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    • 52. 发明申请
    • LAMINATED CERAMIC CAPACITOR
    • 层压陶瓷电容器
    • US20110038097A1
    • 2011-02-17
    • US12907207
    • 2010-10-19
    • Makoto MATSUDATomoyuki Nakamura
    • Makoto MATSUDATomoyuki Nakamura
    • H01G4/12
    • H01G4/1227H01G4/30
    • Better high-temperature load characteristics are obtained in a laminated ceramic capacitor including a dielectric ceramic layer with a thickness of 1 μm or less. The laminated ceramic capacitor includes a plurality of stacked dielectric ceramic layers, a plurality of internal electrode layers, each disposed between dielectric ceramic layers, and external electrodes that are electrically connected to internal electrode layers. In this laminated ceramic capacitor, when the thickness of each dielectric ceramic layer is denoted by tc and the thickness of each internal electrode layer is denoted by te, tc is 1 μm or less, and tc/te is equal to or less than 1.
    • 在包括厚度为1μm以下的电介质陶瓷层的层叠陶瓷电容器中,可获得更好的高温负荷特性。 叠层陶瓷电容器包括多个堆叠的电介质陶瓷层,各自设置在电介质陶瓷层之间的多个内部电极层和电连接到内部电极层的外部电极。 在这种层叠陶瓷电容器中,当每个介电陶瓷层的厚度由tc表示,每个内部电极层的厚度由te表示时,tc为1μm以下,tc / te为1以下。
    • 53. 发明申请
    • Imaging Device And High-Resolution Processing Method Of Image
    • 成像设备和图像的高分辨率处理方法
    • US20100253796A1
    • 2010-10-07
    • US11667766
    • 2005-11-15
    • Takahiro YanoTomoyuki NakamuraMasatoshi OkutomiMasao Shimizu
    • Takahiro YanoTomoyuki NakamuraMasatoshi OkutomiMasao Shimizu
    • H04N5/228G06K9/32
    • H04N5/232H04N5/2625
    • The invention provides imaging device and high-resolution processing method of image which precisely generate high-resolution image by using image data with a little number of the pixels.An optical system images an optical image in an imaging unit (101), the imaged image is spatially discretized so as to sampled and converted into an image signal, thereby being recorded in a recording unit (105). Further, a timing at which the image is imaged by the imaging unit (101) is recorded in an imaging timing recording unit (107). A weight coefficient for imaged image is calculated by a weight calculating unit (104) by utilizing the timing information obtained by the imaging timing recording unit (107). A high-resolution processing unit (106) generates a high-resolution image by using the weighted information of the image generated by the weight calculating unit (104).
    • 本发明提供了通过使用具有少量像素的图像数据精确地生成高分辨率图像的图像的成像装置和高分辨率处理方法。 光学系统在成像单元(101)中成像光学图像,将成像的图像在空间上离散化,以便被采样并转换为图像信号,从而被记录在记录单元(105)中。 此外,由成像单元(101)将图像成像的定时记录在成像定时记录单元(107)中。 通过利用由成像定时记录单元(107)获得的定时信息,通过权重计算单元(104)计算成像图像的权重系数。 高分辨率处理单元(106)通过使用由权重计算单元(104)生成的图像的加权信息来生成高分辨率图像。
    • 54. 发明授权
    • Battery
    • 电池
    • US07682752B2
    • 2010-03-23
    • US11470686
    • 2006-09-07
    • Tomoyuki NakamuraTakahiro EndoHiroyuki Akashi
    • Tomoyuki NakamuraTakahiro EndoHiroyuki Akashi
    • H01M6/18
    • H01M10/0565H01M2/16H01M4/66H01M6/10H01M10/0436H01M2300/0082
    • A battery in which the relative positions of a cathode, an anode and a separator are maintained with high precision is provided. A cathode and an anode face each other with a polymer electrolyte including a polymer and a separator in between. In each of the cathode and the anode, an active material layer is disposed on a current collector. Exposed regions where the active material layers are not disposed on the current collectors and the separator are adhered to each other with the polymer electrolyte in between. Thereby, even under a high-temperature environment, the heat shrinkage of the separator can be prevented, and heat generation due to the generation of a short-circuit current can be prevented.
    • 提供了以高精度保持阴极,阳极和隔膜的相对位置的电池。 阴极和阳极在其间具有包括聚合物和隔膜的聚合物电解质彼此面对。 在阴极和阳极的每个中,活性物质层设置在集电体上。 活性物质层未设置在集电体上的曝光区域和隔板之间的聚合物电解质彼此粘合。 由此,即使在高温环境下也能够防止隔板的热收缩,能够防止由于短路电流的产生而发热。
    • 58. 发明申请
    • LENS APPARATUS AND IMAGING APPARATUS
    • 镜头装置和成像装置
    • US20070230934A1
    • 2007-10-04
    • US11689985
    • 2007-03-22
    • Tomoyuki Nakamura
    • Tomoyuki Nakamura
    • G03B13/00
    • G02B7/08G03B3/10G03B13/36G03B17/14H04N5/2254H04N5/23212
    • A lens apparatus configured to be mountable on a camera body having an image sensor includes a first focus lens unit, a splitting optical unit disposed between the first focus lens unit and the image sensor, a second focus lens unit disposed between the splitting optical unit and the image sensor, the second focus lens unit being movable from an initial position along an optical axis to vary a focusing state, a focusing state detection unit configured to detect the focusing state using a light flux from the splitting optical unit, an actuator configured to drive the first focus lens unit, and a controller configured to control driving of the actuator according to an output from the focusing state detection unit. The controller stops driving of the actuator if the second focus lens unit is located at a position different from the initial position.
    • 一种被配置为安装在具有图像传感器的相机主体上的透镜装置,包括:第一聚焦透镜单元,设置在第一聚焦透镜单元和图像传感器之间的分离光学单元;第二聚焦透镜单元,设置在分离光学单元和 所述图像传感器,所述第二聚焦透镜单元可以沿着光轴从初始位置移动以改变聚焦状态;聚焦状态检测单元,被配置为使用来自所述分割光学单元的光束来检测聚焦状态;致动器,被配置为 驱动第一对焦透镜单元,以及控制器,被配置为根据聚焦状态检测单元的输出来控制致动器的驱动。 如果第二聚焦透镜单元位于与初始位置不同的位置,则控制器停止驱动致动器。