会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 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。
    • 2. 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。
    • 3. 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。
    • 4. 发明授权
    • Image sensing device, image sensing device control method, and program for the control method
    • 图像感测装置,图像感测装置控制方法以及用于控制方法的程序
    • US08611736B2
    • 2013-12-17
    • US13325275
    • 2011-12-14
    • Akira AndoToshiyuki YokoyamaTomoaki Nishiguchi
    • Akira AndoToshiyuki YokoyamaTomoaki Nishiguchi
    • G03B13/36
    • G02B7/28G03B13/36H04N5/23212
    • For preventing frequent use of auto-focus control and also for acquiring stable in-focus positions for target-objects, this invention comprises system control section 60 having a second mode to drive magnification adjustment lens 11 or focus adjustment lens 12 upon a user command, and a third mode to transition to a first mode under pre-determined conditions in the second mode, and to set in-focus states of a lens group, wherein system control section 60 stores a reference target-object distance in reference target-object distance storage section 43 when focus adjustment lens 12 is driven by user commands in the second mode, drives focus adjustment lens 12 not based on a current target-object distance but the lens in-focus trajectory data to retain the reference target-object distance when the magnification adjustment lens 11 is driven by user commands, and re-transitions to the second mode without updating the reference target-object distance, after the third mode.
    • 为了防止频繁使用自动对焦控制并且还用于获取目标物体的稳定的对焦位置,本发明包括具有用户命令驱动倍率调节透镜11或聚焦调节透镜12的第二模式的系统控制部分60, 以及在第二模式中在预定条件下转变到第一模式的第三模式,并且设置透镜组的对焦状态,其中系统控制部分60将参考目标对象距离存储在参考目标对象距离 在第二模式中通过用户命令驱动聚焦调节透镜12时,存储部分43不是基于当前目标物距离而驱动聚焦调节透镜12,而是在透镜对焦轨迹数据中保持基准目标物距 倍率调节透镜11由用户命令驱动,并且在第三模式之后重新转换到第二模式而不更新参考目标对象距离。
    • 5. 发明授权
    • Information recording/reproducing apparatus
    • 信息记录/重放装置
    • US07706221B2
    • 2010-04-27
    • US11679261
    • 2007-02-27
    • Akira AndoKazunori UemuraMasahiro Fujimoto
    • Akira AndoKazunori UemuraMasahiro Fujimoto
    • G11B7/00
    • G11B5/09G11B5/40G11B27/034G11B27/36G11B2220/2516G11B2220/2537
    • Disclosed herein is an information recording/reproducing apparatus that includes a first and a second recording/reproducing modules, a buffer memory to store information temporally, and a control module that switches between a first mode and a second mode when the information is dubbed from the first recording/reproducing module to the second recording/reproducing module. In the first mode, information in the first recording/reproducing module is reproduced and stored in the buffer memory. In the second mode, the information stored in the buffer memory is recorded in the second recording/reproducing module. The apparatus further includes a temperature detecting module. Depending on the temperature detected by this module, the apparatus changes the movement of the second recording/reproducing module in the first mode and the movement of the first recording/reproducing module in the second mode.
    • 本文公开了一种信息记录/再现装置,其包括第一和第二记录/再现模块,用于在时间上存储信息的缓冲存储器,以及当信息从第一模式和第二模式被转录时在第一模式和第二模式之间切换的控制模块 第一记录/再现模块到第二记录/再现模块。 在第一模式中,第一记录/再现模块中的信息被再现并存储在缓冲存储器中。 在第二模式中,存储在缓冲存储器中的信息被记录在第二记录/再现模块中。 该装置还包括温度检测模块。 根据该模块检测到的温度,设备改变第二模式中的第二记录/再现模块的移动和第二模式中的第一记录/再现模块的移动。
    • 6. 发明授权
    • Information processing apparatus and method, and program therefor
    • 信息处理装置及方法及程序
    • US07516413B2
    • 2009-04-07
    • US10237782
    • 2002-09-09
    • Yuichiro TohAkira AndoKumiko Sasaki
    • Yuichiro TohAkira AndoKumiko Sasaki
    • G06F3/00
    • G06F3/0486
    • In order to record content on a hard disk drive to a source, when a source icon corresponding to the hard disk drive is dragged in a source icon section on a control bar in a display window, an arrow is added above an available source icon corresponding to an MD drive to which the content read from the hard disk drive can be supplied and recorded. An unavailable source icon corresponding to a source to which the content cannot be supplied and recorded is displayed in a grayed-out manner. When the dragged source icon is dropped onto the source icon corresponding to the MD drive, the content on the hard disk drive is read, and is recorded to an MD inserted in the MD drive.
