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    • 2. 发明授权
    • Spark plug and ignition apparatus using same
    • 火花塞和点火装置使用相同
    • US07267116B2
    • 2007-09-11
    • US10073255
    • 2002-02-13
    • Tetsuya MiwaTohru YoshinagaKeiji KanaoShinichi Okabe
    • Tetsuya MiwaTohru YoshinagaKeiji KanaoShinichi Okabe
    • H01F38/12H01F38/00
    • H01T13/32H01T13/20H01T13/39
    • A power-saving type of ignition apparatus is provided with a spark plug of which electrodes (30, 40) are regulated in their shapes to lower an amount of energy required for its ignition. To face to a tip (31) of a center electrode (30) extending from a mounting bracket (10), a cylindrical protrusion (41) is built on one surface (43) of an earth electrode (40). The protrusion extends toward the center electrode to form a discharge gap (50) between the protrusion and the tip of the center electrode. Both of the tip of the center electrode and the protrusion of the earth electrode are 2.3 [mm] or less in each diameter (D1, D2), thus an amount of energy required for ignition being limited to 17 [mJ] or less.
    • 节电型点火装置设置有火花塞,其电极(30,40)的形状被调节以降低其点火所需的能量。 为了面对从安装支架(10)延伸的中心电极(30)的尖端(31),在接地电极(40)的一个表面(43)上形成有圆筒状突起(41)。 突出部朝向中心电极延伸,以在突起和中心电极的尖端之间形成放电间隙(50)。 中心电极的尖端和接地电极的突起在每个直径(D 1,D 2)中为2.3 [mm]以下,因此点火所需的能量量限制在17 [mJ]以下 。
    • 5. 发明授权
    • Spark plug and ignition apparatus using same
    • 火花塞和点火装置使用相同
    • US07086363B2
    • 2006-08-08
    • US10926003
    • 2004-08-26
    • Tetsuya MiwaTohru YoshinagaKeiji KanaoShinichi Okabe
    • Tetsuya MiwaTohru YoshinagaKeiji KanaoShinichi Okabe
    • F02P1/00
    • H01T13/32H01T13/20H01T13/39
    • A power-saving type of ignition apparatus is provided with a spark plug of which electrodes (30, 40) are regulated in their shapes to lower an amount of energy required for its ignition. To face to a tip (31) of a center electrode (30) extending from a mounting bracket (10), a cylindrical protrusion (41) is built on one surface (43) of an earth electrode (40). The protrusion extends toward the center electrode to form a discharge gap (50) between the protrusion and the tip of the center electrode. Both of the tip of the center electrode and the protrusion of the earth electrode are 2.3 [mm] or less in each diameter (D1, D2), thus an amount of energy required for ignition being limited to 17 [mJ] or less.
    • 节电型点火装置设置有火花塞,其电极(30,40)的形状被调节以降低其点火所需的能量。 为了面对从安装支架(10)延伸的中心电极(30)的尖端(31),在接地电极(40)的一个表面(43)上形成有圆筒状突起(41)。 突出部朝向中心电极延伸,以在突起和中心电极的尖端之间形成放电间隙(50)。 中心电极的尖端和接地电极的突起在每个直径(D 1,D 2)为2.3 [mm]以下,因此点火所需的能量量被限制在17 [mJ]以下 。
    • 6. 发明授权
    • Apparatus for detecting a condition of burning in an internal combustion
engine
    • US6104195A
    • 2000-08-15
    • US832201
    • 1997-04-08
    • Tohru YoshinagaTokio KohamaHiroshi YoritaYasuyuki SatouMasao KanoToshiaki Yamaura
    • Tohru YoshinagaTokio KohamaHiroshi YoritaYasuyuki SatouMasao KanoToshiaki Yamaura
    • F02P17/12G01N27/62G01N27/68
    • G01N27/62G01N27/68
    • An apparatus for detecting a condition of burning in an internal combustion engine includes a pair of opposed electrodes provided in a combustion chamber of the engine, and an AC voltage applying device for applying an AC voltage between the opposed electrodes. A current detecting device is operative for detecting a current flowing between the opposed electrodes. A current generating means for generating a current-representing signal depending on the detected current, the current generating means having a differentiating circuit for differentiating the AC voltage into the capacitance-current representing signal. In another aspect of this invention, the apparatus further comprises calculating means for calculating ratios between a parameter represented by the burning-ion current representing signal and a parameter represented by a signal depending on the AC voltage applied between the opposed electrodes. A waveform processing device is operative for removing the capacitive current component from the current-representing signal to extract a burning ion current component, and for generating a burning-ion-current representing signal depending on the extracted burning ion current component. The capacitive current component occurs in correspondence with the AC voltage. One aspect of the invention utilizes calculating means for calculating a ratio between a parameter represented by the burning-ion-current representing signal and a parameter represented by a signal depending on the AC voltage applied between opposed electrodes. The burning ion current component corresponds to a burning ion current which flows between the opposed electrodes. A burning condition detecting device is operative for detecting a condition of burning in the combustion chamber of the engine on the basis of the burning-ion-current representing signal generated by the waveform processing device. The waveform processing device includes an integration processing device for integrating the current-representing signal to generate the burning-ion-current representing signal.
