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    • 3. 发明申请
    • IMAGE PROCESSING DEVICE, IMAGE PROCESSING METHOD, AND RECORDING MEDIUM
    • 图像处理装置,图像处理方法和记录介质
    • US20150254523A1
    • 2015-09-10
    • US14623084
    • 2015-02-16
    • Satoshi NAKAMURA
    • Satoshi NAKAMURA
    • G06K9/46G06K9/52G06T11/60G06T5/00
    • G06T5/40G06T5/004
    • An image processing device includes a first generating unit configured to generate smoothed image data including an edge portion by performing a smoothing process on original image data using an edge preserving smoothing filter; a second generating unit configured to generate first differential image data of a differential image between an image of the original image data and an image of the smoothed image data; a histogram generating unit configured to generate a differential histogram, which is a histogram of frequencies of difference values included in the first differential image data; a third generating unit configured to generate second differential image data by correcting the first differential image data using a correction amount, the correction amount for the first differential image data being calculated based on the differential histogram; and a synthesizing unit configured to synthesize the smoothed image data and the second differential image data.
    • 一种图像处理装置包括:第一生成单元,被配置为使用边缘保持平滑滤波器对原始图像数据进行平滑处理,生成包括边缘部分的平滑图像数据; 第二生成单元,被配置为生成原始图像数据的图像与平滑图像数据的图像之间的差分图像的第一差分图像数据; 直方图生成单元,被配置为生成差分直方图,该差分直方图是包括在第一差分图像数据中的差值的频率的直方图; 第三生成单元,被配置为通过使用校正量校正第一差分图像数据来生成第二差分图像数据,基于微分直方图计算第一差分图像数据的校正量; 以及合成单元,被配置为合成平滑图像数据和第二差分图像数据。
    • 4. 发明申请
    • IMAGE PROCESSING APPARATUS AND IMAGE PROCESSING SYSTEM
    • 图像处理设备和图像处理系统
    • US20150130829A1
    • 2015-05-14
    • US14533157
    • 2014-11-05
    • Tomoyasu AIZAKISatoshi NAKAMURA
    • Tomoyasu AIZAKISatoshi NAKAMURA
    • H04N1/60H04N1/64H04N1/50
    • H04N1/603H04N1/387H04N1/50H04N1/6075H04N1/644H04N2201/0081H04N2201/0082H04N2201/0089
    • An image processing apparatus includes a parameter estimation unit that estimates a first parameter for aligning first output image data with original image data and a second parameter for aligning second output image data with the original image data, a pixel value mapping unit that generates first pixel value mapping data associating color components of a pixel of the first output image data with color components of a corresponding pixel of the original image data and second pixel value mapping data associating color components of a pixel of the second output image data with color components of a corresponding pixel of the original image data, a map estimation unit that obtains a first map and a second map based on the first and second pixel value mapping data, and a conversion unit that converts a pixel value of the original image data based on the first and second maps.
    • 图像处理装置包括参数估计单元,其估计用于将第一输出图像数据与原始图像数据对准的第一参数和用于使第二输出图像数据与原始图像数据对准的第二参数;像素值映射单元,其生成第一像素值 将第一输出图像数据的像素的颜色分量与原始图像数据的对应像素的颜色分量相关联的映射数据和将第二输出图像数据的像素的颜色分量与相应的颜色分量相关联的第二像素值映射数据 原始图像数据的像素,基于第一和第二像素值映射数据获取第一地图和第二地图的地图估计单元,以及基于第一和第二像素值映射数据的原始图像数据的像素值转换的转换单元, 第二张地图。
    • 5. 发明申请
    • TEMPERATURE CONTROL UNIT FOR ELECTRONIC COMPONENT AND HANDLER APPARATUS
    • 电子元件和手持设备的温度控制单元
    • US20120313657A1
    • 2012-12-13
    • US13592964
    • 2012-08-23
    • Satoshi NAKAMURA
    • Satoshi NAKAMURA
    • F28F7/00H05K7/20G01R31/00H05B1/02
    • G06F1/20G06F1/206H01L23/34H01L2924/0002H01L2924/00
    • A temperature control unit for an electronic component and a handler apparatus, which are excellent in responsibility during cooling and heating, is obtained. The temperature control unit for an electronic component includes a cooling cycle device having a refrigerant passage circulating through a compressor, a condenser, an expander, and an evaporator; a thermally conductive block having an outer surface capable of coming in contact with the electronic component that is an object to be temperature-controlled, where an inner surface corresponding to the outer surface is placed opposite to the outer surface so as to be brought in contact with or apart from the evaporator; at least one first heater for heating the thermally conductive block; and a compressed air feeding circuit for feeding compressed air between facing surfaces of the evaporator and the thermally conductive block to part them.
