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    • 1. 发明授权
    • Coil bobbin, coil component and switching power source apparatus
    • 线圈筒管,线圈组件和开关电源设备
    • US08471666B2
    • 2013-06-25
    • US13440674
    • 2012-04-05
    • Kouji Kaneko
    • Kouji Kaneko
    • H01F27/30
    • H01F27/306H01F27/325H02M3/335
    • To improve insulating properties of a coil winding having three turns. In a coil bobbin, insulation between mutually adjacent winding members of a first coil winding are achieved by a projecting section. Furthermore, the first coil winding and the second coil winding are insulated from each other by the flange section. Moreover, the projecting sections and the projecting sections are respectively provided in positions at either end when the first coil winding and the second coil winding are viewed in a direction perpendicular to the direction of the axis line. Consequently, even with coil windings having three turns, insulation between the windings is achieved by means of this coil bobbin, and furthermore, insulation is also achieved in the region outside the coil windings as viewed in a direction perpendicular to the axis line direction, thereby making it possible to improve the insulating properties without increasing the number of parts.
    • 提高具有三圈的线圈绕组的绝缘性能。 在线圈架中,通过突出部实现第一线圈绕组的相互缠绕构件之间的绝缘。 此外,第一线圈绕组和第二线圈绕组由凸缘部彼此绝缘。 此外,当在垂直于轴线方向的方向上观察第一线圈绕组和第二线圈绕组时,突出部分和突出部分别分别设置在任一端的位置。 因此,即使线圈绕组具有三匝,也可以通过该线圈架线圈实现绕组之间的绝缘,此外,在垂直于轴线方向的方向观察时,也可以在线圈绕组外部的区域实现绝缘,从而 使得可以在不增加部件数量的情况下提高绝缘性能。
    • 2. 发明授权
    • Camera
    • 相机
    • US5087936A
    • 1992-02-11
    • US403356
    • 1989-09-06
    • Kazutsugu OgataKazuhisa SekiKouji KanekoSatoshi MikajiriKiyotaka KanekoMasanori Yoshida
    • Kazutsugu OgataKazuhisa SekiKouji KanekoSatoshi MikajiriKiyotaka KanekoMasanori Yoshida
    • H04N5/235H04N9/73
    • H04N5/235H04N9/735
    • A filter is provided which can pass therethrough only a signal component having a frequency corresponding to a secondary higher harmonic frequency component (200-240 Hz) of the fluorescent light of the output signal from a light-receiving element for receiving incident light thereto from the photograph area. Based on the signal which is passed through the filter, it is detected whether the photography area is illuminated with the fluorescent light. Since the color temperatures of sunlight (outdoors in fine weather) and fluorescent light show substantially the same value, it is difficult to distinguish two kinds of above light sources. A ripple period of the fluorescent light and the like is measured, and the output signal of a light detecting device (e.g., a color temperature sensor, photometry element, and so forth) is sampled at a plurality of times in a length of time equivalent to one period of the measured ripple period. Therefore, even for a photograph under artificial light which includes ripple components, an average of the quantity of the incident light can be detected and the white balance adjustment and the exposure control can be appropriately conducted. As a result, it is possible to distinguish between sunlight and fluorescent light and an accurate white balance adjustment can be made and the color reproducibility can be greatly improved even under fluorescent light.
    • 提供一种滤波器,其仅能够通过具有对应于来自用于从其接收入射光的光接收元件的输出信号的荧光的次高次谐波频率分量(200-240Hz)的频率的信号分量的信号分量 照片区。 基于通过滤光器的信号,检测摄影区域是否用荧光灯照亮。 由于阳光的颜色温度(晴朗的室外)和荧光显示基本相同的值,因此难以区分两种上述光源。 测量荧光等的波动周期,并且将光检测装置(例如,色温传感器,测光元件等)的输出信号在等效的时间长度上多次进行采样 到测量波动周期的一个周期。 因此,即使对于包含纹波成分的人造光下的照片,也可以检测入射光量的平均值,并且可以适当地进行白平衡调整和曝光控制。 结果,可以区分阳光和荧光,并且可以进行精确的白平衡调整,并且即使在荧光下也可以大大提高颜色再现性。
    • 4. 发明申请
    • BOBBIN FOR COIL, COIL WINDING, AND COIL COMPONENT
    • 线圈,线圈绕组和线圈组件的BOBBIN
    • US20100039207A1
    • 2010-02-18
    • US12536985
    • 2009-08-06
    • Kouji KANEKO
    • Kouji KANEKO
    • H01F17/04
    • H01F27/325H01F27/2847H01F27/306
    • A coil bobbin has a cylindrical portion around which a coil winding is wound. The coil winding is composed of coil members of an end-defined ring shape coupled to each other. The cylindrical portion is inserted into openings of the coil members along a direction of a center axis of the cylindrical portion and from one end of the cylindrical portion. Flanges protruding outwardly relative to the center axis of the cylindrical portion are integrally provided at the other end of the cylindrical portion and a bobbin-side engagement portion for engagement between the coil bobbin and the coil winding is formed on a face of the flange opposed to the coil member. As the cylindrical portion is inserted into the coil members, the bobbin-side engagement portion comes into engagement with a winding-side engagement portion formed on a back face of the coil member.
