会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 3. 发明公开
    • Efficient, highly linear traveling wave tube using collector with high backstreaming current under saturated drive
    • Effiziente,hochlineareWanderfeldröhremit einem Kollektor mit hoherRückstromunterSättigungsantrieb
    • EP0883154A1
    • 1998-12-09
    • EP98109683.7
    • 1998-05-28
    • Hughes Electronics Corporation
    • Goebel, Dan M.Menninger, William L.Adler, Edward A.
    • H01J25/38H01J23/027
    • H01J25/38H01J2223/0275
    • A traveling wave tube apparatus (10) and method is disclosed. The traveling wave tube (10) includes a slow wave structure (14) such as a helix member (22). The helix member (22) has an input end (24) for receiving a microwave input signal having a selected power level and an output end (26) for supplying a microwave output signal having a given power level. A microwave source (30) is connected to the input end (24) of the helix member (22) for applying the microwave input signal to the helix member (22). An electron gun assembly (12) is adjacent the input end (24) of the helix member (22) and has a cathode (18) for injecting electrons as an electron beam (17) through the helix member (22). A collector assembly (16) is adjacent the output end (26) of the helix member (22) and has at least four collector electrodes (42) for collecting the electrons in the electron beam (17). The power level of the microwave input signal is selected such that the given power level of the microwave output signal is at least 3 dB lower than the power level of the microwave output signal at saturation. The geometry of the electrodes and bias voltages applied to the electrodes are selected to handle an electron beam of a traveling wave tube operating at least 3 dB backed off from saturation so as to maximize the collection efficiency. The geometry of the electrodes and bias voltages applied to the electrodes are selected such that the collector assembly generates a high level of backstreaming current when the traveling wave tube operates at saturation.
    • 公开了一种行波管装置(10)和方法。 行波管(10)包括诸如螺旋构件(22)的慢波结构(14)。 螺旋构件(22)具有用于接收具有所选功率电平的微波输入信号的输入端(24)和用于提供具有给定功率电平的微波输出信号的输出端(26)。 微波源(30)连接到螺旋构件(22)的输入端(24),用于将微波输入信号施加到螺旋构件(22)。 电子枪组件(12)与螺旋构件(22)的输入端(24)相邻并且具有用于通过螺旋构件(22)作为电子束(17)注入电子的阴极(18)。 收集器组件(16)邻近螺旋构件(22)的输出端(26),并且具有用于收集电子束(17)中的电子的至少四个集电极(42)。 选择微波输入信号的功率电平,使得微波输出信号的给定功率电平比饱和时微波输出信号的功率电平低至少3dB。 选择施加到电极的电极的几何形状和偏置电压以处理从饱和度退回至少3dB的行波管的电子束,以便最大化收集效率。 选择施加到电极的电极的几何形状和偏置电压,使得当行波管在饱和状态下工作时,集电器组件产生高水平的回流电流。
    • 4. 发明公开
    • Optimally designed traveling wave tube for operation backed off from saturation
    • 最佳entworfeneWanderfeldröhrezum Betrieb unterhalb ihrerSätigung
    • EP0883153A1
    • 1998-12-09
    • EP98109605.0
    • 1998-05-27
    • Hughes Electronics Corporation
    • Goebel, Dan M.Adler, Edward A.
    • H01J25/38H01J23/087
    • H01J25/38H01J23/0873H01J2223/087
    • A traveling wave tube (10) and method of operation is disclosed. The traveling wave tube (10) includes a slow wave structure (SWS) (14) such as a helix member (26) provided with input and output ends (28, 30) and located within a tube member (38). An electron gun assembly (12) is adjacent the input end (28) for injecting electrons as an electron beam (18) along an axial path through the helix member (26). A magnetic focusing device (50) generates a magnetic field having a given strength to confine the beam (18). The given strength of the magnetic field is sufficient to confine the beam (18) only when the power level of the microwave input signal is selected such that the given power level of the microwave output signal is at least 6 dB lower than the power level of the microwave output signal at saturation. Supporting rods (44) oriented in the "C" direction are engaged between the helix and tube members (26, 38) for supporting and transferring heat away from the helix member (26).
    • 公开了行波管(10)和操作方法。 行波管(10)包括设置有输入输出端(28,30)并位于管构件(38)内的螺旋构件(26)的慢波结构(SWS)(14)。 电子枪组件(12)邻近输入端(28),用于沿着通过螺旋构件(26)的轴向路径以电子束(18)注入电子。 磁聚焦装置(50)产生具有给定强度的磁场以限制光束(18)。 只有当微波输入信号的功率电平被选择使得微波输出信号的给定功率电平比图1的功率电平低6dB时,磁场的给定强度才足以限制光束(18) 微波输出信号饱和。 在“C”方向上定向的支撑杆(44)接合在螺旋管和管件(26,38)之间,用于支撑和传递热量从螺旋件(26)传出。