translation: 氧浓缩器系统包括至少一个氧气浓缩器子系统和增压器子系统。 至少一个氧气浓缩器子系统产生富氧空气,其输出到氧气浓缩器系统输出和增压室子系统内的增压室。 当至少一个氧气浓缩器子系统产生过量的富氧空气时,增压室被充入富氧空气。 如果对富氧空气的需求超过至少一个氧气浓缩器子系统的能力,则另外的富氧空气由增压室提供,直到至少一个氧气浓缩器子系统的能力超过 富氧空气的需求。 此时,富氧空气不再由通风室提供,而是增压室再次进行充电。

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