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    • 91. 发明申请
    • SERVICE PANEL WITH MICROPROCESSOR
    • 维修面板与微处理器
    • US20150057765A1
    • 2015-02-26
    • US13975156
    • 2013-08-23
    • Phil A. Parker
    • Phil A. Parker
    • G05B15/02
    • G01M3/2815E03B7/071G05B15/02G05B2219/24003G05B2219/24146G05B2219/2642Y02A20/15
    • A service panel for controlling at least one utility actuator to control the availability of a utility comprises a covered enclosure having an exterior region and an interior region, at least one readily accessible utility control providing ON and OFF request signals and a limited access control in the exterior region providing a temporary activate signal. The service panel has a controller and data storage programmed with code and data and control circuitry providing an “ON” control signal to the at least one utility actuator to switch the at least one utility actuator to the “ON” state, and the control circuitry providing an “OFF” control signal to the at least one utility actuator to switch the at least one utility actuator to an OFF state, the control circuitry further providing a re-key signal to the at least one actuator in response to activation of a switch.
    • 用于控制至少一个公用事业执行器以控制公用事业可用性的维修面板包括具有外部区域和内部区域的被覆盖的外壳,至少一个容易接近的公用事业控制器,其提供ON和OFF请求信号以及在 外部区域提供临时激活信号。 所述维修面板具有控制器和数据存储器,所述控制器和数据存储器被编程有代码和数据以及控制电路,其向所述至少一个公用设施执行器提供“ON”控制信号,以将所述至少一个公用设施执行器切换到“ON”状态, 向所述至少一个公用设施致动器提供“OFF”控制信号以将所述至少一个公用设施致动器切换到OFF状态,所述控制电路还响应于所述开关的启动向所述至少一个致动器提供重新键信号 。
    • 92. 发明申请
    • IN-GROUND FLUSHING DEVICE
    • 地面冲洗装置
    • US20150053278A1
    • 2015-02-26
    • US13971282
    • 2013-08-20
    • Mueller International, LLC
    • Harold MosleyWade Pope
    • E03B7/08E03B7/02
    • E03B7/08E03B7/07E03B7/071E03B7/072E03B7/074E03B7/075E03B7/077E03B7/078E03B7/095G01F15/18G01F15/185Y10T137/1353Y10T137/6851
    • A flushing device includes an enclosure having an access opening; a discharge conduit; a fluid system conduit; a platform situated within the enclosure, the platform having a top surface and a bottom surface, the top surface facing the access opening and movable to proximate the access opening; a flushing valve mounted on the platform and in fluid communication with the fluid system conduit, the flushing valve operatively connected to a flushing controller, the flushing valve controllable by the flushing controller; and a meter mounted on the top surface of the platform, the meter including a meter inlet and a meter outlet, the meter inlet in fluid communication with the flushing valve, the flushing valve in fluid communication with the meter and the fluid system conduit, the meter outlet in fluid communication with the discharge conduit.
    • 冲洗装置包括具有进入开口的外壳; 排放管道 流体系统导管; 位于所述外壳内的平台,所述平台具有顶部表面和底部表面,所述顶部表面面向所述进入开口并可移动到所述进入开口附近; 安装在平台上并与流体系统管道流体连通的冲洗阀,冲洗阀可操作地连接到冲洗控制器,冲洗阀可由冲洗控制器控制; 以及安装在平台顶表面上的仪表,仪表包括仪表入口和仪表出口,仪表入口与冲洗阀流体连通,与仪表和流体系统导管流体连通的冲洗阀, 出口与排放管道流体连通。
    • 93. 发明申请
    • WATER DAMAGE MITIGATION MANAGEMENT SYSTEM AND METHOD
    • 水污染减缓管理系统与方法
    • US20150019166A1
    • 2015-01-15
    • US13940165
    • 2013-07-11
    • Independent Mitigation and Cleaning/ Conservation Network,Inc.
