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    • 4. 发明申请
    • MICROWAVE GENERATOR
    • 微波发生器
    • US20080122363A1
    • 2008-05-29
    • US11770832
    • 2007-06-29
    • Robert StarkJurgen Urban
    • Robert StarkJurgen Urban
    • H01J25/50
    • H03B11/02F41H13/0093
    • A microwave generator (10) having a hollow central electrode (12) with a front face including hollow emmission element (18), and having an outer electrode (14), which coaxially surrounds the central electrode (12) along an axially extending resonator section (16). The two electrodes (12, 14) define a spark gap (36) and are connected to a high-voltage source (38). An ultracompact microwave generator (10) is implemented by the high-voltage source (38) being arranged in the hollow central electrode (12) of the microwave generator (10) rather than on the outside thereof.
    • 一种具有中空中心电极(12)的微波发生器(10),前端面包括中空的突出元件(18),并且具有外电极(14),所述外电极沿着轴向延伸的谐振器部分同轴地围绕中心电极 (16)。 两个电极(12,14)限定火花隙(36)并连接到高压源(38)。 超微型微波发生器(10)由布置在微波发生器(10)的中空中心电极(12)中而不是在其外部的高压源(38)实现。
    • 5. 发明申请
    • Microwave generator
    • 微波发生器
    • US20070085618A1
    • 2007-04-19
    • US11581824
    • 2006-10-17
    • Andreas GanghoferJurgen UrbanGeoffrey Staines
    • Andreas GanghoferJurgen UrbanGeoffrey Staines
    • H03B5/08
    • H03B11/02F41H13/0068H01Q3/267H01Q3/2676H01Q3/2682H01T9/00
    • In order to make it possible to direct sufficient microwave energy at a target with an electronic device which is to be interfered with or to be destroyed, the beams (7) from at least two antenna arrays (10) are focused on an effective area (8) in the vicinity of that target, preferably from a vehicle (3) which is equipped with these arrays (10). For effective super-imposition of the emitted microwave energy (7) in the emission direction of in each case one of the arrays (10), the use of an arc for discharging the capacitance (43) of the resonator via its spark gap (13) is observed, and is recorded quasi-continuously optoelectronically. The electrode separation of the spark gap (13) or the fluid pressure of the dielectric in the vicinity of the spark gap (13) is then varied by control elements such that all of the spark gaps (13) in an array (10) ignite virtually at the same time, so that their discharge current pulses which lead to the emission of the microwave energy (7) start virtually in phase.
    • 为了使得能够利用要被干扰或被破坏的电子设备在目标处引导足够的微波能量,来自至少两个天线阵列(10)的波束(7)被聚焦在有效区域 8)在该目标附近,优选地从装备有这些阵列(10)的车辆(3)。 为了在每种情况下阵列(10)中的每个阵列(10)的发射方向上有效超级发射微波能量(7),使用用于经由其火花隙(13)对谐振器的电容(43)进行放电的电弧 ),并被准备连续光电子地记录。 火花隙(13)的电极分离或火花隙(13)附近的电介质的流体压力然后由控制元件变化,使得阵列(10)中的所有火花隙(13)点燃 实际上同时,使得其导致微波能量(7)的发射的放电电流脉冲实质上同步启动。