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    • 63. 发明授权
    • Command-inputting device having display panel
    • 具有显示面板的指令输入装置
    • US07676370B2
    • 2010-03-09
    • US11485319
    • 2006-07-13
    • Hiroyuki Tanaka
    • Hiroyuki Tanaka
    • G10L15/22
    • G10L15/22G10L2015/228
    • A device for inputting voice commands into a system such as a car navigation system includes a microphone for inputting voice commands, a display panel for displaying a help frame when required, a memory for storing a list of the voice commands and their respective usage frequencies in the past, and a controller for controlling operation of an entire system. A user confirms a voice command before inputting it, referring to a command list displayed on the display panel as a help frame. The command list shows all of the voice commands in a reverse order of their usage frequencies in the past. The commands which have not been frequently used and are not familiar to the user are shown in an earlier part of the list. Therefore, the commands for which confirmation are necessary can be quickly found in the list. Those commands which have been used in excess of a predetermined frequency level in the past may be eliminated from the list.
    • 用于将语音命令输入到诸如汽车导航系统的系统中的装置包括用于输入语音命令的麦克风,当需要时显示帮助帧的显示面板,用于存储语音命令列表及其各自的使用频率的存储器 过去,以及用于控制整个系统的操作的控制器。 用户在输入之前确认语音命令,参考显示面板上显示的命令列表作为帮助框。 命令列表以过去与其使用频率相反的顺序显示所有语音命令。 未经常使用且用户不熟悉的命令在列表的前面部分中显示。 因此,可以在列表中快速找到需要进行确认的命令。 已经使用过去超过预定频率级别的那些命令可以从列表中消除。
    • 67. 发明授权
    • Glass composition and laminated glass
    • 玻璃组合物和夹层玻璃
    • US07611773B2
    • 2009-11-03
    • US11762527
    • 2007-06-13
    • Hiromitsu SetoNobuyuki YamamotoHiroyuki Tanaka
    • Hiromitsu SetoNobuyuki YamamotoHiroyuki Tanaka
    • B32B17/06B32B17/10C03C3/087
    • B32B17/10761B32B17/10036B32B17/10339B60J1/00B60R11/02C03C3/087C03C4/082Y10T428/31645
    • A laminated glass having a low haze ratio and an excellent infrared rays shield performance and a glass composition suitable for use in a laminated glass and easy with respect to melting and molding works, which is a glass composition comprising 65 to 74% of SiO2, 0 to 5% of B2O3, 1.9 to 2.5% of Al2O3, 1.0 to 3.0% of MgO, 5 to 10% of CaO, 0 to 10% of SrO, 0 to 10% of BaO, 0 to 5% of Li2O, 13 to 17% of Na2O, 0.5 to 5% of K2O, 0 to 0.40% of TiO2 and 0.3 to 2.0% of total iron oxide in terms of Fe2O3, on a weight basis, in which the sum of MgO, CaO, SrO and BaO is from 10 to 15% and the sum of Li2O, Na2O and K2O is from 14 to 20%, wherein the glass composition has a visible light transmittance of 80% or more as measured with the CIE Standard illuminant A and a total solar energy transmittance of not more than 62% at a thickness of 2.1 mm, and a laminated glass using a glass sheet made of that glass composition.
    • 具有低雾度比和优异的红外线屏蔽性能的夹层玻璃和适用于夹层玻璃的容易的熔融和模塑作业的玻璃组合物,其是包含65-74%的SiO 2,0 至5%的B2O3,1.9-2.5%的Al2O3,1.0-3.0%的MgO,5到10%的CaO,0到10%的SrO,0到10%的BaO,0到5的Li2O,13到 MgO,CaO,SrO和BaO之和为17重量%,0.5〜5重量%的K 2 O,0〜0.40重量%的TiO 2和0.3〜2.0重量%的氧化铁,以Fe 2 O 3计, 10〜15%,Li2O,Na2O和K2O的总和为14〜20%,其中玻璃组合物的CIE标准照明物A的可见光透射率为80%以上,总太阳能透射率 厚度为2.1mm以下的不大于62%,使用由玻璃组合物制成的玻璃板的夹层玻璃。
    • 68. 发明授权
    • Surface acoustic wave device and communication device
    • 声表面波装置及通讯装置
    • US07579928B2
    • 2009-08-25
    • US11729953
    • 2007-03-30
    • Kazuhiro OtsukaTsuyoshi NakaiHiroyuki Tanaka
    • Kazuhiro OtsukaTsuyoshi NakaiHiroyuki Tanaka
    • H03H9/72H03H9/64
    • H03H9/0047H03H9/0057
    • A surface acoustic wave device includes front stage and rear stage surface acoustic wave elements, a signal wiring connecting between the front stage and rear stage surface acoustic wave elements, a reference potential wiring connected with the rear stage surface acoustic wave element and a capacitor made of an insulator interposed between the signal wiring and the reference potential wiring. A surface acoustic wave device includes a front stage surface acoustic wave resonator, a rear stage surface acoustic wave element, a signal wiring connecting between the front stage surface acoustic wave resonator and the rear stage surface acoustic wave element, a reference potential wiring connected with the rear stage surface acoustic wave element and a capacitor made of an insulator interposed between the signal wiring and the reference potential wiring. A communication device includes the surface acoustic wave device described above, a receiver circuit or a transmitter circuit.
