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    • 1. 发明申请
    • Optical devices
    • 光学器件
    • US20070097531A1
    • 2007-05-03
    • US11338337
    • 2006-01-23
    • Li-Te KuoChau-Shin JangCheng-Yang HsiehMei-Lin LaiShyh-Jier Wang
    • Li-Te KuoChau-Shin JangCheng-Yang HsiehMei-Lin LaiShyh-Jier Wang
    • G02B7/02
    • G02B7/08H02K41/0352
    • An optical device. A guide bar is connected to a base, with a first central axis in an optical axis direction of the optical device. A coil slides on the guide bar and has a second central axis in the optical axis direction and a first central elevation axis. The second central axis is perpendicular to the first central elevation axis. A fixed magnetic member is disposed in the coil and has a central magnetizing axis and a second central elevation axis. The central magnetizing axis is perpendicular to the second central elevation axis and aligned with the second central axis of the coil. The second central elevation axis is separated from the first central elevation axis. A lens housing is connected to the coil. When the coil is energized by application of a current, a magnetic force is generated, moving the coil and lens housing along the guide bar.
    • 光学装置。 引导杆连接到基座,第一中心轴线在光学装置的光轴方向上。 A线圈在导杆上滑动并且在光轴方向上具有第二中心轴线和第一中心仰角轴线。 第二中心轴垂直于第一中心仰角。 固定磁性部件设置在线圈中并具有中心磁化轴线和第二中央仰角轴线。 中心磁化轴线垂直于第二中心仰角轴线并与线圈的第二中心轴线对齐。 第二中央高程轴与第一中央高程轴分离。 透镜壳体连接到线圈。 当通过施加电流使线圈通电时,产生磁力,沿着导杆移动线圈和透镜壳体。
    • 2. 发明申请
    • Optical devices
    • 光学器件
    • US20070097530A1
    • 2007-05-03
    • US11266832
    • 2005-11-03
    • Li-Te KuoChau-Shin JangMei-Lin LaiShyh-Jier Wang
    • Li-Te KuoChau-Shin JangMei-Lin LaiShyh-Jier Wang
    • G02B7/02
    • G02B7/08H02K41/0352
    • An optical device. At least one guide bar is connected to a base. A coil is disposed in the base. A central axis of the coil in an optical axis direction of the optical device is parallel to a central axis of the guide bar in the optical axis direction. A lens housing is slidably fitted on the guide bar. A central axis of the lens housing in the optical axis direction is parallel to that of the guide bar. The lens housing slides along the central axis of the guide bar. A magnetic member is connected to the lens housing opposite the coil, providing a first magnetic field. When the coil is energized to generate a second magnetic field, the lens housing slides on the guide bar by attraction or repulsion of the first and second magnetic fields.
    • 光学装置。 至少一个导杆连接到基座。 线圈设置在基座中。 光学装置的光轴方向的线圈的中心轴在光轴方向上平行于导杆的中心轴线。 透镜壳体可滑动地装配在导杆上。 透镜壳体的光轴方向的中心轴线与导杆的平行。 透镜壳体沿着导杆的中心轴线滑动。 磁性构件连接到与线圈相对的透镜壳体,提供第一磁场。 当线圈通电以产生第二磁场时,透镜壳体通过吸引或排斥第一和第二磁场而在引导杆上滑动。
    • 4. 发明申请
    • Three-phase DC motor
    • 三相直流电机
    • US20080272668A1
    • 2008-11-06
    • US11797235
    • 2007-05-02
    • Li-Te KuoChau-Shin Jang
    • Li-Te KuoChau-Shin Jang
    • H02K29/00H02K23/00H02K29/06
    • H02K1/14H02K21/14
    • A three-phase DC motor includes a rotor having plurality of magnetic poles, and a stator. The stator has three corners. The second corner is adjacent to a first direction of the first corner. The third corner is adjacent to a second direction of the first corner. The first corner, the second corner, and the third corner extend forwards to the rotor to form a first winding slot, a second winding slot, and a third winding slot respectively. A first winding, a second winding, and a third winding respectively wind around the first winding slot, the second winding slot, and the third winding slot. The mechanical angle between the first winding slot and the second winding slot is between 75 and 85 degrees. The mechanical angle between the first winding slot and the third winding slot is also between 75 and 85 degrees.
