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    • 22. 发明授权
    • Solid fuel burner, burning method using the same, combustion apparatus and method of operating the combustion apparatus
    • 固体燃料燃烧器,使用其的燃烧方法,燃烧装置和操作燃烧装置的方法
    • US07665408B2
    • 2010-02-23
    • US11633489
    • 2006-12-05
    • Hirofumi OkazakiMasayuki TaniguchiToshikazu TsumuraYoshitaka TakahashiKouji Kuramashi
    • Hirofumi OkazakiMasayuki TaniguchiToshikazu TsumuraYoshitaka TakahashiKouji Kuramashi
    • F23D1/00
    • F23C6/045F23C7/004F23C7/008F23C2201/20F23C2900/06041F23D1/00F23D2201/10F23D2201/20F23D2209/20
    • A solid fuel burner using a low oxygen concentration gas as a transporting gas of a low grade solid fuel such as brown coal or the like and a combustion method using the solid fuel burner are provided. The solid fuel burner comprises a means for accelerating ignition of the fuel and a means for preventing slugging caused by combustion ash from occurring. Mixing of fuel and air inside a fuel nozzle 11 is accelerated by that an additional air nozzle 12 and a separator 35 for separating a flow passage are arranged in the fuel nozzle 11, and the exit of the additional air nozzle 12 is set at a position so as to overlap with the separator 35 when seeing from a direction perpendicular to a burner axis, and additional air is ejected in a direction nearly perpendicular to a flow direction of a fuel jet flowing through the fuel nozzle 11. An amount of air from the additional air nozzle 12 is varied corresponding to a combustion load. By increasing the amount of air from the additional air nozzle 12 at a low load operation, an oxygen concentration of a circulation flow 19 formed in a downstream portion outside the exit of the fuel nozzle 11 is increased to stably burn the fuel. By decreasing the amount of air from the additional air nozzle 12 at a high load operation, a flame is formed at a position distant from the fuel nozzle 11 to suppress radiant heat received by structures of the solid fuel burner and walls of the furnace.
    • 提供了使用低氧浓度气体作为低等固体燃料如褐煤等的输送气体的固体燃料燃烧器和使用固体燃料燃烧器的燃烧方法。 固体燃料燃烧器包括用于加速燃料点火的装置和用于防止由燃烧灰发生的堵塞的装置。 燃料喷嘴11内的燃料和空气的混合通过在燃料喷嘴11中设置有附加的空气喷嘴12和用于分离流路的分离器35而加速,并且附加空气喷嘴12的出口被设定在位置 以便当从垂直于燃烧器轴线的方向观察时与分离器35重叠,并且附加空气沿与流过燃料喷嘴11的燃料射流的流动方向几乎垂直的方向喷射。来自 额外的空气喷嘴12对应于燃烧负荷而变化。 通过在低负载运转下增加来自附加空气喷嘴12的空气量,形成在燃料喷嘴11的出口外的下游部分的循环流19的氧浓度增加,以稳定地燃烧燃料。 通过在高负荷运转下减少来自附加空气喷嘴12的空气量,在远离燃料喷嘴11的位置处形成火焰,以抑制由固体燃料燃烧器的结构和炉壁接收的辐射热。
    • 23. 发明授权
    • Navigation apparatus for displaying three-d stored terrain information based on position and attitude
    • 基于位置和态度显示三维存储地形信息的导航装置
    • US07457705B2
    • 2008-11-25
    • US11206821
    • 2005-08-19
    • Yoshitaka TakahashiMunetoshi UnumaTakeshi HorieFumitaka Otsu
    • Yoshitaka TakahashiMunetoshi UnumaTakeshi HorieFumitaka Otsu
    • G01C21/32
    • G01C21/20G01C21/30
    • A terminal apparatus of the present invention having a position detection unit and a display unit further includes a geographic information storage unit for storing three-dimensional terrain shape information, an attitude detection unit for detecting the attitude of the terminal apparatus, and an image creation unit for obtaining information on a vector vertical to the display unit based on information on the attitude obtained by the attitude detection unit and creating a three-dimensional terrain image at a viewpoint using a current position obtained by the position detection unit, information on a line-of-sight defined by the information on the vector, and the three-dimensional terrain shape information in the geographic information storage unit. When the attitude of the terminal apparatus is changed, the three-dimensional terrain image on the display unit is updated, following a change in the attitude of the terminal apparatus.