    • 线圈架具有卷绕线圈绕组的圆筒部。 线圈绕组由彼此耦合的端部限定环形的线圈构件组成。 圆柱形部分沿着圆柱形部分的中心轴线的方向和圆柱形部分的一端插入到线圈构件的开口中。 在圆筒部的另一端一体地设置有相对于圆筒部的中心轴向外伸出的法兰,并且在与线圈绕线相对的凸缘的表面上形成有用于在线圈架和线圈绕组之间接合的筒管侧接合部 线圈构件。 当圆筒部插入线圈构件时,筒管侧接合部与形成在线圈构件的背面上的绕线侧接合部接合。
    • 5. 发明申请
    • BOBBIN FOR COIL, COIL WINDING, AND COIL COMPONENT
    • 线圈,线圈绕组和线圈组件的BOBBIN
    • US20100039204A1
    • 2010-02-18
    • US12536883
    • 2009-08-06
    • Kouji Kaneko
    • Kouji Kaneko
    • H01F27/30
    • H01F27/306H01F27/2847H01F27/325
    • A coil bobbin has a cylindrical portion around which a coil winding is wound. The coil winding is comprised of coil members of an end-defined ring shape, the coil members have indentations indented outwardly in part of their inner periphery, and circumferential positions of the indentations are coincident with those of the indentations. Claws and flanges protruding outwardly are integrally provided at both ends of the cylindrical portion, and the cylindrical portion is inserted into openings of the coil members so that the claws pass through the indentations. In a state in which the claws are located out of the coil member, the cylindrical portion is rotated whereby the coil winding is interposed between the claws and the flanges.
    • 线圈架具有卷绕线圈绕组的圆筒部。 线圈绕组由端部环形的线圈构件组成,线圈构件具有在其内周的一部分中向外凹入的凹陷,凹陷的圆周位置与凹陷的一致。 向外突出的爪和凸缘一体地设置在圆柱形部分的两端,并且圆柱形部分插入到线圈构件的开口中,使得爪穿过凹口。 在爪位于线圈构件外的状态下,圆筒部旋转,线圈卷绕在爪和凸缘之间。
    • 7. 发明申请
    • COIL BOBBIN, COIL COMPONENT AND SWITCHING POWER SOURCE APPARATUS
    • 线圈BOBBIN,线圈组件和开关电源设备
    • US20120257419A1
    • 2012-10-11
    • US13440674
    • 2012-04-05
    • Kouji KANEKO
    • Kouji KANEKO
    • H02M3/24H01F27/30
    • H01F27/306H01F27/325H02M3/335
    • To improve insulating properties of a coil winding having three turns. In a coil bobbin, insulation between mutually adjacent winding members of a first coil winding are achieved by a projecting section. Furthermore, the first coil winding and the second coil winding are insulated from each other by the flange section. Moreover, the projecting sections and the projecting sections are respectively provided in positions at either end when the first coil winding and the second coil winding are viewed in a direction perpendicular to the direction of the axis line. Consequently, even with coil windings having three turns, insulation between the windings is achieved by means of this coil bobbin, and furthermore, insulation is also achieved in the region outside the coil windings as viewed in a direction perpendicular to the axis line direction, thereby making it possible to improve the insulating properties without increasing the number of parts.
