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    • 4. 发明授权
    • Radio frequency accelerating cavity having slotted irises for damping
certain electromagnetic modes
    • 射频加速腔具有用于阻尼某些电磁模式的开槽虹膜
    • US5017881A
    • 1991-05-21
    • US364304
    • 1989-06-12
    • Robert B. Palmer
    • Robert B. Palmer
    • H01J23/24H01J23/30
    • H01J23/24H01J23/30
    • An accelerating cavity having one or more iris structures mounted therein for strongly damping unwanted frequencies that are generated in the cavity by bunches of particles in a particle beam that is accelerated through the cavity during its operation. Each of the iris structures is characterized by containing a plurality of radial slots therein that extend from the central aperture through the iris member to the perimeter thereof. The outer end of each of the radial slots includes an enlarged portion that is effective to prevent undesired frequencies from being reflected back into the center aperture of the iris member. Waveguide means connect the outer ends of the radial slots to frequency damping means or to a dump or dumps.
    • 具有安装在其中的一个或多个虹膜结构的加速腔,用于通过在其操作期间加速通过空腔的粒子束中的一束粒子来强烈地阻止在空腔中产生的不期望的频率。 每个虹膜结构的特征在于在其中包含多个径向槽,其中心孔从中心孔延伸通过虹膜构件到其周边。 每个径向狭槽的外端部包括有效地防止不期望的频率被反射回到虹膜构件的中心孔中的扩大部分。 波导装置将径向槽的外端连接到频率阻尼装置或者转储或倾倒。
    • 5. 发明授权
    • Double wedge termination device for coupled cavity traveling wave tubes
    • 用于耦合腔行波管的双楔形终端装置
    • US4455507A
    • 1984-06-19
    • US364947
    • 1982-04-02
    • Norman A. GrecoSimon Z. Arkoff
    • Norman A. GrecoSimon Z. Arkoff
    • H01J23/24H01J23/30H01J25/34
    • H01J23/30
    • A termination device for absorbing RF energy waves in the termination chamber of a traveling wave tube. The termination device is formed by modifying two wedge shaped termination devices of the prior art. Specifically, two well known single wedge termination devices are sliced in half to produce two wedges each one half the thickness of the prior art single wedge device. The two halves are positioned with their newly formed surface, formed by the slicing, in opposed facing contact. The new double wedge thus has the same thickness as the prior single wedge and is readily accommodated within the termination chamber. The double wedge termination device greatly reduces small signal gain variations across the operating frequency band of the traveling wave tube.
    • 一种用于吸收行波管终端室中的RF能量波的终端装置。 端接装置通过改变现有技术的两个楔形端接装置来形成。 具体来说,两个众所周知的单楔形终端装置被切成两半,以产生现有技术的单个楔形装置的厚度的两个楔形。 两个半部分以其新形成的表面定位,通过切片形成在相对的面对的接触中。 因此,新的双楔形物具有与先前的单个楔块相同的厚度,并且容易地容纳在终止腔室内。 双楔形终端装置大大减少了行波管的工作频带上的小信号增益变化。
    • 6. 发明授权
    • Coupled cavity type traveling wave tube
    • 耦合腔型行波管
    • US4414486A
    • 1983-11-08
    • US281297
    • 1981-07-07
    • Kunio TsutakiTakao Kageyama
    • Kunio TsutakiTakao Kageyama
    • H01J23/24H01J23/30H01J25/34
    • H01J23/30
    • Two coupled cavity type, slow-wave circuits are separated, with a drift space section between them. An electron beam and an electromagnetic wave, which do not interact with each other, over a certain length, are in the drift space. A waveguide type non-reflective termination structure has a waveguide axis directed in the same direction as the electron beam and is coupled to the cavity, slow-wave circuits with respect to a high frequency wave disposed in the drift space section. With such a construction, a traveling wave tube is formed with a PPM focusing and with a non-reflective termination structure includes a waveguide member having a through-hole for passing an electron beam and two waveguides formed on the opposite sides of the through-hole. A lossy ceramic member is disposed within one of the two waveguides for a forwardly traveling wave and another lossy ceramic member is disposed in the other waveguide for a backwardly traveling wave. Each of the two waveguides has one end sealingly closed with tapered ceramic members of the forwardly traveling wave and for the backwardly traveling wave secured on the respective waveguide walls. During its propagation, an electromagnetic wave is perfectly absorbed by the lossy ceramic members.
