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    • 3. 发明申请
    • Stowable Elevating Trainable Launcher (SETL)
    • 可升降式升降机(SETL)
    • US20120152092A1
    • 2012-06-21
    • US12969697
    • 2010-12-16
    • Daniel A. SkurdalJohn SnedikerWilliam Kalms
    • Daniel A. SkurdalJohn SnedikerWilliam Kalms
    • F41F3/00
    • F41F3/073F41A23/20F41F3/042
    • A system and method for launching non-vertical launch munitions with a non-vertical launch trajectory from a launcher that is operationally coupled to a vertical launching system (VLS). The inventors of the present invention recognized that munitions that are unsuitable for vertical launches were unavailable for use with vertical launching systems, thus foreclosing important defense, attack, and cost-savings opportunities for VLS-equipped platforms. A VLS could be substantially more versatile if it accommodated munitions such as torpedoes, counter-measures, direct-fire munitions, point-and-shoot munitions, and a variety of other missiles and equipment. The launcher according to the present invention is also stowable in an upward orientation within a cell of the host vertical launching system.
    • 一种用于发射非垂直发射弹药的系统和方法,其具有从垂直发射系统(VLS)可操作地耦合的发射器的非垂直发射轨迹。 本发明的发明人认识到,不适用于垂直发射的弹药不能用于垂直发射系统,因此防止为装备VLS的平台重要的防御,攻击和成本节约机会。 如果它适用于诸如鱼雷,对抗措施,直接弹药,射击弹药和各种其他导弹和设备等弹药,VLS可能会更加广泛。 根据本发明的发射器也可以在主垂直发射系统的小区内向上收起。
    • 4. 发明授权
    • Stowable elevating trainable launcher (SETL)
    • 可升降式可升降式发射器(SETL)
    • US08468924B2
    • 2013-06-25
    • US12969697
    • 2010-12-16
    • Daniel A. SkurdalJohn SnedikerWilliam Kalms
    • Daniel A. SkurdalJohn SnedikerWilliam Kalms
    • F41F3/04
    • F41F3/073F41A23/20F41F3/042
    • A system and method for launching non-vertical launch munitions with a non-vertical launch trajectory from a launcher that is operationally coupled to a vertical launching system (VLS). The inventors of the present invention recognized that munitions that are unsuitable for vertical launches were unavailable for use with vertical launching systems, thus foreclosing important defense, attack, and cost-savings opportunities for VLS-equipped platforms. A VLS could be substantially more versatile if it accommodated munitions such as torpedoes, counter-measures, direct-fire munitions, point-and-shoot munitions, and a variety of other missiles and equipment. The launcher according to the present invention is also stowable in an upward orientation within a cell of the host vertical launching system.
    • 一种用于发射非垂直发射弹药的系统和方法,其具有从垂直发射系统(VLS)可操作地耦合的发射器的非垂直发射轨迹。 本发明的发明人认识到,不适用于垂直发射的弹药不能用于垂直发射系统,因此防止为装备VLS的平台重要的防御,攻击和成本节约机会。 如果它适用于诸如鱼雷,对抗措施,直接弹药,射击弹药和各种其他导弹和设备等弹药,VLS可能会更加广泛。 根据本发明的发射器也可以在主垂直发射系统的小区内向上收起。
    • 5. 发明授权
    • High voltage and frequency distributed power system
    • 高压和频率分布式电力系统
    • US08582330B2
    • 2013-11-12
    • US12358382
    • 2009-01-23
    • William KalmsJohn MorberRobert Asbell
    • William KalmsJohn MorberRobert Asbell
    • H02J3/00
    • H02J1/06H02J2001/002
    • A switching power supply transmits power between a single front end including electromagnetic interference filtering and power factor correction circuits to an output end at a high voltage and high frequency from which any desired DC voltage or waveform may be readily and directly derived with high efficiency in order to reduce size and weight of components including transformers at the output end and allow greater variety of connection wiring of reduced weight and volume to be used. The high frequency is limited at the low frequency end by the frequency at which significant power can be transferred through, for example, a ferrite core or other transformer of sufficiently low volume to accommodate closely spaced loads or power converters and at the high frequency end by the wavelength in the connection wiring such that 1/10 wavelength is greater than one thousand feet. Branches of the power distribution system which are not desired to be in use can be operated at zero power and be brought back on line within milliseconds, when needed. Power distribution among respective branches of the power distribution system can be controlled by varying the high frequency of power transmission and appropriate filtering.
    • 开关电源在包括电磁干扰滤波的单个前端和功率因数校正电路之间的电力以高电压和高频率向输出端发送电力,从而可以以高效率直接导出任何期望的直流电压或波形 以减少包括输出端的变压器的部件的尺寸和重量,并允许使用减小重量和体积的更多种类的连接布线。 高频率在低频端被限制在可以通过例如足够低体积的铁氧体磁芯或其他变压器传输有效功率以适应紧密间隔的负载或功率转换器的频率,并且在高频端通过 连接布线中的波长使得1/10波长大于一千英尺。 不需要使用的配电系统的分支可以在零功率下运行,并且在需要时在几毫秒内重新接通。 配电系统各分支之间的配电可以通过改变输电高频和适当滤波来控制。
    • 6. 发明申请
    • High Voltage and Frequency Distributed Power System
    • 高压和频率分布式电力系统
    • US20100188875A1
    • 2010-07-29
    • US12358382
    • 2009-01-23
    • William KalmsJohn MorberRobert Asbell
    • William KalmsJohn MorberRobert Asbell
    • H02M5/40
    • H02J1/06H02J2001/002
    • A switching power supply transmits power between a single front end including electromagnetic interference filtering and power factor correction circuits to an output end at a high voltage and high frequency from which any desired DC voltage or waveform may be readily and directly derived with high efficiency in order to reduce size and weight of components including transformers at the output end and allow greater variety of connection wiring of reduced weight and volume to be used. The high frequency is limited at the low frequency end by the frequency at which significant power can be transferred through, for example, a ferrite core or other transformer of sufficiently low volume to accommodate closely spaced loads or power converters and at the high frequency end by the wavelength in the connection wiring such that 1/10 wavelength is greater than one thousand feet. Branches of the power distribution system which are not desired to be in use can be operated at zero power and be brought back on line within milliseconds, when needed. Power distribution among respective branches of the power distribution system can be controlled by varying the high frequency of power transmission and appropriate filtering.
    • 开关电源在包括电磁干扰滤波的单个前端和功率因数校正电路之间的电力以高电压和高频率向输出端发送电力,从而可以以高效率直接导出任何期望的直流电压或波形 以减少包括输出端的变压器的部件的尺寸和重量,并允许使用减小重量和体积的更多种类的连接布线。 高频率在低频端被限制在可以通过例如足够低体积的铁氧体磁芯或其他变压器传输有效功率以适应紧密间隔的负载或功率转换器的频率,并且在高频端通过 连接布线中的波长使得1/10波长大于一千英尺。 不需要使用的配电系统的分支可以在零功率下运行,并且在需要时在几毫秒内重新接通。 配电系统各分支之间的配电可以通过改变输电高频和适当滤波来控制。