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    • 1. 再颁专利
    • Lens driving apparatus
    • 镜头驱动装置
    • USRE44117E1
    • 2013-04-02
    • US13352855
    • 2012-01-18
    • Manabu ShirakiNaoki Sekiguchi
    • Manabu ShirakiNaoki Sekiguchi
    • G02B7/02G03B13/00G03B13/34G11B7/00H02K41/03
    • G02B7/08H02K41/0356
    • A lens driving apparatus 1 of the present invention includes a substantially cylindrical yoke 3; a base 5 to which the yoke 3 is attached; a carrier 7 having a lens; a coil 10; and a magnet 13, wherein the carrier 7 is moved in a direction of an optical axis of a lens by electromagnetic force generated by passing current through the coil 10, the base 5 is substantially square-shaped as viewed from a plane, the yoke 3 is placed at an inner position of the base 5, the yoke 3 has an outer peripheral wall 3a and an annular inner peripheral wall 3b to be spaced to each other, each magnet is placed between the outer peripheral wall and the inner peripheral wall and at a position corresponding to a base corner portion of the base 5, and a space between the outer peripheral wall 3a and the inner peripheral wall 3b positioned at a base side portion 3e is made narrower than a space between the outer peripheral wall 3a and the inner peripheral wall 3b positioned at the base corner portion.
    • 本发明的透镜驱动装置1包括大致圆柱形的轭3; 轭3所附接的基座5; 具有透镜的载体7; 线圈10; 和磁体13,其中载体7通过电流通过线圈10产生的电磁力在透镜的光轴方向上移动,基座5从平面观察时大体上为正方形,轭3 放置在基座5的内部位置时,磁轭3具有彼此间隔开的外周壁3a和环形内周壁3b,每个磁体位于外周壁和内周壁之间,并且在 与基座5的基部角部对应的位置以及位于基部侧部3e的外周壁3a与内周壁3b之间的空间比外周壁3a和内周侧壁3a之间的间隙窄。 位于基角部的周壁3b。
    • 2. 发明申请
    • Lens driving apparatus
    • 镜头驱动装置
    • US20050180275A1
    • 2005-08-18
    • US10926221
    • 2004-08-26
    • Manabu ShirakiSatoshi AsakawaNaoki SekiguchiMorimasa Yoshie
    • Manabu ShirakiSatoshi AsakawaNaoki SekiguchiMorimasa Yoshie
    • G03B3/10G02B7/08G02B7/09G02B7/10G02B7/28G11B7/00
    • G02B7/102G02B7/08G02B7/282
    • A lens driving apparatus includes a first yoke 7 having an inner peripheral wall 7a and an outer peripheral wall 7b placed to be concentric with each other and forming a rectangular U-shape cross section and a cylindrical shape; a second yoke 12 placed at an outer side of the first yoke 7 be concentric with the first yoke 7 and forming a rectangular U-shape cross section and a cylindrical shape; a base 2; a first magnet 6 and a first coil 4 arranged in a rectangular U-shape interior of the first yoke 7; a second magnet 11 and a second coil 9 arranged in a rectangular U-shape interior of the second yoke 12; a first lens support member 5; and a second lens support member 10. The second lens support member 10 is placed at an inner peripheral side of the second yoke 12 and having the second coil 9 fixed onto an outer periphery. The first lens support member 5 is linearly moved in a direction of an optical axis of a lens by an electromagnetic force caused by passing current through the first coil 4. The second lens support member is linearly moved in a direction of an optical axis of a lens by an electromagnetic force caused by passing current through the second coil 9.
