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    • 1. 发明授权
    • Timing generator, imaging device, and dot-clock output method
    • 定时发生器,成像设备和点时钟输出方式
    • US09148572B2
    • 2015-09-29
    • US13271543
    • 2011-10-12
    • Masahiro KitanoRyuichi ShioharaToshiyuki Yamamoto
    • Masahiro KitanoRyuichi ShioharaToshiyuki Yamamoto
    • H04N5/232H04N5/376H04N5/77H04N9/804
    • H04N5/23293H04N5/3765H04N5/772H04N9/8042
    • A timing generator includes a frame rate information receiver, a display control section, and a determination unit. The frame rate information acquisition section is configured to receive information indicating a frame rate of an image sensor. The display control section is configured to output dot clocks in a first cycle to a display which includes a counter being configured to count the number of the dot clocks for a synchronization period, where the dot clocks are a synchronization signal. The determination unit is configured to determine whether or not the number of the dot clocks in the synchronization period is expected to exceed a predetermined number, where length of the synchronization period is based on at least the frame rate of the image sensor. The display control section is configured to switch from the first cycle to a second cycle, if the number of dot clocks is expected to exceed the predetermined number.
    • 定时发生器包括帧速率信息接收器,显示控制部分和确定单元。 帧率信息获取部被配置为接收指示图像传感器的帧速率的信息。 显示控制部分被配置为将第一周期中的点时钟输出到显示器,该显示器包括被配置为对同步周期的点时钟数进行计数的计数器,其中点时钟是同步信号。 确定单元被配置为确定同步周期中的点时钟数是否期望超过预定数量,其中同步周期的长度至少基于图像传感器的帧速率。 如果点时钟的数量预计超过预定数量,则显示控制部分被配置为从第一周期切换到第二周期。
    • 3. 发明授权
    • Developing apparatus, developing method and computer program for developing processing for an undeveloped image
    • 用于开发未开发图像的处理的显影装置,显影方法和计算机程序
    • US08369654B2
    • 2013-02-05
    • US12115424
    • 2008-05-05
    • Ryuichi Shiohara
    • Ryuichi Shiohara
    • G06K9/32
    • H04N1/00278H04N1/0044H04N1/00453H04N1/00482H04N2101/00H04N2201/001H04N2201/325H04N2201/3271H04N2201/3273
    • To facilitate setting of development condition an image developing apparatus is provided. The image developing apparatus performs a development process to first image data generated by a digital camera, each pixel of which lacks a part of color information, the image developing apparatus carries out a first type of development process on the first image data to generate developed image data; and a second type of development process on the first undeveloped image data to generate for-display image data with lower resolution. The first type of development process includes: a first specific process performed on the first image data to generate second image data; and a first interpolation process performed on the second image data, the second type of development process includes: a process to generate third image data through a second interpolation process performed on the first image data and a resolution converting process; and a second specific process performed on the third image data.
    • 为了便于设置显影条件,提供了图像显影装置。 图像显影装置执行显影处理,以首先对每个像素缺少一部分颜色信息的数字照相机生成的数据进行图像处理,图像显影装置对第一图像数据执行第一类型的显影处理以产生显影图像 数据; 以及对第一未开发的图像数据的第二类开发过程,以生成具有较低分辨率的显示图像数据。 第一类型的开发过程包括:对第一图像数据执行的第一特定处理以产生第二图像数据; 以及对所述第二图像数据执行的第一内插处理,所述第二类型的开发处理包括:通过对所述第一图像数据执行的第二内插处理和分辨率转换处理来生成第三图像数据的处理; 以及对第三图像数据执行的第二特定处理。
    • 5. 发明授权
    • Image input unit and image input method
    • 图像输入单元和图像输入法
    • US08159502B2
    • 2012-04-17
    • US12104640
    • 2008-04-17
    • Ryuichi Shiohara
    • Ryuichi Shiohara
    • G09G5/02
    • G06T11/001G06T2207/10024H04N1/64H04N9/045H04N2209/045
    • The invention is characterized by the fact that an area sensor for outputting an analog signal responsive to the light reception amount of light of CMYG is used and when CMYG image data is converted into RGB image data, RGB image data having a domain also in negative values is generated without performing processing of putting the RGB image data into values of 0 or more, without decreasing the information amount of the CMYG image data. Further, the invention is characterized by the fact that when the image data is recorded in a file section 16 finally as a JPEG file, the pixel data of each color of YCbCr is represented as data type of eight bits and the information amount per pixel is 24 bits for recording more color information without increasing the memory capacity.
