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    • 92. 发明申请
    • Portable display device and information management system
    • 便携式显示设备和信息管理系统
    • US20080121723A1
    • 2008-05-29
    • US11455704
    • 2006-06-20
    • Takeshi AsaiNaoki TakahashiMasahiro Kawasaki
    • Takeshi AsaiNaoki TakahashiMasahiro Kawasaki
    • G06K19/06
    • G06Q20/341G06Q20/3572G06Q20/363G06Q30/02G07F7/1008
    • In a usual state, information concerning all stores where a user is registered as a member (a list of stores where the user is registered as a member) is listed on an electronic paper of a membership card. When the user who carries the membership card enters one store where the user is registered as a member, the membership card recognizes the entering into the store and thereby switches automatically the displayed contents on the electronic paper into information concerning that store. When the user passes through the exit of the store, the displayed contents on the electronic paper is returned to the listing display of all stores. Even a single card has the functions of a large number of cards and is valid to all the stores. This avoids the necessity that the user should carry a large number of cards.
    • 在通常的状态下,关于用户登记为会员的所有商店的信息(用户登记为会员的商店的列表)列在会员卡的电子纸上。 当携带会员卡的用户进入用户登记为会员的一个商店时,会员卡识别进入商店,从而自动将电子纸上显示的内容切换成关于该商店的信息。 当用户通过商店的出口时,电子纸上显示的内容被返回到所有商店的列表显示。 即使是单张卡也具有大量卡的功能,并且对所有的商店都有效。 这避免了用户携带大量卡片的必要性。
    • 95. 发明申请
    • Semiconductor device and manufacturing method thereof
    • 半导体装置及其制造方法
    • US20050056897A1
    • 2005-03-17
    • US10786097
    • 2004-02-26
    • Masahiro KawasakiShuji ImazekiMasahiko Ando
    • Masahiro KawasakiShuji ImazekiMasahiko Ando
    • H01L51/05H01L23/62H01L29/786H01L51/00H01L51/30
    • H01L51/0545H01L51/0021H01L51/0037H01L51/0052H01L51/0516
    • An object of the present invention is to provide a semiconductor device such as a display device, ID tag, sensor or the like at low cost by using a bottom contact type organic TFT as a switching element. In the present invention, the semiconductor layer of the bottom contact type organic TFT is formed of a polycrystalline material, and the taper width of each of the source and drain electrodes of the TFT in the direction of the channel length is smaller than the average particle size of semiconductor crystals grown on the source and drain electrodes. Alternatively, the side on the channel side of each of the source and drain electrodes of the bottom contact type organic TFT is formed so as to be convex upward with respect to the substrate surface. Alternatively, an organic compound layer different from the semiconductor layer of the bottom contact type organic TFT is made present between each of the source and drain electrodes of the bottom contact type organic TFT and said semiconductor layer, in a thickness of not more than 10 Å and not less than 1 Å.
    • 本发明的目的是通过使用底接触型有机TFT作为开关元件,以低成本提供诸如显示装置,ID标签,传感器等的半导体器件。 在本发明中,底部接触型有机TFT的半导体层由多晶材料形成,TFT的源极和漏极的沟道长度方向的锥形宽度小于平均粒子 在源极和漏极上生长的半导体晶体的尺寸。 或者,底接触型有机TFT的源电极和漏电极的沟道侧的一侧形成为相对于衬底表面向上凸起。 或者,在底接触型有机TFT和所述半导体层的每个源电极和漏电极之间存在不同于底接触型有机TFT的半导体层的有机化合物层,其厚度不大于 并且不小于1。
    • 97. 发明授权
    • External flash control system
    • 外部闪光灯控制系统
    • US06353711B1
    • 2002-03-05
    • US09531476
    • 2000-03-20
    • Norio NumakoMasahiro Kawasaki
    • Norio NumakoMasahiro Kawasaki
    • G03B1702
    • G03B15/05G03B7/16G03B2215/0503G03B2215/0557
    • A flash control system remotely controls a an external flash by a camera. In the camera, a first factor is calculated to determine an amount of a flash-light to be emitted from a built-in flash of the camera, and a second factor to determine an amount of a flash-light to be emitted from the external flash, a total amount of both the flash-light emissions of the flashes corresponding to a proper exposure with which an object should be photographed. The built-in flash emits two light signals therefrom at a time interval such that the second factor is represented by the time interval between the signals. An amount of the flash-light emission of the external flash is controlled according to the time interval such that the flash-light amount of the external flash coincides with the second factor.
    • 闪光灯控制系统通过相机远程控制外部闪光灯。 在相机中,计算第一因素以确定从相机的内置闪光灯发射的闪光灯的量,以及用于确定从外部发射的闪光灯的量的第二因素 闪光灯,闪光灯的闪光灯总量相应于对象应被拍摄的正确曝光。 内置闪光灯以这样的时间间隔发射两个光信号,使得第二因素由信号之间的时间间隔表示。 根据时间间隔来控制外部闪光灯的闪光发光量,使得外部闪光灯的闪光量与第二因素一致。
    • 98. 发明授权
    • Image magnification control device for a camera
    • 图像放大控制装置
    • US5740475A
    • 1998-04-14
    • US649291
    • 1996-05-17
    • Noboru SuzukiShigeo TojiMasahiro Kawasaki
    • Noboru SuzukiShigeo TojiMasahiro Kawasaki
    • G02B7/10G02B7/28G03B13/08
    • G02B7/102G02B7/282
    • An image magnification control device for a camera having a photographic lens. A defocus amount "dx" of an object is detected by analyzing a light that passed through the photographic lens. A control focal length "f1" required to maintain an image magnification is calculated that is based upon the detected defocus amount "dx". Thereafter, it is determined whether the control focal length "f1" falls within a range between a tele terminus focal length "ft" of the photographic lens and a wide terminus focal length "fw" of the photographic lens. A first controller controls a focal length of the photographic lens so as to meet the control focal length "f1" when it is determined that the control focal length falls within the range, while a second controller controls the focal length of the photographic lens so as to meet one of the tele terminus focal length "ft" and the wide terminus focal length "fw" when it is determined that the control focal length "f1" goes beyond the range.
    • 一种用于具有摄影镜头的相机的图像放大控制装置。 通过分析通过摄影镜头的光来检测物体的散焦量“dx”。 计算基于检测到的散焦量“dx”来维持图像倍率所需的控制焦距“f1”。 此后,确定控制焦距“f1”是否在摄影镜头的远端终焦焦距“ft”与摄影镜头的宽终点焦距“fw”之间的范围内。 当确定控制焦距在该范围内时,第一控制器控制摄影镜头的焦距以满足控制焦距“f1”,而第二控制器控制摄影镜头的焦距,以便 当确定控制焦距“f1”超出该范围时,满足远程终端焦距“ft”和宽终端焦距“fw”之一。