    • 具有位置检测单元和显示单元的本发明的终端装置还包括用于存储三维地形信息的地理信息存储单元,用于检测终端设备的姿势的姿势检测单元,以及图像创建单元 用于基于由姿态检测单元获得的姿态的信息获得垂直于显示单元的向量的信息,并且使用由位置检测单元获得的当前位置在视点创建三维地形图像, 由矢量上的信息定义的视线以及地理信息存储单元中的三维地形形状信息。 当终端装置的姿态发生变化时,随着终端装置的姿态的改变,更新显示单元上的三维地形图像。
    • 26. 发明申请
    • Hologram recording medium
    • 全息记录介质
    • US20050179966A1
    • 2005-08-18
    • US11059355
    • 2005-02-17
    • Ikuo AokiYoshitaka Takahashi
    • Ikuo AokiYoshitaka Takahashi
    • G03H1/26G11B7/00G11B7/0033G11B7/0037G11B7/0065G11B7/007G11B7/09G11B7/24044G11B7/2405G03H1/00
    • G11B7/00781G03H1/26G03H2250/42G11B7/0033G11B7/0037G11B7/0065G11B7/007G11B7/24044G11B7/2405G11B2007/0003
    • Provided is a hologram recording medium of precisely performing a location determination control of a beam spot by using a simple structure and performing a shift multi-recording while performing a two-dimensional location determination control in a tangential direction and a radial direction of the recording medium. The provided hologram recording medium has a recording/reproducing layer and a reflection layer between two substrates, and continuous or intermittent convex units or concave units for performing an optical location determination control are installed on a substrate adjacent to the reflection layer, the substrate having a flat surface facing the reflection layer. Accordingly, the provided hologram recording medium precisely performs a location determination control of a beam spot for recording data and performs a shift multi-recording while performing a two dimensional location determination control in a tangential direction and a radial direction of the recording medium.
    • 提供了一种全息图记录介质,其通过使用简单的结构精确地执行光束点的位置确定控制,并且在记录介质的切线方向和径向执行二维位置确定控制的同时执行移位多重记录 。 所提供的全息图记录介质在两个基板之间具有记录/再现层和反射层,并且用于执行光学位置确定控制的连续或间歇凸起单元或凹形单元安装在与反射层相邻的基板上,该基板具有 面向反射层的平坦表面。 因此,所提供的全息图记录介质精确地执行用于记录数据的光束点的位置确定控制,并且在沿着记录介质的切线方向和径向执行二维位置确定控制的同时执行移位多重记录。
    • 29. 发明授权
    • Semiconductor device and semiconductor device testing method
    • 半导体器件和半导体器件测试方法
    • US06496433B2
    • 2002-12-17
    • US09756198
    • 2001-01-09
    • Yasuhiro OkumuraYoshitaka TakahashiAkihiro Funyu
    • Yasuhiro OkumuraYoshitaka TakahashiAkihiro Funyu
    • G11C700
    • G11C29/46G11C29/14
    • A semiconductor device has a normal mode and a test mode for testing the semiconductor device, and is provided with a first circuit which receives an input signal, a test signal and an output enable signal, and outputs the input signal in response to the output enable signal, a second circuit which is coupled to the first circuit and outputs the input signal obtained from the first circuit, and power supply pads which receive a power supply voltage which is supplied in common to the first circuit and the second circuit. The first circuit fixes an output impedance of the second circuit to a high-impedance regardless of the output enable signal when the test signal indicates the test mode.
    • 半导体器件具有用于测试半导体器件的正常模式和测试模式,并且具有接收输入信号,测试信号和输出使能信号的第一电路,并响应于输出使能输出输入信号 信号,耦合到第一电路并输出从第一电路获得的输入信号的第二电路以及接收向第一电路和第二电路共同提供的电源电压的电源焊盘。 当测试信号指示测试模式时,第一电路将第二电路的输出阻抗固定为高阻抗,而与输出使能信号无关。