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    • 2. 发明申请
    • Mobile device system and mobile device
    • 移动设备系统和移动设备
    • US20080235593A1
    • 2008-09-25
    • US11903245
    • 2007-09-20
    • Hideki NagataHiroyuki MinakataTakayuki IdeAtsushi KohashiMinoru Omaki
    • Hideki NagataHiroyuki MinakataTakayuki IdeAtsushi KohashiMinoru Omaki
    • G06F3/00
    • H04L67/1068G06F16/168G06F16/1834G06F16/40H04L67/04H04L67/104H04L67/1095
    • When one mobile device is activated, the existence of information which other mobile devices hold is also confirmed. There is provided a mobile device system including a plurality of mobile devices, wherein each mobile device includes a communication unit for communicating with other mobile devices, an information storage unit for storing information, a list storage unit for storing a list of information stored in the information storage unit and in the information storage units of the other mobile devices, a display unit, and a control unit. The control unit displays the list stored in the information storage unit on the display unit and, when information stored in the information storage unit of another mobile device is specified, requests transmission of information from the other mobile device using the communication unit and displays information transmitted in response to the request on the display unit.
    • 当一个移动设备被激活时,其他移动设备所存在的信息的存在也被确认。 提供了一种包括多个移动设备的移动设备系统,其中每个移动设备包括用于与其他移动设备进行通信的通信单元,用于存储信息的信息存储单元,用于存储存储在其中的信息列表的列表存储单元 信息存储单元和其他移动设备的信息存储单元,显示单元和控制单元。 控制单元在显示单元上显示存储在信息存储单元中的列表,并且当指定存储在另一移动设备的信息存储单元中的信息时,请求使用通信单元从其他移动设备发送信息并显示发送的信息 响应于显示单元上的请求。
    • 4. 发明授权
    • Tachykinin peptides, precursor peptides thereof and genes encoding the same
    • 速激肽,其前体肽和编码其的基因
    • US07371810B1
    • 2008-05-13
    • US10048401
    • 2000-07-25
    • Hiroyuki MinakataEiko IwakoshiKyoko Kuroda
    • Hiroyuki MinakataEiko IwakoshiKyoko Kuroda
    • A61K38/00
    • C07K7/22A61K38/00
    • Tachykinin peptide isolated and purified from the posterior salivary gland of the mollusk Octopus vulgaris. The tachykinin peptide provides a new approach for developing medicaments and pesticides through studies on the structural activity correlation at the molecular level, is characterized by: (1) number of amino acid residues is 12; (2) N terminal of the peptide is Lys; (3) an amino acid sequence of 5 amino acids from C-terminal is represented by the following amino acid sequence: Phe-Xaa-Gly-Leu-Met (SEQ ID NO: 6), (wherein, Xaa is Val, lie, Phe or Tyr), especially following amino acid sequences are provided: Lys-Pro-Pro-Ser-Ser-Ser-Glu-Phe-Val-Gly-Leu-Met (SEQ ID NO: 1), Lys-Pro-Pro-Ser-Ser-Ser-Glu-Phe-Ile-Gly-Leu-Met (SEQ ID NO: 2).
    • 从软体动物章鱼的后唾液腺分离和纯化速效肽。 速激肽肽通过研究分子水平的结构活性相关性,提供了开发药物和农药的新方法,其特征在于:(1)氨基酸残基数为12; (2)肽的N末端为Lys; (3)来自C末端的5个氨基酸的氨基酸序列由以下氨基酸序列表示:Phe-Xaa-Gly-Leu-Met(SEQ ID NO:6),(其中,Xaa为Val, Phe或Tyr),特别是提供以下氨基酸序列:Lys-Pro-Pro-Ser-Ser-Ser-Glu-Phe-Val-Gly-Leu-Met(SEQ ID NO:1),Lys-Pro-Pro- Ser-Ser-Ser-Glu-Phe-Ile-Gly-Leu-Met(SEQ ID NO:2)。
    • 7. 发明申请
    • Imaging apparatus
    • 成像设备
    • US20060126081A1
    • 2006-06-15
    • US11260735
    • 2005-10-27
    • Nobuyuki WatanabeFumiyuki ShirataniNoriyuki IyamaShinichi MiharaHiroyuki Minakata
    • Nobuyuki WatanabeFumiyuki ShirataniNoriyuki IyamaShinichi MiharaHiroyuki Minakata
    • G06K15/02
    • H04N5/232G02B7/102H04N5/23296H04N5/2628
    • An imaging apparatus has an imaging element which converts an optically formed image to an electrical signal by photoelectric conversion and acquires image data. The imaging apparatus comprises an optical magnification changing mechanism which optically changes a magnification of an image, and an electronic magnification change mechanism which reduces or expands a magnification with respect to image data by signal processing, and provides a magnification-changed image according to a predetermined magnification based on the optical magnification changing mechanism and the electronic magnification change mechanism. The optical magnification changing mechanism is configured so that a magnification is discrete and a focal position changes together with a focal distance. The electronic magnification change mechanism carries out an interpolation process such that the number of pixels is increased with respect to a predetermined region of read image data during an expanding process, and carried out a process for discretely sampling a wide region as compared with a readout region obtained by the sampling provided when no magnification conversion is made, during a reducing process, and converting the sampled region data to predetermined image data by a correcting process, thereby offsetting a change of the focal position in the optical magnification changing mechanism.
