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    • 6. 发明授权
    • R.F. Primed plasma limiter for radar receiver protector
    • R.F. 用于雷达接收器保护器的引导式等离子体限制器
    • US4395684A
    • 1983-07-26
    • US300762
    • 1981-09-10
    • Harry GoldieSuman D. Patel
    • Harry GoldieSuman D. Patel
    • H01P1/14
    • H01P1/14
    • The plasma switching stage of a radar receiver protector is simplified and improved by the utilization of a halogen gas filled quartz container and a "keepalive" electron source. The container is configured as a capillary stem filled with low pressure chlorine gas and provides the active switching element in the signal waveguide portion of the receiver protector. An enclosed r.f. energy source in combination with the capillary stem creates a copious and steady free electron supply. The r.f. exciting field used to activate the "keepalive" plasma is enhanced by a coaxial re-entrant cavity located on the top wall of the receiver protector waveguide.
    • 雷达接收器保护器的等离子切换级通过使用充满卤素气体的石英容器和“保持性”电子源得到简化和改进。 容器被配置为填充有低压氯气的毛细管杆,并且在接收器保护器的信号波导部分中提供有源开关元件。 封闭的r.f. 能量源与毛细管杆结合产生大量和稳定的自由电子供应。 r.f. 通过位于接收器保护器波导的顶壁上的同轴凹入腔增强用于激活“保持性”等离子体的激励场。
    • 10. 发明授权
    • Radar receiver protector with auxiliary source of electron priming
    • 雷达接收器保护器,辅助电子发射源
    • US4245197A
    • 1981-01-13
    • US881956
    • 1978-02-27
    • Harry Goldie
    • Harry Goldie
    • H01P1/14H01J7/46
    • H01P1/14
    • A microwave discharge gap receiver protector includes a radioactive ignitor of the nuclear decay type to provide an auxiliary source of electron priming therefore, the radioactive ignitor comprising a radioactive plate for emitting beta particles therefrom, and a tubular enclosure to channel the flow of emitted beta particles therethrough. In operation, a portion of the channeled emitted beta particles collide with the inner walls of the enclosure which are comprised of a material having a high secondary emission characteristic to generate additional electron particles as a result of secondary emission. Another portion of the beta particles in the channel of the tubular enclosure collide with existing gas particles to generate a second source of auxiliary electrons. The combined sources of auxiliary electrons result in an increased particle concentration which is emitted at an exit end of the enclosure and directed to the discharge gap of the receiver for priming purposes. In addition, the tubular enclosure may have distributedly applied longitudinally thereacross a predetermined voltage potential primarily for enhancing the movement of the slower secondary electrons which are emitted at the priming electron exit end of the enclosure.
    • 微波放电间隙接收器保护器包括核衰变类型的放射性点火器,从而提供辅助电子发射源,放射性点火器包括用于从其中发射β粒子的放射性板,以及用于引导发射的β粒子流的管状外壳 通过。 在操作中,通道发射的β粒子的一部分与外壳的内壁碰撞,其由具有高二次发射特性的材料组成,以产生作为二次发射的结果的附加电子粒子。 管状外壳的通道中的β颗粒的另一部分与现有气体颗粒碰撞以产生第二辅助电子源。 辅助电子的组合源导致增加的颗粒浓度,其在外壳的出口端处发射并引导到接收器的放电间隙以用于引发目的。 此外,管状外壳可以分布地沿着预定电压电位纵向施加,主要用于增强在外壳的起动电子出口端处发射的较慢二次电子的移动。