    • 透镜驱动装置包括:第一磁轭7,其具有设置成彼此同心的内周壁7a和外周壁7b,并形成矩形的U形横截面和圆柱形; 放置在第一磁轭7的外侧的第二磁轭12与第一磁轭7同心,并形成矩形的U形横截面和圆柱形; 一个基地2; 布置在第一磁轭7的矩形U形内部的第一磁体6和第一线圈4; 布置在第二磁轭12的矩形U形内部的第二磁体11和第二线圈9; 第一透镜支撑构件5; 和第二透镜支撑构件10。 第二透镜支撑构件10被放置在第二磁轭12的内周侧,并且第二线圈9固定在外周上。 第一透镜支撑构件5通过由通过第一线圈4的电流引起的电磁力在透镜的光轴的方向上线性移动。 第二透镜支撑构件通过由通过第二线圈9的电流引起的电磁力在透镜的光轴的方向上线性移动。
    • 3. 再颁专利
    • Lens driving apparatus
    • 镜头驱动装置
    • USRE43465E1
    • 2012-06-12
    • US12853559
    • 2010-08-10
    • Manabu ShirakiNaoki Sekiguchi
    • Manabu ShirakiNaoki Sekiguchi
    • G02B7/02G11B7/00G03B13/00G03B13/34
    • G02B7/08H02K41/0356
    • A lens driving apparatus 1 of the present invention includes a substantially cylindrical yoke 3; a base 5 to which the yoke 3 is attached; a carrier 7 having a lens; a coil 10; and a magnet 13, wherein the carrier 7 is moved in a direction of an optical axis of a lens by electromagnetic force generated by passing current through the coil 10, the base 5 is substantially square-shaped as viewed from a plane, the yoke 3 is placed at an inner position of the base 5, the yoke 3 has an outer peripheral wall 3a and an annular inner peripheral wall 3b to be spaced to each other, each magnet is placed between the outer peripheral wall and the inner peripheral wall and at a position corresponding to a base corner portion of the base 5, and a space between the outer peripheral wall 3a and the inner peripheral wall 3b positioned at a base side portion 3e is made narrower than a space between the outer peripheral wall 3a and the inner peripheral wall 3b positioned at the base corner portion.
    • 本发明的透镜驱动装置1包括大致圆柱形的轭3; 轭3所附接的基座5; 具有透镜的载体7; 线圈10; 和磁体13,其中载体7通过电流通过线圈10产生的电磁力在透镜的光轴方向上移动,基座5从平面观察时大体上为正方形,轭3 放置在基座5的内部位置时,磁轭3具有彼此间隔开的外周壁3a和环形内周壁3b,每个磁体位于外周壁和内周壁之间,并且在 与基座5的基部角部对应的位置以及位于基部侧部3e的外周壁3a与内周壁3b之间的空间比外周壁3a和内周侧壁3a之间的间隙窄。 位于基角部的周壁3b。
    • 4. 发明申请
    • Lens driving apparatus
    • 镜头驱动装置
    • US20070091199A1
    • 2007-04-26
    • US11346233
    • 2006-02-03
    • Manabu ShirakiNaoki Sekiguchi
    • Manabu ShirakiNaoki Sekiguchi
    • G03B13/00
    • G02B7/08H02K41/0356
    • A lens driving apparatus 1 of the present invention includes a substantially cylindrical yoke 3; a base 5 to which the yoke 3 is attached; a carrier 7 having a lens; a coil 10; and a magnet 13, wherein the carrier 7 is moved in a direction of an optical axis of a lens by electromagnetic force generated by passing current through the coil 10, the base 5 is substantially square-shaped seeing from a plane, the yoke 3 is placed at an inner position of the base 5, the yoke 3 has an outer peripheral wall 3a and an annular inner peripheral wall 3b to be spaced to each other, each magnet is placed between the outer peripheral wall and the inner peripheral wall and at a position corresponding to a base corner portion of the base 5, a space between the outer peripheral wall 3a and the inner peripheral wall 3b positioned at a base side portion 3e is made narrower than a space between the outer peripheral wall 3a and the inner peripheral wall 3b positioned at the base corner portion.
