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    • 3. 发明授权
    • Imaging device and imaging method
    • 成像装置和成像方法
    • US08957982B2
    • 2015-02-17
    • US13613993
    • 2012-09-13
    • Keiji KunishigeManabu Ichikawa
    • Keiji KunishigeManabu Ichikawa
    • H04N5/228H04N5/225H04N5/262H04N5/232
    • H04N5/23245H04N5/2621
    • An imaging device includes a moving image special effect image processing unit that performs image processing of applying a first special effect causing a visual effect over a plurality of frames corresponding to image data of a moving image, and image processing of applying a second special effect corresponding to the first special effect to a still image captured during moving image capturing using image data of a moving image captured before the still image, and a control unit that controls an application form of the first and second special effects in the moving image special effect image processing unit.
    • 一种成像装置,包括:运动图像特效图像处理单元,其对与运动图像的图像数据相对应的多个帧执行对视觉效果产生视觉效果的第一特殊效果;以及应用相应于第二特殊效果的图像处理 使用在静止图像之前捕获的运动图像的图像数据的运动图像拍摄期间拍摄的静止图像的第一特殊效果,以及控制单元,其控制运动图像特殊效果图像中的第一和第二特殊效果的应用形式 处理单元。
    • 4. 发明授权
    • Image processing device, white balance correction method, and imaging device
    • 图像处理装置,白平衡校正方法和成像装置
    • US08872936B2
    • 2014-10-28
    • US13241527
    • 2011-09-23
    • Manabu IchikawaShinya Takasumi
    • Manabu IchikawaShinya Takasumi
    • H04N9/73H04N5/235
    • H04N9/735H04N5/2355
    • An image processing device of the present invention comprises: an image combining section for combining a plurality of combination image data and generating combined image data; a WB setting section for performing setting for white balance correction processing; an image WB gain calculation section for calculating image WB gain respectively for the plurality of combination image data in accordance with setting of the WB setting section; a combined image WB gain calculating section for calculating combined image WB gain for the combined image data in accordance with information relating to a combination ratio for the image combining section and image WB gain for the respective plurality of combination image data; and a WB correction section for carrying out white balance correction for image data according to the combined image WB gain.
    • 本发明的图像处理装置包括:图像合成部分,用于组合多个组合图像数据并产生组合图像数据; 用于执行白平衡校正处理的设置的WB设置部分; 图像WB增益计算部分,用于根据WB设置部分的设置分别计算多个组合图像数据的图像WB增益; 组合图像WB增益计算部分,用于根据与图像合成部分的组合比相关的信息和用于各个多个组合图像数据的图像WB增益来计算组合图像数据的组合图像WB增益; 以及用于根据组合图像WB增益对图像数据执行白平衡校正的WB校正部分。
    • 5. 发明申请
    • IMAGING DEVICE, IMAGING METHOD, AND COMPUTER READABLE RECORDING MEDIUM
    • 成像装置,成像方法和计算机可读记录介质
    • US20130088618A1
    • 2013-04-11
    • US13613577
    • 2012-09-13
    • Keiji KunishigeManabu Ichikawa
    • Keiji KunishigeManabu Ichikawa
    • H04N5/262H04N5/225
    • H04N5/23216H04N5/23245H04N5/23293
    • Provided is an imaging device including an image processing unit that executes artistic effect processing of applying an artistic effect causing a visual effect to image data by a combination of a plurality of image processing, and executes moving image special effect processing of applying a moving image special effect causing a visual effect over frames, a moving image special effect start signal input unit that receives an input of a moving image special effect start signal instructing a start of the moving image special effect processing in the image processing unit, and an image processing control unit that switches artistic effect processing to be executed by the image processing unit in response to the input of the moving image special effect start signal when plural kinds of processing remain set as artistic effect processing performed by the image processing unit.
