LAB-ON-VALVE ANALYTICAL SYSTEM
    2.
    发明申请
    LAB-ON-VALVE ANALYTICAL SYSTEM 审中-公开
    LAB-ON-VALVE分析系统

    公开(公告)号:WO2011036622A3

    公开(公告)日:2011-08-04

    申请号:PCT/IB2010054245

    申请日:2010-09-20

    Abstract: A lab-on-valve analytical system includes a rotary sample preparation assembly having a stator and a rotor. The rotor includes a plurality of integral syringe pumps which can be aligned with passages formed within the stator. The stator passages can be connected with fluid inlet connector which connect the sample preparation assembly with fluid sources, and fluid outlet connectors which connect the sample preparation assembly with one or more wet chemical analytical devices. Some embodiments can include a mixer and optical sensor connected with the fluid outlets. One or more drive motors can be used to control simultaneous actuation of one or more of the syringe pumps, thereby providing for simultaneous delivery of metered volumes of fluid.

    Abstract translation: 实验室阀门分析系统包括具有定子和转子的旋转样品制备组件。 转子包括可与定子内形成的通道对准的多个整体式注射泵。 定子通道可以与将样品制备组件与流体源连接的流体入口连接器和将样品制备组件与一个或多个湿化学分析装置连接的流体出口连接器连接。 一些实施例可以包括与流体出口连接的混合器和光学传感器。 可以使用一个或多个驱动马达来控制一个或多个注射器泵的同时致动,由此提供计量体积的流体的同时输送。

    HAND HYGIENE COMPLIANCE MONITORING
    3.
    发明申请
    HAND HYGIENE COMPLIANCE MONITORING 审中-公开
    手卫生监察

    公开(公告)号:WO2010143092A3

    公开(公告)日:2011-04-21

    申请号:PCT/IB2010052323

    申请日:2010-05-25

    CPC classification number: G08B21/245 G06Q10/00

    Abstract: A system and associated processes monitor hand hygiene compliance. The system includes hand hygiene product dispensers positioned within areas of concern (AOC) in a facility in which hand hygiene events are to be monitored. The dispensers detect dispense events initiated at the dispenser and transmit a dispense event signal indicative that a dispense event occurred along with dispenser identification information. The system also includes a plurality of compliance badges, each worn by a different person in the facility. Each compliance badge receives dispense event signals corresponding dispenser identification information associated with dispense events initiated by the wearer of the compliance badge. The badges store dispense event records associated with each dispense event initiated by the wearer and thus keep track of all dispense events initiated by the wearer of the compliance badge. One or more data gathering stations positioned at various locations through the facility receive the dispense event information from the individual badges when they come within range. The dispense event information may then be transferred to a local or remote computer for analysis and reporting on hand hygiene events taking place within the facility.

    Abstract translation: 系统和相关过程监控手卫生合规性。 该系统包括在需要监控手卫生事件的设施中定位在关注区域(AOC)内的手卫生产品分配器。 分配器检测在分配器处发起的分配事件,并发送指示分发事件发生的分配事件信号以及分配器识别信息。 该系统还包括多个合规徽章,每个符合徽章由设备中的不同人员佩戴。 每个合格标准接收与由合规徽章的佩戴者发起的分配事件相关联的分配标识信息的分配事件信号。 徽章存储与佩戴者发起的每个分配事件相关联的事件记录,并且因此跟踪佩戴者对合规徽章发起的所有分配事件。 通过设施定位在不同位置的一个或多个数据收集站当它们进入范围内时,从个体徽章接收分配事件信息。 分配事件信息随后可被传送到本地或远程计算机,用于分析和报告在设施内发生的手卫生事件。

    FLUID FLOW METER
    5.
    发明申请
    FLUID FLOW METER 审中-公开
    流体流量计

    公开(公告)号:WO2014152705A2

    公开(公告)日:2014-09-25

    申请号:PCT/US2014027641

    申请日:2014-03-14

    Applicant: ECOLAB USA INC

    CPC classification number: G01F1/06 G01F1/72 G01F3/10

    Abstract: Systems and methods for determining a flow rate or volume of fluid. The system includes a positive displacement meter including a plurality of non-contact sensors and gears configured to rotate in response to fluid flow through the meter. The gears may include detectable areas that may be sensed by the plurality of non-contact sensors to determine a rotational direction of the gears. The plurality of non-contact sensors may also be configured to generate respective detection signals indicative of a rotation state of the gears. The controller may be configured to receive the detection signals, determine a current rotation state, and increment a rotational count based on the changes in the current rotation state. The controller may use the rotational count to determine a flow rate or volume of fluid.

