会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明申请
    • SYSTEMS AND METHOD FOR IGNITING EXPLOSIVES
    • 用于点火爆炸的系统和方法
    • US20120125182A1
    • 2012-05-24
    • US13363071
    • 2012-01-31
    • Paul B. LundquistRichard AdlerStephen William McCahonJOSEPH C. HAYDENERIC LAU
    • Paul B. LundquistRichard AdlerStephen William McCahonJOSEPH C. HAYDENERIC LAU
    • F41H11/12
    • F41H11/12
    • Systems and methods are presented herein that provide for ignition of explosive devices through electric and/or electromagnetic discharge. In one embodiment, an electrostatic discharge is directionally propagated through air to conduct electric current to the explosive device. The electric current may ignite the explosive device via heat, via triggering of ignition circuitry, via induced electric current conduction to the explosive material therein and/or via direct electric conduction to the explosive material therein. Alternatively, or in addition to, electromagnetic energy may be directionally propagated to the device through a waveguide. Such electromagnetic energy may be in the microwave region and may heat and/or induce electric current in the explosive device. In either instance, the directionally propagated energy may be time varying. In one embodiment, a system is configured with a vehicle to distally position the directionally propagated energy to the explosive device such that damage caused by the device is inhibited.
    • 本文提供的系统和方法提供通过电和/或电磁放电点燃爆炸装置。 在一个实施例中,静电放电通过空气被定向传播以传导到爆炸装置的电流。 电流可以通过点火电路的触发点燃爆炸装置,通过其中的爆炸性材料的感应电流传导和/或通过其中的爆炸材料的直接导电来点燃爆炸装置。 或者,或者除此之外,电磁能量可以通过波导方向地传播到装置。 这种电磁能可能在微波区域中并且可能在爆炸装置中加热和/或引起电流。 在任一情况下,定向传播的能量可以是时变的。 在一个实施例中,系统配置有车辆以将定向传播的能量向远侧定位到爆炸装置,使得由装置引起的损坏被阻止。
    • 2. 发明申请
    • SYSTEMS AND METHOD FOR IGNITING EXPLOSIVES
    • 用于点火爆炸的系统和方法
    • US20110259181A1
    • 2011-10-27
    • US13177871
    • 2011-07-07
    • Paul B. LundquistRichard AdlerStephen William McCahonJoseph C. HaydenEric Lau
    • Paul B. LundquistRichard AdlerStephen William McCahonJoseph C. HaydenEric Lau
    • F41H11/12F41H11/13
    • F41H11/12
    • Systems and methods are presented herein that provide for ignition of explosive devices through electric and/or electromagnetic discharge. In one embodiment, an electrostatic discharge is directionally propagated through air to conduct electric current to the explosive device. The electric current may ignite the explosive device via heat, via triggering of ignition circuitry, via induced electric current conduction to the explosive material therein and/or via direct electric conduction to the explosive material therein. Alternatively, or in addition to, electromagnetic energy may be directionally propagated to the device through a waveguide. Such electromagnetic energy may be in the microwave region and may heat and/or induce electric current in the explosive device. In either instance, the directionally propagated energy may be time varying. In one embodiment, a system is configured with a vehicle to distally position the directionally propagated energy to the explosive device such that damage caused by the device is inhibited.
