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    • 1. 发明申请
    • AUTO FOCUS APPARATUS AND METHOD FOR CAMERA
    • 自动聚焦装置和摄像机的方法
    • US20080317452A1
    • 2008-12-25
    • US12123563
    • 2008-05-20
    • Sung-Hoon KIMYong-Gu LeeDoo-Sik ShinYeon-Jun Lee
    • Sung-Hoon KIMYong-Gu LeeDoo-Sik ShinYeon-Jun Lee
    • G03B13/36
    • G03B13/36G02B7/08G03B3/10H04N5/2254H04N5/23212
    • An auto focus (AF) apparatus and method for a camera that improves the AF action by reducing the number of time and steps required of a conventional apparatus and method. An encoder initial value is detected by measuring an initial position of a lens unit by means of an encoder; matching the measured encoder initial value to an initial position value to which the lens unit is to move while performing the auto focus; performing the auto focus starting from the matched initial position value, and dividing a distance that the lens unit is to cover into sections corresponding to a preset number of steps; detecting an edge value which shows a brightness change for a contour of a subject for as many as the number of the preset steps. The AF is completed by moving the lens unit to a position corresponding to a maximum edge value selected from among the detected edge values.
    • 一种用于相机的自动对焦(AF)装置和方法,其通过减少常规装置和方法所需的时间和步骤的数量来改善AF动作。 通过利用编码器测量透镜单元的初始位置来检测编码器初始值; 将测量的编码器初始值与执行自动对焦时所述透镜单元要移动的初始位置值相匹配; 从匹配的初始位置值开始执行自动对焦,并且将透镜单元所覆盖的距离除以对应于预设步数的部分; 检测显示对象的轮廓的亮度变化的边缘值与预设步骤的数量一样多。 通过将透镜单元移动到与从检测到的边缘值中选择的最大边缘值相对应的位置来完成AF。
    • 2. 发明授权
    • Auto focus apparatus and method for camera
    • 自动对焦装置及相机方法
    • US08059956B2
    • 2011-11-15
    • US12123563
    • 2008-05-20
    • Sung-Hoon KimYong-Gu LeeDoo-Sik ShinYeon-Jun Lee
    • Sung-Hoon KimYong-Gu LeeDoo-Sik ShinYeon-Jun Lee
    • G03B13/36
    • G03B13/36G02B7/08G03B3/10H04N5/2254H04N5/23212
    • An auto focus (AF) apparatus and method for a camera that improves the AF action by reducing the number of time and steps required of a conventional apparatus and method. An encoder initial value is detected by measuring an initial position of a lens unit by means of an encoder; matching the measured encoder initial value to an initial position value to which the lens unit is to move while performing the auto focus; performing the auto focus starting from the matched initial position value, and dividing a distance that the lens unit is to cover into sections corresponding to a preset number of steps; detecting an edge value which shows a brightness change for a contour of a subject for as many as the number of the preset steps. The AF is completed by moving the lens unit to a position corresponding to a maximum edge value selected from among the detected edge values.
    • 一种用于相机的自动对焦(AF)装置和方法,其通过减少常规装置和方法所需的时间和步骤的数量来改善AF动作。 通过利用编码器测量透镜单元的初始位置来检测编码器初始值; 将测量的编码器初始值与执行自动对焦时所述透镜单元要移动的初始位置值相匹配; 从匹配的初始位置值开始执行自动对焦,并且将透镜单元所覆盖的距离除以对应于预设步数的部分; 检测显示对象的轮廓的亮度变化的边缘值与预设步骤的数量一样多。 通过将透镜单元移动到与从检测到的边缘值中选择的最大边缘值相对应的位置来完成AF。
    • 3. 发明授权
    • Bi-directional signal level shift circuit
    • 双向信号电平移位电路
    • US07202727B2
    • 2007-04-10
    • US10839302
    • 2004-05-05
    • Yeon-Jun LeeYong-Gu Lee
    • Yeon-Jun LeeYong-Gu Lee
    • H03L5/00
    • H03K19/01759H03K19/017536
    • A circuit for shifting a level between two bi-directional signals having different voltage levels. The circuit includes a first analog switch including a first switching control terminal connected to first directional signal stage, a first input terminal connected to a first level of operating voltage, and a first output terminal connected to a second directional signal stage, for performing a switching operation for the first input terminal and the first output terminal based on a state of logic level of a signal from the second directional signal stage. The circuit also includes a second analog switch including a second switching control terminal connected to the first directional signal stage, a second input terminal connected to a second level of operating voltage, and a second output terminal connected to the first directional signal stage for performing a switching operation for the second input terminal and the second output terminal based on a state of a logic level of a signal from the first directional signal stage.
    • 用于在具有不同电压电平的两个双向信号之间移位电平的电路。 该电路包括:第一模拟开关,包括连接到第一定向信号级的第一开关控制端子,连接到第一级工作电压的第一输入端子和连接到第二方向信号级的第一输出端子,用于执行开关 基于来自第二定向信号级的信号的逻辑电平的状态对第一输入端子和第一输出端子进行操作。 电路还包括第二模拟开关,其包括连接到第一定向信号级的第二开关控制端子,连接到第二电平工作电压的第二输入端子和连接到第一定向信号级的第二输出端子,用于执行 基于来自第一定向信号级的信号的逻辑电平的状态,第二输入端子和第二输出端子的开关操作。
    • 4. 发明申请
    • Bi-directional signal level shift circuit
    • 双向信号电平移位电路
    • US20050122154A1
    • 2005-06-09
    • US10839302
    • 2004-05-05
    • Yeon-Jun LeeYong-Gu Lee
    • Yeon-Jun LeeYong-Gu Lee
    • H04B10/02H03K19/0175H03L5/00
    • H03K19/01759H03K19/017536
    • A circuit for shifting a level between two bidirectional signals having different voltage levels. The circuit includes a first analog switch including a first switching control terminal connected to first directional signal stage, a first input terminal connected to a first level of operating voltage, and a first output terminal connected to a second directional signal stage, for performing a switching operation for the first input terminal and the first output terminal based on a state of logic level of a signal from the second directional signal stage. The circuit also includes a second analog switch including a second switching control terminal connected to the first directional signal stage, a second input terminal connected to a second level of operating voltage, and a second output terminal connected to the first directional signal stage for performing a switching operation for the second input terminal and the second output terminal based on a state of a logic level of a signal from the first directional signal stage.
