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    • 6. 发明授权
    • Plasma display device and method of driving plasma display panel
    • 等离子体显示装置及驱动等离子体显示面板的方法
    • US6011355A
    • 2000-01-04
    • US90262
    • 1998-06-04
    • Takayoshi Nagai
    • Takayoshi Nagai
    • G09G3/288G09F9/313G09G3/20G09G3/291G09G3/294G09G3/296H01J11/12H01J11/20H01J11/24H01J11/26G09G3/28
    • G09G3/2965G09G3/2942
    • A plasma display device which is capable of solving the problem of a trade-off between the increase in recovery efficiency of reactive power resulting from charging and discharging of a plasma display panel serving as a capacitive load and the adverse effects upon a gas discharge characteristic in the plasma display panel is provided. First and second sustain pulses are applied respectively to first and second electrodes (X, Y1-Yn) arranged in parallel in pairs for respective display lines so that the output time periods of the first and second sustain pulses partially overlap each other on the time axis. One of the first and second sustain pulses which rises earlier has a higher rate of voltage change at the rising and falling edges than does the other.
    • 一种等离子体显示装置,其能够解决由用作电容性负载的等离子体显示面板的充电和放电引起的无功功率的恢复效率的提高和对气体放电特性的不利影响之间的权衡问题 提供等离子体显示面板。 第一和第二维持脉冲被分别施加到成对平行排列的各显示行的第一和第二电极(X,Y1-Yn),使得第一和第二维持脉冲的输出时间周期在时间轴上部分重叠 。 早期上升的第一和第二维持脉冲之一在上升和下降沿具有比另一个更高的电压变化率。
    • 9. 发明授权
    • Ignition apparatus
    • 点火装置
    • US09546637B2
    • 2017-01-17
    • US13267562
    • 2011-10-06
    • Kimihiko TanayaFutoshi AidaHiroshi OkudaTakayoshi Nagai
    • Kimihiko TanayaFutoshi AidaHiroshi OkudaTakayoshi Nagai
    • H05B37/02F02P3/09H01T15/00F02P3/08F02P15/10H01T13/50
    • F02P3/0892F02P15/10H01T13/50H01T15/00
    • An ignition apparatus includes: sparking coil supplying a sparking plug with a high voltage; an energy supply device supplying the sparking coil with energy; a first switch disposed therebetween; and a control device controlling the first switch's conduction. The energy supply device has a DC power supply, a resonance coil connected to the DC power supply, a sparking capacitor connected to the resonance coil, and a second switch disposed between the sparking capacitor and an earth, and charges the sparking capacitor to have a voltage value larger than that of the DC power supply in absolute value by making the resonance coil and the sparking capacitor generate an LC resonance when the second and first switches are turned ON and OFF, respectively, according to an instruction from the control device whereas supplying the sparking coil with energy when the second and first switches are operated inversely according to another instruction.
    • 一种点火装置包括:给具有高电压的火花塞提供火花线圈; 为火花线圈提供能量的能量供给装置; 设置在其间的第一开关; 以及控制第一开关导通的控制装置。 能量供给装置具有直流电源,连接到直流电源的谐振线圈,连接到谐振线圈的火花电容器和设置在火花电容器和地之间的第二开关,并且将火花电容器充电以具有 根据来自控制装置的指示,使第二开关和第一开关分别接通和断开时,通过使谐振线圈和火花电容器产生LC谐振,使绝对值的DC电源的电压值大于绝对值的电压值, 当第二和第一开关根据另一指令反向操作时,具有能量的火花线圈。
    • 10. 发明授权
    • Power supply device for electrical discharge machine
    • 放电机电源装置
    • US08735763B2
    • 2014-05-27
    • US13061719
    • 2009-03-09
    • Takashi HashimotoTaichiro TamidaTakayoshi Nagai
    • Takashi HashimotoTaichiro TamidaTakayoshi Nagai
    • B23H1/02
    • B23H1/022B23H2300/20H02M7/537Y02B70/1441
    • A switching element operates to be turned on or off at a frequency in the order of megahertz. A reactor supplies a resonance current generated by resonance of the reactor with a floating capacitance between electrodes to between the electrodes. The resonance current does not flow in a direct-current power supply. By turning a capacitor and a floating inductance into a serial resonant state, the reactor ideally supplies the resonance current to between the electrodes without influence of the floating inductance. A high-frequency voltage asymmetric in positive and negative polarities is applied to between the electrodes and a current pulse can be made into a short pulse. Therefore, finish machining with high surface roughness can be performed.
    • 开关元件工作在频率为兆赫兹的频率下导通或截止。 电抗器通过电抗器的谐振产生的谐振电流与电极之间的电极之间的浮动电容提供。 谐振电流不会流入直流电源。 通过将电容器和浮动电感转化为串联谐振状态,反应器理想地将谐振电流提供给电极之间,而不受浮动电感的影响。 在电极之间施加正极性和负极性不对称的高频电压,并且可以将电流脉冲制成短脉冲。 因此,可以进行表面粗糙度高的精加工。