    • 本文提供的系统和方法提供通过电和/或电磁放电点燃爆炸装置。 在一个实施例中,静电放电通过空气定向传播以传导到爆炸装置的电流。 电流可以通过点火电路的触发点燃爆炸装置,通过其中的爆炸性材料的感应电流传导和/或通过其中的爆炸材料的直接导电来点燃爆炸装置。 或者,或者除此之外,电磁能量可以通过波导方向地传播到装置。 这种电磁能可能在微波区域中并且可能在爆炸装置中加热和/或引起电流。 在任一情况下,定向传播的能量可以是时变的。 在一个实施例中,系统配置有车辆以将定向传播的能量向远侧定位到爆炸装置,使得由装置引起的损坏被阻止。
    • 3. 发明授权
    • Systems and methods for igniting explosives
    • 点燃爆炸物的系统和方法
    • US07987760B1
    • 2011-08-02
    • US11126509
    • 2005-05-09
    • Paul B. LundquistRichard AdlerStephen William McCahonJoseph C. HaydenEric Lau
    • Paul B. LundquistRichard AdlerStephen William McCahonJoseph C. HaydenEric Lau
    • F41H11/136
    • F41H11/12
    • Systems and methods are presented herein that provide for ignition of explosive devices through electric and/or electromagnetic discharge. In one embodiment, an electrostatic discharge is directionally propagated through air to conduct electric current to the explosive device. The electric current may ignite the explosive device via heat, via triggering of ignition circuitry, via induced electric current conduction to the explosive material therein and/or via direct electric conduction to the explosive material therein. Alternatively, or in addition to, electromagnetic energy may be directionally propagated to the device through a waveguide. Such electromagnetic energy may be in the microwave region and may heat and/or induce electric current in the explosive device. In either instance, the directionally propagated energy may be time varying. In one embodiment, a system is configured with a vehicle to distally position the directionally propagated energy to the explosive device such that damage caused by the device is inhibited.
    • 本文提供的系统和方法提供通过电和/或电磁放电点燃爆炸装置。 在一个实施例中,静电放电通过空气定向传播以传导到爆炸装置的电流。 电流可以通过点火电路的触发点燃爆炸装置,通过其中的爆炸性材料的感应电流传导和/或通过其中的爆炸材料的直接导电来点燃爆炸装置。 或者,或者除此之外,电磁能量可以通过波导方向地传播到装置。 这种电磁能可能在微波区域中并且可能在爆炸装置中加热和/或引起电流。 在任一情况下,定向传播的能量可以是时变的。 在一个实施例中,系统配置有车辆以将定向传播的能量向远侧定位到爆炸装置,使得由装置引起的损坏被阻止。
    • 4. 发明申请
    • Electrical energy discharge control
    • 电能放电控制
    • US20070176561A1
    • 2007-08-02
    • US11345416
    • 2006-02-01
    • Richard Adler
    • Richard Adler
    • G21G5/00H01J13/46
    • H02J50/00H02J5/005
    • Systems and methods presented herein provide for the control of electrical energy discharge from an electrode. In this regard, a sensor detects electrical energy discharged from the electrode and generates an electronic signal representative of a detected electrical energy discharge. Such a sensor may detect an electric field and/or light from the electrical energy discharge. The sensor may generate the electronic signal therefrom for subsequent processing. Accordingly, the system also includes a controller communicatively coupled to the sensor to determine a spurious discharge of the electrical energy discharge from the electrode. The controller processes the electronic signal to control at least one characteristic (e.g., voltage) of the electrical energy provided to the electrode. The controller may change a voltage of the electrical energy to the electrode in response to determining a spurious discharge of the electrical energy discharged from the electrode.
    • 本文提出的系统和方法提供了控制来自电极的电能放电。 在这方面,传感器检测从电极放出的电能并产生代表检测到的电能放电的电子信号。 这样的传感器可以检测来自电能放电的电场和/或光。 传感器可以产生电子信号用于后续处理。 因此,该系统还包括通信地耦合到该传感器的控制器,以确定来自该电极的电能放电的杂散放电。 控制器处理电子信号以控制提供给电极的电能的至少一个特性(例如电压)。 响应于确定从电极排出的电能的杂散放电,控制器可以将电能的电压改变为电极。
    • 5. 发明授权
    • Imaging with digital tomography and a rapidly moving x-ray source
    • 数字断层摄影和快速移动的X射线源成像
    • US06628745B1
    • 2003-09-30
    • US09897715
    • 2001-07-02
    • Martin AnnisRichard Adler
    • Martin AnnisRichard Adler
    • A61B600
    • G01V5/005A61B6/032A61B6/4028A61B6/4078A61B6/4441G01N2223/204G01N2223/419
    • A digital tomography system includes an electron source that provides a beam of electrons, and an electromagnet assembly that receives said beam of electrons and is configured and arranged to direct the beam of electrons along a selected path, wherein the assembly provides a redirected beam of electrons. The system also includes a target that is struck by the redirected beam of electrons and generates a cone of x-rays, and a slit collimator that receives the cone of x-rays and generates a fan beam. A first line of detectors is positioned to detect x-rays that pass through the object under inspection, and provide sensed signals indicative thereof to a controller that receives the sensed signals and forms a displayable image of a selected plane through the object under inspection.
