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    • 42. 发明申请
    • Radioactivity measuring apparatus using optical fiber
    • 使用光纤的放射性测量装置
    • US20050189495A1
    • 2005-09-01
    • US11058220
    • 2005-02-16
    • Yasuhisa ItoHisashi IshikawaToshio MiyakeTetsuo Sawada
    • Yasuhisa ItoHisashi IshikawaToshio MiyakeTetsuo Sawada
    • G01T1/20G01T1/00
    • G01T1/2002
    • An elongated, thinner apparatus is provided so as to measure surface contamination in narrow places and piping. An elongated plate-shaped radioactivity detection section 10 provided with a scintillator and a radioactivity measuring section 12 provided with a photomultiplier are provided as independent components and connected together using a wavelength conversion optical fiber cable 14. A measurement signal (optical signal) of α-rays detected by the radioactivity detection section is transmitted to the radioactivity measuring section via the optical fiber cable. The radioactivity detection section is provided with elongated light guides, sets of wavelength conversion optical fibers, each set consisting of two optical fibers, arranged along the light guides in close contact therewith, a scintillator layer and a light-shielding film, and these components are surrounded by a light-shielding frame so that only a detection surface of the light-shielding film is exposed and the optical fibers extend from the radioactivity detection section as the optical fiber cable provided with a light-shielding outer covering.
    • 提供细长的,更薄的装置,以便在狭窄的位置和管道中测量表面污染。 设置有闪烁体的细长板状放射性检测部10和设置有光电倍增管的放射性测定部12作为独立部件设置,并使用波长转换用光纤电缆14连接在一起。 由放射线检测部检测出的光线经由光纤电缆传输到放射线测量部。 放射性检测部分设置有细长的光导,一组波长转换光纤,每组包括沿着与其紧密接触的光导布置的两根光纤,闪烁体层和遮光膜,这些部件是 被遮光框围绕,使得只有遮光膜的检测表面露出,并且光纤作为设置有遮光外覆盖层的光纤缆线从放射性检测部分延伸。
    • 43. 发明授权
    • System connecting power supply line to image sensing device upon data transport
    • 在数据传输时将电源线连接到图像传感装置
    • US06580460B1
    • 2003-06-17
    • US09030767
    • 1998-02-26
    • Kenji TakahashiHisashi IshikawaHiroshi TajikaMiyuki FujitaYuji KonnoHirowo InoueNorihiro Kawatoko
    • Kenji TakahashiHisashi IshikawaHiroshi TajikaMiyuki FujitaYuji KonnoHirowo InoueNorihiro Kawatoko
    • H04N5225
    • H04N1/00885H04N1/00891H04N1/00899H04N1/00901H04N1/00904
    • According to the invention, a power supply for an image sensing device is obtained from a printer to prevent consumption of the battery. When the image sensing device is connected to the printer, a power management unit checks if electric power can be supplied from the printer. When electric power can be supplied from the printer, the power management unit switches the power supply from the battery to a power supply receiving/supplying unit that receives electric power from the printer. In this case, if the remaining capacity on the battery is small, the battery is charged by electric power from the printer. Also, the luminance of a display unit is increased, or the operation frequency of a control unit is raised. On the other hand, when electric power cannot be supplied from the printer, the power management unit switches the power supply to the battery. In this case, the power management unit reduces consumption power by decreasing the luminance of the display unit or reducing the operation frequency of the control unit.
