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    • 4. 发明授权
    • Medical valve and method to monitor intra-abdominal pressure
    • 医疗阀门和监测腹内压力的方法
    • US07726328B2
    • 2010-06-01
    • US12583823
    • 2009-08-26
    • Mark A. ChristensenTimothy R. WolfePerry W. CrollMarshall T. DentonEdward J. Kimball
    • Mark A. ChristensenTimothy R. WolfePerry W. CrollMarshall T. DentonEdward J. Kimball
    • G05D7/00G05D9/00
    • A61B5/036A61B5/205A61B5/412A61M25/0017A61M39/223F16K7/126Y10T137/2557Y10T137/7722
    • An apparatus for monitoring the intra-abdominal pressure of a hospitalized patient includes a urinary catheter connected to a urine valve providing selectable communication between a discharge end of the urinary catheter and either a drain or a fluid source. Preferably, the urine valve is adapted for remote actuation and has a housing adapted to resist patient discomfort from leg-valve contact. Plumbing structure desirably maintains fluid supply and drain conduits in a substantially parallel arrangement to assist routing those conduits between a patient's legs. When the urine valve is oriented to permit communication with the fluid source, an infusion pump may be used to infuse a known quantity of fluid through the urine valve and into the patient's bladder. A pressure transducer desirably is connected in-circuit to indicate the fluid's pressure. To facilitate the infusion process, an automatic flow control device may be included in a fluid supply path and arranged to permit repetitive operation of a syringe to inject a bolus of fluid into the patient's bladder. Subsequent to a period of time in which to make a pressure measurement, preferred embodiments of the urine valve automatically return to a bladder draining position.
    • 用于监测住院患者的腹内压力的装置包括连接到尿液阀的导尿管,其提供在导尿管的排出端与排液管或流体源之间的可选择的连通。 优选地,尿液阀适于远程致动,并且具有适于抵抗来自腿 - 阀接触的患者不适的壳体。 管道结构理想地将流体供应和排出管道保持在基本上平行的布置中,以帮助在病人腿部之间布置这些管道。 当尿液阀被定向以允许与流体源连通时,输注泵可以用于将已知量的流体通过尿液阀注入到患者的膀胱中。 压力传感器理想地连接在电路中以指示流体的压力。 为了便于输注过程,自动流量控制装置可以包括在流体供应路径中并且被布置成允许注射器的重复操作以将大量的液体注射到患者的膀胱中。 在进行压力测量的一段时间之后,尿液阀的优选实施例自动返回到排气位置。
    • 6. 发明授权
    • Device for separating oil from an oil-air separator of an oil reservoir
    • 用于从储油器的油气分离器分离油的装置
    • US07488378B2
    • 2009-02-10
    • US11667298
    • 2005-11-03
    • Pieter Van Den Berghe
    • Pieter Van Den Berghe
    • B01D46/42
    • F01M13/04F01M13/021F04B39/02F16K15/031F16K24/04Y10S55/19Y10T137/2557Y10T137/3084
    • Device for separating oil from the air-oil separator of an oil reservoir, which device comprises a line (3) for the air-oil separator which is connected to the above-mentioned oil reservoir (1) with one far end and in which is provided a suction pump (4) for sucking in air, and whereby the other far end of the above-mentioned line (3) is connected to a filter (7) which is provided in a chamber (8) which is connected to the above-mentioned oil reservoir (1) by means of a return line (9), and which chamber (8) is provided with an outlet (10) to the environment, characterised in that a non-return valve (12) is provided in a the above-mentioned return line (9) which lets an air flow pass from the oil reservoir (1) to the chamber (8), and which prevents an air flow in the opposite direction, and whereby this non-return valve is provided with a small flow-back opening (16) which allows the oil which has been separated in the chamber (8) by the filter (7) to flow back to the oil reservoir (1).
    • 用于从储油器的空气 - 油分离器中分离油的装置,该装置包括用于空气 - 油分离器的管线(3),该管线(3)与上述一个远端的储油器(1)连接,并且其中 设置有用于吸入空气的抽吸泵(4),并且由此上述管线(3)的另一个远端连接到设置在与上述连接的室(8)中的过滤器(7) (9),并且该室(8)设置有环境的出口(10),其特征在于,止回阀(12)设置在所述储油器(1) 上述返回管线(9),其使空气流从储油器(1)流到腔室(8),并且防止空气沿相反方向流动,并且由此该止回阀具有 允许通过过滤器(7)在腔室(8)中分离的油回流到储油器(1)的小的回流开口(16) 。
    • 7. 发明申请
    • Pneumatic exhaust controller
    • 气动排气控制器
    • US20030221721A1
    • 2003-12-04
    • US10162448
    • 2002-06-04
    • Gregory T. FilkovskiBrook W. PenceWayne D. Morroney
    • G05D007/00
    • G05D16/2013Y10T137/2544Y10T137/2557Y10T137/87209
    • A pneumatic exhaust controller for use with a source of pressurized air comprises a manifold having a first portal coupled to the source of pressurized air, a second portal, and an exhaust portal. Two manifold embodiments are disclosed. Two regulator embodiments that operate to close the exhaust portal in response to pressurized air from the air source being communicated through the first portal and that operate to pass pressurized air from the pressurized air source to the second portal are disclosed. The regulators are situated in chambers of respective manifolds. A solenoid valve is coupled to each of the manifolds and is operable to block and unblock pneumatic communication between the respective first portal and the associated second and exhaust portals.
    • 用于加压空气源的气动排气控制器包括具有连接到加压空气源的第一入口的歧管,第二入口和排气入口。 公开了两个歧管实施例。 公开了两个调节器实施例,其操作以响应于来自空气源的加压空气来关闭排气入口,所述加压空气通过第一入口连通并且操作以将加压空气从加压空气源传递到第二入口。 调节器位于相应歧管的腔室中。 电磁阀联接到每个歧管并且可操作以阻挡和解除相应的第一门户与相关联的第二和排出门户之间的气动连通。
    • 10. 发明授权
    • Two-way draining valve for coffee making machines
    • 咖啡机双向排水阀
    • US5299595A
    • 1994-04-05
    • US77030
    • 1993-06-16
    • Valdemar M. Ribeiro
    • Valdemar M. Ribeiro
    • A47J31/46F16K17/04F16K15/04
    • F16K17/0473A47J31/46Y10T137/2557Y10T137/7869Y10T137/7879
    • A two-way draining valve for coffee making machines includes an L-shaped housing containing a chamber, an inlet opening for delivering water to the chamber from a pump, an outlet opening arranged in an upper leg of the housing for delivering water from the chamber to a boiler inlet, and a draining bore arranged in a lower leg of the housing and communicating with the chamber. A spherical rubber valve ball is arranged within the chamber and is movable with respect to the draining bore in response to changes in pressure in the chamber. The ball opens and closes the draining bore in accordance with the chamber pressure to enable excess steam and water from the boiler and the pump, and excess air from the pump to exit the chamber via the draining bore. Thus, pressure within the boiler is controlled to prevent dripping of the coffee making machine.
    • 一种用于咖啡机的双向排放阀包括:一个包含一个腔室的L形壳体,一个用于将水从一个泵输送到该腔室的入口, 锅炉入口和布置在壳体的小腿中并与腔室连通的排水孔。 球形橡胶阀球设置在腔室内并且响应于腔室中的压力变化而相对于排水孔可移动。 球根据腔室压力打开和关闭排水孔,以使得来自锅炉和泵的过量的蒸汽和水,以及来自泵的多余空气经由排水孔离开室。 因此,控制锅炉内的压力以防止咖啡机滴落。