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    • 1. 发明授权
    • Electronic device
    • 电子设备
    • US08576572B2
    • 2013-11-05
    • US13218354
    • 2011-08-25
    • Takahiro TanakaMitsuhiro NishizonoTakumi OgataTadashi Koyama
    • Takahiro TanakaMitsuhiro NishizonoTakumi OgataTadashi Koyama
    • H05K1/00H01R9/00
    • H01Q1/243H01Q1/52
    • An electronic device is disclosed. The electronic device includes a housing, a circuit board, an antenna, electronic components, and a wiring part. The circuit board is built inside the housing on which an opening is formed. The antenna is facing one surface of the circuit board. Electronic components are disposed at the position facing the antenna through the circuit board, on the other surface of the circuit board, in a state such that the electronic components are not fixed to the circuit board The wiring part passes through the opening of the circuit board, with one end connected to the electronic components on one side of the circuit board and other end connected to the circuit board on the other surface of the circuit board.
    • 公开了一种电子设备。 电子设备包括壳体,电路板,天线,电子部件和布线部分。 电路板被构建在其上形成有开口的壳体内。 天线面向电路板的一个表面。 电子部件以电子部件未固定于电路基板的状态通过电路基板设置在电路板的另一面上的位置上。配线部通过电路基板的开口部 其一端连接到电路板一侧的电子元件,另一端连接到电路板另一表面上的电路板。
    • 7. 发明授权
    • Portable wireless device
    • 便携式无线设备
    • US08489109B2
    • 2013-07-16
    • US12593889
    • 2008-03-28
    • Kenji WakuTadashi KoyamaKunihiko WatanabeMitsuhiro NishizonoKatsuji MorishitaTakeshi IwanagaDaisuke Togashi
    • Kenji WakuTadashi KoyamaKunihiko WatanabeMitsuhiro NishizonoKatsuji MorishitaTakeshi IwanagaDaisuke Togashi
    • H04W72/00H04B1/04
    • H01Q1/243H01Q7/00H04B1/006
    • A mobile wireless device enables effective use of space in a case while reducing degradation of antenna gain and maintaining communication quality even if a plurality of antennas having different frequency bands are arranged close to one another. A magnetic antenna has a first switch unit, a second switch unit, and a concentrated constant circuit which are added to a wiring pattern at the side near to a main antenna, so that a first path and a second path can be selected. Under a predetermined condition, a CPU controls the first switch and the second switch to electrically connect terminal (A1) to terminal (B1) and electrically connect terminal (A2) to terminal (B2), thereby forming the first path; and electrically connect terminal (A1) to terminal (C1) and electrically connect terminal (A2) to terminal (C2), thereby forming the second path connected via the concentrated constant circuit.
    • 即使具有不同频带的多个天线被布置成彼此靠近,移动无线设备也能够在减少天线增益的降级并保持通信质量的情况下有效利用空间。 磁性天线具有第一开关单元,第二开关单元和集中恒定电路,其被添加到靠近主天线的一侧的布线图案,使得可以选择第一路径和第二路径。 在预定条件下,CPU控制第一开关和第二开关以将端子(A1)电连接到端子(B1)并将端子(A2)电连接到端子(B2),从而形成第一路径; 并将端子(A1)电连接到端子(C1)并将端子(A2)电连接到端子(C2),从而形成通过集中恒定电路连接的第二路径。
    • 10. 发明授权
    • Liquid drop detection method and apparatus therefor
    • 液滴检测方法及其装置
    • US06285037B1
    • 2001-09-04
    • US09377745
    • 1999-08-20
    • Tadashi KoyamaShuhei TanakaKeiji Tsunetomo
    • Tadashi KoyamaShuhei TanakaKeiji Tsunetomo
    • G01N1506
    • B60S1/0833B60S1/0822
    • In a method for detecting liquid drops adhering upon a front windshield with superior sensitivity but without obstructing drivers, a light beam emitted from a light emitting element 4 is guided into a light guiding body 7, and after undergoing total internal reflection within light guiding body 7, it is guided into a front windshield G. The light guided into the front windshield G is received by a light receiving element 5 after repeated total internal reflections within the front windshield G. In this instance, when raindrops adhere on the outside surface of the front windshield G and the adhering points are at the total internal reflection points of the light mentioned above, then the light beam guided into the front windshield G passes through and goes out from the windshield G without undergoing total internal reflection therein. As the result of this, the amount of the light beam received by the light receiving element decreases, thereby enabling detection of adhesion of raindrops based thereon, so as to output a signal for driving a wiper equipment or the like.
    • 在用于检测附着在前挡风玻璃上的液滴的灵敏度高但不阻碍驱动器的方法中,从发光元件4发射的光束被引导到导光体7中,并且在导光体7内经受全内反射 被引导到前挡风玻璃G.在前挡风玻璃G内重复的全内反射之后,被导入前挡风玻璃G的光被光接收元件5接收。在这种情况下,当雨滴附着在前挡风玻璃G的外表面上时 前挡风玻璃G和附着点位于上述光的全内反射点,然后被引导到前挡风玻璃G中的光束从挡风玻璃G通过并且不经历内部全反射。 其结果是,由光接收元件接收的光束的量减少,从而能够检测基于其的雨滴的附着,从而输出用于驱动擦拭器设备等的信号。