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    • 1. 发明授权
    • Flux compression generator
    • 磁通压缩发生器
    • US08723390B2
    • 2014-05-13
    • US12927318
    • 2010-11-10
    • Blaise L. CorbettJack L. PriceAlbert J. CordaYehoshua D. AgassiWalter D. Sessions
    • Blaise L. CorbettJack L. PriceAlbert J. CordaYehoshua D. AgassiWalter D. Sessions
    • H02K1/12
    • H03K3/53H03K3/38
    • A flux compression generator (FCG) is provided for producing an electromagnetic pulse (EMP). The FCG includes an environmental case, a reactive load, a dielectric core, a superconducting stator, an electric energy source, a load switch, and a transition device. The reactive load transmits the EMP in response to an electric current pulse. The dielectric core has proximal and distal ends within the case, with the stator disposed coaxially around the core that provides structural support. The case contains the electrical energy source, the stator, the core and the transition device. The energy source connects to the stator at the proximal end and powers the transition device. The load switch connects the reactive load to the stator at the distal end. The energy source initially provides an electric current to the stator. The device upon activation heats at least a portion of the stator to reversibly transition the portion from a superconducting state to a non-superconducting state. The stator transfers the electric current as the pulse to the reactive load upon the portion's transition to the non-superconducting state. The stator can be a superconducting helical coil that wraps around the core connected to a superconducting conductor disposed coaxially within the core. Alternatively, the stator can be a stack of superconducting rings disposed coaxially along the core. The superconducting coil and rings can preferably be composed of a high temperature superconductive material on a metal substrate.
    • 提供磁通压缩发生器(FCG)用于产生电磁脉冲(EMP)。 FCG包括环境情况,无功负载,介质芯,超导定子,电能源,负载开关和过渡装置。 无功负载响应电流脉冲传输EMP。 电介质芯具有在壳体内的近端和远端,其中定子同轴地布置在芯体周围,提供结构支撑。 该案例包含电能源,定子,核心和过渡装置。 能量源在近端连接到定子并为过渡装置供电。 负载开关将无功负载连接到远端的定子。 能量源最初为定子提供电流。 激活装置加热定子的至少一部分以将部分从超导状态可逆地转变到非超导状态。 当该部分转变到非超导状态时,定子将电流作为脉冲传递给无功负载。 定子可以是超导螺旋线圈,其缠绕在与核心内同轴设置的超导体导体连接的芯上。 或者,定子可以是沿着芯同轴设置的一叠超导环。 超导线圈和环可以优选地由金属基底上的高温超导材料构成。
    • 2. 发明申请
    • Flux compression generator
    • 磁通压缩发生器
    • US20120313452A1
    • 2012-12-13
    • US12927318
    • 2010-11-10
    • Blaise L. CorbettAlbert J. CordaJack L. PriceYehoshua D. AgassiWalter D. Sessions
    • Blaise L. CorbettAlbert J. CordaJack L. PriceYehoshua D. AgassiWalter D. Sessions
    • H03K3/53
    • H03K3/53H03K3/38
    • A flux compression generator (FCG) is provided for producing an electromagnetic pulse (EMP). The FCG includes an environmental case, a reactive load, a dielectric core, a superconducting stator, an electric energy source, a load switch, and a transition device. The reactive load transmits the EMP in response to an electric current pulse. The dielectric core has proximal and distal ends within the case, with the stator disposed coaxially around the core that provides structural support. The case contains the electrical energy source, the stator, the core and the transition device. The energy source connects to the stator at the proximal end and powers the transition device. The load switch connects the reactive load to the stator at the distal end. The energy source initially provides an electric current to the stator. The device upon activation heats at least a portion of the stator to reversibly transition the portion from a superconducting state to a non-superconducting state. The stator transfers the electric current as the pulse to the reactive load upon the portion's transition to the non-superconducting state. The stator can be a superconducting helical coil that wraps around the core connected to a superconducting conductor disposed coaxially within the core. Alternatively, the stator can be a stack of superconducting rings disposed coaxially along the core. The superconducting coil and rings can preferably be composed of a high temperature superconductive material on a metal substrate.