    • 根据本发明,从打印机获得用于图像感测装置的电源,以防止电池消耗。 当图像感测装置连接到打印机时,电源管理单元检查是否可以从打印机提供电力。 当从打印机供电时,电源管理单元将电池的电源切换到从打印机接收电力的电源接收/供给单元。 在这种情况下,如果电池的剩余容量小,则通过来自打印机的电力对电池进行充电。 此外,显示单元的亮度增加,或控制单元的操作频率升高。 另一方面,当不能从打印机供电时,电源管理单元将电源切换到电池。 在这种情况下,电源管理单元通过降低显示单元的亮度或降低控制单元的操作频率来降低​​功耗。
    • 45. 发明授权
    • Image processing method, and apparatus therefor
    • 图像处理方法及其装置
    • US6084984A
    • 2000-07-04
    • US420317
    • 1995-04-10
    • Hisashi Ishikawa
    • Hisashi Ishikawa
    • G06T5/00G06T11/60G06K9/34
    • G06T11/60
    • A command identifying circuit separates entered image information into a bitmap command representing a line image and an image command representing a half-tone image. A data separating circuit separates layout information, bitmap data and paint-tone data from the separated bitmap command and, in accordance with the layout information, stores the bitmap data in a bitmap memory and the paint-tone data in a block-tone memory. Another data separating circuit separates layout information and image data from the separated image command, and a character/line-image extracting circuit extracts pixels, which constitute a character or line image, contained in the image data separated by the data separating circuit, and stores positional information and tone data regarding the extracted pixels in the bitmap memory and block-tone memory. However, pixels constituting a character or line image are not extracted in an image area within which a line-image area and a half-tone image area overlap each other. An extracted-pixel substitution circuit substitutes prescribed data for a portion of the image data in which a character or line image has been extracted, and a coding circuit codes the image data that has undergone substitution and stores the coded data in an image memory.
    • 命令识别电路将输入的图像信息分离成表示行图像的位图命令和表示半色调图像的图像命令。 数据分离电路从分离的位图命令中分离布局信息,位图数据和绘制色调数据,并且根据布局信息将位图数据存储在位图存储器中,并将绘制色调数据存储在块音存储器中。 另一数据分离电路将分离图像命令中的布局信息和图像数据分开,并且字符/线图像提取电路提取由数据分离电路分离的图像数据中包含的构成字符或行图像的像素,并存储 关于位图存储器和块音存储器中提取的像素的位置信息和色调数据。 然而,构成字符或行图像的像素在行图像区域和半色调图像区域彼此重叠的图像区域中不被提取。 提取像素替换电路将规定的数据替换为已经提取了字符或行图像的图像数据的一部分,并且编码电路对已经经过替换的图像数据进行编码,并将编码数据存储在图像存储器中。
    • 48. 发明授权
    • Image information transmission system transmitting maximum and minimum
value data
    • 图像信息传输系统传输最大值和最小值数据
    • US5047854A
    • 1991-09-10
    • US386105
    • 1989-07-28
    • Yoshitsugu IwabuchiHisashi Ishikawa
    • Yoshitsugu IwabuchiHisashi Ishikawa
    • H04N19/00H04N19/126H04N19/136H04N19/14H04N19/176H04N19/196H04N19/423H04N19/46H04N19/70H04N19/86H04N19/98
    • H04N19/98
    • An image information transmission system that transmits image information, one frame of which is constituted by a plurality of image data. The plurality of pixel data corresponding to the one-frame image information is divided into a plurality of pixel blocks using a predetermined number of pixel data as a unit pixel block. Maximum and minimum values of pixel data within each pixel block are detected in units of divided pixel blocks. Maximum value data representing the detected maximum value and minimum value data representing a detected minimum value are output. One of the different quantization characteristics is selected in accordance with a difference between the maximum and minimum values of each pixel blocks output as described above. A level region between the maximum and minimum values is quantized to obtain a plurality of regions on the basis of the selected quantization characteristic. Position data representing one of the plurality of regions to which the pixel data within the pixel block belongs is output.The maximum and minimum value data output in units of pixel blocks and the position data output in correspondence with the pixel data within each pixel block are transmitted as described above, and therefore, a high-quality image information signal can be transmitted regardless of the characteristics of images.
    • 一种发送图像信息的图像信息传输系统,其一帧由多个图像数据构成。 使用预定数量的像素数据作为单位像素块将与一帧图像信息对应的多个像素数据分割为多个像素块。 以分割的像素块为单位检测每个像素块内的像素数据的最大值和最小值。 输出表示检测到的最大值的最大值数据和表示检测到的最小值的最小值数据。 根据如上所述的每个像素块输出的最大值和最小值之间的差异来选择不同的量化特性之一。 在最大值和最小值之间的电平区域被量化以基于所选择的量化特性获得多个区域。 输出表示像素块所属的像素数据所属的多个区域之一的位置数据。 如上所述,以像素块为单位输出的最大值和最小值数据以及与每个像素块内的像素数据相对应地输出的位置数据被传送,因此,可以传输高质量图像信息信号,而不管其特性如何 的图像。