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    • 3. 发明授权
    • Apparatus for coating a substrate with thin layers
    • 用于涂覆薄层的基材的设备
    • US6096174A
    • 2000-08-01
    • US990953
    • 1997-12-15
    • Gotz TeschnerJoachim Szczyrbowski
    • Gotz TeschnerJoachim Szczyrbowski
    • C23C14/34C23C14/35H01J37/34H01L21/316H01L21/318C23C14/32C23C14/54
    • H01J37/3444C23C14/3464C23C14/352H01J37/3408H01L21/31604H01L21/318
    • An apparatus is provided for coating a substrate (24) with thin layers from targets (12, 13) between which a gas discharge plasma is sustained in order to produce the ions necessary for the bombardment of the targets (12, 13) connected to alternating current. The process chamber (6) contains a gas under a specific partial pressure. The targets (12, 13) are connected to a power source in such a circuit so that they alternately form the cathode and anode of the gas discharge. The reversal of the current direction is performed through an H bridge (4) formed of four switches (16 to 19), the conductor (14) connecting the H bridge (4) to a first power source (3) being connected through a branch line (21) to a second power source which can be connected by a switch (20) to ground. All switches (19 to 20) are operated by a control circuit in a regular and variable mode, the ion energy being controlled by the level of the potential difference between the cathode and the coating and the number of ions through the duration of this potential
    • 提供了一种用于从其上维持气体放电等离子体的目标(12,13)的薄层涂覆基底(24)的装置,以产生用于轰击连接到交替的靶(12,13)所必需的离子 当前。 处理室(6)含有特定分压下的气体。 目标(12,13)在这种电路中连接到电源,使得它们交替地形成气体放电的阴极和阳极。 通过由四个开关(16至19)形成的H桥(4)进行电流方向的反转,将H桥(4)连接到第一电源(3)的导体(14)通过分支 线路(21)连接到能够通过开关(20)连接到地的第二电源。 所有的开关(19到20)由一个常规和可变模式的控制电路操作,离子能量由阴极和涂层之间的电位差水平控制,并且在该电位的持续时间内离子的数量
    • 10. 发明授权
    • Method and apparatus for coating substrates in a vacuum chamber, with a
system for the detection and suppression of undesirable arcing
    • 用于在真空室中涂覆基材的方法和装置,具有用于检测和抑制不期望的电弧放电的系统
    • US5698082A
    • 1997-12-16
    • US746437
    • 1996-11-08
    • Gotz TeschnerJurgen Bruch
    • Gotz TeschnerJurgen Bruch
    • H01J37/34C23C14/34
    • H01J37/3444H01J37/34H01J2237/0206
    • In an apparatus for coating substrates, having sputtering cathodes (4, 5) disposed in a vacuum chamber (1), sputtering targets (6, 7), a medium-frequency generator (9) connected to the cathodes (4, 5), and a system (16) for detecting and suppressing undesired arcing, a cycle of the medium-frequency signal of the medium-frequency generator (9) is divided into a plurality of time segments, the electrical values of current and voltage for a predetermined time segment being determined so as to form a measured value signal and being entered into a ground-free meter island (16). The meter island (16) is tied as a remote station into a circular network (9, 16, 17, 18, 19, 11) whose master station is situated in the control unit (11) present in the generator (9). The blocking of the generator (9) when an arc occurs takes place through a line (19) connecting the meter island (16) to the generator (9). The parameters of the arc surveillance and the detection of measured values are preset through the network (17, 18, 19) by means of software.
    • 在用于涂布基板的设备中,具有设置在真空室(1)中的溅射阴极(4,5),溅射靶(6,7),连接到阴极(4,5)的中频发生器(9) 以及用于检测和抑制不期望的电弧的系统(16),中频发生器(9)的中频信号的周期被划分为多个时间段,电流和电压的电值在预定时间 被确定为形成测量值信号并被输入无地面计量岛(16)。 仪表岛(16)作为远程站被连接到其主站位于存在于发电机(9)中的控制单元(11)中的圆形网络(9,16,17,18,19.11)中。 当发生电弧时发电机(9)的阻塞通过将仪表岛(16)连接到发电机(9)的线(19)发生。 通过软件通过网络(17,18,19)预设电弧监视的参数和测量值的检测。