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    • 1. 发明申请
    • SEMI-CONTROLLABLE DEVICE DRIVING METHOD AND APPARATUS, AND HYBRID DEVICE
    • US20190052255A1
    • 2019-02-14
    • US16072147
    • 2017-01-22
    • GUANGZHOU KINGSER ELECTRONICS CO., LTD
    • Qiaoshi Guo
    • H03K17/04
    • H03K17/0403H03K17/136H03K2017/307
    • A semi-controllable device driving method and apparatus and a hybrid device of the present disclosure belong to the electrical field, and are particularly a driving method, with no driving dead zone or with an extremely small driving dead zone, that is applicable to a semi-controllable device such as a thyristor; a semi-controllable driving apparatus, with no conduction dead zone or with an extremely small conduction dead zone, that is applicable to a driving loop of a semi-controllable device such as a thyristor; and a hybrid device with no conduction dead zone or with an extremely small conduction dead zone. In the semi-controllable device driving method, a voltage detection switch is used; an input end of the voltage detection switch is connected to two ends of a semi-controllable device that needs to be driven; the voltage detection switch is connected, in series, in a driving loop of the semi-controllable device; the voltage detection switch is turned on when a potential difference at the two ends of the semi-controllable device is not greater than an on-state voltage of the semi-controllable device; and the voltage detection switch is turned off after detecting that the semi-controllable device is turned on. The present disclosure has an advantage of no driving dead zone or an extremely small driving dead zone.
    • 4. 发明申请
    • MAGNETIC STIMULATION HAVING A FREELY SELECTABLE PULSE SHAPE
    • 具有可选择脉冲形状的磁性刺激
    • US20130030239A1
    • 2013-01-31
    • US13521434
    • 2011-01-11
    • Thomas WeyhStefan M. Götz
    • Thomas WeyhStefan M. Götz
    • A61N2/04
    • A61N2/006A61N2/02H03K17/136
    • Device and method for generating brief strong current pulses in a coil for generating magnetic field pulses which according to the electromagnetic induction principle induce stimulation currents in the body tissue triggering an action potential of the nerve and/or muscle cells, where the coil is positionable close to the body tissue to be stimulated so that its magnetic field passes through the body tissue, and where the device comprises a power generating unit that can generate a freely selectable temporal course of the current through the coil during the current pulse. A method for determining an optimized temporal course of a brief strong current pulse through the coil, where the temporal course of the current pulse is calculated using a method which numerically simulates the electrical behavior of nerve and/or muscle cells and the coil and optimizes the course of the current pulse regarding at least one parameter, or which by means of stimulating the nerve and/or muscle cells with predetermined current pulses optimizes the temporal course of the current pulse regarding at least one parameter and therefrom determines essential parameters of nerve and/or muscle cells.
    • 用于在线圈中产生短路强电流脉冲以产生磁场脉冲的装置和方法,其根据电磁感应原理引起身体组织中的刺激电流,触发神经和/或肌肉细胞的动作电位,其中线圈可定位关闭 到身体组织以被刺激,使得其磁场通过身体组织,并且其中该装置包括发电单元,其能够在电流脉冲期间产生通过线圈的电流的可自由选择的时间进程。 一种用于确定通过线圈的简短强电流脉冲的优化时间过程的方法,其中使用数字模拟神经和/或肌肉细胞和线圈的电气行为的方法计算当前脉冲的时间过程,并优化 关于至少一个参数的当前脉冲的过程,或通过用预定的电流脉冲刺激神经和/或肌肉细胞来优化关于至少一个参数的当前脉冲的时间过程,并且从而确定神经和/ 或肌肉细胞。
    • 9. 发明授权
    • Control arrangement and method for high-speed source-transfer switching system
    • US06331798B1
    • 2001-12-18
    • US09556261
    • 2000-04-24
    • Raymond P. O'LearyMichael G. EnnisJoseph W. RutaAnthony F. Segredo
    • Raymond P. O'LearyMichael G. EnnisJoseph W. RutaAnthony F. Segredo
    • H03K1773
    • H03K17/0403H03K17/136H03K17/735Y10T307/735Y10T307/839
    • A control arrangement and method is provided for a power electronic system configured as a high-speed source-transfer switching systems (HSSTSS). The HSSTSS supplies an electrical load with alternating current from either a first source or a second source via respective first and second solid-state switches. The HSSTSS also includes a controller that samples the voltage waveforms of each of the first and second sources to detect when transfer between the sources is desirable, e.g. outages or voltage that is either too low or too high. The controller provides appropriate control signals to control operation of the solid-state switches and transfer supply of the load therebetween. The control arrangement avoids undesirable current flow between sources via a comparison of the voltages of the sources and current in the outgoing source, i.e. a polarity comparison to ensure that the current that will flow in the incoming source after transfer will be in opposition to the current flowing in the outgoing source before transfer. Thus, the transfer is delayed until the polarity comparison is satisfied. Additionally, the control arrangement minimizes undesirable transfer delays by establishing appropriate transfer conditions before issuing control signals to perform the transfer between sources, i.e. the transfer to turn on the incoming switch is delayed until after appropriate conditions establish that the outgoing source is off or can be effectively turned off. One form of appropriate conditions include the establishing of forced commutation conditions, preferably established by the incoming source voltage differential and the outgoing current being of the same polarity such that the voltage differential across the solid-state switch that is being turned on is sufficient to establish an initial change in current flow in opposition to the current flow in the solid-state switch to be turned off. The appropriate forced commutation is established by the voltage differential between the two sources being of sufficient magnitude to force the outgoing current to zero. Additionally, under certain conditions, the transfer is accomplished by awaiting the next current zero.