    • 数字断层摄影系统包括提供电子束的电子源和接收所述电子束的电磁体组件,并且被配置和布置成沿着所选择的路径引导电子束,其中所述组件提供重定向的电子束 。 该系统还包括被重定向的电子束撞击的目标并产生一个x射线的锥体,以及狭缝准直器,其接收x射线的锥体并产生扇形光束。 检测器的第一行被定位成检测通过被检查物体的X射线,并且将检测到的信号提供给控制器,该控制器接收感测到的信号,并通过被检查物体形成所选择的平面的可显示图像。
    • 7. 发明申请
    • ELECTRICAL ENERGY DISCHARGE CONTROL
    • 电能放电控制
    • US20080012509A1
    • 2008-01-17
    • US11780245
    • 2007-07-19
    • Richard Adler
    • Richard Adler
    • H05B41/36
    • H02J50/00H02J5/005
    • Systems and methods presented herein provide for the control of electrical energy discharge from an electrode. In this regard, a sensor detects electrical energy discharged from the electrode and generates an electronic signal representative of a detected electrical energy discharge. Such a sensor may detect an electric field and/or light from the electrical energy discharge. The sensor may generate the electronic signal therefrom for subsequent processing. Accordingly, the system also includes a controller communicatively coupled to the sensor to determine a spurious discharge of the electrical energy discharge from the electrode. The controller processes the electronic signal to control at least one characteristic (e.g., voltage) of the electrical energy provided to the electrode. The controller may change a voltage of the electrical energy to the electrode in response to determining a spurious discharge of the electrical energy discharged from the electrode.
    • 本文提出的系统和方法提供了控制来自电极的电能放电。 在这方面,传感器检测从电极放出的电能并产生代表检测到的电能放电的电子信号。 这样的传感器可以检测来自电能放电的电场和/或光。 传感器可以产生电子信号用于后续处理。 因此,该系统还包括通信地耦合到该传感器的控制器,以确定来自该电极的电能放电的杂散放电。 控制器处理电子信号以控制提供给电极的电能的至少一个特性(例如电压)。 响应于确定从电极排出的电能的杂散放电,控制器可以将电能的电压改变为电极。
    • 8. 发明申请
    • High voltage generation systems and methods
    • 高压发电系统及方法
    • US20070177312A1
    • 2007-08-02
    • US11345173
    • 2006-02-01
    • Richard Adler
    • Richard Adler
    • H02H7/00
    • H02M7/10
    • Systems and methods presented herein generally provide for the controlled voltage of electrical energy through the selected operation of power stages. In one embodiment, a system that provides electrical energy includes a power supply and at least two power stages coupled to the power supply. The power stages are operable to selectively output electrical energy. By selecting the number of power stages which are turned on at a given time the total voltage of the electrical energy is controlled at that time. The use of air core magnetic flux coupling provides a unique, easily insulated method to provide power to the voltage stages at different potentials relative to each other. The system may further include one or more controllers coupled to the power stages to control selection of the power stages and thereby vary the output voltage.
    • 本文提出的系统和方法通常通过功率级的所选择的操作来提供电能的受控电压。 在一个实施例中,提供电能的系统包括电源和耦合到电源的至少两个功率级。 功率级可操作以选择性地输出电能。 通过选择在给定时间接通的功率级的数量,此时控制电能的总电压。 空芯磁通耦合的使用提供了一种独特的,易于绝缘的方法,以相对于彼此的不同电位向电压级提供电力。 该系统还可以包括耦合到功率级的一个或多个控制器,以控制功率级的选择,从而改变输出电压。