    • 获得了在冷却和加热期间的责任性优异的电子部件温度控制部和处理装置。 电子元件的温度控制单元包括具有通过压缩机,冷凝器,膨胀器和蒸发器循环的制冷剂通道的冷却循环装置; 导热块,其外表面能够与作为受温度控制的物体的电子部件接触,其中对应于外表面的内表面与外表面相对放置以接触 与蒸发器或离开蒸发器; 至少一个用于加热导热块的第一加热器; 以及用于在蒸发器和导热块的相对表面之间供给压缩空气的压缩空气供给回路以将其部分。
    • 7. 发明申请
    • TEMPERATURE CONTROL UNIT FOR ELECTRONIC COMPONENT AND HANDLER APPARATUS
    • 电子元件和手持设备的温度控制单元
    • US20100218692A1
    • 2010-09-02
    • US12763273
    • 2010-04-20
    • Satoshi NAKAMURA
    • Satoshi NAKAMURA
    • B30B15/34F25D23/00
    • G06F1/20G06F1/206H01L23/34H01L2924/0002H01L2924/00
    • A temperature control unit for an electronic component and a handler apparatus, which are excellent in responsibility during cooling and heating, is obtained. The temperature control unit for an electronic component includes a cooling cycle device having a refrigerant passage circulating through a compressor, a condenser, an expander, and an evaporator; a thermally conductive block having an outer surface capable of coming in contact with the electronic component that is an object to be temperature-controlled, where an inner surface corresponding to the outer surface is placed opposite to the outer surface so as to be brought in contact with or apart from the evaporator; at least one first heater for heating the thermally conductive block; and a compressed air feeding circuit for feeding compressed air between facing surfaces of the evaporator and the thermally conductive block to part them.
    • 获得了在冷却和加热期间的责任性优异的电子部件温度控制部和处理装置。 电子元件的温度控制单元包括具有通过压缩机,冷凝器,膨胀器和蒸发器循环的制冷剂通道的冷却循环装置; 导热块,其外表面能够与作为受温度控制的物体的电子部件接触,其中对应于外表面的内表面与外表面相对放置以接触 与蒸发器或离开蒸发器; 至少一个用于加热导热块的第一加热器; 以及压缩空气供给回路,用于在蒸发器和导热块的相对表面之间输送压缩空气以使其部分。
    • 9. 发明申请
    • COMPONENT TRANSFERRING APPARATUS AND IC HANDLER
    • US20080317575A1
    • 2008-12-25
    • US12127236
    • 2008-05-27
    • Takashi YAMAZAKIHiroaki FUJIMORINaohisa MAEDADaisuke KIRIHARASatoshi NAKAMURAMasami MAEDA
    • Takashi YAMAZAKIHiroaki FUJIMORINaohisa MAEDADaisuke KIRIHARASatoshi NAKAMURAMasami MAEDA
    • B25J11/00
    • G01R31/2893G05B2219/37216G05B2219/40564G05B2219/45026
    • A component transferring apparatus includes a shuttle; an inspection socket; a retaining device that moves between the shuttle and the inspection socket; a pressing device included in the retaining device to hold and transfer an electronic component; a position adjusting device that moves the pressing device to correct a position of the electronic component based on an image processing of image data obtained by photographing of the electronic component; a socket mark provided near the inspection socket; a hand mark provided on the retaining device such that the hand mark is positioned near the socket mark when the retaining device is moved to a mounting position where the electronic component hold by the pressing device is mounted in the inspection socket; a first camera provided on the shuttle to photograph a single image including the electronic component hold by the pressing device and the hand mark provided on the retaining device; a second camera that photographs a single image including the socket mark and the inspection socket and a single image including the socket mark and the hand mark of the retaining device moved to the mounting position; a first relative-position calculating unit that performs an image processing of data obtained by photographing of the single image including the socket mark and the inspection socket to obtain a first relative position between the socket mark and the inspection socket; a second relative-position calculating unit that performs an image processing of data obtained by photographing of the single image including the socket mark and the hand mark located at the mounting position to obtain a second relative position between the socket mark and the hand mark; and a third relative-position calculating unit that performs an image processing of data obtained by photographing of the single image including the electronic component and the hand mark to obtain a third relative position between the hand mark and the electronic component, wherein based on the first, the second, and the third relative positions, the position adjusting device corrects the position of the electronic component to mount the electronic component in the inspection socket.