    • 本发明的透镜驱动装置1包括大致圆柱形的轭3; 轭3所附接的基座5; 具有透镜的载体7; 线圈10; 和磁体13,其中载体7通过电流通过线圈10产生的电磁力沿透镜的光轴方向移动,基座5从平面看是大致正方形的,磁轭3是 放置在基座5的内部位置时,磁轭3具有彼此间隔开的外周壁3a和环形内周壁3b,每个磁体位于外周壁与内周壁之间, 在与基座5的基部角部相对应的位置,使外周壁3a与位于基部侧壁部3e的内周壁3b之间的间隔比外周壁3 a和位于基角部的内周壁3b。
    • 6. 发明授权
    • Lens driving apparatus
    • 镜头驱动装置
    • US07649703B2
    • 2010-01-19
    • US11346233
    • 2006-02-03
    • Manabu ShirakiNaoki Sekiguchi
    • Manabu ShirakiNaoki Sekiguchi
    • G02B7/02G11B7/00G03B13/00G03B13/34
    • G02B7/08H02K41/0356
    • A lens driving apparatus 1 of the present invention includes a substantially cylindrical yoke 3; a base 5 to which the yoke 3 is attached; a carrier 7 having a lens; a coil 10; and a magnet 13, wherein the carrier 7 is moved in a direction of an optical axis of a lens by electromagnetic force generated by passing current through the coil 10, the base 5 is substantially square-shaped as viewed from a plane, the yoke 3 is placed at an inner position of the base 5, the yoke 3 has an outer peripheral wall 3a and an annular inner peripheral wall 3b to be spaced to each other, each magnet is placed between the outer peripheral wall and the inner peripheral wall and at a position corresponding to a base corner portion of the base 5, and a space between the outer peripheral wall 3a and the inner peripheral wall 3b positioned at a base side portion 3e is made narrower than a space between the outer peripheral wall 3a and the inner peripheral wall 3b positioned at the base corner portion.
    • 本发明的透镜驱动装置1包括大致圆柱形的轭3; 轭3所附接的基座5; 具有透镜的载体7; 线圈10; 和磁体13,其中载体7通过电流通过线圈10产生的电磁力在透镜的光轴方向上移动,基座5从平面观察时大体上为正方形,轭3 放置在基座5的内部位置时,磁轭3具有彼此间隔开的外周壁3a和环形内周壁3b,每个磁体位于外周壁和内周壁之间,并且在 与基座5的基部角部对应的位置以及位于基部侧部3e的外周壁3a与内周壁3b之间的空间比外周壁3a和内周侧壁3a之间的间隙窄。 位于基角部的周壁3b。
    • 7. 发明授权
    • Lens driving apparatus
    • 镜头驱动装置
    • US07394603B2
    • 2008-07-01
    • US10926221
    • 2004-08-26
    • Manabu ShirakiSatoshi AsakawaNaoki SekiguchiMorimasa Yoshie
    • Manabu ShirakiSatoshi AsakawaNaoki SekiguchiMorimasa Yoshie
    • G02B7/02G02B15/14
    • G02B7/102G02B7/08G02B7/282
    • A lens driving apparatus includes: a first yoke having an inner peripheral wall and an outer peripheral wall placed to be concentric with each other and forming a rectangular U-shape cross section and a cylindrical shape; a second yoke placed at an outer side of the first yoke to be concentric with the first yoke and forming a rectangular U-shape cross section and a cylindrical shape; a base; a first magnet and a first coil arranged in a rectangular U-shape interior of the first yoke; a second magnet and a second coil arranged in a rectangular U-shape interior of the second yoke; a first lens support member; and a second lens support member. The second lens support member is placed at an inner peripheral side of the second yoke and has the second coil fixed onto an outer periphery thereof. The first lens support member is linearly moved in a direction of an optical axis of a lens by an electromagnetic force caused by passing current through the first coil. The second lens support member is linearly moved in a direction of an optical axis of a lens by an electromagnetic force caused by passing current through the second coil.