    • 提高具有三圈的线圈绕组的绝缘性能。 在线圈架中,通过突出部实现第一线圈绕组的相互缠绕构件之间的绝缘。 此外,第一线圈绕组和第二线圈绕组由凸缘部彼此绝缘。 此外,当在垂直于轴线方向的方向上观察第一线圈绕组和第二线圈绕组时,突出部分和突出部分别分别设置在任一端的位置。 因此,即使线圈绕组具有三匝,也可以通过该线圈架线圈实现绕组之间的绝缘,此外,在垂直于轴线方向的方向观察时,也可以在线圈绕组外部的区域实现绝缘,从而 使得可以在不增加部件数量的情况下提高绝缘性能。
    • 8. 发明授权
    • Bobbin for coil, coil winding, and coil component
    • 用于线圈,线圈绕组和线圈组件的线圈
    • US07924133B2
    • 2011-04-12
    • US12536985
    • 2009-08-06
    • Kouji Kaneko
    • Kouji Kaneko
    • H01F5/00H01F27/30H01F27/24
    • H01F27/325H01F27/2847H01F27/306
    • A coil bobbin has a cylindrical portion around which a coil winding is wound. The coil winding is composed of coil members of an end-defined ring shape coupled to each other. The cylindrical portion is inserted into openings of the coil members along a direction of a center axis of the cylindrical portion and from one end of the cylindrical portion. Flanges protruding outwardly relative to the center axis of the cylindrical portion are integrally provided at the other end of the cylindrical portion and a bobbin-side engagement portion for engagement between the coil bobbin and the coil winding is formed on a face of the flange opposed to the coil member. As the cylindrical portion is inserted into the coil members, the bobbin-side engagement portion comes into engagement with a winding-side engagement portion formed on a back face of the coil member.
    • 线圈架具有卷绕线圈绕组的圆筒部。 线圈绕组由彼此耦合的端部限定环形的线圈构件组成。 圆柱形部分沿着圆柱形部分的中心轴线的方向和圆柱形部分的一端插入到线圈构件的开口中。 在圆筒部的另一端一体地设置有相对于圆筒部的中心轴向外伸出的法兰,并且在与线圈绕线相对的凸缘的表面上形成有用于在线圈架和线圈绕组之间接合的筒管侧接合部 线圈构件。 当圆筒部插入线圈构件时,筒管侧接合部与形成在线圈构件的背面上的绕线侧接合部接合。
    • 9. 发明授权
    • Method of auto-focussing and system therefor
    • 自动聚焦方法及其系统
    • US5432332A
    • 1995-07-11
    • US51095
    • 1993-04-22
    • Kouji Kaneko
    • Kouji Kaneko
    • G02B7/36H04N5/232G02B7/12
    • G02B7/36H04N5/23212
    • A novel method and apparatus for auto-focussing which includes determining a focus voltage E.sub.S0 in a current position of a focus lens and focus voltages E.sub.S+ +and E.sub.S- when the focus lens is moved by a distance dx in both a front and rear direction along an optical axis, so that a focussing shift value is calculated more accurately and quick focussing is achieved. A distance X.sub.0 from the current position of the focus lens to the focussing position is calculated based on the focus voltages E.sub.S0, E.sub.S+ and E.sub.S- according to:X.sub.0 =dx (R.sub.+ -R.sub.-) / 2 (R.sub.+ +R.sub.-)where R.sub.+ =LN (E.sub.S+ / E.sub.S0)R.sub.- =LN (E.sub.S- / E.sub.S0).With this arrangement, the distance X.sub.0 can be determined without factors for determining curves of the focus voltages and the magnitude of the width of the differential.
    • 一种用于自动聚焦的新型方法和装置,其包括当聚焦透镜在前后方向沿着前后方向移动距离dx时,确定聚焦透镜的当前位置中的聚焦电压ES0和聚焦电压ES + +和ES- 光轴,从而更准确地计算聚焦偏移值,并且实现快速聚焦。 根据:X0 = dx(R + -R-)/ 2(R ++ R-),基于聚焦电压ES0,ES +和ES-计算从聚焦透镜的当前位置到聚焦位置的距离X0,其中 R + = LN(ES + / ES0)R- = LN(ES- / ES0)。 利用这种布置,可以确定距离X0而没有用于确定聚焦电压的曲线和差分的宽度的大小的因素。