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    • 21. 发明授权
    • Variable distributed constant delay line having movable slider contact
    • 具有可移动滑块触点的可变分布常数延迟线
    • US4656443A
    • 1987-04-07
    • US690182
    • 1985-01-10
    • Kazuo Kameya
    • Kazuo Kameya
    • H01P9/00H03H7/30H03H7/34
    • H01P9/00H03H7/345
    • This variable delay line makes use of a transmission line as a delay line element and is suitable for switching over the delay time of a high speed signal having for instance a rise time of one nanosecond or less. And this variable delay line includes a transmission line which includes an electroconductive path and a ground plate disposed opposingly with a dielectric body interposed therebetween, a fixed contact array consisting of fixed contacts provided at certain intervals along the electroconductive path, and a movable contact which may be slid along contacting the fixed contacts of the fixed contact array. Particularly, the movable contact contacts one of the fixed contacts in the fixed contact array in a first state and contacts two neighboring ones of the fixed contacts in the fixed contact array in a second state, and the movable contact may be slid over the fixed contact array by alternatingly repeating the first and the second states.
    • 该可变延迟线使用传输线作为延迟线元件,并且适用于切换具有例如一纳秒或更小的上升时间的高速信号的延迟时间。 并且该可变延迟线包括传输线,该传输线包括导电路径和与插入其间的电介质体相对设置的接地板,由沿着导电路径以一定间隔设置的固定触点组成的固定触点阵列,以及可移动触点 沿着接触固定触点阵列的固定触点滑动。 特别地,可动触点在第一状态下接触固定触点阵列中的固定触点中的一个,并且在第二状态下与固定触点阵列中的两个相邻的固定触点接触,并且可动触头可以在固定触点 通过交替地重复第一和第二状态的阵列。
    • 22. 发明授权
    • Variable delay line having linking electrode with depressions therein
for snug engagement of moveable contact
    • 可变延迟线具有连接电极和其中的凹陷,用于可移动接触的紧密接合
    • US4620164A
    • 1986-10-28
    • US666301
    • 1984-10-30
    • Kazuo Kameya
    • Kazuo Kameya
    • H03H7/34
    • H03H7/345
    • A variable delay line using a lumped constant type electromagnetic delay line and enjoying a superhigh-speed rising characteristic is disclosed, which comprises an inductance element formed by winding a conductor and possessed of a plurality of taps, a plurality of capacitors having electrodes thereof on one side kept in common connection, a plurality of linking electrodes disposed along the inductance element and adapted to interconnect the taps of the inductance element and the electrodes of the capacitors on the other side, fixed contacts formed of limited surface regions of the linking electrodes, and movable contact means adapted to advance on the fixed contacts while keeping pressed contact with each fixed contact so as to permit selection of the taps of the inductance element. The linking electrodes each incorporate therein a depression for receiving into snug engagement the movable contact means at the time that the movable contact means is set in pressed contact with the particular fixed contact selected.
    • 公开了一种使用集总常数型电磁延迟线并享受超高速上升特性的可变延迟线,其包括通过缠绕导体并具有多个抽头而形成的电感元件,其上具有电极的多个电容器 沿着电感元件设置的多个连接电极,用于互连电感元件的抽头和另一侧的电容器的电极,由连接电极的受限表面区域形成的固定触点,以及 可移动接触装置适于在保持与每个固定触点的压接的同时在固定触点上前进,以便允许选择电感元件的抽头。 连接电极各自包括凹部,用于在可动接触装置被设置成与所选择的特定固定触点压接接触时接合到可动接触装置中。
    • 23. 发明授权
    • Dual section distributed parameter delay-line
    • 双段分布参数延迟线
    • US4160962A
    • 1979-07-10
    • US848541
    • 1977-11-04
    • Andre de KeyserLaurent Seynaeve
    • Andre de KeyserLaurent Seynaeve
    • H03H7/34H03H7/32H04N9/77H03H7/30H01P1/18H01P9/00H04N9/535
    • H03H7/32
    • A delay-line has two essentially identical distributed parameter delay-line sections that have series connected solenoidal coils and mutually parallel axes. The winding directions of the two coils are such that an external observer traveling along the series connected coils from one free coil-end to the other will observe a winding direction reversal in going from one section to the other. Thus a uniform unidirectional magnetic field having a component parallel to the section axes will produce induced voltages in the two coils that are of opposite polarity and no net induced voltage will appear between the free ends of the series connected coils.
    • {PG,1 A延迟线具有两个基本相同的分布参数延迟线段,其具有串联连接的螺线管线圈和相互平行的轴线。 两个线圈的卷绕方向使得沿着串联连接的线圈从一个自由线圈端行进到另一个的外部观测器将观察到从一个部分到另一个部分的卷绕方向反转。 因此,具有平行于截面轴的分量的均匀单向磁场将在两个线圈中产生相反极性的感应电压,并且在串联连接线圈的自由端之间不会出现净感应电压。