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    • 3. 发明申请
    • Engine Stopping And Restarting System
    • 发动机停止和重新启动系统
    • US20120318231A1
    • 2012-12-20
    • US13162301
    • 2011-06-16
    • Hiromichi Suzuki
    • Hiromichi Suzuki
    • F02B67/04F16H57/08
    • F16H55/36B60K6/00
    • A system that automatically stops an engine when the vehicle is stopped and restarts the engine in response to a predetermined condition is disclosed. The system may generally include an engine and a motor for restarting the engine and driving an auxiliary machine when the engine is stopped, and an electrical power source for supplying electrical power to the motor. The motor may be disposed within a crank pulley housing and configured to be connected to a crankshaft. The motor may restart the engine in response to a predetermined condition. The system may include a gear reduction system for amplifying the torque provided by the motor. The motor may drive an auxiliary machine when the engine is stopped. The engine may drive the auxiliary machine when the engine is operating in drive.
    • 公开了一种在车辆停止时自动停止发动机并且响应于预定条件重新启动发动机的系统。 该系统通常可以包括用于在发动机停止时重新启动发动机和驱动辅助机器的发动机和马达,以及用于向马达供电的电源。 电动机可以设置在曲柄皮带轮壳体内并且被配置为连接到曲轴。 电机可以响应于预定条件重新启动发动机。 该系统可以包括用于放大由电动机提供的扭矩的齿轮减速系统。 发动机停止时,电机可能会驱动辅机。 当发动机在驱动器中运行时,发动机可以驱动辅助机器。
    • 4. 发明申请
    • BIOLOGICAL OPTICAL MEASUREMENT INSTRUMENT AND METHOD FOR DISPLAYING INFORMATION RELATING TO NECESSITY/UNNECESSITY OF REPLACEMENT OF LIGHT-EMITTING UNIT
    • 生物光学测量仪器和显示与发光单元更换的必要性/不可靠性有关的信息的方法
    • US20120283532A1
    • 2012-11-08
    • US13509698
    • 2010-11-11
    • Hiromichi Suzuki
    • Hiromichi Suzuki
    • A61B5/1455G08B21/18
    • A61B5/1455A61B2560/0276
    • Disclosed is a biological optical measurement instrument provided with: a light source unit which has a light-emitting unit that emits light and irradiates the light to an object; a light measurement unit configured to measure passing light at a measurement point of the object: a signal processing unit configured to process hemoglobin information outputted from the light measurement unit and create a light measurement image; and a display unit configured to display the light measurement image, further provided with a measurement/determination unit configured to measure the deterioration state of the light-emitting unit from the light output of the light-emitting unit and an electric current injected into the light-emitting unit and determine the necessity/unnecessity of replacement of the light-emitting unit, wherein the display unit displays information relating to the necessity/unnecessity of replacing the light-emitting unit determined by the measurement/determination unit.
    • 本发明公开了一种生物光学测量仪器,其具备:光源单元,其具有发光并将光照射到物体的发光单元; 光测量单元,被配置为测量物体的测量点处的通过光;信号处理单元,被配置为处理从所述光测量单元输出的血红蛋白信息并创建光测量图像; 以及显示单元,被配置为显示所述光测量图像,还具有测量/确定单元,所述测量/确定单元被配置为从所述发光单元的光输出测量所述发光单元的劣化状态和注入到所述光中的电流 确定更换发光单元的必要性/不必要性,其中显示单元显示与由测量/确定单元确定的发光单元的更换的必要性/不必要性有关的信息。
    • 7. 发明申请
    • METHOD OF MANUFACTURING SEMICONDUCTOR DEVICE
    • 制造半导体器件的方法
    • US20090176333A1
    • 2009-07-09
    • US12400892
    • 2009-03-10
    • Yoshihisa MATSUBARAHiromichi SuzukiWahei KitamuraKosho AkiyamaSeiji Kato
    • Yoshihisa MATSUBARAHiromichi SuzukiWahei KitamuraKosho AkiyamaSeiji Kato
    • H01L21/78H01L21/60
    • H01L21/67333H01L2924/0002H01L2924/00
    • To prevent semiconductor chips from adhering to the trays during transport, a method is employed which transports semiconductor chips in the following state. When trays provided with a plurality of accommodating portions having a recessed cross section for accommodating semiconductor chips on a main surface thereof are stacked in a plurality of stages, the semiconductor chips are accommodated in spaces defined by the accommodating portions formed over the main surface of the lower-stage tray and corresponding accommodating portions formed over the back surface of the upper-stage tray. Here, on bottom surfaces of the accommodating portions formed over the back surface of the upper-stage tray, isolated projections having a height which prevents the projections from coming into contact with the semiconductor chips are arranged in a scattered manner. In this way, it is possible to prevent the semiconductor chips from adhering to the back surface of the upper-stage tray.
    • 为了防止半导体芯片在运输期间粘附到托盘,采用以下状态传输半导体芯片的方法。 当具有多个具有用于在其主表面上容纳半导体芯片的凹入截面的容纳部分的托盘被堆叠成多级时,半导体芯片被容纳在形成在主表面上的容纳部分所形成的空间中 下级托盘和形成在上级托盘的后表面上的相应的容纳部分。 这里,在形成在上层托盘的后表面上的容纳部分的底表面上,以散射方式布置具有防止突起与半导体芯片接触的高度的隔离突起。 以这种方式,可以防止半导体芯片粘附到上层托盘的后表面。
    • 8. 发明申请
    • Antenna device having no less than two antenna elements
    • 具有不少于两个天线元件的天线装置
    • US20090009401A1
    • 2009-01-08
    • US11975332
    • 2007-10-18
    • Hiromichi SuzukiSatoshi MizoguchiIsao Ohba
    • Hiromichi SuzukiSatoshi MizoguchiIsao Ohba
    • H01Q9/04
    • H01Q7/00H01Q1/242H01Q5/371H01Q5/40H01Q9/42H01Q21/28
    • An antenna device provided in a radio apparatus having a printed circuit board includes a first antenna element and a second antenna element. The first antenna element is configured to be fed and grounded at a first feed portion and at a first short-circuit portion both on the printed circuit board, respectively. The second antenna element is configured to be fed and grounded at a second feed portion and at a second short-circuit portion both on the printed circuit board, respectively. The second feed portion is located farther from the first feed portion than from the first short-circuit portion, farther than the first short-circuit portion is from the first feed portion, farther from the first short-circuit portion than from the second short-circuit portion, and farther than the second short-circuit portion is from the first short-circuit portion.
    • 设置在具有印刷电路板的无线电设备中的天线装置包括第一天线元件和第二天线元件。 第一天线元件被配置为分别在印刷电路板上的第一馈电部分和第一短路部分馈电和接地。 第二天线元件被配置为分别在印刷电路板上的第二馈电部分和第二短路部分馈电和接地。 第二馈电部分比第一短路部分远离第一短路部分,远离第一短路部分比第一短路部分远离第一短路部分远离第一短路部分, 电路部分,并且比第二短路部分更远离第一短路部分。