    • Patrick H. HARMONJames ANTHONYNathan HART
    • G01M99/00
    • E03B7/071F17D5/02G06Q10/10
    • A water damage mitigation management server includes a transceiver, an electronic data storage, and a processor. The transceiver is operable to transmit and receive communications over at least a portion of a network. The processor is configured to receive and cause to be displayed chamber dimension data, water damage data, and dehumidifier data. The processor is further configured to, using at least the chamber dimension data and the water damage data, calculate and caused to be displayed a required quantity of water to be removed from the chamber over a given period of time. The processor is further configured to determine and cause to be displayed whether the required quantity of water to be removed is greater than, less than, or approximately equal to an expected quantity of water to be removed by the chosen dehumidifier over the given period of time.
    • 水损害缓解管理服务器包括收发器,电子数据存储器和处理器。 收发器可操作以在网络的至少一部分上发送和接收通信。 处理器被配置为接收并导致显示室尺寸数据,水损伤数据和除湿器数据。 所述处理器还被配置成至少使用所述室尺寸数据和所述水损伤数据,并计算并在所述给定时间段内显示要从所述室移除的所需量的水。 处理器还被配置成确定并且导致显示要被去除的所需量的水是否大于,小于或近似等于所选择的除湿器在给定时间段内被去除的预期水量 。
    • 95. 发明授权
    • In-line utility shut-off system and method of use thereof
    • 在线公用事业关闭系统及其使用方法
    • US08857466B1
    • 2014-10-14
    • US13020097
    • 2011-02-03
    • Thomas J. Wilson
    • Thomas J. Wilson
    • F16K37/00F16K31/06E03B7/04E03B7/07
    • E03B7/071Y02A20/15Y10T137/8158Y10T137/87338Y10T137/87507
    • A system that provides for the remote control shutoff of a main supply of a utility to a structure in an unattended manner comprises a solenoid activated shutoff valve typically mounted immediately downstream of a main shutoff valve and a securable enclosure containing a remote control switch and audible alarm unit electrically connected to a power source. A manual bypass valve is provided as an override should it be required. Because the system requires electricity to operate, a general power failure will automatically shut off of the water supply. No back-up power source, such as a back-up battery, is utilized with the present system. Further, activation of the system is accomplished using a remote control to control the system from a distance.
    • 提供以无人值守的方式将实用程序的主要供应源远程控制关闭到结构的系统包括通常安装在主截止阀的紧挨下游的螺线管激活截止阀和包含遥控开关和声音报警器的可固定外壳 电源连接到电源。 如果需要,手动旁通阀被提供作为覆盖。 由于系统需要电力运行,因此一般的电源故障将自动关闭供水。 本系统不使用备用电源(如备用电池)。 此外,使用遥控器来实现系统的激活以从一定距离控制系统。
    • 96. 发明申请
    • Water Shut Off Device
    • 关水装置
    • US20140224350A1
    • 2014-08-14
    • US13962157
    • 2013-08-08
    • Jitendra Patel
    • Jitendra Patel
    • G05D7/06
    • E03B7/071Y02A20/15Y10T137/1842
    • The present invention detects the presence of occupancy or activity in one or more locations of a building and remotely takes action to shut off the flow of water by keeping the main shutoff valve to the building closed when no activity or occupancy has been detected for a predetermined amount of time and opening this valve when activity has been sensed. Motion sensors are placed throughout the building in areas commonly traveled during occupancy/activity. The system is designed such that motion sensors have a means to communicate with a motorized water valve each time motion is sensed to control the opening and closing of the water valve. The means of communication between the one or more motion sensors and the motorized water valve may be a wireless signal such as a radio signal generator which transmits a radio signal to a receiver integrated with the motorized water valve.