    • 提供磁通压缩发生器(FCG)用于产生电磁脉冲(EMP)。 FCG包括环境情况,无功负载,介质芯,超导定子,电能源,负载开关和过渡装置。 无功负载响应电流脉冲传输EMP。 电介质芯具有在壳体内的近端和远端,其中定子同轴地布置在芯体周围,提供结构支撑。 该案例包含电能源,定子,核心和过渡装置。 能量源在近端连接到定子并为过渡装置供电。 负载开关将无功负载连接到远端的定子。 能量源最初为定子提供电流。 激活装置加热定子的至少一部分以将部分从超导状态可逆地转变到非超导状态。 当该部分转变到非超导状态时,定子将电流作为脉冲传递给无功负载。 定子可以是超导螺旋线圈,其缠绕在与核心内同轴设置的超导体导体连接的芯上。 或者,定子可以是沿着芯同轴设置的一叠超导环。 超导线圈和环可以优选地由金属基底上的高温超导材料构成。
    • 3. 发明申请
    • Universal Ground Adapter for Marine Cables
    • 海洋电缆通用接地适配器
    • US20140041938A1
    • 2014-02-13
    • US14051385
    • 2013-10-10
    • Blaise L. CorbettDavid J. Griffiths
    • Blaise L. CorbettDavid J. Griffiths
    • H01R4/66
    • H01R4/66H01R4/26H01R4/5025H01R4/643H01R13/533H01R13/6582
    • An adapter is provided for electrically connecting an interior surface of a conduit and an external surface of a cable. The adapter includes a flat strip extending longitudinally from first to second ends with first and second transverse edges and composed of an electrically conductive and mechanically flexible material. The strip includes a longitudinal ribbon that forms a ring for wrapping around the cable by curling the first and second ends together in a direction transverse to the sheet, and a plurality of first and second incisions from the transverse edges towards the ribbon, the incisions being disposed at respective intervals that correspond to a longitudinally regular pattern. The first incisions form tapering tabs for bending in the direction transverse to the sheet to produce petals that extend radially inward from the ring to engage the cable. The second incisions form peripheral tabs for bending in an opposite direction transverse to the sheet to produce flanges that extend radially outward from the ring to engage the conduit.
    • 提供适配器用于电连接导管的内表面和电缆的外表面。 适配器包括从第一端至第二端纵向延伸的第一和第二横向边缘并由导电和机械柔性材料构成的扁平带。 所述带包括纵向带,其形成用于围绕所述电缆缠绕的环,所述环沿横向于所述片的方向卷曲所述第一和第二端,以及从所述横向边缘朝向所述带的多个第一和第二切口,所述切口为 以相应于纵向规则图案的间隔设置。 第一切口形成锥形突片,用于在横向于片材的方向上弯曲以产生从环径向向内延伸以接合电缆的瓣。 第二切口形成用于沿横向于片材的相反方向弯曲的外围突片,以产生从环径向向外延伸以接合导管的凸缘。
    • 5. 发明授权
    • Introduction of an intermediary refractive layer for immersion lithography
    • 介绍了用于浸没光刻的中间折射层
    • US07417707B2
    • 2008-08-26
    • US11476549
    • 2006-06-29
    • Blaise L. Corbett
    • Blaise L. Corbett
    • G03B27/52G03B27/54
    • G02B1/10G02B21/33G03F7/2041G03F7/70341
    • An intermediary layer is introduced between a lens and a wafer for an immersion lithography process. A non-supercritical gas is provided and condensed to form a layer of liquid between the lens and the wafer. The substrate may be irradiated through the lens and intermediary layer. In addition, the intermediary layer may then be evaporated. The non-supercritical gas may include superheated steam which may be condensed to form a layer of water between the lens and the wafer. The wafer may be irradiated with one of a EUV light and UV light. A system for introduction of an intermediary layer between a lens and a wafer for an immersion lithography process is also provided. The wafer for use in the immersion lithography process may includes a hydrophobic and hydrophilic surfaces to provide enhanced contact angles between the wafer and the intermediary liquid layer condensed on the wafer and to reduce light aberration provided from a light source through the intermediary liquid layer.
