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    • 6. 发明授权
    • Three-dimensional image display device and three-dimensional image display method and program
    • 三维图像显示装置和三维图像显示方法及程序
    • US09024940B2
    • 2015-05-05
    • US13273400
    • 2011-10-14
    • Yoshiki KawaokaKoichi Yahagi
    • Yoshiki KawaokaKoichi Yahagi
    • G06T15/00G06T15/20H04N13/00
    • G06T15/205H04N13/128H04N2213/002
    • A three-dimensional (3D) image display device enables easy recognition of a 3D image by appropriately changing the popout amount of a 3D image. The display device includes a timer setting and measuring a given time over which the popout amount of a 3D image changes, a popout amount change mode memory storing information on time dependent change of the popout amount occurring over the given time, a popout amount controller producing the popout amount for each unit time based on parallax between a plurality of images, the given time, and the time dependent change information, a changing image producer producing pairs of popout-amount-changing images from the plurality of images according to a popout amount by the unit time, a 3D image producer producing a corresponding popout-amount-changing 3D image, and a display controller.
    • 三维(3D)图像显示装置通过适当地改变3D图像的弹出量,能够容易地识别3D图像。 该显示装置包括定时器设定和测量3D图像的弹出量变化的给定时间,存储存储关于在给定时间内出现的弹出量的随时间变化的信息的弹出量改变模式存储器,产生 基于多个图像之间的视差,给定时间和与时间相关的改变信息的每个单位时间的弹出量,改变图像生成器,根据弹出量产生产生来自多个图像的弹出量改变图像对 单位时间,产生相应的弹出量变化3D图像的3D图像生成器和显示控制器。
    • 7. 发明授权
    • Part table creating apparatus and part table creating method
    • 零件表创建装置和零件表创建方法
    • US08015503B2
    • 2011-09-06
    • US11727790
    • 2007-03-28
    • Koichi Yahagi
    • Koichi Yahagi
    • G06F3/048
    • G06F17/5086G06F2217/02Y10S715/964
    • To solve an overlap between a part table and components automatically and adequately in a drawing using a CAD. In a part table creating method for creating a part table including a plurality of rows of CAD data, an overlap between the part table and other geometric elements is detected. When the overlap is detected, the height of the respective rows of the part table is reduced to H1. When the overlap between the part table and the other geometric elements still remains even when the respective rows of the part table is reduced to the height H1, the number of overlapped rows between the part table and the geometric element are obtained. The portion of the overlapped rows is separated and moved in the direction to avoid the overlap with the geometric elements to separate into an original part table and a destination part table.
    • 使用CAD在图形中自动和充分地解决零件表和零件之间的重叠。 在用于创建包括多行CAD数据的零件表的零件表创建方法中,检测零件表与其他几何元素之间的重叠。 当检测到重叠时,部件表的各行的高度减小到H1。 当零件表和其他几何元素之间的重叠仍然保持甚至当零件表的相应行减小到高度H1时,获得零件表与几何元素之间的重叠行数。 重叠行的部分被分离并在方向上移动以避免与几何元素重叠以分离成原始部分表和目的地部分表。
    • 10. 发明申请
    • Communication semiconductor integrated circuit device and a wireless communication system
    • 通信半导体集成电路器件和无线通信系统
    • US20050107056A1
    • 2005-05-19
    • US10495628
    • 2002-11-13
    • Akira OkasakaKoichi YahagiMasakazu SakagamiRobert Henshaw
    • Akira OkasakaKoichi YahagiMasakazu SakagamiRobert Henshaw
    • H03G3/30H03G3/20H04B1/06H04B7/00
    • H03G3/3078
    • A communication semiconductor integrated circuit device (200) includes an amplifier circuit (330) including a plurality of variable-gain amplifiers (PGA1-PGA3) for amplifying a received signal and a plurality of filter circuits (LPF1-LPF3), the amplifiers and the filter circuits being connected to each other in a multi-stage configuration, and a last amplifier (FFGA) having a gain set regardless of a level of a received signal and a filter circuit, the last amplifier and the filter circuit are disposed at the last stage of the amplifier circuit. The amplifier circuit has an amplification factor variable according to a level of a received signal. The communication semiconductor integrated circuit device further includes a plurality of offset correction circuits (OFC1-OFC4) for correcting direct-current offset, corresponding to the variable-gain amplifiers and the last amplifiers, respectively. The offset correction circuit (OFC4) corresponding to the last amplifier conducts an offset correction at a timing different from timing for the other offset correction circuits (OFC1-OFC3).
    • 通信半导体集成电路器件(200)包括:放大电路(330),包括用于放大接收信号的多个可变增益放大器(PGA 1 -PGA 3)和多个滤波电路(LPF 1 -LPF 3) 放大器和滤波器电路以多级配置彼此连接,并且具有增益设置的最后一个放大器(FFGA),不管接收信号的电平和滤波器电路如何,最后一个放大器和滤波器电路是 放置在放大器电路的最后阶段。 放大器电路根据接收信号的电平具有可变的放大系数。 通信半导体集成电路装置还包括用于分别对应于可变增益放大器和最后的放大器的用于校正直流偏移的多个偏移校正电路(OFC1-OFC4)。 对应于最后一个放大器的偏移校正电路(OFC4)在与其它偏移校正电路(OFC 1 -FC 3)的定时不同的定时处进行偏移校正。