    • 三相直流电动机包括具有多个磁极的转子和定子。 定子有三个角。 第二个角落与第一个角的第一个方向相邻。 第三个角与第一个角的第二个方向相邻。 第一角,第二角和第三角分别向前延伸到转子以分别形成第一卷绕槽,第二卷绕槽和第三卷绕槽。 第一绕组,第二绕组和第三绕组分别缠绕在第一绕组槽,第二绕组槽和第三绕组槽周围。 第一绕组槽和第二绕组槽之间的机械角度在75和85度之间。 第一卷绕槽和第三卷绕槽之间的机械角度也在75和85度之间。
    • 8. 发明授权
    • Braking method for a single-phase motor
    • 单相电机的制动方法
    • US06274992B1
    • 2001-08-14
    • US09642547
    • 2000-08-17
    • King Yin WangLi-Te KuoYao-Yu LeeMing-Jiou YuDer-Ray Huaug
    • King Yin WangLi-Te KuoYao-Yu LeeMing-Jiou YuDer-Ray Huaug
    • H02P300
    • H02P6/24H02P6/006
    • The specification discloses a braking method for a single-phase motor, which is applied to a single-phase DC brushless motor driven by a three-phase motor driving IC. The invention uses a control unit to compute the rotational speed of the single-phase motor according to a rotation number signal generated by the motor rotational axis. When the rotational speed is below a threshold, the motor driving IC is controlled to stop rotating the single-phase motor. Through the single-phase motor braking method disclosed herein, the problem of unable to determine the rotational direction of a single-phase motor within a three-phase motor driving IC existing in the prior art can be solved by merely modifying the program in the control unit without adding system elements. Since currently the single-phase DC brushless motor and the three-phase motor driving IC have competitive superiority in prices, if the three-phase motor driving IC can directly drive the single-phase DC brushless motor without requiring additional system elements the whole system cost can be lower. On the other hand, this method can avoid the delay problem due to fewer single-phase motor driving IC manufacturers on the market.
    • 本说明书公开了一种用于单相电动机的制动方法,其应用于由三相电动机驱动IC驱动的单相直流无刷电动机。 本发明使用控制单元根据由马达旋转轴产生的转数信号来计算单相马达的转速。 当转速低于阈值时,控制电动机驱动IC停止旋转单相电动机。 通过这里公开的单相电动机制动方法,可以通过仅仅修改控制中的程序来解决不能确定现有技术中存在的三相电动机驱动IC内的单相电动机的旋转方向的问题 单位不添加系统元素。 由于目前单相直流无刷电机和三相电动机驱动IC在价格上具有竞争优势,如果三相电机驱动IC可以直接驱动单相直流无刷电机,而无需额外的系统元件,整个系统成本 可以较低。 另一方面,这种方法可以避免延迟问题,因为市场上较少的单相电机驱动IC制造商。
    • 9. 发明授权
    • Lens activating device
    • 镜头启动装置
    • US07952822B2
    • 2011-05-31
    • US12555739
    • 2009-09-08
    • Mei-Ling LaiLi-Te Kuo
    • Mei-Ling LaiLi-Te Kuo
    • G02B7/02
    • G02B7/08H02K41/0356
    • A lens activating device includes at least one elastic piece, at least one stationary piece and a movable piece. At least one elastic piece has at least four sheet portions and four sets of elastic portions. Each set of the elastic portions are serpentine and connected between two sheet portions in order to make the at least one elastic piece form a closed ring. The stationary piece is connected to two sheet portions, and the movable portion is connected to the other two sheet portions. The elastic force generated by the four sets of elastic portions exerts a restoring force on the movable piece. Via this arrangement, the slight rotation of the movable piece within the lens activating device can be reduced. Further, the problem that the elastic piece may scrape the neighboring elements can be prevented.
    • 透镜激活装置包括至少一个弹性件,至少一个固定件和可移动件。 至少一个弹性件具有至少四个片部分和四组弹性部分。 每组弹性部分是蛇形的并连接在两片片之间,以使至少一个弹性片形成闭环。 固定件连接到两个片部分,并且可动部分连接到另外两个片部分。 由四组弹性部分产生的弹力对可动片施加恢复力。 通过这种布置,可以减少可动件在透镜启动装置内的轻微旋转。 此外,可以防止弹性件可能刮擦相邻元件的问题。
    • 10. 发明申请
    • Lens displacement device
    • 镜头位移装置
    • US20080310037A1
    • 2008-12-18
    • US12081333
    • 2008-04-15
    • Li-Te KuoMei-Ling Lai
    • Li-Te KuoMei-Ling Lai
    • G02B7/04
    • G02B7/102H02K33/18H02K41/0356
    • The present invention provides a lens displacement device, applicable for moving micro image-capturing module lens, wherein the lens displacement device comprises: a lens slide base, a first hollow magnet, a hollow magnetic conducting plate, a second hollow magnet and a hollow coil. A first magnetic pole side of the hollow magnetic conducting plate is magnetically connected to the first hollow magnet, and a second magnetic pole side of the hollow magnetic conducting plate is magnetically connected to the second hollow magnet, which combined to form a magnetically connected assembly. The hollow coil is placed at the outer or inner perimeter of the magnetically connected assembly, and the hollow coil surrounds the magnetically connected assembly and they have a gap in-between them to allow for sliding. Herein the lens slide base rigidly connects the first hollow magnet of the magnetically connected assembly or the hollow coil.
    • 本发明提供一种可应用于移动微型摄像模块透镜的透镜移位装置,其中透镜移位装置包括:透镜滑动基座,第一中空磁体,中空导磁板,第二中空磁体和中空线圈 。 中空导磁板的第一磁极侧与第一中空磁体磁连接,中空导磁板的第二磁极侧与第二中空磁体磁连接,并组合形成磁性连接组件。 空心线圈放置在磁性连接组件的外周或内周,中空线圈包围磁连接组件,并且它们之间具有间隙以允许滑动。 这里,透镜滑动基座刚性连接磁连接组件的第一中空磁体或中空线圈。