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    • 1. 发明申请
    • Imaging apparatus
    • 成像设备
    • US20050281551A1
    • 2005-12-22
    • US11114679
    • 2005-04-25
    • Hideharu OnoShigehisa RokutaMakoto KikuchiKazunori Uemura
    • Hideharu OnoShigehisa RokutaMakoto KikuchiKazunori Uemura
    • G03B13/34H04N5/225
    • G03B13/34
    • An imaging apparatus is provided which performs optimum zooming and focusing even after long use. The imaging apparatus includes: a lens which is movable along the optical axis; a driving module to drive the lens; a driving amount calculation module to determine a drive count indicating the number of times the driving module has been operated or a drive time for which the driving module has been operated; a storage module to store compensation amounts which are used to compensate for the mechanical play of the driving module according to the drive count or the drive time; and a control module to control the driving module wherein a compensation amount appropriate for the drive count or time determined by the driving amount calculation module is selected from the compensation amounts stored in the storage module and the selected compensation amount is used to compensate for the mechanical play of the driving module.
    • 提供一种成像装置,即使在长时间使用之后也能进行最佳的变焦和聚焦。 成像装置包括:可沿光轴移动的透镜; 用于驱动镜头的驱动模块; 驱动量计算模块,用于确定指示所述驾驶模块已被操作的次数的驱动计数或所述驱动模块已被操作的驱动时间; 存储模块,用于存储用于根据驱动计数或驱动时间来补偿驱动模块的机械播放的补偿量; 以及用于控制驱动模块的控制模块,其中从存储在存储模块中的补偿量中选择适合于由驱动量计算模块确定的驱动计数或时间的补偿量,并且使用所选择的补偿量来补偿机械 玩的驱动模块。
    • 2. 发明授权
    • Imaging apparatus
    • 成像设备
    • US07310476B2
    • 2007-12-18
    • US11114679
    • 2005-04-25
    • Hideharu OnoShigehisa RokutaMakoto KikuchiKazunori Uemura
    • Hideharu OnoShigehisa RokutaMakoto KikuchiKazunori Uemura
    • G03B3/10G03B17/00
    • G03B13/34
    • An imaging apparatus is provided which performs optimum zooming and focusing even after long use. The imaging apparatus includes: a lens which is movable along the optical axis; a driving module to drive the lens; a driving amount calculation module to determine a drive count indicating the number of times the driving module has been operated or a drive time for which the driving module has been operated; a storage module to store compensation amounts which are used to compensate for the mechanical play of the driving module according to the drive count or the drive time; and a control module to control the driving module wherein a compensation amount appropriate for the drive count or time determined by the driving amount calculation module is selected from the compensation amounts stored in the storage module and the selected compensation amount is used to compensate for the mechanical play of the driving module.
    • 提供一种成像装置,即使在长时间使用之后也能进行最佳的变焦和聚焦。 成像装置包括:可沿光轴移动的透镜; 用于驱动镜头的驱动模块; 驱动量计算模块,用于确定指示所述驾驶模块已被操作的次数的驱动计数或所述驱动模块已被操作的驱动时间; 存储模块,用于存储用于根据驱动计数或驱动时间来补偿驱动模块的机械播放的补偿量; 以及用于控制驱动模块的控制模块,其中从存储在存储模块中的补偿量中选择适合于由驱动量计算模块确定的驱动计数或时间的补偿量,并且使用所选择的补偿量来补偿机械 玩的驱动模块。
    • 3. 发明授权
    • Focus control device and focus control method
    • 对焦控制装置和对焦控制方法
    • US08159597B2
    • 2012-04-17
    • US12500743
    • 2009-07-10
    • Hideharu Ono
    • Hideharu Ono
    • H04N5/232H04N5/238
    • H04N5/23212
    • Even when a point light source is present in a subject or a normal subject is erroneously determined as a point light source in determination of the presence or absence of a point light source, the following is implemented: the driving time of a focus lens is shortened and quick focusing operation is provided. The optimum focus lens stroke is computed based on information on a high-brightness region and a low-brightness region in an image. Then the focus lens is driven while the focus lens stroke is continuously varied based on the amount of change in high-brightness region and low-brightness region.
