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    • 113. 发明授权
    • Display device
    • 显示设备
    • US08150093B2
    • 2012-04-03
    • US11748006
    • 2007-05-14
    • Satoshi Ueno
    • Satoshi Ueno
    • H04R1/02
    • H04R5/02H04N5/642H04R1/025H04R1/345H04R2499/15
    • A display device includes a display unit, a sound unit, a speaker positioning mechanism and a speaker attaching mechanism. The display unit is configured to display images. The sound unit is configured to output audio. The sound unit has top and bottom left speakers and top and bottom right speakers. The speaker positioning mechanism is configured to detachably support the sound unit and move the sound unit away from and close to the display unit in a lateral direction of the display unit. The speaker attaching mechanism is configured to detachably couple the sound unit to upper and lower faces of the display unit.
    • 显示装置包括显示单元,声音单元,扬声器定位机构和扬声器附接机构。 显示单元被配置为显示图像。 声音单元配置为输出音频。 声音单元具有顶部和左下扬声器以及右上扬声器和右下扬声器。 扬声器定位机构构造成可拆卸地支撑声音单元,并且在显示单元的横向方向上使声音单元远离显示单元移动并靠近显示单元。 扬声器安装机构构造成将声音单元可拆卸地耦合到显示单元的上表面和下表面。
    • 114. 发明授权
    • Fixing device using electromagnetic induction heating and image forming apparatus including same
    • 使用电磁感应加热的固定装置和包括其的成像装置
    • US07796933B2
    • 2010-09-14
    • US12076696
    • 2008-03-21
    • Satoshi UenoKenji IshiiTadashi OgawaAkiko ItoHiroshi Seo
    • Satoshi UenoKenji IshiiTadashi OgawaAkiko ItoHiroshi Seo
    • G03G15/20
    • G03G15/2007G03G15/2053
    • An image forming apparatus includes a fixing device to fix a toner image on a recording medium by applying heat. Such a fixing device includes at least a magnetic flux generator, a heat generating roller, a magnetic shunt layer, and a protective layer. The magnetic flux generator is configured to generate magnetic flux. The heat generating roller including a heat generating layer is configured to generate heat by the magnetic flux. The magnetic shunt layer may be formed independently of the heat generating layer. The protective layer is provided on an inner surface of the magnetic shunt layer and configured to cover a crack formed in the magnetic shunt layer during fabrication of the magnetic shunt layer. An image is fixed onto the recording medium by the heat from the heat generating roller. Alternatively, the magnetic shunt layer may be integrally provided with the heat generating layer.
    • 图像形成装置包括通过施加热量将调色剂图像定影在记录介质上的定影装置。 这种定影装置至少包括磁通量发生器,发热辊,磁分流层和保护层。 磁通发生器被配置为产生磁通量。 包括发热层的发热辊被配置为通过磁通产生热量。 磁分路层可以独立于发热层形成。 保护层设置在磁分路层的内表面上,并且构造成在制造磁分路器层期间覆盖形成在磁分路层中的裂纹。 通过来自发热辊的热将图像固定在记录介质上。 或者,磁分路层可以与发热层一体地设置。
    • 115. 发明授权
    • Image forming apparatus which controls heating width of fixing device
    • 控制定影装置加热宽度的成像装置
    • US07715774B2
    • 2010-05-11
    • US11679524
    • 2007-02-27
    • Satoshi Ueno
    • Satoshi Ueno
    • G03G15/20
    • G03G15/2042G03G2215/00734
    • A fixing device includes a fixing section, a sheet-width detector, a heating-width changing mechanism, a mixed feeding detector, and a controller. The fixing section includes at least a fixing member that fixes a toner image on a recording medium upon application of heat thereto. The sheet-width detector detects a width of the recording medium and outputs a sheet-width signal. The heat-width changing mechanism changes a heating width of the fixing member. The mixed feeding detector detects whether or not mixed feeding of a plurality of sheets of the recording medium having different widths is performed during a successive sheet feeding, and outputs a mixed feeding signal. The controller controls the heating-width changing mechanism to control the heating width based on the sheet-width signal and the mixed feeding signal.
    • 定影装置包括固定部,片宽检测器,加热宽度改变机构,混合进给检测器和控制器。 固定部至少包括固定构件,其在施加热量时将调色剂图像定影在记录介质上。 纸张宽度检测器检测记录介质的宽度并输出纸张宽度信号。 热变形机构改变固定部件的加热宽度。 混合进给检测器检测在连续片材进给期间是否执行具有不同宽度的多张记录介质的混合进给,并输出混合进给信号。 控制器根据片宽信号和混合馈送信号控制加热宽度变化机构来控制加热宽度。
    • 116. 发明申请
    • AUDIO VISUAL SYSTEM AND ROTATING UNIT THEREOF
    • 音频视觉系统及其旋转单元
    • US20070252854A1
    • 2007-11-01
    • US11738810
    • 2007-04-23
    • Satoshi Ueno
    • Satoshi Ueno
    • G09G5/00
    • G06F1/1601
    • An audio visual system includes a display unit, a sound unit and a rotating unit. The display unit is configured to be rotated horizontally by receiving a control signal. The sound unit includes a center speaker and a side speaker. The center speaker is disposed at the display unit and rotated together with the display unit. The side speaker is disposed apart from the display unit. The rotating unit includes a rotating base and a control section. The rotating base is configured to support the side speaker. The control section is configured to rotate the rotating base together with the side speaker horizontally in synchronization with the display unit based on the control signal.
