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    • 12. 发明申请
    • METHOD AND SYSTEM FOR CONTROLLED FUSION REACTIONS
    • 控制融合反应的方法和系统
    • WO2008033587A2
    • 2008-03-20
    • PCT/US2007/069972
    • 2007-05-30
    • BIRNBACH, Curtis, A.
    • BIRNBACH, Curtis, A.
    • G21B1/00
    • H01F38/00G21B1/00G21B1/03G21B1/23G21B3/008G21D7/00H05G2/001Y02E30/14
    • Disclosed is a system for extracting energy from controlled fusion reactions. The system includes a central target chamber for receiving fusion target material. A plurality of energy drivers are arranged around the target chamber so as to supply energy to fusion target materia! in the chamber to initiate a controlled fusion reaction of the materia!, releasing energy in the forms of fusion plasma and heat. A plurality of structures for extracting energy from the fusion reaction are provided, and comprise devices to extract high voltage DC power from the fusion plasma; and means to extract thermal energy from the centra! target chamber. Power to the energy drivers may be supplied from high voltage DC power extracted from the fusion reactions. The energy drivers may use an Apodizing filter to impart a desired shape to the wavefront of the driving energy for causing the fusion reactions, to avoid hycirodynamic instabilities.
    • 公开了用于从受控聚变反应中提取能量的系统。 该系统包括用于接收融合目标材料的中央靶室。 多个能量驱动器被布置在目标室周围以向融合目标材料提供能量! 在腔室中引发材料的受控熔合反应,以融合等离子体和热的形式释放能量。 提供了多个用于从聚变反应中提取能量的结构,并且包括用于从聚变等离子体中提取高压DC功率的装置; 并从中心提取热能的方法! 靶室。 能量驱动器的电力可以由从聚变反应中提取的高压DC电力提供。 能量驱动器可以使用变迹过滤器来给驱动能量的波前赋予所需的形状以引起聚变反应,从而避免了流体动力学不稳定性。
    • 19. 发明公开
    • HIGH VOLTAGE HIGH CURRENT REGULATOR CIRCUIT
    • HOCHSPANNUNGS- / HOCHSTROM-REGELSCHALTUNG
    • EP2625581A1
    • 2013-08-14
    • EP11831549.8
    • 2011-10-05
    • Advanced Fusion Systems LLC
    • BIRNBACH, Curtis, A.
    • G05F1/26
    • H01G4/35G05F1/10H01J5/02H01J7/16H01J19/24H01J19/42H01J19/54H01J19/70H01J19/82H01J21/10H02H3/08H02H9/02H02H9/08
    • High voltage high current regulator circuit for regulating current is interposed between first and second terminals connected to an external circuit and comprises at least one main-current carrying cold-cathode field emission electron tube conducting current between the first and second terminals. First and second grid-control cold-cathode field emission electron tubes provide control signals for first and second grids of the at least one main-current carrying cold-cathode field emission electron tube for positive and negative excursions of voltage on the first and second terminals, respectively. The current regulator circuit may be accompanied by a voltage-clamping circuit that includes at least one cold-cathode field emission electron tube. At least two cold- cathode field emission electron tubes, configured to operate at high voltage and high current, are preferably contained within a single vacuum enclosure and are interconnected to provide a circuit function, so as to form a high voltage high current vacuum integrated circuit.
    • 用于调节电流的高电压大电流调节器电路插入连接到外部电路的第一和第二端子之间,并且包括在第一和第二端子之间传导电流的至少一个主电流负载冷阴极场致发射电子管。 第一和第二格栅控制冷阴极场致发射电子管提供用于至少一个主电流负载冷阴极场发射电子管的第一和第二栅极的控制信号,用于在第一和第二端子上的正和负偏移电压 , 分别。 电流调节器电路可以伴随着包括至少一个冷阴极场发射电子管的电压钳位电路。 配置为在高电压和高电流下操作的至少两个冷阴极场发射电子管优选地包含在单个真空外壳内并且互连以提供电路功能,以便形成高压大电流真空集成电路 。