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    • 1. 发明申请
    • Toilet flusher with novel valves and controls
    • 卫生间冲洗机具有新颖的阀门和控制
    • US20040025238A1
    • 2004-02-12
    • US10441151
    • 2003-05-19
    • Arichell Technologies, Inc.
    • Natan E. ParsonsFatih GulerKay HerbertDavid HadleyRobert Shamitz
    • E03D001/34
    • E03D1/30E03D1/142E03D3/06E03D5/024E03D5/10F16K31/406
    • A tank-type flusher includes an intake valve, i.e., a fill valve, a diaphragm-operated flush valve, and a pressure control mechanism. The intake valve is connected to an external water source and is constructed to close water flow to a water storage tank at about a predefined water level in the water tank. The diaphragm-operated flush valve is constructed to control a flush valve member between a seated state and an unseated state allowing water discharge from the water tank into a toilet bowl. There is a diaphragm, separating a flush-valve chamber and a pilot chamber, arranged to seal the flush-valve chamber and thereby maintain pressure forcing the flush valve member to the seated state preventing the water discharge from the water storage tank to the toilet bowl. The pressure control mechanism is constructed and arranged, upon actuation, to reduce pressure in the pilot chamber of the diaphragm-operated flush valve to cause deformation of the diaphragm and thereby reduce pressure in the flush-valve chamber causing the water discharge.
    • 罐式冲洗机包括进气阀,即填充阀,隔膜式冲洗阀和压力控制机构。 进气阀连接到外部水源,并且被构造成在水箱中大约预定的水位处关闭到水箱的水流。 隔膜操作的冲洗阀被构造成控制在就座状态和非放置状态之间的冲洗阀构件,从而允许水从水箱排放到马桶中。 有一个隔膜,分隔一个冲洗阀室和一个先导室,它被设置成密封冲洗阀室,从而保持迫使冲洗阀件处于就座状态的压力,从而防止水从储水箱排到马桶 。 压力控制机构在致动时构造和布置,以减小隔膜操作的冲洗阀的先导室中的压力,从而导致隔膜的变形,从而减少冲洗阀室中的压力,导致排水。
    • 2. 发明申请
    • Valve actuator having small isolated plunger
    • 阀门执行器具有小的隔离柱塞
    • US20040201442A1
    • 2004-10-14
    • US10833808
    • 2004-04-28
    • Arichell Technologies, Inc.
    • Kay HerbertFatih GulerNatan E. Parsons
    • H01F007/08
    • E03D1/36E03D5/10
    • A solenoid plunger (36) is disposed for reciprocation in a plunger pocket that is formed by the stationary parts of a solenoid-type actuator (10). A flexible diaphragm (22) closes the plunger pocket's open mouth and is deformed by movement of a plunger (36) between an open and closed positions. The diaphragm thereby isolates the plunger from the fluid thereby being controlled, but a separate, incompressible fluid fills the chamber in which the plunger reciprocates. A through-plunger passage (44, 56) provides a low-flow-resistance path for the incompressible fluid to flow into and out of the portion (52) of the plunger chamber behind the plunger as the plunger moves. This reduces actuation time and thus the energy required for an actuation. The chamber in which the plunger reciprocates is formed by elements (22, 26, 32, and 34) through which the incompressible fluid can diffuse only very slowly, so the actuator can be long-lived even if it small in size.
    • 螺线管柱塞(36)设置成在由螺线管型致动器(10)的静止部分形成的柱塞槽中往复运动。 柔性隔膜(22)封闭柱塞口的开口,并通过柱塞(36)在打开位置和闭合位置之间的移动而变形。 隔膜因此将柱塞与流体隔离,从而被控制,但是单独的不可压缩流体填充柱塞往复运动的腔室。 贯穿柱塞通道(44,56)在柱塞移动时提供了一个低流阻阻力路径,用于不可压缩流体流入和移出柱塞后部柱塞室的部分(52)。 这减少了致动时间,从而减少了致动所需的能量。 柱塞往复运动的腔室由元件(22,26,32和34)形成,不可压缩流体可以通过该腔体非常缓慢地扩散,因此致动器即使尺寸较小也可以长寿命。
    • 9. 发明申请
    • COMMUNICATION SYSTEM FOR MULTIZONE IRRIGATION
    • 多区域灌溉通信系统
    • WO2005002321A2
    • 2005-01-13
    • PCT/US2004/020504
    • 2004-06-24
    • ARICHELL TECHNOLOGIES, INC.PARSONS, Natan, E.GULER, FatihHERBERT, Kay
    • PARSONS, Natan, E.GULER, FatihHERBERT, Kay
    • A01G
    • A01G25/16G05B19/0423G05B2219/23051G05B2219/25187G05B2219/2625Y02A40/237
    • A multizone irrigation system (230A) includes a central control unit (300) having a central control system (60) interfaced with a central valve (302) and a central communication unit (e.g., a pressure sensor 304). The central valve regulates water flow for irrigation from a water source and can lower water pressure in the pipes using output (301). The central communication unit is constructed to transmit or receive pressure based communication signals providing irrigation information. Each zone includes a sprinkler control unit (231 1 , 231 2 ...231 N ) including a sprinkler connected to a water pipe for irrigation. Each sprinkler control unit includes a local controller (235) interfaced with a local valve (250) for controlling water flow to the sprinkler. The sprinkler control unit also includes a local communication unit (e.g., a pressure sensor 239) constructed to receive communication signals from the central communication unit and provide received irrigation information to the local controller.
    • 多区域灌溉系统(230A)包括中央控制单元(300),其具有与中央阀(302)连接的中央控制系统(60)和中央通信单元(例如,压力传感器 304)。 中央阀调节从水源灌溉的水流量,并且可以使用输出(301)降低管道中的水压。 中央通信单元构造成发送或接收提供灌溉信息的基于压力的通信信号。 每个区域包括喷洒器控制单元(231 1,231 2,...,231 N),包括连接到用于灌溉的水管的喷洒器 。 每个喷洒器控制单元包括与局部阀(250)接口的局部控制器(235),用于控制流向喷洒器的水流。 喷洒器控制单元还包括构造成接收来自中央通信单元的通信信号并将接收到的灌溉信息提供给本地控制器的本地通信单元(例如,压力传感器239)。