    • 提供了一种成像装置,其包括图像处理单元,其执行通过多个图像处理的组合来应用引起视觉效果的图像数据的艺术效果的艺术效果处理,并且执行运动图像特殊处理以应用运动图像特殊 运动图像特效启动信号输入单元,其接收指示图像处理单元中的运动图像特殊效果处理开始的运动图像特效开始信号的输入,以及图像处理控制单元 单元,当多种处理保持设置为由图像处理单元执行的艺术效果处理时,响应于运动图像特效开始信号的输入,切换由图像处理单元执行的艺术效果处理。
    • 7. 发明申请
    • IMAGING APPARATUS, IMAGING METHOD, AND COMPUTER-READABLE RECORDING MEDIUM
    • 成像装置,成像方法和计算机可读记录介质
    • US20120120278A1
    • 2012-05-17
    • US13294527
    • 2011-11-11
    • Keiji KunishigeManabu Ichikawa
    • Keiji KunishigeManabu Ichikawa
    • H04N9/73H04N5/228
    • H04N5/2621H04N1/2112H04N5/23216H04N5/23296
    • An imaging apparatus including an imaging unit that captures images of a photographic subject and continuously generates electronic image data; a display unit that displays, at a predetermined display frame rate, images corresponding to the image data generated by the imaging unit; an image processing unit that either performs a first-type special effect operation that can be displayed at the predetermined display frame rate or performs a second-type special effect operation that can be displayed at a faster display frame rate than the predetermined display frame rate; an operation input unit that receives input of a change instruction signal that provides an instruction for changing a combination of image processing operations during a special effect operation performed by the image processing unit; and a control unit that instructs the image processing unit to switch the special effect operation from the first-type special effect operation to the second-type special effect operation.
    • 一种成像装置,包括:成像单元,其拍摄被摄体的图像,并连续地生成电子图像数据; 显示单元,以预定显示帧率显示与由所述成像单元生成的图像数据相对应的图像; 图像处理单元执行可以以预定显示帧速率显示的第一类型特殊效果操作或执行可以以比预定显示帧率更快的显示帧速率显示的第二类型特殊效果操作; 操作输入单元,其在由所述图像处理单元执行的特殊效果操作期间接收提供用于改变图像处理操作的组合的指令的改变指示信号的输入; 以及控制单元,其指示图像处理单元将特殊效果操作从第一类型特殊效果操作切换到第二类型特殊效果操作。
    • 10. 发明授权
    • Glass substrate for flat panel display and method for manufacturing same
    • 平板显示器用玻璃基板及其制造方法
    • US08932969B2
    • 2015-01-13
    • US13537774
    • 2012-06-29
    • Akihiro KoyamaSatoshi AmiManabu Ichikawa
    • Akihiro KoyamaSatoshi AmiManabu Ichikawa
    • C03C3/091C03C3/085C03C3/087C03C3/093
    • C03C3/091C03C3/093G02F2001/133302G02F2202/104
    • Provided are: a glass substrate for p-Si TFT flat panel displays that is composed of a glass having high characteristic temperatures in the low-temperature viscosity range, typified by the strain point and glass transition point, having a small heat shrinkage rate, and being capable of avoiding the occurrence of the problem regarding the erosion/wear of a melting tank at the time of melting through direct electrical heating; and a method for manufacturing same. The present glass substrate is composed of a glass comprising 52-78 mass % of SiO2, 3-25 mass % of Al2O3, 3-15 mass % of B2O3, 3-25 mass % of RO, wherein RO is total amount of MgO, CaO, SrO, and BaO, 0.01-1 mass % of Fe2O3, and 0-0.3 mass % of Sb2O3, and substantially not comprising As2O3, the glass having a mass ratio (SiO2+Al2O3)/B2O3 in a range of 7-30 and a mass ratio (SiO2+Al2O3)/RO equal to or greater than 6. The present method for manufacturing a glass substrate involves: a melting step of obtaining a molten glass by melting, by employing at least direct electrical heating, glass raw materials blended so as to provide the aforementioned glass composition; a forming step of forming the molten glass into a flat-plate glass; and an annealing step of annealing the flat-plate glass.
    • 本发明提供:一种用于p-Si TFT平板显示器的玻璃基板,其由在低温粘度范围内具有高特征温度的玻璃构成,以应变点和玻璃化转变点为代表,具有小的热收缩率,以及 能够避免在通过直接电加热熔化时熔融槽的侵蚀/磨损的问题的发生; 及其制造方法。 本发明的玻璃基板由SiO 2为52〜78质量%,Al 2 O 3为3〜25质量%,B 2为3〜15质量%,RO为3〜25质量%的玻璃构成,其中,RO为MgO的总量, CaO,SrO,BaO,0.01〜1质量%的Fe 2 O 3和0〜0.3质量%的Sb 2 O 3,实质上不含有As 2 O 3,玻璃的质量比(SiO 2 + Al 2 O 3)/ B 2 O 3的范围为7〜30 以及等于或大于6的质量比(SiO 2 + Al 2 O 3)/ RO。本发明的玻璃基板的制造方法包括:通过使用至少直接电加热获得熔融玻璃的熔融步骤,玻璃原料 混合以提供上述玻璃组合物; 将熔融玻璃形成平板玻璃的成形工序; 以及退火平板玻璃的退火步骤。