    • 8. 发明授权
    • Plasma ignition system with recess porton in the center electrode
    • 等离子点火系统在中心电极具有凹口
    • US07948158B2
    • 2011-05-24
    • US12175117
    • 2008-07-17
    • Hideyuki KatoTohru Yoshinaga
    • Hideyuki KatoTohru Yoshinaga
    • H01T13/20H01T13/34H01T13/52
    • H01T13/50F02P9/007
    • A plasma ignition system includes an ignition plug attached to an engine and a high-voltage supply. The plug includes a center electrode serving as a positive pole, a ground electrode serving as a negative pole, and an insulating member insulating the center electrode from the ground electrode and defining a discharge space therein. At least a part of a surface of the center electrode faces the space, and at least a part of a surface of the ground electrode faces the discharge space. The plug puts gas in the space into a plasma state and injects the gas into the engine as a result of application of high voltage and supply of a large current to the plug by the high-voltage supply. The center electrode has a recess portion opposed to the space and recessed in a direction opposite to an injection direction.
    • 等离子体点火系统包括附接到发动机的火花塞和高压电源。 插头包括用作正极的中心电极,用作负极的接地电极,以及将中心电极与接地电极绝缘并在其中限定放电空间的绝缘构件。 中心电极的表面的至少一部分面向空间,并且接地电极的表面的至少一部分面向放电空间。 插头将空气中的气体放入等离子体状态,并通过施加高电压并且通过高压电源向插头供应大电流而将气体注入发动机。 中心电极具有与空间相对的凹部,并且沿与注射方向相反的方向凹陷。
    • 9. 发明申请
    • PLASMA IGNITION SYSTEM
    • 等离子体点火系统
    • US20090021133A1
    • 2009-01-22
    • US12175117
    • 2008-07-17
    • Hideyuki KatoTohru Yoshinaga
    • Hideyuki KatoTohru Yoshinaga
    • H01T13/20F02P3/02H01T13/02
    • H01T13/50F02P9/007
    • A plasma ignition system includes an ignition plug attached to an engine and a high-voltage supply. The plug includes a center electrode serving as a positive pole, a ground electrode serving as a negative pole, and an insulating member insulating the center electrode from the ground electrode and defining a discharge space therein. At least a part of a surface of the center electrode faces the space, and at least a part of a surface of the ground electrode faces the discharge space. The plug puts gas in the space into a plasma state and injects the gas into the engine as a result of application of high voltage and supply of a large current to the plug by the high-voltage supply. The center electrode has a recess portion opposed to the space and recessed in a direction opposite to an injection direction.
    • 等离子体点火系统包括附接到发动机的火花塞和高压电源。 插头包括用作正极的中心电极,用作负极的接地电极,以及将中心电极与接地电极绝缘并在其中限定放电空间的绝缘构件。 中心电极的表面的至少一部分面向空间,并且接地电极的表面的至少一部分面向放电空间。 插头将空气中的气体放入等离子体状态,并通过施加高电压并且通过高压电源向插头供应大电流而将气体注入发动机。 中心电极具有与空间相对的凹部,并且沿与注射方向相反的方向凹陷。
    • 10. 发明申请
    • PLASMA IGNITION SYSTEM
    • 等离子体点火系统
    • US20090007893A1
    • 2009-01-08
    • US12164858
    • 2008-06-30
    • Hideyuki KatoTohru YoshinagaMasamichi Shibata
    • Hideyuki KatoTohru YoshinagaMasamichi Shibata
    • F02P3/06
    • F02P23/04F02P9/007
    • A plasma ignition system includes an ignition plug attached to an engine and having a center electrode, a ground electrode, and a discharge space, a discharge power source circuit, a plasma generation power source circuit, a resistance element between the discharge power source circuit and the center electrode, a rectifying device between the plasma generation power source circuit and the center electrode, and an element receiving portion in a periphery of the center electrode. The plug puts gas in the discharge space into a plasma state to ignite a fuel/air mixture in the engine, as a result of application of high voltage to the plug by the discharge power source circuit and supply of high current to the plug by the plasma generation power source circuit. The resistance element and the rectifying device are placed in the receiving portion.
    • 等离子体点火系统包括附接到发动机并具有中心电极,接地电极和放电空间的点火开关,放电电源电路,等离子体发生电源电路,放电电源电路和 中心电极,等离子体发生电源电路和中心电极之间的整流装置,以及中心电极的周围的元件容纳部。 插头将放电空间中的气体放入等离子体状态以点燃发动机中的燃料/空气混合物,这是由于通过放电电源电路向插头施加高电压并且通过放电电源向插头提供高电流 等离子体发生电源电路。 电阻元件和整流装置被放置在接收部分中。