    Abstract translation: 确定流体流量或体积的系统和方法。 该系统包括容积式流量计,该容积式流量计包括多个非接触式传感器和齿轮,该多个非接触式传感器和齿轮被配置为响应流体流过流量计而旋转。 齿轮可包括可由多个非接触式传感器感测以确定齿轮的旋转方向的可检测区域。 多个非接触式传感器还可以被配置成生成指示齿轮的旋转状态的相应检测信号。 控制器可以被配置为接收检测信号,确定当前旋转状态,并且基于当前旋转状态的变化增加旋转计数。 控制器可以使用旋转计数来确定流体的流量或体积。

    CONVEYOR CHAIN TENSION MONITOR
    8.
    发明申请
    CONVEYOR CHAIN TENSION MONITOR 审中-公开
    传动链张力监测仪

    公开(公告)号:WO2011042866A3

    公开(公告)日:2011-10-13

    申请号:PCT/IB2010054505

    申请日:2010-10-05

    CPC classification number: B65G43/00 B65G43/02 G01L5/101

    Abstract: At least one single link of a conveyor chain is configured to support a tension load cell. A main body portion of the link includes a central cavity sized to contain the load cell, which has been inserted therein through an opening of the main body portion, and at least one auxiliary cavity to contain at least one battery cell and circuitry. A cap portion of the link closes off the opening into the cavity to enclose the load cell therein. One or both of the main body and cap portions may include a bore to receive a fastener for attaching to an end of the inserted load cell, and both portions include a bore oriented to receive a pin of a mating dual link of the conveyor chain. The cap portion may also include anti- rotation surfaces to mate with one or both of: the load cell and the opening.

    Abstract translation: 传送链的至少一个单独链路被配置为支撑张力称重传感器。 连杆的主体部分包括中心腔,该中心腔的尺寸设计成容纳已通过主体部分的开口插入其中的测力传感器和至少一个容纳至少一个电池单元和电路的辅助腔。 连杆的帽盖部分封闭腔体中的开口以将测力传感器封闭在其中。 主体部分和盖部分中的一个或两个可以包括用于接收用于附接到插入的测力传感器的端部的紧固件的孔,并且这两个部分都包括定向成接收输送链的配合双连杆的销的孔。 帽部分还可以包括抗旋转表面以与测力传感器和开口中的一个或两个匹配。

    MEDIDOR DE FLUJO DE FLUIDO.
    10.
    发明专利

    公开(公告)号:MX395049B

    公开(公告)日:2025-03-24

    申请号:MX2017001351

    申请日:2015-08-27

    Applicant: ECOLAB USA INC

    Abstract: Sistemas y métodos para determinar un volumen o velocidad de flujo de fluido. El sistema incluye un medidor de desplazamiento positivo que incluye una pluralidad de sensores de no contacto y engranajes configurados para rotar en respuesta al flujo de fluido a través del medidor. Los engranajes pueden incluir áreas detectables que pueden ser detectadas por la pluralidad de sensores de no contacto para determinar una dirección rotacional de los engranajes. La pluralidad de sensores de no contacto puede también ser configurada para generar señales de detección respectivas indicativas de un estado de rotación de los engranajes. El controlador puede estar configurado para recibir las señales de detección, determinar un estado de rotación actual, e incrementar una cuenta rotacional con base en los cambios en el estado de rotación actual. El controlador puede usar la cuenta rotacional para determinar un volumen o velocidad de flujo de fluido.

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