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    • 1. 发明申请
    • PICKUP HAND DETECTION AND ITS APPLICATION FOR MOBILE DEVICES
    • 扒手检测及其移动设备应用
    • US20130019192A1
    • 2013-01-17
    • US13182355
    • 2011-07-13
    • Hiroshi ItohSusumu Shimotono
    • Hiroshi ItohSusumu Shimotono
    • G06F3/048G06F3/041G06F3/03
    • G06F3/0346G06F3/048
    • A method and apparatus is provided for switching from a first screen display to a second screen display for a user to input data. An apparatus may comprise a first screen display for facilitating a thumb of a user to input on a touch screen of the apparatus, a second screen display for facilitating the other thumb of the user to input on the touch screen of the apparatus, and a switching system. The switching system may be configured to switch a screen item position between the first screen display and the second screen display. The switching system may receive orientation information of the apparatus from an orientation sensor, determine which hand of the user holds the apparatus, and may switch operation of the apparatus between the first screen display to the second screen display.
    • 提供了一种用于从第一屏幕显示切换到用于用户输入数据的第二屏幕显示的方法和装置。 装置可以包括第一屏幕显示器,用于便于用户的拇指在设备的触摸屏上输入;第二屏幕显示器,用于便于用户的其他拇指在设备的触摸屏上输入,以及切换 系统。 切换系统可以被配置为在第一屏幕显示和第二屏幕显示之间切换屏幕项目位置。 交换系统可以从定向传感器接收设备的方向信息,确定用户的哪一只握住设备,并且可以在第一屏幕显示与第二屏幕显示之间切换设备的操作。
    • 4. 发明授权
    • Ad-hoc radio communication verification system
    • 自组织无线电通信验证系统
    • US07215775B2
    • 2007-05-08
    • US09884672
    • 2001-06-19
    • Tetsuya NoguchiSusumu Shimotono
    • Tetsuya NoguchiSusumu Shimotono
    • H04K1/00H04L9/00H04M1/66
    • H04L9/3236H04L2209/80
    • An aspect of the present invention is to easily verify data integrity in data transmission and reception by means of an ad-hoc radio connection. A requester and requested end of an establishment of a cipher communication path are defined as source A and destination B, respectively. A predetermined verification data generation algorithm ID1 is arranged in advance between source A and destination B. Source A sends its own public key Kp to destination B, and at the same time generates verification data Xp based on Kp using ID1 and outputs Xp to its own verification image display section. On the other hand, destination B receives data Kx that is transmitted from source A as Kp, then generates verification data Xx based on Kx using ID1 and outputs Xx to its own verification image display section. A verifier determines that data integrity is secured if Xp and Xx displayed in the verification image display sections of source A and destination B match.
    • 本发明的一个方面是通过自组织无线电连接容易地验证数据发送和接收中的数据完整性。 请求者和要求的密码通信路径的建立结束分别被定义为源A和目的地B. 在源A和目的地B之间预先设置预定的验证数据生成算法ID1.源A将其自己的公钥Kp发送到目的地B,并且同时使用ID1基于Kp生成验证数据Xp,并将Xp输出到其 自己的验证图像显示部分。 另一方面,目的地B接收从源A发送的数据Kx作为Kp,然后使用ID 1基于Kx生成验证数据Xx,并将Xx输出到其自己的验证图像显示部分。 如果在源A和目的地B的验证图像显示部分中显示的Xp和Xx匹配,验证者确定数据完整性得到保证。
    • 5. 发明授权
    • Apparatus and method for a personal computer system providing non-distracting video power management
    • 一种提供不分心的视频电源管理的个人计算机系统的装置和方法
    • US06678834B1
    • 2004-01-13
    • US09270416
    • 1999-03-16
    • Toru AiharaSanehiro FuruichiHiroshi IshikawaNoboru KamijoKazuo SekiyaSusumu Shimotono
    • Toru AiharaSanehiro FuruichiHiroshi IshikawaNoboru KamijoKazuo SekiyaSusumu Shimotono
    • G06F104
    • G09G3/3611G06F1/324G06F1/3265G09G2330/022Y02D10/126Y02D10/153
    • To change the frequency of a video clock without adversely affecting a display quality. To lower the frequency of a video clock, following steps are executed, detecting an opportunity which causes the reduction of the frequency of the video clock; lowering the frequency of the video clock in a frequency range within which a circuit employing the video clock (for example, a PLL (Phase Lock Loop) circuit) can follow a change in the frequency; and iterating the step of lowering the frequency of the video clock until a predetermined frequency is attained. In addition, the following steps are also performed, detecting an opportunity which causes the reduction of the frequency of the video clock; lowering the frequency of the video clock to a predetermined frequency during a vertical blanking interval of a display device that employs the video clock; and maintaining the predetermined frequency of the video clock until change of the frequency is required. Furthermore, the following steps are performed, detecting an opportunity which causes the reduction of the frequency of the video clock; changing a display color on a screen of a display device to a color for which flickers are not outstanding; and lowering the frequency of the video clock.
    • 改变视频时钟的频率,而不会对显示质量产生不利影响。 为了降低视频时钟的频率,执行以下步骤,检测导致视频时钟频率降低的机会; 在使用视频时钟的电路(例如,PLL(锁相环)电路)的频率范围内降低视频时钟的频率可以跟随频率的变化; 并且迭代降低视频时钟的频率直到达到预定频率的步骤。 此外,还执行以下步骤,检测导致视频时钟频率降低的机会; 在采用视频时钟的显示装置的垂直消隐间隔期间将视频时钟的频率降低到预定频率; 并维持视频时钟的预定频率,直到需要改变频率。 此外,执行以下步骤,检测导致视频时钟的频率降低的机会; 将显示设备的屏幕上的显示颜色更改为闪烁不突出的颜色; 并降低视频时钟的频率。
    • 8. 发明申请
    • APPARATUS, METHOD, AND COMPUTER PROGRAM PRODUCT FOR ACCESS CONTROL TO A MOBILE TERMINAL
    • 用于移动终端访问控制的装置,方法和计算机程序产品
    • US20120185931A1
    • 2012-07-19
    • US13348530
    • 2012-01-11
    • Susumu SHIMOTONO
    • Susumu SHIMOTONO
    • G06F21/00
    • G06F21/31G06F21/32
    • An apparatus, computer program product, and method are disclosed for access control to a mobile terminal. A use end event is generated indicating an end of use of a mobile terminal. Acceleration of the mobile terminal is binarized by the mobile terminal after the use end event is generated to one of a first value indicating a stationary state and a second value indicating a moving state. A use start event is generated indicating a start of use of the mobile terminal. A movement preparation period is measured from a time at which the use end event is generated to a time at which a transition from the first value to the second value occurs. Use authentication is requested in response to the use start event and in response to the movement preparation period exceeding a first threshold.
    • 公开了一种用于对移动终端的访问控制的装置,计算机程序产品和方法。 生成表示移动终端的使用结束的使用结束事件。 在将使用结束事件生成为指示静止状态的第一值和指示移动状态的第二值之一之后,移动终端的加速度被移动终端二值化。 生成指示开始使用移动终端的使用开始事件。 从使用结束事件发生的时刻到发生从第一个值到第二个值的转变的时间测量移动准备期间。 响应于使用开始事件并且响应于超过第一阈值的移动准备时间请求使用认证。