    • 两个耦合腔型,慢波电路分开,它们之间有漂移空间部分。 在一定长度上彼此不相互作用的电子束和电磁波在漂移空间中。 波导型非反射端接结构具有与电子束相同方向的波导轴,并且耦合到空腔,相对于设置在漂移空间部分中的高频波的慢波电路。 通过这样的结构,用PPM聚焦形成行波管,并且非反射性终端结构包括具有用于通过电子束的通孔的波导构件和形成在通孔的相对侧上的两个波导 。 在两个波导中的一个波导内设置有损耗的陶瓷构件用于向前行进的波,另一个有损耗的陶瓷构件设置在另一波导中用于向后行波。 两个波导中的每一个具有一个端部,其密封地与前行波的锥形陶瓷构件和固定在相应的波导壁上的向后行波密封。 在其传播期间,电磁波被有损耗的陶瓷构件完全吸收。
    • 8. 发明授权
    • Delay line for travelling-wave tubes
    • 行波管的延迟线
    • US4088924A
    • 1978-05-09
    • US749417
    • 1976-12-10
    • Franz Gross
    • Franz Gross
    • H01J23/30H01J25/36H03H7/30
    • H01J23/30
    • A delay line for travelling-wave tubes, comprising a hollow guide with successive transversely disposed discs having elongated attenuation members which project into the interior of the hollow wave guide, with the longitudinal axes of such attenuation members extending at least approximately parallel to the longitudinal axis of the delay line and mechanically firmly supported in recesses in the transverse discs. The attenuation members are retained by a press or force fit with the transverse discs, and may be provided in the portion thereof surrounded by the associated transverse disc with at least one notch which extends transversely to the longitudinal axes of the members and which is at least partially filled with the ductile material of such associated transverse disc.
    • 用于行波管的延迟线,包括具有连续横向设置的盘的空心导向器,其具有突出到中空波导内部的细长衰减构件,这些衰减构件的纵向轴线延伸至少近似平行于纵向轴线 的延迟线并机械地牢固地支撑在横向盘中的凹部中。 衰减构件通过与横向盘的压力或力配合保持,并且可以设置在由相关联的横向盘围绕的部分中,具有横向于构件的纵向轴线延伸的至少一个凹口,并且至少一个凹口 部分地填充这种相关横向盘的延性材料。
    • 9. 发明授权
    • Wide-band low-reflection attenuated delay line
    • 宽带低反射衰减延迟线
    • US4066927A
    • 1978-01-03
    • US693840
    • 1976-06-08
    • Franz Gross
    • Franz Gross
    • H01J23/24H01J23/30H01P1/22H01J25/34H03F3/58
    • H01J23/30
    • A delay line for traveling-wave tubes, particularly a wideband low-reflection attenuated line for millimeter waves, in the form of a hollow guide having successive transverse walls which define successive line cells, each of such walls having a central opening for the passage of the electron beam and at least one coupling opening, elongated attentuating members being disposed in the respective cells with their longitudinal axes extending parallel to the longitudinal axis of the delay line. The attenuating members are of like effective length and the matching cell lying immediately ahead of and/or behind the attenuating section of the tube contains, in each case, at least one matching member.
    • 用于行波管的延迟线,特别是用于毫米波的宽带低反射衰减线,呈中空引导件的形式,具有限定连续线细胞的连续横向壁,每个这样的壁具有用于通过的中心开口 电子束和至少一个耦合开口,细长的注意部件设置在相应的电池中,其纵向轴线平行于延迟线的纵向轴线延伸。 衰减构件具有相同的有效长度,位于管的衰减部分之前和/或之后的匹配单元在每种情况下包含至少一个匹配构件。