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    • 1. 发明申请
    • SHOPPING PAYMENT SYSTEM
    • US20200265690A1
    • 2020-08-20
    • US16774624
    • 2020-01-28
    • Kenta NAKAMURA
    • Kenta NAKAMURA
    • G07G1/00G06Q30/06
    • A shopping payment system for promptly settling a product price without bothering humans. The system comprising, a management server that assists customers to settle their merchandise purchases, a camera capable of communicating with the management server and capable of imaging a product that moves in and out of the shopping basket, and a customer terminal for accessing the management server. The management server links the customer terminal with the camera, which receives an instruction to start imaging and transmits imaging information of the product to the management server, which identifies the product type based on the imaging information. If identified normally, the management server notifies shopping product details to the customer terminal. If not identified normally, the management server notifies an abnormal state to the customer terminal. When the customer approves the shopping product details, the customer terminal notifies the approval to the management server to complete payment.
    • 4. 发明授权
    • Wire/pipe support device of motorcycle
    • 摩托车线/管支撑装置
    • US07686388B2
    • 2010-03-30
    • US11511315
    • 2006-08-29
    • Yosuke HasegawaJun NakajimaKenta Nakamura
    • Yosuke HasegawaJun NakajimaKenta Nakamura
    • B62J6/18
    • B62K19/30B62K11/00
    • The present invention provides a wire/pipe support device of a motorcycle that can possess a sufficient space for accommodating a wire/pipe without increasing the degree of forming of a vehicle body frame. A wire/pipe support device includes a groove-shaped engaging portion that is engaged with a main frame that constitutes a vehicle body frame of a motorcycle and has a lower surface thereof opened. A groove-shaped accommodating portion receives the wire/pipe thereon and has an upper surface thereof opened. The engaging portion is mounted on the vehicle body frame by engaging the engaging portion with the vehicle body frame from above. The wire/pipe is placed on the accommodating portion. The wire/pipe support device is pushed from above by a fuel tank directly or by way of a cushion member thus preventing the floating of the wire/pipe support device from the vehicle body frame and the rotation of the wire/pipe support device about the vehicle body frame.
    • 本发明提供一种摩托车的线/管支撑装置,其能够在不增加车身框架的形成程度的情况下具有用于容纳线/管的足够的空间。 线/管支撑装置包括:槽状接合部,其与构成摩托车的车身框架的主框架接合,并且其下表面打开。 槽形容纳部分容纳其上的线/管,并且其上表面打开。 通过从上方与车体框架接合卡合部,将卡合部安装在车身框架上。 电线/管被放置在容纳部分上。 电线/管支撑装置由燃料箱直接或通过缓冲件从上方推动,从而防止电线/管支撑装置从车身框架上的浮动以及电线/管支撑装置围绕 车体框架
    • 8. 发明授权
    • Semiconductor storage device capable of improving controllability of density and size of floating gate
    • 能够提高浮栅的密度和尺寸的可控性的半导体存储装置
    • US06310376B1
    • 2001-10-30
    • US09165800
    • 1998-10-02
    • Tohru UedaKenta NakamuraYasumori Fukushima
    • Tohru UedaKenta NakamuraYasumori Fukushima
    • H01L29788
    • B82Y10/00H01L29/7883H01L29/7887H01L29/7888
    • There is provided is a semiconductor storage device that can reduce a dispersion in characteristics such as a threshold voltage and a writing performance and has a low consumption power and a non-volatility. There are included a source region 9 and a drain region 10 formed on a silicon substrate 1, a channel region 3a located between the source and drain regions 9 and 10, a gate electrode 8 that is formed above the channel region 3a and controls a channel current flowing through the channel region 3a, and a control gate insulating film 7, a floating gate 6 and a tunnel insulating film 4 that are arranged in order from the gate electrode 8 side between the channel region 3a and the gate electrode 8. The floating gate 6 is comprised of a plurality of crystal grains 6a linearly discretely arranged substantially parallel to the surface of the channel region 3a.
    • 提供了可以降低诸如阈值电压和写入性能等特性的色散并具有低消耗功率和非挥发性的半导体存储装置。 包括形成在硅衬底1上的源极区9和漏极区10,位于源极和漏极区9和10之间的沟道区3a,形成在沟道区3a上方的栅极8并控制沟道 流过沟道区域3a的电流以及从沟道区域3a和栅电极8之间的栅电极8侧依次排列的控制栅绝缘膜7,浮栅6和隧道绝缘膜4。 栅极6由基本上平行于沟道区域3a的表面线性离散布置的多个晶粒6a组成。