    • 本发明的特征在于,使用用于响应于CMYG的光的光接收量而输出模拟信号的区域传感器,并且当CMYG图像数据被转换成RGB图像数据时,具有负值的域的RGB图像数据 在不降低CMYG图像数据的信息量的情况下,不执行将RGB图像数据设为0以上的处理而生成。 此外,本发明的特征在于,当将图像数据最终作为JPEG文件记录在文件部分16中时,YCbCr的每种颜色的像素数据被表示为8位的数据类型,并且每像素的信息量为 24位用于记录更多的颜色信息,而不增加存储容量。
    • 6. 发明申请
    • IMAGING DEVICE, IMAGING METHOD AND IMAGING PROGRAM
    • 成像设备,成像方法和成像程序
    • US20110128433A1
    • 2011-06-02
    • US12959146
    • 2010-12-02
    • Ryuichi Shiohara
    • Ryuichi Shiohara
    • H04N5/225
    • H04N5/23293H04N5/3454H04N5/3456
    • An imaging device produces images on the basis of signals, transmitted from an imaging element. The device includes a display controller which selectively carries out either a first or a second display process, based on a user's selection. The first display process includes obtaining a first portion of the signals from a first area of the imaging element at a first frame rate, and displaying a first through-the-lens image on the display unit on the basis of the first portion of the signals. The second display process includes obtaining the first portion of the signals from the first area of the imaging element at a second, lower frame rate; obtaining a second portion of the signals from a second area of the imaging element at the lower frame rate; and displaying a second through-the-lens image on the display unit on the basis of both portions of the signals.
    • 成像装置基于从成像元件发送的信号产生图像。 该装置包括基于用户的选择选择性地执行第一或第二显示处理的显示控制器。 第一显示处理包括以第一帧速率从成像元件的第一区域获得信号的第一部分,并且基于信号的第一部分在显示单元上显示第一透镜图像 。 第二显示处理包括以第二较低帧率从成像元件的第一区域获得信号的第一部分; 以较低的帧速率从成像元件的第二区域获得信号的第二部分; 并且基于信号的两个部分在显示单元上显示第二透镜图像。
    • 7. 发明申请
    • DIGITAL CAMERA HAVING A DISPLAY MENU USED TO SELECT EITHER COLOR PHOTOGRAPHING OPERATION OR A BLACK/WHITE PHOTOGRAPHING OPERATION
    • 具有用于选择彩色摄影操作或黑白摄影操作的显示菜单的数码相机
    • US20110074990A1
    • 2011-03-31
    • US12960063
    • 2010-12-03
    • Ryuichi Shiohara
    • Ryuichi Shiohara
    • H04N3/14
    • H04N5/23216G03B17/18H04N5/232H04N5/23293H04N5/2621H04N9/045H04N2101/00
    • A digital camera includes: an imaging unit that photoelectrically converts light to output a color image; a selecting unit that selects any one identifier from identifiers which are colored in different colors from each other; and a black/white image producing unit that produces a black/white image by weighting gradation values of respective colors for each of pixels of the output color image and adding the weighted gradation values to each other. When the light entered to the imaging unit is entered to a color filter having a color equal to a color of the selected identifier, a correlation between a light amount of light having a wavelength which penetrates the color filer and a light amount of the entered light becomes stronger than a correlation between a light amount of light having a wavelength which is absorbed by the color filter and the light amount of the entered light.
    • 数码相机包括:光电转换光以输出彩色图像的成像单元; 选择单元,其从以彼此不同颜色着色的标识符中选择任何一个标识符; 以及黑/白图像产生单元,其通过对输出彩色图像的每个像素的各颜色的灰度值进行加权并将加权灰度值相加来产生黑/白图像。 当进入成像单元的光进入具有等于所选标识符的颜色的颜色的滤色器时,具有穿透滤色器的波长的光的光量与输入的光的光量之间的相关性 变得比具有由滤色器吸收的波长的光的光量和所输入的光的光量之间的相关性变强。
    • 8. 发明授权
    • Camera with electronic finder, image display method, and corresponding program
    • 具有电子取景器的相机,图像显示方法和相应的程序
    • US07693415B2
    • 2010-04-06
    • US11731591
    • 2007-03-29
    • Ryuichi Shiohara
    • Ryuichi Shiohara
    • G03B13/14
    • G03B13/10H04N5/23212H04N5/23293
    • A main electronic imaging device takes in as a taken-image an image of a subject obtained through an imaging lens. An electronic finder device photoelectrically first generates the image of the subject and generates an image signal. Based on the generated image signal, the electronic finder device places the imaging range PA substantially at the center, generates an image of finder range FA that is one size larger than the imaging range PA, and provides the image of finder range FA that is generated with an imaging frame 47a that expresses the outer border of the imaging range so as to obtain the image as a finder image, and controls so that the finder image is displayed on a display 47. As a result, the imaging range PA is smaller than the finder range FA but is smaller by only one size. The ratio occupied by the imaging range PA within the finder range FA is accordingly sufficiently large, and the imaging range PA can be recognized easily and without fail.
    • 主要电子成像装置将通过成像透镜获得的被摄体的图像作为拍摄图像。 电子取景器装置光电地首先产生被摄体的图像并产生图像信号。 基于所生成的图像信号,电子取景器装置将成像范围PA基本上放置在中心,生成比成像范围PA大一尺寸的取景器范围FA的图像,并且提供生成的取景器范围FA的图像 具有表示成像范围的外边界的成像框架47a,以获得作为取景器图像的图像,并且进行控制,使得取景器图像显示在显示器47上。结果,成像范围PA小于 取景器范围FA,但只有一个尺寸较小。 因此,取景范围FA内的摄像范围PA所占的比例因此足够大,可以容易且容易地识别成像范围PA。