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    • 3. 发明申请
    • VACUUM ARC PLASMA GUN DEPOSITION SYSTEM
    • 真空等离子体喷枪沉积系统
    • WO2003022498A2
    • 2003-03-20
    • PCT/IL2002/000759
    • 2002-09-12
    • TRANSARC LTD.BOXMAN, Raymond, R.GOLDSMITH, SamuelDAVID, Yair
    • BOXMAN, Raymond, R.GOLDSMITH, SamuelDAVID, Yair
    • B23K
    • H05H1/48H05H2245/123
    • A vacuum arc plasma gun deposition system includes a cathode, several anode assemblies that define a plasma channel, a current source for causing electrical current to flow from the anode assemblies to the cathode, a mechanism for moving the anode axially to keep the active surface of the cathode substantially at a fixed position relative to the anode assemblies, mechanisms for moving the anode assemblies to keep the cross sectional size of the plasma channel substantially constant, a mechanism for cooling the cathode by conducting heat away from lateral surfaces of the cathode, and mechanisms for ensuring that a non-flat substrate is coated uniformly. The scope of the invention includes methods of making coated products by depositing coatings on substrates using this vacuum arc plasma gun deposition system, and the coated products so made.
    • 真空电弧等离子体枪沉积系统包括阴极,限定等离子体通道的几个阳极组件,用于使电流从阳极组件流向阴极的电流源,轴向移动阳极以保持活性表面的机构 阴极基本上位于相对于阳极组件的固定位置,用于移动阳极组件以保持等离子体通道的横截面尺寸基本恒定的机构,用于通过从阴极的侧表面传导热量来冷却阴极的机构,以及 用于确保非平坦基底被均匀涂覆的机构。 本发明的范围包括通过使用该真空电弧等离子体枪沉积系统在基板上沉积涂层来制造涂覆产品的方法,以及如此制成的涂覆产品。
    • 6. 发明申请
    • APPARATUS FOR AND METHOD OF EVENLY DISTRIBUTING AN ELECTRICAL LOAD ACROSS AN n-PHASE POWER DISTRIBUTION NETWORK
    • 通过n相电力分配网络即时分配电力负载的方法和方法
    • WO1998026489A1
    • 1998-06-18
    • PCT/US1997022217
    • 1997-12-05
    • TARGET - HI-TECH ELECTRONICS LTD.FRIEDMAN, Mark, M.DAVID, YairWITTNER, Lupu
    • TARGET - HI-TECH ELECTRONICS LTD.FRIEDMAN, Mark, M.
    • H02J01/10
    • H02J3/14H02J3/26Y02E40/50Y10T307/305Y10T307/391Y10T307/461Y10T307/549
    • An apparatus for and method of evenly distributing an electrical load across an n-phase power distribution network. The current in each incoming phase ( phi 1, phi 2, and phi 3) and in each branch circuit (1-5) is measured by a current sensor (16, 18, 20, 42, 44, 46, 48 and 50). The outputs of the current sensors are monitored by a processor (12). Associated with each branch circuit is a multi-pole switch (22, 24, 26, 28 and 30) and a conventional circuit breaker (32, 34, 36, 38, 40). Each switch (22, 24, 26, 28 and 30) is able of connecting its corresponding branch circuit (1-5) to any incoming phase ( phi 1, phi 2, and phi 3), and of disconnecting the branch circuit (1-5) from all n phases ( phi 1, phi 2, and phi 3). The processor (12) periodically monitors currents flowing through each incoming phase and, based on branch circuit load conditions (1-5), reprograms the switches (22, 24 and 26) to keep the branch circuit loads (1-5) evenly distributed across all three incoming phases ( phi 1, phi 2, and phi 3).
    • 一种用于在n相配电网络上均匀分布电负载的装置和方法。 每个输入阶段(phi 1,phi 2和phi 3)和每个分支电路(1-5)中的电流由电流传感器(16,18,20,42,44,46,48和50)测量, 。 电流传感器的输出由处理器(12)监视。 与每个分支电路相关联的是多极开关(22,24,26,28和30)和常规断路器(32,34,36,38,40)。 每个开关(22,24,26,28和30)能够将其对应的分支电路(1-5)连接到任何进入相位(phi 1,phi 2和phi 3),并且断开分支电路(1) -5)从所有n个阶段(phi 1,phi 2和phi 3)。 处理器(12)周期性地监测流过每个进入相的电流,并且基于分支电路负载条件(1-5),重新编程开关(22,24和26)以保持分支电路负载(1-5)均匀分布 在所有三个进入阶段(phi 1,phi 2和phi 3)。