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    • 1. 发明申请
    • REACTOR
    • 反应堆
    • US20130099887A1
    • 2013-04-25
    • US13806406
    • 2010-06-22
    • Shinichiro Yamamoto
    • Shinichiro Yamamoto
    • H01F30/06
    • H01F30/06H01F3/14H01F27/2804Y10T29/4902Y10T29/49073
    • Provided are a reactor which can perform step-up/step-down operations and soft switching with a small size and a smaller leakage inductance, and a method of adjusting a leakage inductance of the reactor. A reactor 1A includes a magnetic core 10A having a pair of inner core portions and forming a closed magnetic path, a main coil 11A having main coil elements 11a and 11b, and a sub-coil 12A having sub-coil elements 12a and 12b. The coil elements 11a and 12a are concentrically layered over one of the inner coil portions, and the coil elements 11b and 12b are concentrically layered over the other inner coil portion. One end portion of a wire 11w of the main coil 11A and one end portion of a wire 12w of the sub-coil 12A are joined to each other. A spacing between adjacent turns constituting the sub-coil element 12a (12b) is wider than that between adjacent turns constituting the main coil element 11a (11b). Thus, the reactor 1A has a smaller leakage inductance.
    • 提供一种能够以小尺寸和较小的漏电感执行升压/降压操作和软开关的电抗器,以及调节反应器的漏电感的方法。 电抗器1A包括具有一对内芯部并形成闭合磁路的磁芯10A,具有主线圈元件11a和11b的主线圈11A和具有子线圈元件12a和12b的子线圈12A。 线圈元件11a和12a同心地层叠在一个内部线圈部分上,线圈元件11b和12b同心地层叠在另一个内部线圈部分上。 主线圈11A的线11w的一端部和子线圈12A的线12w的一端部彼此接合。 构成副线圈元件12a(12b)的相邻匝之间的间隔比构成主线圈元件11a(11b)的相邻匝之间的间隔宽。 因此,电抗器1A具有较小的漏电感。
    • 2. 发明授权
    • Reactor and method for manufacturing reactor
    • 反应堆和制造反应堆的方法
    • US08830022B2
    • 2014-09-09
    • US13579844
    • 2010-12-08
    • Kazuhiro InabaMiki KitajimaShinichiro YamamotoHajime Kawaguchi
    • Kazuhiro InabaMiki KitajimaShinichiro YamamotoHajime Kawaguchi
    • H01F27/24H01F27/02H01F37/00H01F27/255
    • H01F37/00H01F27/022H01F27/255Y10T29/49073
    • Provided is a reactor including a core; and a case housing the coil and the core, the core including an inner core portion arranged inside the coil and an outer core portion partly or entirely covering the outside of the coil, the outer core portion being formed of a mixture of a magnetic material and a resin. The coil is arranged such that the axial direction of the coil is substantially parallel to a bottom surface of the case. The difference in concentration of the magnetic material in the outer core portion in the axial direction of the coil is smaller than the difference in concentration of the magnetic material in the outer core portion in a direction along a side wall of the case. With the reactor, even if the outer core portion covering the outside of the coil is formed of the mixture of the magnetic material and the resin, a desirable inductance value can be easily achieved and the reactor can have good heat radiation performance.
    • 提供了包括芯的反应器; 以及容纳所述线圈和所述芯体的壳体,所述芯部包括布置在所述线圈内部的内芯部分和部分地或全部覆盖所述线圈外部的外芯部分,所述外芯部分由磁性材料和 树脂。 线圈被布置成使得线圈的轴向方向基本上平行于壳体的底表面。 外芯部中的磁性材料在线圈的轴向上的浓度的差异小于沿外壳的侧壁方向的外芯部中的磁性材料的浓度差。 利用反应器,即使覆盖线圈外部的外芯部分由磁性材料和树脂的混合物形成,也可以容易地实现期望的电感值,并且反应器可以具有良好的散热性能。
    • 4. 发明申请
    • REACTOR AND METHOD FOR MANUFACTURING REACTOR
    • 反应器和制造反应器的方法
    • US20120313740A1
    • 2012-12-13
    • US13579844
    • 2010-12-08
    • Kazuhiro InabaMiki KitajimaShinichiro YamamotoHajime Kawaguchi
    • Kazuhiro InabaMiki KitajimaShinichiro YamamotoHajime Kawaguchi
    • H01F27/06H01F27/24H01F27/08H01F41/02
    • H01F37/00H01F27/022H01F27/255Y10T29/49073
    • Provided is a reactor including a core; and a case housing the coil and the core, the core including an inner core portion arranged inside the coil and an outer core portion partly or entirely covering the outside of the coil, the outer core portion being formed of a mixture of a magnetic material and a resin. The coil is arranged such that the axial direction of the coil is substantially parallel to a bottom surface of the case. The difference in concentration of the magnetic material in the outer core portion in the axial direction of the coil is smaller than the difference in concentration of the magnetic material in the outer core portion in a direction along a side wall of the case. With the reactor, even if the outer core portion covering the outside of the coil is formed of the mixture of the magnetic material and the resin, a desirable inductance value can be easily achieved and the reactor can have good heat radiation performance.