    • 即使在被摄物体中存在点光源或者在确定点光源的存在或不存在时,正常被摄体被错误地确定为点光源时,实现以下目的:缩短焦点透镜的驱动时间 并提供快速聚焦操作。 基于关于图像中的高亮度区域和低亮度区域的信息来计算最佳聚焦透镜笔划。 然后,在聚焦透镜行程基于高亮度区域和低亮度区域的变化量连续变化的同时驱动聚焦透镜。
    • 4. 发明授权
    • Imaging device with autofocus operation
    • 具有自动对焦操作的成像设备
    • US09172864B2
    • 2015-10-27
    • US14238473
    • 2011-09-13
    • Hideharu Ono
    • Hideharu Ono
    • H04N5/232G02B7/36G02B7/28G03B13/36
    • H04N5/23212G02B7/282G02B7/365G03B13/36
    • An imaging device that images a subject includes a focus lens group that collects a light beam from the subject and forms an image of the subject, a focus motor that drives the focus lens group in the optical axis direction, and an imaging element that performs photoelectric conversion of the light beam and outputs a video signal. The imaging device further includes a contrast signal generator that generates and outputs a lower-frequency contrast signal from a luminance component of the video signal, an AF processor that employs the lower-frequency contrast signal as an auto focus evaluation value and moves the focus lens group to the in-focus position with wobbling the focus lens group, and a histogram signal generator that generates and outputs a high-luminance pixel count of the video signal. The AF processor varies the amplitude of the wobbling of the focus lens group based on the high-luminance pixel count.
    • 拍摄对象的成像装置包括:聚焦透镜组,其聚集来自被摄体的光束并形成被摄体的图像,驱动聚焦透镜组的光轴方向的聚焦电机;以及摄像元件,其进行光电 转换光束并输出视频信号。 成像装置还包括对比度信号发生器,其从视频信号的亮度分量产生并输出低频对比度信号; AF处理器,其使用低频对比度信号作为自动对焦评估值,并移动聚焦透镜 以焦点透镜组为摇摆对焦的对焦位置,以及生成并输出视频信号的高亮度像素数的直方图信号发生器。 AF处理器基于高亮度像素数来改变聚焦透镜组的摆动的幅度。
    • 5. 发明申请
    • IMAGING DEVICE
    • 成像装置
    • US20140198246A1
    • 2014-07-17
    • US14238473
    • 2011-09-13
    • Hideharu Ono
    • Hideharu Ono
    • H04N5/232
    • H04N5/23212G02B7/282G02B7/365G03B13/36
    • The present invention is to correctly perform auto focus operation with various subjects. An imaging device (10) that images a subject includes a focus lens group (16) that collects a light beam from the subject and forms an image of the subject, a focus motor (13) that drives the focus lens group (16) in the optical axis direction, and an imaging element (30) that performs photoelectric conversion of the light beam and outputs a video signal. The imaging device (10) further includes a contrast signal generator (42-1) that generates and outputs a lower-frequency contrast signal C0 from a luminance component of the video signal, an AF processor (53) that employs the lower-frequency contrast signal C0 as an auto focus evaluation value and moves the focus lens group (16) to the in-focus position with wobbling the focus lens group (16), and a histogram signal generator (45-1) that generates and outputs a high-luminance pixel count Hb of the video signal. The AF processor (53) varies the amplitude of the wobbling of the focus lens group (16) based on the high-luminance pixel count Hb.