    • 为了将硬盘驱动器上的内容记录到源上,当在显示窗口中的控制栏上的源图标部分中拖动与硬盘驱动器对应的源图标时,将在对应的可用源图标上方添加箭头 到可以提供和记录从硬盘驱动器读取的内容的MD驱动器。 与不能提供和记录内容的源相对应的不可用源图标以灰色显示方式显示。 当拖动的源图标被丢弃到与MD驱动器相对应的源图标上时,读取硬盘驱动器上的内容,并记录到MD驱动器中插入的MD。
    • 7. 发明申请
    • Apparatus and method for driving inverter circuit
    • 逆变电路驱动装置及方法
    • US20070201176A1
    • 2007-08-30
    • US11709081
    • 2007-02-22
    • Masatoshi YokaiSatoshi YoshimuraAkira Ando
    • Masatoshi YokaiSatoshi YoshimuraAkira Ando
    • H02H5/04
    • H02M7/53875H02M1/32
    • An inverter apparatus includes an inverter circuit, a temperature sensor, and a control circuit. The inverter circuit is driven by a PWM signal and includes switching elements that are divided in first and second groups. The temperature sensor detects a temperature of at least one of the switching elements of the first group. The control circuit controls a duty cycle of the PWM signal such that a first value of heat generated in the first group is equal to or greater than a second value of heat generated in the second group. The control circuit performs an overheat protection for protecting the inverter circuit from overheating when the detected temperature is equal to or greater than a threshold temperature.
    • 逆变器装置包括逆变器电路,温度传感器和控制电路。 逆变器电路由PWM信号驱动,并且包括在第一组和第二组中分开的开关元件。 温度传感器检测第一组的至少一个开关元件的温度。 控制电路控制PWM信号的占空比,使得第一组中产生的热的第一值等于或大于第二组中产生的热的第二值。 当检测到的温度等于或大于阈值温度时,控制电路执行过热保护以保护逆变器电路免于过热。
    • 10. 发明授权
    • Piezoelectric element
    • 压电元件
    • US06700303B2
    • 2004-03-02
    • US10322936
    • 2002-12-18
    • Akira AndoMasahiko KimuraTakuya Sawada
    • Akira AndoMasahiko KimuraTakuya Sawada
    • H01L4108
    • H03H9/178B06B1/0611H03H9/02031H03H9/02086H03H9/132
    • A piezoelectric element includes a plurality of piezoelectric layers composed of a piezoelectric material containing Sr, Bi, Ti, and O, at least three vibration electrodes opposing each other, each disposed among the piezoelectric layers, and an energy-confining region formed in a region in which the vibration electrodes overlap, the energy-confining region being parallel to the planes of the vibration electrodes and exciting an n-th order longitudinal thickness vibration. The maximum length L of a secant between two intersections on the periphery of the energy-confining region and the distance t between the topmost vibration electrode and the bottommost vibration electrode satisfy the relationship nL/t of less than 10. The piezoelectric element is thermally stable and has a narrow allowable error.
    • 压电元件包括​​由压电材料构成的多个压电层,所述压电材料包含Sr,Bi,Ti和O,至少三个彼此相对的振动电极,各自设置在压电层中,并且形成在区域中的能量限制区域 其中振动电极重叠,能量限制区域平行于振动电极的平面并激发n阶纵向厚度的振动。 能量约束区域周边的两个交叉点之间的割线的最大长度L和最上面的振动电极与最底部振动电极之间的距离t满足小于10的关系nL / t。压电元件是热稳定的 并且具有窄的允许误差。