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    • 1. 发明申请
    • SYSTEM FOR TRACKING DISPENSE EVENTS
    • 跟踪事件的系统
    • WO2015157491A1
    • 2015-10-15
    • PCT/US2015/025049
    • 2015-04-09
    • GOJO INDUSTRIES, INC.
    • WEGELIN, Jackson WilliamARCHER, Matthew JosephCURTIS, Chip
    • G08B21/24
    • B65D25/20G08B21/24
    • A dispensing system includes a container within which a material is contained. The dispensing system includes a nozzle, attached to the container, having a first portion and a second portion. The dispensing system includes a magnet attached to the first portion and a compliance system attached to the second portion. The compliance system includes a transmitter and a magnet sensor, coupled to the transmitter, for detecting a presence of the magnet when the first portion with respect to the second portion is in a closed position, and for detecting a non-presence of the magnet when the first portion with respect to the second portion is in an opened position. The transmitter transmits a wireless compliance signal indicative of the magnet sensor detecting at least one of the presence or the non-presence of the magnet.
    • 分配系统包括其中容纳材料的容器。 分配系统包括附接到容器的具有第一部分和第二部分的喷嘴。 分配系统包括附接到第一部分的磁体和附接到第二部分的顺应性系统。 柔性系统包括耦合到发射器的发射器和磁体传感器,用于当第一部分相对于第二部分处于闭合位置时检测磁体的存在,并且用于当磁体的不存在时检测磁体的不存在 相对于第二部分的第一部分处于打开位置。 发射机发送表示磁体传感器的无线合规信号,检测磁体的存在或不存在中的至少一个。
    • 2. 发明申请
    • WIRELESS SENSOR NETWORK
    • 无线传感器网络
    • WO2017031025A1
    • 2017-02-23
    • PCT/US2016/046964
    • 2016-08-15
    • GOJO INDUSTRIES, INC.
    • WEGELIN, Jackson, WilliamCURTIS, Chip
    • H04W84/20H04W40/32
    • H04W4/005H04B17/318H04W4/70H04W52/0206H04W56/0015H04W72/0446H04W72/0453H04W72/0486H04W72/082H04W84/18H04W84/20H04W88/16Y02D70/142
    • One or more techniques and/or systems are provided for automatically forming a wireless sensor network, implementing power management for the wireless sensor network, and/or self-healing within the wireless sensor network. For example, hub devices, configured to forward messages through the wireless sensor network to a gateway device having access to a network, may automatically join and configure into the wireless sensor network by locating and connecting to master devices using signal frequencies representing numbers of hops to the gateway device. A hub device may be configured to transition between a low power sleep state for power conservation and an awakened normal operational state for transmitting timing signals according to a duty cycle, and thus the hub device may be capable of operating from a battery. If a hub device determines that a master device has become inoperable, the hub device may automatically search for a new master device.
    • 提供一个或多个技术和/或系统用于自动形成无线传感器网络,实现无线传感器网络的电源管理和/或无线传感器网络内的自愈。 例如,被配置为将消息通过无线传感器网络转发到具有访问网络的网关设备的集线器设备可以通过使用表示跳数的信号频率定位和连接到主设备来自动加入并配置到无线传感器网络中 网关设备。 集线器设备可以被配置为在功率节省的低功率睡眠状态和用于根据占空比发送定时信号的唤醒的正常操作状态之间转换,并且因此集线器设备可以能够从电池操作。 如果集线器设备确定主设备不可操作,则集线器设备可以自动搜索新的主设备。
    • 3. 发明申请
    • SENSING DEVICE
    • 感应装置
    • WO2016112167A1
    • 2016-07-14
    • PCT/US2016/012441
    • 2016-01-07
    • GOJO INDUSTRIES, INC.
    • WEGELIN, Jackson WilliamCURTIS, Chip
    • G01V13/00G01V8/20
    • G01V13/00A47K5/1217E03C1/057G01V8/20
    • Among other things, a dispensing device is described herein. A sensor component of the dispensing device includes an emitter (e.g., of an emitter array) in optical communication with a detector array for sensing objects disposed between the emitter and the detector array. An object detector is configured to identify a presence of an object between the emitter and the detector array based upon a readout signal generated by the detector array. A calibration component is configured to recalibrate the object detector responsive to determining that an obstruction is present between the emitter and the detector array. The recalibration allows the detector array and the emitter array to detect the presence of an object regardless of the obstruction. A material (e.g., soap, sanitizer, etc.) may be dispensed from the dispensing device responsive to detecting the presence of the object.