    • 成像装置具有通过光电转换将光学形成的图像转换成电信号的摄像元件,并获取图像数据。 成像装置包括光学变化图像的倍率的光学倍率改变机构,以及通过信号处理来减小或扩大相对于图像数据的放大率的电子倍率改变机构,并且根据预定的图像数据提供放大率改变的图像 基于光学倍率变化机构和电子倍率变化机构的倍率。 光学倍率改变机构被配置为使得放大率离散并且焦点位置与焦距一起改变。 电子倍率变化机构执行插值处理,使得在扩展处理期间相对于读取图像数据的预定区域的像素数量增加,并且与读出区域相比进行用于离散采样宽区域的处理 通过在缩小处理期间不进行放大转换时提供的采样获得的采样区域数据,并通过校正处理将采样区域数据转换为预定图像数据,从而抵消光学倍率改变机构中焦点位置的变化。
    • 8. 发明申请
    • Zoom optical system, and electronic equipment incorporating the same
    • 变焦光学系统,以及并入其中的电子设备
    • US20050225873A1
    • 2005-10-13
    • US11072412
    • 2005-03-07
    • Hiroyuki Minakata
    • Hiroyuki Minakata
    • G02B13/00G02B15/00G02B15/14G02B17/08
    • G02B17/086G02B13/0025G02B13/003G02B13/007G02B13/009G02B15/00G02B17/0816G02B17/0832G02B17/0848
    • The invention concerns a zoom optical system in which, for zooming, an optical function surface is rotated about a point away from it to change the position of a light beam that passes through the optical function surface. The zoom optical system comprises a stop 2 and one or more optical elements 10 located on an object side with respect to the stop 2, each having at least one optical function surface 11, 12, 13, and is adapted to form an image of a distant object O at varying magnifications. At least one optical function surface 12 comprises a continuous surface, and is constructed such that there is a continuous change in at least the radius of curvature in a sectional direction from one end to another end. Upon zooming, at least one optical element 10 having optical function surfaces 11, 12, 13 is rotated about a point S that is not contiguous to one optical function surface.
    • 本发明涉及一种变焦光学系统,其中,为了变焦,光学功能表面围绕其远离的点旋转以改变通过光学功能表面的光束的位置。 变焦光学系统包括止动器2和相对于止动件2位于物体侧的一个或多个光学元件10,每个具有至少一个光学功能表面11,12,13,并且适于形成 遥远的物体O在不同的放大倍数。 至少一个光学功能表面12包括连续表面,并被构造成使得至少在从一端到另一端的截面方向上的曲率半径存在连续变化。 在变焦时,具有光学功能表面11,12,13的至少一个光学元件10围绕不与一个光学功能表面邻接的点S旋转。
    • 9. 发明授权
    • Mobile device system and mobile device
    • 移动设备系统和移动设备
    • US07953440B2
    • 2011-05-31
    • US11903893
    • 2007-09-24
    • Hideki NagataHiroyuki MinakataTakayuki IdeAtsushi KohashiMinoru Omaki
    • Hideki NagataHiroyuki MinakataTakayuki IdeAtsushi KohashiMinoru Omaki
    • H04B1/38
    • H04M1/7253H04M1/72527H04W84/20
    • A plurality of mobile devices interoperate without configuration operation. A mobile device system including a plurality of mobile devices is provided. Each mobile device is operable in one of an independent-operation mode in which the mobile device operates with priority over the other mobile devices and a dependent mode in which the mobile device operates dependently on another mobile device and includes a control unit having a start-up-order detection unit configured to detect the start-up order of the mobile device with respect to the other mobile devices. A first mobile device operates in the independent-operation mode when the start-up order of the first mobile device detected by the start-up-order detection unit is earlier than the start-up order of a second mobile device and operates in the dependent-operation mode when the start-up order is later than the start-up order of the second mobile device.
    • 多个移动设备在没有配置操作的情况下进行互操作。 提供了包括多个移动设备的移动设备系统。 每个移动设备可以独立操作模式中的一个操作,其中移动设备优先于其他移动设备进行操作,并且移动设备依赖于另一个移动设备进行操作的依赖模式,并且包括控制单元, 上升检测单元,被配置为检测移动设备相对于其他移动设备的启动顺序。 当由启动次序检测单元检测到的第一移动设备的启动顺序早于第二移动设备的启动顺序时,第一移动设备以独立操作模式工作,并且在从属 当启动顺序晚于第二移动设备的启动顺序时,操作模式。