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    • 3. 发明授权
    • Self disinfecting drain trap
    • 自身消毒疏水阀
    • US09212475B2
    • 2015-12-15
    • US13505132
    • 2010-10-29
    • Mwelwa Chabby Chabala
    • Mwelwa Chabby Chabala
    • A47K1/14E03C1/126C02F1/68
    • E03C1/126C02F1/687Y10T137/0441
    • A drain trap U-bend which includes a molded housing for a re-usable disinfecting tablet dispenser (FIG. 1). The disinfecting tablet dispenser contains a disinfecting tablet (FIG. 4), which is released into the U-bend molding (FIG. 6: showing the tablet inside the housing molding) by a spring loaded tension device (FIG. 9: Showing the whole device including u bend, housing, rubber spur, and indicator). The tablet is stabilized within the housing of the dispenser by twin toothed rubber seals. (FIG. 10: Showing the sealant mechanism and that the water level is at the bottom sealer and with additional sealer higher up insuring no infections). The tablet is held in place by an upper ribbed rubber spur (FIG. 5). The dispenser is made water-tight by rubber O-ring that deforms to seal the branch between the dispenser and the molded housing of the U-bend.
    • 排水阱U形弯头,其包括用于可重复使用的消毒片剂分配器的模制外壳(图1)。 消毒片剂分配器包含消毒片剂(图4),其通过弹簧加载张力装置释放到U形弯曲成型件中(图6:显示片剂内部的模制件)(图9:显示整个 设备包括u弯,外壳,橡胶支柱和指示器)。 片剂通过双齿橡胶密封件在分配器的壳体内稳定。 (图10:显示密封剂机构,并且水位在底部密封剂处,并且附加的密封剂更高以确保没有感染)。 片剂通过上部带肋橡胶支撑固定在适当位置(图5)。 分配器由橡胶O形环制成水密,O形环变形,以密封分配器与U形弯头的模制外壳之间的分支。
    • 4. 发明申请
    • METHODS AND SYSTEMS FOR IMPROVED IRRIGATION SENSOR AND CONTROL COMMUNICATION
    • 改进灌溉传感器和控制通信的方法和系统
    • US20150327449A1
    • 2015-11-19
    • US14383409
    • 2014-02-11
    • CREATIVE SENSOR TECHNOLOGY, INC.
    • Norman BartlettCharles Woringer
    • A01G25/16G01R31/28
    • A01G25/16A01G25/167G01R31/2829G05B2219/2625Y10T137/0441Y10T137/1866Y10T137/189Y10T137/598
    • Disclosed embodiments of the invention include methods and systems for upgrading an existing irrigation system to increase its sensing and control capability without requiring extensive rewiring. A controller module is installed between an irrigation controller and a zone valve and physically proximate to the irrigation controller without disturbing most of the existing wiring between the irrigation controller and the zone valve. A field module is installed between the controller module and the zone valve without disturbing most of the existing wiring between the irrigation controller and the zone valve. The controller module and field module are the communicatively coupled primarily using the existing wiring. The controller module may encode commands transmitted to the field module and/or decode encoded data transmitted from the field module. The field module may encode data transmitted to the controller module and/or decode encoded commands transmitted from the controller module.
    • 本发明的公开的实施例包括用于升级现有灌溉系统以增加其感测和控制能力而不需要大量重新布线的方法和系统。 控制器模块安装在灌溉控制器和区域阀之间,物理上靠近灌溉控制器,而不会干扰灌溉控制器和区域阀之间的大部分现有布线。 现场模块安装在控制器模块和区域阀之间,而不会干扰灌溉控制器和区域阀之间的大部分现有布线。 控制器模块和现场模块主要使用现有布线进行通信耦合。 控制器模块可以编码发送到现场模块的命令和/或解码从现场模块发送的编码数据。 现场模块可以对发送到控制器模块的数据进行编码和/或解码从控制器模块发送的编码命令。
    • 6. 发明申请
    • METHODS OF MANUFACTURING A FLUID DISTRIBUTION SYSTEM ASSEMBLY
    • 制造流体分配系统装置的方法
    • US20150226359A1
    • 2015-08-13
    • US14287564
    • 2014-05-27
    • THE BOEING COMPANY
    • Casey Charles Regan
    • F16L41/02
    • F16L9/18F16L7/00Y10T137/0441
    • Methods and an assembly for manufacturing a fluid distribution system are provided herein. The method includes providing a first distribution line configured to channel a fluid in a first direction and coupling at least one internal support member to an outer surface of the first distribution line. The at least one internal support member includes a plurality of support legs extending radially outward therefrom. The method also includes aligning a second distribution line concentrically with and circumscribing the first distribution line. The second distribution line is configured to channel the fluid in an opposite second direction. The method further includes coupling the plurality of support legs to an inner surface of the second distribution line.
    • 本文提供了用于制造流体分配系统的方法和组件。 该方法包括提供第一分配线,其配置成在第一方向上引导流体并将至少一个内部支撑构件联接到第一分配线的外表面。 所述至少一个内部支撑构件包括从其径向向外延伸的多个支撑腿。 该方法还包括将第二分配线与第一分配线同心对准并限制第一分配线。 第二分配线被配置成在相反的第二方向上引导流体。 该方法还包括将多个支撑腿联接到第二分配线的内表面。
    • 9. 发明申请
    • DRAIN VALVE
    • 排水阀
    • US20140373931A1
    • 2014-12-25
    • US14082018
    • 2013-11-15
    • Kevin Huber
    • Kevin Huber
    • E03F5/04
    • E03C1/298E03F5/042Y10T137/0441Y10T137/7838
    • A drain valve allows for drainage of fluids while preventing backflow of gases from a drainage system through the drain valve. A drain valve can have a first, sealed position in which a component of the valve seals an opening through the valve and a second, open position in which the component of the valve is separated from the opening to allow a fluid to drain through the valve. When the fluid has drained through, the component of the valve can return to the closed position. The valve can include a pressure relief conduit to help equalize pressure across the valve and permit unrestrained draining of fluid through the valve.
    • 排水阀允许流体排水,同时防止排气系统通过排水阀回流气体。 排水阀可以具有第一密封位置,在该第一密封位置,阀的部件在其中密封通过阀的开口和第二打开位置,在该位置中阀的部件与开口分离,以允许流体通过阀排出 。 当流体排出时,阀门的部件可以返回到关闭位置。 阀可以包括压力释放导管,以帮助平衡阀上的压力,并允许流体通过阀的无限制排出。