    • 用于在具有不同电压电平的两个双向信号之间移位电平的电路。 该电路包括:第一模拟开关,包括连接到第一定向信号级的第一开关控制端子,连接到第一级工作电压的第一输入端子和连接到第二方向信号级的第一输出端子,用于执行开关 基于来自第二定向信号级的信号的逻辑电平的状态对第一输入端子和第一输出端子进行操作。 电路还包括第二模拟开关,其包括连接到第一定向信号级的第二开关控制端子,连接到第二电平工作电压的第二输入端子和连接到第一定向信号级的第二输出端子,用于执行 基于来自第一定向信号级的信号的逻辑电平的状态,第二输入端子和第二输出端子的开关操作。
    • 5. 发明授权
    • Hot plugging device for optical transceiver modules
    • 光收发模块热插拔装置
    • US07077578B2
    • 2006-07-18
    • US10728013
    • 2003-12-04
    • Yeon-Jun LeeDae-Jin Kim
    • Yeon-Jun LeeDae-Jin Kim
    • G02B6/36
    • G06F1/1632G02B6/3893G02B6/4246G02B6/4292
    • Disclosed herein is a hot plugging device for optical transceiver modules. The hot plugging device comprises a module housing, latching grooves extended from prescribed positions of both sides of the module housing to one end of the module housing, respectively, sliding members extended in the longitudinal direction of the module housing and linearly movably accommodated in the latching grooves, respectively, and a rotating member rotatably attached to one end of the module housing for engaging ends of the sliding members with corresponding ends of the latching grooves, respectively, while the rotating member is placed at a prescribed angle to the longitudinal direction of the module housing. With the hot plugging device of the present invention, a locking unit of the module housing is easily released, and the release of the locking unit is maintained, whereby the module housing is easily separated from a cage. Also, a working space necessary to separate the module housing from the cage is reduced, whereby many more optical transceiver modules can be mounted. Furthermore, only latching pieces are deformed when the module housing is separated from the cage. Consequently, the present invention has an effect of preventing permanent deformation of the module housing or the cage or damage to the module housing or the cage.
    • 这里公开了一种用于光收发器模块的热插拔装置。 热插拔装置包括:模块壳体,分别从模块壳体两侧的规定位置延伸到模块壳体的一端的锁定槽,滑动构件在模块壳体的纵向方向上延伸并且线性地可移动地容纳在闩锁 分别具有旋转构件,该旋转构件可旋转地安装在模块壳体的一端,用于分别将滑动构件的端部与锁定槽的相应端部接合,同时旋转构件以与其相对的纵向方向 模块外壳。 利用本发明的热插拔装置,模块壳体的锁定单元容易释放,并且保持锁定单元的释放,由此模块壳体容易地与保持架分离。 此外,减少了将模块壳体与保持架分离所需的工作空间,由此可以安装更多的光收发器模块。 此外,当模块壳体与保持架分离时,只有闩锁件变形。 因此,本发明具有防止模块壳体或保持架的永久变形或对模块壳体或保持架的损坏的效果。
    • 7. 发明申请
    • CAMERA MODULE HAVING IMAGE SENSOR
    • 具有图像传感器的相机模块
    • US20090040317A1
    • 2009-02-12
    • US12188245
    • 2008-08-08
    • Dong-Youl ParkYoung-Kwon YoonYeon-Jun Lee
    • Dong-Youl ParkYoung-Kwon YoonYeon-Jun Lee
    • H04N5/228G03B17/00
    • G03B5/00H04N5/23245H04N5/23248H04N5/23258
    • A camera module having an image sensor, which forms a low-pixel image sensor integrated with an image signal processing unit such as Image Signal Processor (ISP)/Analog Front End (AFE) includes: an image sensor unit for converting light being incident after passing through a prism into image data and applying image data, which is hand shake-corrected by movements between a plurality of positions, to a multimedia processor of a product, a drive controller for receiving and calculating hand-shake information acquired by a plurality of gyrosensors and calculating an amount of correction to control driving of a sensor driver, a motor, and lenses, and the sensor driver for moving the image sensor unit to correct a hand shake under control of the drive controller.
    • 具有图像传感器的相机模块,其形成与诸如图像信号处理器(ISP)/模拟前端(AFE)的图像信号处理单元集成的低像素图像传感器,包括:图像传感器单元,用于将在 通过棱镜进入图像数据并将通过多个位置之间的移动手抖动校正的图像数据应用到产品的多媒体处理器,用于接收和计算由多个位置获取的手抖信息的驱动控制器 陀螺传感器,并且计算用于控制传感器驱动器,电动机和透镜的驱动的校正量,以及用于在驱动控制器的控制下移动图像传感器单元以校正手抖动的传感器驱动器。