    • 除此之外,这里描述了分配装置。 分配装置的传感器部件包括与检测器阵列光学通信的发射器(例如,发射器阵列),用于感测设置在发射器和检测器阵列之间的物体。 对象检测器被配置为基于由检测器阵列产生的读出信号来识别发射器和检测器阵列之间的物体的存在。 校准组件被配置为响应于确定在发射器和检测器阵列之间存在障碍物来重新校准物体检测器。 重新校准允许检测器阵列和发射器阵列检测物体的存在,而不管阻塞物。 响应于检测到物体的存在,可以从分配装置分配材料(例如肥皂,消毒剂等)。
    • 4. 发明申请
    • SENSOR FOR DISPENSING SYSTEM
    • 传感器用于分配系统
    • WO2016025711A1
    • 2016-02-18
    • PCT/US2015/045053
    • 2015-08-13
    • GOJO INDUSTRIES, INC.
    • WEGELIN, Jackson, WilliamCURTIS, Chip
    • G01V8/10A47K5/00
    • G01V8/10A47K5/00A47K5/1217
    • Among other things, one or more systems and/or techniques for improving performance of a dispensing system are provided herein. The dispensing system may comprise an emitter and a detector. The emitter may be configured to transmit light (e.g., and/or one or more other signals). The detector may be configured to measure light, for example. The detector may determine a first measurement of light while the emitter is not transmitting light. The detector may determine a second measurement of light responsive to the emitter transmitting light. The detector may determine a third measurement of light based upon a comparison of the first measurement of light with the second measurement of light. The detector may be direct current (DC) coupled while determining the third measurement of light.
    • 除此之外,本文提供了用于改善分配系统的性能的一个或多个系统和/或技术。 分配系统可以包括发射器和检测器。 发射器可以被配置为透射光(例如和/或一个或多个其它信号)。 例如,检测器可以被配置为测量光。 当发射器不透光时,检测器可以确定光的第一测量。 检测器可以确定响应于发射器透射光的光的第二测量。 基于第一光测量与第二光测量的比较,检测器可以确定光的第三测量。 在确定光的第三次测量的同时,检测器可以是直流(DC)耦合的。
    • 5. 发明申请
    • DISPENSER FUNCTIONALITY EVALUATION
    • 分配器功能评估
    • WO2015109073A1
    • 2015-07-23
    • PCT/US2015/011566
    • 2015-01-15
    • GOJO INDUSTRIES, INC.
    • WEGELIN, Jackson, WilliamBROWN, Paul, JasonCURTIS, Chip
    • B05B12/00B05B12/08
    • G07F9/026A47K5/1217B05B12/004B05B12/08B05B12/081
    • One or more techniques and/or systems are provided for evaluating dispenser functionality of a dispenser for dispensing a material. In an example, a non-loaded electrical characteristic and/or a loaded electrical characteristic of the dispenser may be measured and evaluated to determine whether to perform a dispense event. In another example, current measurements, such as peak current, may be measured during a dispense event. The current measurements may be evaluated to determine whether a problem exists, such as a mechanical stall, a gear train problem, an actuator problem, a pump problem (e.g., a clogged pump), a mechanical impedance, and/or other issue. Such information may be collected, stored as historical data, and/or used to determine whether to perform subsequent dispense events.
    • 提供了一种或多种技术和/或系统来评估用于分配材料的分配器的分配器功能性。 在一个示例中,可以测量和评估分配器的无负载电特性和/或负载电特性以确定是否执行分配事件。 在另一个示例中,可以在分配事件期间测量电流测量,例如峰值电流。 可以评估当前测量值以确定是否存在问题,例如机械失速,齿轮系问题,致动器问题,泵问题(例如泵的堵塞),机械阻抗和/或其他问题。 这样的信息可以被收集,作为历史数据存储和/或用于确定是否执行后续分配事件。