    • 本发明是为了正确地进行各种被摄体的自动对焦操作。 对被摄体进行成像的成像装置(10)包括:聚焦透镜组(16),其聚集来自被摄体的光束并形成被摄体的图像;聚焦电机(13),其驱动聚焦透镜组 光轴方向,以及进行光束的光电转换并输出视频信号的摄像元件(30)。 成像装置(10)还包括从视频信号的亮度分量生成并输出低频对比度信号C0的对比度信号发生器(42-1),使用低频对比度的AF处理器(53) 信号C0作为自动对焦评估值,并且使焦点透镜组(16)摆动并将聚焦透镜组(16)移动到对焦位置,以及直方图信号发生器(45-1) 视频信号的亮度像素数Hb。 AF处理器(53)基于高亮度像素数Hb改变聚焦透镜组(16)的摆动的幅度。
    • 6. 发明申请
    • IMAGING DEVICE
    • 成像装置
    • US20110292525A1
    • 2011-12-01
    • US13117175
    • 2011-05-27
    • Akira AndoToshiyuki YokoyamaHideharu OnoTomoaki NishiguchiHiroyuki Miyahara
    • Akira AndoToshiyuki YokoyamaHideharu OnoTomoaki NishiguchiHiroyuki Miyahara
    • G02B7/04
    • G03B3/10G02B7/28G03B13/34H04N5/23212
    • In order to obtain stable lens positions to have an object imaged in focus when the temperature of lenses changes, an imaging device of the present invention comprises a system control section 60 having a imaging mode and a correction mode, the imaging mode in which a group of lenses 10 are controlled and moved to focusing positions for a predetermined distance at first and are further moved to correct the focusing positions for the predetermined distance to the object during imaging according to the temperature compensation data, the correction mode in which the group of lenses 10 are controlled and moved to have the temperature compensation data corrected when the temperature change is larger than or equal to a predetermined temperature difference, a correction coefficient calculation section 50 for calculating the correction coefficient to correct the temperature compensation data based on first focusing positions of the group of lenses to which the group of lenses are moved according to the temperature compensation data before corrected and second focusing positions of the group of the lenses to which the group of the lenses are automatically moved from the first focusing positions to have the object the predetermined distance away imaged in focus based on the focus evaluation value under a condition under which a moving range of the group of lenses is restricted, when the system control section is on the correction mode, a temperature compensation data correction section 51 for correcting the temperature compensation data to be used for the imaging mode based on the correction coefficient calculated by the correction coefficient calculation section.
    • 为了获得稳定的透镜位置以使透镜的温度变化时成像为对象,本发明的成像装置包括具有成像模式和校正模式的系统控制部60,其中,组 透镜10被控制并首先移动到聚焦位置预定距离,并且根据温度补偿数据进一步移动以在成像期间将对焦位置校正到物体预定距离,该组透镜 10被控制并移动以使温度补偿数据在温度变化大于或等于预定温度差时被校正;校正系数计算部分50,用于基于第一聚焦位置计算修正系数以校正温度补偿数据; 一组透镜组合的镜片组合 根据该组透镜的校正和第二聚焦位置之间的温度补偿数据自动地从第一聚焦位置移动,以使物体的预定距离远离成像焦点的焦点评估值 在该组透镜的移动范围被限制的条件下,当系统控制部分处于校正模式时,温度补偿数据校正部分51用于校正要用于成像模式的温度补偿数据,该温度补偿数据基于 由校正系数计算部计算出的校正系数。
    • 8. 发明授权
    • Imaging sensing device, image sensing processing device, and image processing method
    • 成像感测装置,图像感知处理装置和图像处理方法
    • US08860874B2
    • 2014-10-14
    • US13336443
    • 2011-12-23
    • Tomoaki NishiguchiHideharu OnoAkira AndoMakoto Asuka
    • Tomoaki NishiguchiHideharu OnoAkira AndoMakoto Asuka
    • G02B27/10G03B13/00H04N5/225H04N5/228H04N5/232G02B7/36
    • G02B7/36H04N5/23212
    • For improving picture quality in auto-focus control, image processing device 10 adjusts output picture imaged by image pick-up element 4 and displayed by a display section, comprises storage section 13 for storing predetermined de-focus threshold value of variation amount of intensity value of output picture; first adder section 12 for calculating intensity value time difference variation amount between intensity value of output picture being input and intensity value of the predetermined-time previous output picture before the output picture is input; and variation amount comparison section 14 for comparing intensity value time difference variation amount and de-focus threshold value, wherein when variation amount comparison section determines that intensity value time difference variation amount is less than de-focus threshold value to be a comparison object, intensity value of output picture after being adjusted is calculated by subtracting intensity value time difference variation amount from intensity value of output picture being input.