    • 本发明在建筑物的一个或多个位置检测到占用或活动的存在,并且当没有检测到预定的活动或占用时,通过将主截流阀保持在建筑物关闭的状态下远程地采取行动来切断水流 在检测到活动时,时间和打开此阀。 运动传感器放置在整个建筑物的入住/活动期间通常行驶的地区。 该系统被设计成使得运动传感器具有在每次检测到运动以控制水阀的打开和关闭时与电动水阀通信的装置。 一个或多个运动传感器和电动水阀之间的通信装置可以是诸如无线电信号发生器的无线信号,其将无线电信号发送到与电动水阀集成的接收器。
    • 97. 发明授权
    • Leak detector assembly
    • 泄漏检测器组件
    • US08590559B1
    • 2013-11-26
    • US13478112
    • 2012-05-23
    • Ezequiel Gutierrez
    • Ezequiel Gutierrez
    • E03D11/00F16K23/00
    • E03B7/071G01M3/16Y02A20/15Y10T137/5762
    • A leak detector assembly uses fluid collected from a leaking conduit to automatically prohibit flow. The assembly includes a housing having a bottom, a top and a perimeter wall extending between the bottom and the top. A basin is coupled to the top of the housing. A drain opening is positioned in the basin. A collection pan is positioned below the drain opening to collect fluids passed through the drain opening from the basin. An electrical circuit is coupled to the collection pan. A sponge is coupled to the collection pan positioned over and contacting spaced contacts whereby the sponge completes the electrical circuit when the sponge becomes wet. A stop valve is coupled to a fluid conduit providing fluid to a position over the basin. The stop valve is operationally coupled to the electrical circuit whereby the stop valve closes upon the electrical circuit being completed.
    • 泄漏检测器组件使用从泄漏导管收集的流体自动禁止流动。 组件包括具有底部,顶部和在底部和顶部之间延伸的周壁的壳体。 盆地连接到壳体的顶部。 排水口位于盆中。 收集盘位于排水口下方,以从盆中收集通过排水开口的流体。 电路耦合到收集盘。 海绵被联接到收集盘,该收集盘位于上方并与间隔开的接触部接触,由此当海绵变湿时海绵完成电路。 止回阀联接到流体导管,从而将流体提供到盆地上方的位置。 截止阀可操作地耦合到电路,由此在电路完成时截止阀关闭。
    • 98. 发明申请
    • Fluid Leak Detection and Shutdown Apparatus
    • 流体泄漏检测和关闭装置
    • US20130092242A1
    • 2013-04-18
    • US13272219
    • 2011-10-13
    • Kevin Duane Guy
    • Kevin Duane Guy
    • F16K31/02
    • E03B7/071F17D5/02G01M3/2807Y02A20/15Y10T137/0324Y10T137/7759Y10T137/7761Y10T137/86525Y10T137/87265Y10T137/87555
    • An apparatus and method for a fluid leak detection and shutdown for a fluid distribution system having a total system flow rate. The apparatus includes a solenoid shutoff valve having a normally open state and an activated closed state with a flow capacity matched to the total fluid distribution system flow rate. The apparatus also has a primary fluid flow line and a smaller capacity secondary fluid flow line. The apparatus includes a flow sensor in fluid communication with the secondary fluid flow line, wherein the flow sensor has a perceptible output and a flow rate capacity less than the solenoid shutoff flow capacity. Operationally, the flow sensor receives a portion of the solenoid shutoff valve flow capacity in priority over the primary fluid flow line, allowing the flow sensor to detect minimal flow rates and using the perceptible output to activate the solenoid shutoff valve into the closed state.
    • 一种用于具有总系统流量的流体分配系统的流体泄漏检测和关闭的装置和方法。 该装置包括具有常开状态的电磁截止阀和具有与总流体分配系统流量相匹配的流动能力的启动关闭状态。 该装置还具有主流体流动管线和较小容量的二次流体流动管线。 该装置包括与第二流体流动管线流体连通的流量传感器,其中流量传感器具有可感知的输出和小于螺线管截止流量的流量容量。 在操作上,流量传感器优先于主流体流动线路接收电磁线圈截止阀流量的一部分,允许流量传感器检测最小流量并使用可察觉的输出来将电磁线圈截止阀激活到关闭状态。