    • 透镜驱动装置包括:第一磁轭,具有设置成彼此同心的内周壁和外周壁,并形成矩形的U形横截面和圆柱形; 放置在与第一磁轭同心的第一磁轭的外侧的形成矩形的U形横截面和圆筒形的第二磁轭; 一个基地 布置在所述第一磁轭的矩形U形内部的第一磁体和第一线圈; 布置在所述第二磁轭的矩形U形内部的第二磁体和第二线圈; 第一透镜支撑构件; 和第二透镜支撑构件。 第二透镜支撑构件被放置在第二磁轭的内周侧,并且具有固定在其外周上的第二线圈。 第一透镜支撑构件通过由通过第一线圈的电流引起的电磁力在透镜的光轴的方向上线性移动。 第二透镜支撑构件通过由通过第二线圈的电流引起的电磁力在透镜的光轴的方向上线性移动。
    • 8. 发明授权
    • Electromagnetic actuator
    • 电磁执行器
    • US06608541B2
    • 2003-08-19
    • US10190570
    • 2002-07-09
    • Manabu ShirakiNaoki SekiguchiMakoto FujiiNoriyuki WashioKatsu Okubo
    • Manabu ShirakiNaoki SekiguchiMakoto FujiiNoriyuki WashioKatsu Okubo
    • H01F708
    • H04R9/06H04R2400/03
    • An electromagnetic actuator comprises: a magnet; a pole piece mounted to the magnet; a yoke facing the pole piece; a coil base having a vibration coil; leaf springs for supporting the coil base and a weight; a case for enclosing them; a cover for covering one side of the case; and a diaphragm having a voice coil, wherein the arms of the coil base are inserted through notches formed in the yoke, and the vibration coil and the voice coil is disposed in a gap in which the pole piece and the yoke face each other. The weight vibrates by the application of a low-frequency current to the vibration coil, and the diaphragm vibrates by the application of a high-frequency current to the voice coil.
    • 电磁致动器包括:磁体; 安装在磁铁上的极片; 面对极片的磁轭; 具有振动线圈的线圈座; 用于支撑线圈底座和重量的板簧; 封闭它们的情况; 用于覆盖壳体的一侧的盖子; 以及具有音圈的隔膜,其中,所述线圈座的臂通过形成在所述轭中的切口插入,并且所述振动线圈和所述音圈设置在所述极靴和所述轭的彼此面对的间隙中。 重量通过对振动线圈施加低频电流而振动,并且振膜通过向音圈施加高频电流而振动。
    • 9. 发明授权
    • Multiplex writing implement
    • 复写书写工具
    • US5642953A
    • 1997-07-01
    • US529585
    • 1995-09-18
    • Seiichi KobayashiNaoki Sekiguchi
    • Seiichi KobayashiNaoki Sekiguchi
    • B43K24/14B43K29/02B43K27/00
    • B43K29/02B43K24/14
    • A multiplex writing implement includes a mechanical pencil refill and ball-point pen refill which can be selectively used as desired, and is equipped with a delivering mechanism for delivering a stick-shaped article such as an eraser etc. The multiplex writing implement further includes: a front barrel for accommodating at least tip portions of these refills; a middle barrel for accommodating the remaining parts of these refills; a rear barrel which is able to rotate clockwise or counterclockwise relative to the middle barrel; and a cylindrical cam which moves integrally with the rear barrel and, in accordance with the rotational direction of the rear barrel, allows selective use of one of the refills by projecting any one of the refills from the front end of the front barrel and retracting the other refill. In this configuration, the front and middle barrels are integrally joined in such a state that each barrel is prevented from rotating and falling off relative to the other barrel.
    • 一种多功能书写工具,包括可根据需要选择性地使用的机械式笔芯笔芯和圆珠笔笔芯,并配备有用于传送诸如橡皮擦等的棒状物品的输送机构。多重书写工具还包括: 一个前筒,用于容纳至少这些笔芯的尖端部分; 用于容纳这些补充物的剩余部分的中间桶; 能够相对于中筒顺时针或逆时针旋转的后筒; 以及与后筒一体地移动的圆柱形凸轮,并且根据后筒的旋转方向,允许通过从前筒的前端突出任何一个重新填充物来选择性地使用重新填充物中的一个,并且缩回 其他充值 在这种构造中,前筒和中筒一体地接合在一起,使得每个筒相对于另一个筒被防止旋转和脱落。