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    • 5. 发明申请
    • L-band inductive output tube
    • L波段感应输出管
    • US20070080762A1
    • 2007-04-12
    • US11633850
    • 2006-12-04
    • Heinz BohlenYanxia LiPaul KrzeminskiEdmund DaviesRobert Tornoe
    • Heinz BohlenYanxia LiPaul KrzeminskiEdmund DaviesRobert Tornoe
    • H01P7/06
    • H01J25/04H01J23/005H01J2223/005H01J2225/04
    • An inductive output tube (IOT) operates in a frequency range above 1000 MHz. An output window may be provided to separate a vacuum portion of the IOT from an atmospheric pressure portion of the IOT, the output window being surrounded by a cooling air manifold, the manifold including an air input port and a plurality of apertures permitting cooling air to move from the port, through the manifold and into the atmospheric pressure portion of the IOT. The output cavity may include a liquid coolant input port; a lower circular coolant channel coupled to receive liquid coolant from the liquid coolant input port; a vertical coolant channel coupled to receive liquid coolant from the lower circular coolant channel; an upper circular coolant channel coupled to receive liquid coolant from the vertical coolant channel; and a liquid coolant exhaust port coupled to receive liquid coolant from the upper circular coolant channel.
    • 感应输出管(IOT)在1000 MHz以上的频率范围内工作。 可以提供输出窗口以将IOT的真空部分与IOT的大气压部分分离,输出窗被冷却空气歧管包围,歧管包括空气输入端口和多个孔,允许冷却空气 从端口移动通过歧管并进入IOT的大气压力部分。 输出腔可以包括液体冷却剂输入端口; 下部圆形冷却剂通道,其耦合以从液体冷却剂输入端口接收液体冷却剂; 垂直冷却剂通道,其联接以从下部圆形冷却剂通道接收液体冷却剂; 上部圆形冷却剂通道,其联接以从垂直冷却剂通道接收液体冷却剂; 以及液体冷却剂排出口,其联接以从上部圆形冷却剂通道接收液体冷却剂。
    • 7. 发明授权
    • L-band inductive output tube
    • L波段感应输出管
    • US07145297B2
    • 2006-12-05
    • US10982192
    • 2004-11-04
    • Heinz P. BohlenYanxia LiPaul A. KrzeminskiEdmund T. DaviesRobert N. Tomoe
    • Heinz P. BohlenYanxia LiPaul A. KrzeminskiEdmund T. DaviesRobert N. Tomoe
    • H05H13/00H01J25/08
    • H01J25/04H01J23/005H01J2223/005H01J2225/04
    • An inductive output tube (IOT) operates in a frequency range above 1000 MHz. An output window may be provided to separate a vacuum portion of the IOT from an atmospheric pressure portion of the IOT, the output window being surrounded by a cooling air manifold, the manifold including an air input port and a plurality of apertures permitting cooling air to move from the port, through the manifold and into the atmospheric pressure portion of the IOT. The output cavity may include a liquid coolant input port; a lower circular coolant channel coupled to receive liquid coolant from the liquid coolant input port; a vertical coolant channel coupled to receive liquid coolant from the lower circular coolant channel; an upper circular coolant channel coupled to receive liquid coolant from the vertical coolant channel; and a liquid coolant exhaust port coupled to receive liquid coolant from the upper circular coolant channel.
    • 感应输出管(IOT)在1000 MHz以上的频率范围内工作。 可以提供输出窗口以将IOT的真空部分与IOT的大气压部分分离,输出窗被冷却空气歧管包围,歧管包括空气输入端口和多个孔,允许冷却空气 从端口移动通过歧管并进入IOT的大气压力部分。 输出腔可以包括液体冷却剂输入端口; 下部圆形冷却剂通道,其耦合以从液体冷却剂输入端口接收液体冷却剂; 垂直冷却剂通道,其联接以从下部圆形冷却剂通道接收液体冷却剂; 上部圆形冷却剂通道,其联接以从垂直冷却剂通道接收液体冷却剂; 以及液体冷却剂排出口,其联接以从上部圆形冷却剂通道接收液体冷却剂。