    • 在透镜和用于浸没式光刻工艺的晶片之间引入中间层。 提供非超临界气体并冷凝以在透镜和晶片之间形成液体层。 可以通过透镜和中间层照射基板。 此外,中间层然后可以被蒸发。 非超临界气体可以包括可以在透镜和晶片之间被冷凝以形成水层的过热蒸汽。 可以用EUV光和UV光中的一种照射晶片。 还提供了用于在透镜和用于浸没式光刻工艺的晶片之间引入中间层的系统。 用于浸没式光刻工艺的晶片可以包括疏水和亲水表面,以提供在晶片和在晶片上聚集的中间液体层之间的增强的接触角,并且减少通过中间液体层从光源提供的光像差。
    • 6. 发明授权
    • Universal ground adapter for marine cables
    • 海洋电缆通用接地适配器
    • US08747126B2
    • 2014-06-10
    • US14051385
    • 2013-10-10
    • Blaise L. CorbettDavid J. Griffiths
    • Blaise L. CorbettDavid J. Griffiths
    • H01R4/66
    • H01R4/66H01R4/26H01R4/5025H01R4/643H01R13/533H01R13/6582
    • An adapter is provided for electrically connecting an interior surface of a conduit and an external surface of a cable. The adapter includes a flat strip extending longitudinally from first to second ends with first and second transverse edges and composed of an electrically conductive and mechanically flexible material. The strip includes a longitudinal ribbon that forms a ring for wrapping around the cable by curling the first and second ends together in a direction transverse to the sheet, and a plurality of first and second incisions from the transverse edges towards the ribbon, the incisions being disposed at respective intervals that correspond to a longitudinally regular pattern. The first incisions form tapering tabs for bending in the direction transverse to the sheet to produce petals that extend radially inward from the ring to engage the cable. The second incisions form peripheral tabs for bending in an opposite direction transverse to the sheet to produce flanges that extend radially outward from the ring to engage the conduit.
    • 提供适配器用于电连接导管的内表面和电缆的外表面。 适配器包括从第一端至第二端纵向延伸的第一和第二横向边缘并由导电和机械柔性材料构成的扁平带。 所述带包括纵向带,其形成用于围绕所述电缆缠绕的环,所述环沿横向于所述片的方向卷曲所述第一和第二端,以及从所述横向边缘朝向所述带的多个第一和第二切口,所述切口为 以相应于纵向规则图案的间隔设置。 第一切口形成锥形突片,用于在横向于片材的方向上弯曲以产生从环径向向内延伸以接合电缆的瓣。 第二切口形成用于沿横向于片材的相反方向弯曲的外围突片,以产生从环径向向外延伸以接合导管的凸缘。
    • 7. 发明授权
    • Radio frequency identification tag
    • 射频识别标签
    • US07388497B1
    • 2008-06-17
    • US11363296
    • 2006-02-01
    • Blaise L. CorbettMichael L. Woodman
    • Blaise L. CorbettMichael L. Woodman
    • G08B13/14
    • G06K7/10069G06K7/0008G06K19/067G06K19/0723
    • Radio frequency identification (RFID) includes far-field systems associated with an RFID interrogator and an RFID tag. The RFID interrogator produces continuous wave (CW) unmodulated signals selected from frequencies comprising a predetermined frequency band. The RFID tag includes reception and transmission antenna circuits, a signal processor, and an oscillator. The reception antenna circuit receives the reception signals from the RFID interrogator. The signal processor determines whether the reception signals correspond to a plurality of tag identification frequencies as a correlation. The signal processor also produces responsive signals in response to the correlation. The oscillator supplies a carrier frequency. The transmission antenna circuit combines the carrier signal with the response signals to produce transmit signals, and then dispatches the transmit signals.
