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    • 1. 发明申请
    • REUSABLE SPRAY BOTTLE WITH INTEGRATED DISPENSER
    • 具有集成分配器的可重复喷射瓶
    • WO2016054587A1
    • 2016-04-07
    • PCT/US2015/053847
    • 2015-10-02
    • MICROLIN, LLC
    • JOSHI, Ashok, V.BHAVARAJU, Sai
    • B05B11/00C11D3/48C11D7/18
    • C11D3/48B05B11/3081B05B15/00B08B3/10C11D3/3947C11D17/041
    • An apparatus for cleaning and/or disinfecting surfaces and objects includes a spray bottle that is refillable with an aqueous solution, the spray bottle including a nozzle and a container. The apparatus further includes a conduit in communication with the nozzle and an interior of the container, an actuator for pumping the aqueous solution from the interior of the container to outside the spray bottle through the nozzle, an ultraviolet light source in communication with the conduit configured to at least partially radiate the aqueous solution in the conduit, a power source in communication with the ultraviolet light source, and an actuator in electrical communication with the power source, the actuator configured to provide power to the ultraviolet light source upon actuation of the actuator.
    • 用于清洁和/或消毒表面和物体的装置包括可用水溶液重新填充的喷雾瓶,喷雾瓶包括喷嘴和容器。 所述设备还包括与所述喷嘴和所述容器内部连通的导管,用于通过所述喷嘴将所述水溶液从所述容器的内部泵送到所述喷雾瓶外部的致动器,与所配置的所述导管连通的紫外光源 至少部分地辐射所述导管中的水溶液,与所述紫外光源连通的电源以及与所述电源电连通的致动器,所述致动器被配置为在所述致动器致动时向所述紫外光源提供电力 。
    • 3. 发明申请
    • INSTRUMENTED PIPETTE TIP
    • 仪器仪表提示
    • WO2009045343A1
    • 2009-04-09
    • PCT/US2008/011205
    • 2008-09-26
    • EL SPECTRA, LLCAYLIFFE, Harold, E.KING, Curtis, S.
    • AYLIFFE, Harold, E.KING, Curtis, S.
    • B01L3/02
    • B01L3/0275B01L3/0217B01L3/5027B01L2300/0627B01L2300/0645G01N35/1016G01N2035/1062
    • An improved pipette tip (100) including an elongate body stretching between a proximal end (116) and a distal end (114). The body (112) is typically made from a plurality of layers (e.g. 130, 132, 134, 136, 138) configured and arranged to provide a fluid path extending from the distal end toward the proximal end. The improved pipette tip (100) includes a sensor component disposed to electrically interrogate fluid flowing along the fluid path. An operable sensor component includes an electrode (e.g. 154, 192) that is disposed in the fluid path to contact fluid therein. A pipette tip (100) may be embodied to: count particles, verify sample integrity (e.g. freedom from bubbles), monitor sample flow rate, and confirm an inspired volume, among other uses.
    • 一种改进的移液器吸头(100),包括在近端(116)和远端(114)之间延伸的细长体。 主体(112)通常由多个层(例如,130,132,134,136,138)制成,其被构造和布置成提供从远端朝向近端延伸的流体路径。 改进的移液管尖端(100)包括设置成电询问沿着流体路径流动的流体的传感器部件。 可操作的传感器部件包括布置在流体路径中以接触其中的流体的电极(例如154,192)。 移液管尖端(100)可以被实现为:除了其他用途之外,还可以计数颗粒,验证样品完整性(例如,不受气泡的影响),监测样品流速,以及确认启发体积。
    • 5. 发明申请
    • METHOD AND ARRANGEMENT FOR STOPPING POWERED EQUIPMENT IN AN EMERGENCY SITUATION
    • 在紧急情况下停止供电设备的方法和装置
    • WO2005117539A2
    • 2005-12-15
    • PCT/US2005/001331
    • 2005-01-18
    • FREDERICK, John, R.
    • FREDERICK, John, R.
    • E21F11/00G08C17/02
    • G08C17/02E21F11/00
    • A method and arrangement for remotely stopping powered equipment in emergency situations. Embodiments of the invention include wearable radio remote transmitters (400) capable of transmitting a signal (500, 505) to powered equipment in the immediate area. A transmitter (400) desirably is located such that it can be quickly activated by the person wearing the transmitter, and may be equipped with a shock detection device capable of automatically activating the radio transmitter. Powered equipment operating in the vicinity of transmitter-equipped personnel are fitted with receivers, electronics, actuator, batteries and/or electrical connections, as needed, to shutdown the equipment upon receiving a radio signal from a transmitter. Sometimes receivers and amplifiers are located such that a transmitter’s signal sent from any location in the area will reach all relevant equipment receivers with sufficient energy to activate the shutdown procedure. A preferred embodiment may include a manually activated transmitter (400) attached to a person’s clothing and receivers and actuators mounted on all powered equipment within line-of-sight of this person.