    • 提供一种包括芯的反应器; 以及容纳所述线圈和所述芯体的壳体,所述芯部包括布置在所述线圈内部的内芯部分和部分地或全部覆盖所述线圈外部的外芯部分,所述外芯部分由磁性材料和 树脂。 线圈被布置成使得线圈的轴向方向基本上平行于壳体的底表面。 外芯部中的磁性材料在线圈的轴向上的浓度的差异小于沿外壳的侧壁方向的外芯部中的磁性材料的浓度差。 利用反应器,即使覆盖线圈外部的外芯部分由磁性材料和树脂的混合物形成,也可以容易地实现期望的电感值,并且反应器可以具有良好的散热性能。
    • 7. 发明授权
    • Reactor
    • 反应堆
    • US08686820B2
    • 2014-04-01
    • US13502503
    • 2011-05-27
    • Kazuhiro InabaShinichiro YamamotoHaruhisa Toyoda
    • Kazuhiro InabaShinichiro YamamotoHaruhisa Toyoda
    • H01F27/02H01F27/24H01F17/04
    • H01F37/00H01F2003/106H01F2017/048
    • Provided is a reactor having a small size with consideration of loss reduction. A reactor 1A includes a coil 10 and a magnetic core 20. The coil 10 is formed by winding a wire. The magnetic core 20 includes an internal core portion 21 that is inserted through the coil 10 and a couple core portion 23 that is coupled to an end of the internal core portion 21 and that covers an outer periphery of the coil 10. The core portions 21 and 23 form a closed magnetic path. An interposed core portion 25 is disposed between the coil 10 and the internal core portion 21. The reactor 1A satisfies 0 B2 and B1>B3, where B1 is a saturation magnetic flux density of the internal core portion 21, B2 is a saturation magnetic flux density of the couple core portion 23, and B3 is a saturation magnetic flux density of the interposed core portion 25.
    • 提供了考虑到损耗降低的小尺寸的反应器。 电抗器1A包括线圈10和磁芯20.线圈10通过缠绕线形成。 磁芯20包括插入通过线圈10的内芯部21和耦合到内芯部21的端部并且覆盖线圈10的外周的耦合芯部23.芯部21 和23形成封闭的磁路。 插入的芯部25设置在线圈10和内部芯部21之间。电抗器1A满足0 B2和B1> B3,其中B1是内芯部21的饱和磁通密度,B2是耦合芯部23的饱和磁通密度,B3是插入的芯部的饱和磁通密度 芯部25。
    • 8. 发明申请
    • REACTOR
    • 反应堆
    • US20120092120A1
    • 2012-04-19
    • US13259658
    • 2010-02-26
    • Kouhei YoshikawaMasayuki KatouAtsushi ItouShinichiro YamamotoHajime Kawaguchi
    • Kouhei YoshikawaMasayuki KatouAtsushi ItouShinichiro YamamotoHajime Kawaguchi
    • H01F27/28H01F27/24
    • H01F37/00H01F3/14H01F27/022H01F27/06H01F27/292H01F27/327H01F2017/046
    • A compact reactor with excellent productivity and heat dissipation is provided. Reactor 1α includes a coil formed by spirally winding a wire 2w and a magnetic core 3 having an inside core portion inserted into the coil and an outside core portion 32 coupled to the inside core portion. These core portions form a closed magnetic circuit. The coil is covered with an inside resin portion 4 on the outer circumference thereof to form a coil molded unit 20α with its shape being held. The outer circumference of a combination unit 10 of the coil molded unit 20α and the magnetic core 3 is covered with an outside resin portion 5α. Reactor 1α does not have a case and is thus compact. A surface of the outside core portion 32 on the installation side (core installation surface 32d) is exposed form the outside resin portion 5α and is in direct contact with a fixed object, thereby achieving excellent heat dissipation. The provision of the coil molded unit 20α facilitates the handling of the coil during assembly of reactor 1α, thereby achieving good productivity.
    • 提供了具有优异的生产率和散热性的紧凑型反应堆。 反应器1α包括通过螺旋地卷绕线2w而形成的线圈和具有插入到线圈中的内芯部分的磁芯3和耦合到内芯部分的外芯部分32。 这些芯部形成封闭的磁路。 线圈在其外周被内部树脂部分4覆盖,以形成保持其形状的线圈模制单元20α。 线圈成型单元20α和磁芯3的组合单元10的外周被外侧树脂部5α覆盖。 反应器1α不具有壳体并且因此是紧凑的。 安装侧的外芯部32的表面(芯安装面32d)从外侧树脂部5α露出,与固定体直接接触,从而实现良好的散热。 设置线圈成型单元20α有助于在组装反应器1α期间处理线圈,从而实现良好的生产率。
    • 9. 发明授权
    • Computer game apparatus
    • US06424353B1
    • 2002-07-23
    • US09150291
    • 1998-09-09
    • Shinichiro YamamotoKenji YamamotoHisashi Endo
    • Shinichiro YamamotoKenji YamamotoHisashi Endo
    • G09G500
    • It is provided a computer game apparatus for displaying an image of virtual space in which first and second characters locate, the image being viewed from a first point in the virtual space to a direction from the first point to a second point in the virtual space, comprising: a first processor for obtaining positions of the first and second characters in the virtual space; and a second processor for setting the first or second point in accordance with a distance between the positions of the first and second characters which are aligned in the direction in the virtual space. According to the present invention, when the characters approach each other in virtual space in a game, the first point in virtual space is raised, so that the image is displayed as virtual space is looked down. Therefore, since the first character manipulated by the player and the enemy character do not overlap in the image, the player can clearly observe the movements of the enemy character. And even when the two characters are fighting in close, since the character controlled by the player can quickly cope with an attack by the enemy character, the game will be more exiting.