    • 射频识别(RFID)包括与RFID询问器和RFID标签相关联的远场系统。 RFID询问器产生从包括预定频带的频率中选择的连续波(CW)未调制信号。 RFID标签包括接收和发送天线电路,信号处理器和振荡器。 接收天线电路接收来自RFID询问器的接收信号。 信号处理器确定接收信号是否对应于多个标签识别频率作为相关。 信号处理器还响应于相关而产生响应信号。 振荡器提供载波频率。 发射天线电路将载波信号与响应信号组合以产生发射信号,然后调度发射信号。
    • 9. 发明申请
    • Junction Box Fitting for Marine Cables
    • 船用电缆接线盒配件
    • US20140235077A1
    • 2014-08-21
    • US14263467
    • 2014-04-28
    • Blaise L. CorbettDavid J. Griffiths
    • Blaise L. CorbettDavid J. Griffiths
    • H01R4/26
    • H01R4/26H01R4/5025H01R4/643H01R13/533H01R13/6592
    • An electrical conduit ground assembly is provided for electrically and environmentally shielding an electric cable that inserts into a junction box via a through-hole. The assembly includes an adapter flange, first and second annular gaskets, first and second annular washers, a slip-ring, a ground adapter, first and second lock-nuts and a gland nut. The adapter flange has an internally threaded proximate end, an externally threaded mezzanine, a hexagonal seat, and an externally threaded distal end insertable into the through-hole. The first annular gasket inserts into the proximate end and includes frustum and cylinder portions. The first annular washer inserts into the proximate end and disposal on the first gasket. The slip-ring inserts into the proximate end and disposal on the first washer. The second annular washer inserts into the proximate end and disposal on the slip-ring. The annular ground adapter electrically connects the cable and the annular conduit and inserts between the first and second washers and securable by the slip-ring with the cable installed in the junction box. The second annular gasket has an annular shaft and a circular brim that radially extends from a brim end that faces the second annular washer. The gland nut screws into the proximate end of the adapter flange, the gland nut having a hexagonal proximate end and an externally threaded distal end. The annular shaft of the second annular gasket inserts into the gland nut from the threaded distal end. The first lock-nut screws onto the mezzanine and abut the landing, whereas the second lock-nut screws onto the distal end of the adapter flange.
    • 提供电导体接地组件,用于电气地和环境地屏蔽通过通孔插入接线盒的电缆。 组件包括适配器凸缘,第一和第二环形垫片,第一和第二环形垫圈,滑环,接地适配器,第一和第二锁紧螺母和密封螺母。 适配器法兰具有内螺纹接近端,外螺纹夹层,六边形座和可插入通孔的外螺纹远端。 第一环形垫圈插入到近端并包括平截头体和圆筒部分。 第一环形垫圈插入到最接近的端部并且在第一垫圈上进行处置。 滑环插入到近端,并在第一个垫圈上进行处置。 第二个环形垫片插入到近端并在滑环上进行处置。 环形接地适配器将电缆和环形导管电连接并且插入在第一和第二垫圈之间,并且通过安装在接线盒中的电缆通过滑环固定。 第二环形垫圈具有环形轴和从面向第二环形垫圈的边缘端部径向延伸的圆形边缘。 压盖螺母进入适配器法兰的近端,压盖螺母具有六边形近端和外螺纹的远端。 第二环形垫圈的环形轴从螺纹远端插入压盖螺母。 第一个锁紧螺母拧到夹层上,并抵靠着陆,而第二个锁紧螺母则拧紧到适配器法兰的远端。