    • 一种在紧急情况下远程停电的方法和装置。 本发明的实施例包括能够将信号(500,505)发送到直接区域中的动力设备的可穿戴无线电远程发射器(400)。 发射机(400)期望地被定位成使得其能够被佩戴发射机的人快速地激活,并且可以配备有能够自动激活无线电发射机的冲击检测装置。 在配备变送器的人员附近操作的受电设备根据需要安装有接收器,电子设备,执行器,电池和/或电气连接,以便在收到来自变送器的无线电信号时关闭设备。 有时,接收器和放大器位于这样的位置,使得从该区域中的任何位置发送的发射器的信号将以足够的能量到达所有相关设备接收器以激活关机过程。 优选实施例可以包括附接到人的衣服的手动激活的发射器(400)以及安装在该人的视线内的所有动力设备上的接收器和致动器。
    • 6. 发明申请
    • AIR FRESHENER WITH OPTIONAL DRAIN CLEANER
    • 带可选排水清洁器的空气清新机
    • WO2017007771A1
    • 2017-01-12
    • PCT/US2016/041007
    • 2016-07-05
    • MICROLIN, LLC
    • JOSHI, Ashok, V.
    • A61L9/012A61L11/00B08B3/04C11D3/50E03D9/02
    • A61L9/01A61L9/042A61L9/127
    • An automatic dispensing device (100, 120, 140, 170,180, 190, etc.) for volatile fluid operable to apply one or more agent to a local environment for more than 14 days. Preferred devices dispense a first agent for air freshening, and may optionally dispense a second agent, such as a drain cleaner. When present, the drain cleaner typically is carried by a container structured to permit a slow release of drain cleaning fluid from a bulk fluid supply. A dispensing device may nonexclusively operate by evaporation of volatile fluid from a polymer or rubber-like carrier material that is infused with the volatile fluid; gravity-induced drip from a bulk supply of volatile fluid through a small orifice onto an emanator; osmotic transfer of volatile fluid from a bulk supply; gas -pump drive of volatile fluid at controlled pressure; or diffusion of volatile fluid through a wall of a container of bulk volatile fluid; and combinations thereof.
    • 用于挥发性流体的自动分配装置(100,120,140,​​170,180,190等)可操作以将一种或多种试剂施用于当地环境超过14天。 优选的装置分配用于空气清新的第一代理,并且可以可选地分配第二代理,例如排水清洁器。 当存在时,排水净化器通常由构造成允许排放清洁流体从散装流体供应缓慢释放的容器承载。 分配装置可以通过挥发性流体从注入挥发性流体的聚合物或橡胶状载体材料的蒸发而非排气地操作; 重力引起的大量源自挥发性液体的滴水通过小孔喷射到散热器上; 大量供应挥发性液体的渗透转移; 控制压力下挥发性液体的气泵驱动; 或挥发性流体通过大量挥发性流体的容器的壁的扩散; 及其组合。
    • 8. 发明申请
    • METHOD FOR MUTIPLEXED MICROFLUIDIC BEAD-BASED IMMUNOASSAY
    • 基于微流控粒径的免疫荧光法的方法
    • WO2012158207A2
    • 2012-11-22
    • PCT/US2012/000237
    • 2012-05-07
    • E.I. SPECTRA, LLCAYLIFFE, Harold, E.
    • AYLIFFE, Harold, E.
    • G01N33/546
    • G01N15/12G01N15/1459G01N15/1484G01N2015/1037
    • A method for performing multiplexed bead-based immunoassays using a microfluidic cassette capable of detecting a particle passing in substantially single file through an interrogation zone and generating a Coulter effect signal responsive to a characteristic of the particle. A fluid sample may be prepared by associating antibody-coated beads of different sizes to particles of interest. A first multiplexing option may be based on bead size, in which case the intensity of the Coulter signal is used to sort or characterize the particles. A second multiplexing option may be based on detection of Stokes' shift phenomena, or even simply emission intensity, in which case particles may be characterized responsive to intensity of the signal resulting from detection of radiation. The first and second multiplexing options may be employed together to populate an array of particle characteristics.
    • 一种使用微流控盒进行多重珠粒免疫测定的方法,所述微流控盒能够检测通过询问区通过基本单个文件的颗粒,并响应于颗粒的特征产生库尔特效应信号。 可以通过将不同大小的抗体包被的珠粒与感兴趣的颗粒相关联来制备流体样品。 第一复用选项可以基于焊道尺寸,在这种情况下,Coulter信号的强度用于对颗粒进行分类或表征。 第二复用选项可以基于斯托克斯移位现象的检测,或者甚至是发射强度,在这种情况下,可以根据由辐射检测产生的信号的强度来表征粒子。 可以一起采用第一和第二复用选项来填充粒子特征的阵列。