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    • 6. 发明申请
    • Vacuum Cleaner with Ultraviolet Light Source and Ozone
    • 带紫外光源和臭氧的吸尘器
    • US20080263817A1
    • 2008-10-30
    • US12067685
    • 2006-09-21
    • Sergey V. MakarovGregg M. Kloeppel
    • Sergey V. MakarovGregg M. Kloeppel
    • A47L9/10
    • A47L9/1608A47L7/04A47L9/122A47L9/1641Y10S15/08Y10S55/03
    • The present disclosure provides a vacuum cleaner (A) including a nozzle base (C) having a main suction opening (26) and a housing (B) pivotally mounted on the nozzle base (C). An airstream suction source (E) is mounted to one of the housing (B) and the nozzle base (C) for selectively establishing and maintaining a suction airstream flowing from the nozzle main suction opening (26) to an exhaust outlet of the suction source. A filter housing (132, 230, 350, 508, 606, 700, 800, 906) is mounted to one of the nozzle base (C) and the housing (B). The filter housing comprises a filter (150, 270, 272, 704, 804) mounted in the filter housing. An ultraviolet light source (160, 280, 706, 806) is disposed in the filter housing and shines on the filter for disinfecting same.
    • 本公开提供了一种真空吸尘器(A),其包括具有主吸入口(26)和枢转地安装在喷嘴基座(C)上的壳体B的喷嘴基座)。 气流吸入源(E)安装在壳体(B)和喷嘴基座(C)中的一个上,用于选择性地建立和保持从喷嘴主吸入口(26)流到吸入源的排气出口的吸入气流 。 过滤器壳体(132,230,350,508,606,700,800,906)安装到喷嘴基座(C)和壳体(B)中的一个。 过滤器壳体包括安装在过滤器壳体中的过滤器(150,270,272,704,804)。 紫外光源(160,280,706,806)设置在过滤器壳体中并照射在过滤器上用于对其进行消毒。
    • 7. 发明授权
    • Supplemental oxygen delivery apparatus and method
    • 补氧装置及方法
    • US5865174A
    • 1999-02-02
    • US738583
    • 1996-10-29
    • Gregg M. Kloeppel
    • Gregg M. Kloeppel
    • A61M16/00A61M16/06
    • A61M16/00A61M16/0677A61M2016/0021A61M2016/0027A61M2205/8206
    • An apparatus conserves oxygen delivered from a supply (28) to a patient through a cannula (44) by providing oxygen delivery selectively in accordance with the physiological requirements and current breathing pattern of the patient. Oxygen flow is set at a prescribed flow rate from the supply by a regulator (30). An oxygen conserving unit (38) includes a controller (64) that operates responsive to timed relationships among pressure signals determined by a fuzzy logic program to deliver oxygen to the patient by opening a valve (72) when a sensed pressure in the patient's nasal passage reaches a threshold level and when the controller determines that the reaching of the threshold is indicative of an inhalation cycle. The controller is further operative to adjust the time period that oxygen is delivered to the patient in accordance with a programmed relation to meet the dynamically changing needs of the patient. The apparatus further includes features which provide fast response, conservation of the energy from a battery power source (86) and both visual and audio indicators (54, 56) to provide indications of alert and alarm conditions. The apparatus further provides control by the user through a single manually actuated switch (52), and mechanical interconnection with the switch and valve to assure continuous flow when the switch is set to a continuous flow setting.
    • 一种装置通过根据患者的生理需要和当前呼吸模式选择性地提供氧气输送,通过套管(44)保存从供应源(28)向患者输送的氧气。 氧气流由调节器(30)的供给设定为规定的流量。 氧气保存单元(38)包括控制器(64),其响应于由模糊逻辑程序确定的压力信号之间的定时关系进行操作,以在患者鼻通道中感测到的压力时打开阀门(72)来向患者输送氧气 达到阈值水平,并且当控制器确定阈值的到达指示吸入循环时。 控制器进一步操作以根据编程的关系调整氧输送到患者的时间段,以满足患者的动态变化的需要。 该装置还包括提供快速响应,对来自电池电源(86)的能量的保护以及视觉和音频指示器(54,56)两者的特征,以提供警报和报警条件的指示。 该装置还通过单个手动致动的开关(52)提供用户的控制,以及与开关和阀的机械互连以确保当开关被设定为连续流量设定时的连续流动。