    • 表面声波装置包括前级和后级表面声波元件,连接在前级和后级声表面波元件之间的信号线,与后级声表面波元件连接的参考电位线和由 介于信号布线和参考电位布线之间的绝缘体。 表面声波装置包括前级表面声波谐振器,后级声表面波元件,连接在前级声表面波谐振器和后级表面声波元件之间的信号线,与 后级表面声波元件和由绝缘体制成的电容器,其插入在信号布线和参考电位布线之间。 通信装置包括上述表面声波装置,接收器电路或发送器电路。
    • 69. 发明授权
    • Swing arm support structure in a motorcycle, and motorcycle incorporating same
    • 摩托车中的摆臂支撑结构,以及结合相同的摩托车
    • US07527119B2
    • 2009-05-05
    • US11296862
    • 2005-12-07
    • Chikashi IizukaHiroyuki Tanaka
    • Chikashi IizukaHiroyuki Tanaka
    • B62M7/00
    • B62K25/28B62K25/20
    • A swing arm support structure is provided in a motorcycle, in which first and second support arm portions are provided on a front portion of a swing arm. The support arm portions are pivotally supported by a power unit through first and second pivot shafts, so that rigidity and strength of the paired support arm portions is ensured. A flange is formed on the first pivot shaft, which extends at least partially up to an outer edge of a power unit case and projects radially outwardly from an end portion of the first pivot shaft adjacent the case. The flange portion is removably attached to the case. An outer end of an output shaft extends through and is supported by the first pivot shaft, and this outer end projects outwards of the first support arm portion. A drive gear is fixed to the outer end portion of the output shaft.
    • 在摩托车中设置有摆臂支撑结构,其中第一和第二支撑臂部分设置在摆臂的前部。 支撑臂部分通过第一和第二枢转轴由动力单元枢转地支撑,从而确保了一对支撑臂部分的刚度和强度。 凸缘形成在第一枢转轴上,该凸缘至少部分地延伸到动力单元壳体的外边缘并且从邻近壳体的第一枢轴的端部径向向外突出。 凸缘部分可拆卸地附接到壳体。 输出轴的外端延伸穿过第一枢轴并被第一枢轴支撑,该外端部突出到第一支撑臂部分的外侧。 驱动齿轮固定在输出轴的外端部。
    • 70. 发明申请
    • VACUUM SYSTEM AND METHOD FOR OPERATING THE SAME
    • 真空系统及其操作方法
    • US20090112370A1
    • 2009-04-30
    • US11996326
    • 2006-07-14
    • Hiroyuki TanakaKiyoshi Ando
    • Hiroyuki TanakaKiyoshi Ando
    • G05D7/06
    • F04D19/046F04B37/14F04D27/00
    • The present invention provides a vacuum system including a vacuum pump capable of operating at a rotation rate controlled appropriately when a predetermined process is performed in a vacuum chamber, which contributes to energy conservation. The vacuum system serves as a semiconductor manufacturing system comprising a vacuum pump controller which has a gas flow mode and an auto-tuning mode for determining a rotation rate of a vacuum pump unit to set the rotation rate to a target value lower by a predetermined value than the full operation rate of gas flow rate control means under the condition that pressure within the process chamber is vacuum pressure necessary for the gas flow mode. The vacuum pump controller has means for reducing the rotation rate of the vacuum pump unit from a rated rotation rate in the auto-tuning mode under the condition that pressure within the process chamber is vacuum necessary for the gas flow mode, to determine whether or not the operation rate of an APC valve reaches a target value, and means for storing, as the rotation rate necessary for the gas flow mode, the rotation rate of the vacuum pump unit, which is obtained when it is determined that the operation rate of the APC valve reaches the target value.
    • 本发明提供了一种真空系统,其包括真空泵,该真空泵能够在真空室中进行预定的处理时适当地控制旋转速度,这有助于节能。 真空系统用作半导体制造系统,其包括具有气体流动模式和自动调谐模式的真空泵控制器,该自动调谐模式用于确定真空泵单元的转速以将转速设定为目标值低预定值 比在处理室内的压力为气体流动模式所需的真空压力的条件下的气体流量控制装置的全部操作速率。 真空泵控制器具有用于在自动调谐模式下在额定转速下降低真空泵单元的旋转速度的装置,在处理室内的压力为气体流动模式需要真空的条件下,确定是否 APC阀的运转速度达到目标值,以及存储作为气体流动模式所需的旋转速度的真空泵单元的旋转速度的装置,当确定真空泵单元的运转速度时, APC阀达到目标值。