    • 视听系统包括显示单元,声音单元和旋转单元。 显示单元被配置为通过接收控制信号而水平旋转。 声音单元包括中置扬声器和侧扬声器。 中央扬声器设置在显示单元处并与显示单元一起旋转。 侧扬声器与显示单元分开设置。 旋转单元包括旋转底座和控制部。 旋转底座被配置为支撑侧扬声器。 所述控制部被配置为基于所述控制信号与所述显示单元同步地使所述旋转底座与所述侧扬声器一起水平地旋转。
    • 119. 发明申请
    • Semiconductor integrated circuit device
    • 半导体集成电路器件
    • US20050040869A1
    • 2005-02-24
    • US10948304
    • 2004-09-24
    • Shinichiro WadaSatoshi UenoShinya Kajiyama
    • Shinichiro WadaSatoshi UenoShinya Kajiyama
    • H01L27/06H01L21/8249H03K19/08H03M9/00H03B19/00
    • H03M9/00
    • In a circuit for converting an input signal Data1 of high frequency to an output signal Data4 of low frequency, a signal of the frequency band (for example, 10 GHz to 2.5 GHz) which can be processed only with a bipolar ECL circuit is processed with a bipolar ECL circuit. After the frequency of signal up to the maximum frequency which can be processed with a CMOS circuit is lowered, the signal is inputted to the CMOS circuit via a level conversion circuit in order to lower the frequency (for example, 2.5 GHz to 1.25 GHz). Thereby, power consumption of the semiconductor integrated circuit device, particularly the device including the Bi-CMOS circuit can be lowered while high-seed processing characteristic in the signal process of the circuit is maintained.
    • 在用于将高频输入信号Data1转换为低频输出信号Data4的电路中,仅用双极性ECL电路处理的频带(例如,10GHz至2.5GHz)的信号被处理 双极ECL电路。 在可以用CMOS电路处理的信号的频率达到最大频率之后,信号通过电平转换电路输入到CMOS电路,以便降低频率(例如,2.5GHz至1.25GHz) 。 由此,可以降低半导体集成电路器件的功耗,特别是包括Bi-CMOS电路的器件,同时保持电路的信号处理中的高种子处理特性。
    • 120. 发明授权
    • Optical interconnection receiving module
    • 光互连接收模块
    • US06504140B1
    • 2003-01-07
    • US09642584
    • 2000-08-22
    • Satoshi UenoNobuhiro ShiramizuKiyoshi HayashiTakashi Harada
    • Satoshi UenoNobuhiro ShiramizuKiyoshi HayashiTakashi Harada
    • H01L3100
    • H01L27/14643H01L27/14627
    • The present invention provides an optical interconnection receiving module that can cancel out the effect of cross talk noise caused by the input signal of another channel on the preamplifier side and the reference amplifier side, and provides suitable device structures for a bypass capacitor used to stabilize supply voltage and for a capacitance device used to cancel out the effect of cross talk noise caused by the input signal of another channel on the preamplifier side and on the reference amplifier side. According to the present invention, there are provided: a photodiode array comprising a plurality of photodiodes, each of which receives an optical signal on a plurality of channels and converts the optical signal into an electric signal; and a receiving circuit for distinguishing an input signal which comprises: a preamplifier for amplifying the electric signal converted from the optical signal by the photodiode array for each of the channels; a comparator; and a reference amplifier for generating reference voltage, wherein a plurality of capacitance devices each equivalent to the photodiode are formed on the semiconductor chip where the receiving circuit is formed, and each of the equivalent capacitance devices is connected between the input terminal of the reference amplifier and a supply voltage terminal.
    • 本发明提供了一种光互连接收模块,其能够抵消由前置放大器侧和参考放大器侧的另一通道的输入信号引起的串扰噪声的影响,并为用于稳定供电的旁路电容器提供合适的器件结构 电压和用于消除由前置放大器侧和参考放大器侧的另一通道的输入信号引起的串扰噪声的影响的电容器件。 根据本发明,提供:包括多个光电二极管的光电二极管阵列,每个光电二极管在多个通道上接收光信号,并将光信号转换为电信号; 以及接收电路,用于区分输入信号,该接收电路包括:前置放大器,用于放大由每个通道的光电二极管阵列从光信号转换的电信号; 比较器 以及用于产生参考电压的参考放大器,其中在形成接收电路的半导体芯片上形成各自等效于光电二极管的多个电容器件,并且每个等效电容器件连接在参考放大器的输入端 和电源电压端子。