    • 为了提高自动聚焦控制中的图像质量,图像处理装置10调整由图像拾取元件4成像并由显示部显示的输出图像,包括存储部13,用于存储强度值变化量的预定去焦点阈值 的输出图片; 第一加法器部分12,用于计算输入输出图像的强度值和输出图像之前的预定时间先前输出图像的强度值之间的强度值时间差变化量; 以及用于比较强度值时间差变化量和去焦点阈值的变化量比较部分14,其中当变化量比较部分确定强度值时间差异变化量小于作为比较对象的去焦点阈值时,强度 通过从输入的输出图像的强度值中减去强度值时间差变化量来计算调整后的输出图像的值。
    • 9. 发明授权
    • Imaging device
    • 成像设备
    • US08228623B2
    • 2012-07-24
    • US13117175
    • 2011-05-27
    • Akira AndoToshiyuki YokoyamaHideharu OnoTomoaki NishiguchiHiroyuki Miyahara
    • Akira AndoToshiyuki YokoyamaHideharu OnoTomoaki NishiguchiHiroyuki Miyahara
    • G02B7/02G03B17/00
    • G03B3/10G02B7/28G03B13/34H04N5/23212
    • In order to obtain stable lens positions to have an object imaged in focus when the temperature of lenses changes, an imaging device of the present invention comprises a system control section 60 having a imaging mode and a correction mode, the imaging mode in which a group of lenses 10 are controlled and moved to focusing positions for a predetermined distance at first and are further moved to correct the focusing positions for the predetermined distance to the object during imaging according to the temperature compensation data, the correction mode in which the group of lenses 10 are controlled and moved to have the temperature compensation data corrected when the temperature change is larger than or equal to a predetermined temperature difference, a correction coefficient calculation section 50 for calculating the correction coefficient to correct the temperature compensation data based on first focusing positions of the group of lenses to which the group of lenses are moved according to the temperature compensation data before corrected and second focusing positions of the group of the lenses to which the group of the lenses are automatically moved from the first focusing positions to have the object the predetermined distance away imaged in focus based on the focus evaluation value under a condition under which a moving range of the group of lenses is restricted, when the system control section is on the correction mode, a temperature compensation data correction section 51 for correcting the temperature compensation data to be used for the imaging mode based on the correction coefficient calculated by the correction coefficient calculation section.
    • 为了获得稳定的透镜位置以使透镜的温度变化时成像为对象,本发明的成像装置包括具有成像模式和校正模式的系统控制部60,其中,组 透镜10被控制并首先移动到聚焦位置预定距离,并且根据温度补偿数据进一步移动以在成像期间将对焦位置校正到物体预定距离,该组透镜 10被控制并移动以使温度补偿数据在温度变化大于或等于预定温度差时被校正;校正系数计算部分50,用于基于第一聚焦位置计算修正系数以校正温度补偿数据; 一组透镜组合的镜片组合 根据该组透镜的校正和第二聚焦位置之间的温度补偿数据自动地从第一聚焦位置移动,以使物体的预定距离远离成像焦点的焦点评估值 在该组透镜的移动范围被限制的条件下,当系统控制部分处于校正模式时,温度补偿数据校正部分51用于校正要用于成像模式的温度补偿数据,该温度补偿数据基于 由校正系数计算部计算出的校正系数。