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    • 3. 发明授权
    • Vehicle door mirror
    • 车门镜
    • US08888341B2
    • 2014-11-18
    • US13586538
    • 2012-08-15
    • Tetsuya EndohKeisuke Honda
    • Tetsuya EndohKeisuke Honda
    • B60Q1/26B60R1/12B60R1/06
    • B60R1/1207B60R1/06
    • In a vehicle door mirror, Between a circumferential edge of a mirror body 2 of a reflection mirror unit 1 in which a lighting unit 10 is incorporated and a flange on a circumferential edge 3a of a holder 3, a gap 4 for light emission is provided in a state in which the circumferential edges thereof are partially spaced from each other in a radial direction, and in the gap, a light emitting portion 10L of the lighting unit 10 is secondarily disposed. In this manner, a driver can directly visually recognize light that is emitted from the light emitting portion 10L, and a decrease in reflection area of the mirror body 2, which is caused by forming the gap 4, can be restrained to its required minimum level, making it possible to ensure an effective field of view of the door mirror.
    • 在车门镜中,在反光镜单元1的反射镜单元1的反射镜单元1的外周边缘之间并入有照明单元10,并且在保持器3的周缘3a上形成凸缘,设置有用于发光的间隙4 在其周向部分沿半径方向彼此部分间隔的状态下,并且在间隙中,照明单元10的发光部分10L被二次布置。 以这种方式,驾驶员可以直接目视识别从发光部分10L发出的光,并且可以将由形成间隙4引起的镜体2的反射面积的减小抑制到其所需的最低水平 ,使得可以确保门镜的有效视野。
    • 7. 发明授权
    • Apparatus for electroplating strip material without current leakage
    • 无电流泄漏电镀带材的设备
    • US4323441A
    • 1982-04-06
    • US223208
    • 1981-01-07
    • Glenn R. SchaerTasuku TouyamaTeruaki YamamotoKeisuke HondaTatsuo Wada
    • Glenn R. SchaerTasuku TouyamaTeruaki YamamotoKeisuke HondaTatsuo Wada
    • C25D5/08C25D7/06H05K3/20H05K3/24C25D5/02
    • C25D5/08C25D7/0614H05K3/20H05K3/241
    • Apparatus for the production of metal foil or printed circuit patterns on a continuously advancing strip of electrically conductive material includes a cathode under which the conductive strip is fed in sliding contact therewith. An insoluble anode is disposed under the cathode, with an interelectrode gap between the anode and the cathodic conductive strip traveling under the cathode. Lying next to one end of the anode is a solution inlet block defining a solution inlet from which the electroplating solution containing the metal to be deposited is fed turbulently into the interelectrode gap to cause the electrodeposition of the metal on the downward-facing surface of the conductive strip. A shield block of electrically insulating material is mounted over the solution inlet block for shielding the conductive strip traveling thereover from premature metal deposition due to leaking current and hence for avoiding the development of pinholes in the metal foil or circuit patterns.
    • 用于在连续前进的导电材料带上生产金属箔或印刷电路图案的装置包括阴极,导电条在该阴极上与其滑动接触地供给。 在阴极下方设置不溶性阳极,阳极和阴极导电带之间的电极间间隙在阴极下方行进。 在阳极的一端附近是一个溶液入口块,其限定了一个溶液入口,含有待沉积金属的电镀溶液将从该溶液入口湍流地进入电极间间隙,以使金属电沉积在 导电条。 电绝缘材料的屏蔽块安装在溶液入口块上,用于屏蔽由于泄漏电流而导致的过早金属沉积而导致的导电带,从而避免金属箔或电路图案中的针孔的发展。
    • 8. 发明授权
    • Fish detector capable of detecting species of fish
    • 鱼类检测器能够检测鱼类
    • US4290125A
    • 1981-09-15
    • US171429
    • 1980-07-23
    • Keisuke Honda
    • Keisuke Honda
    • G01S7/60G01S15/87G01S15/96
    • G01S15/87G01S15/96
    • A fish detector capable of detecting species of fish. Two ultrasonic sounds at different frequencies and echoes are detected by receivers tuned to said different frequencies, respectively. The output signals from the receivers are converted into binary-coded signals and one of the binary-coded signal is divided by the other binary-coded signal. The ratio or quotient thus obtained is compared with a plurality of reference signals at different levels or strengths so as to detect whether or not the ratio or quotient is higher than the highest level or strength reference signal, lower than the lowest level or strength reference signal or between two reference signals at adjacent levels or strengths and subsequently to display in color depending upon a level of the ratio or quotient thus detected.
    • 一种能够检测鱼类的鱼类检测仪。 在不同频率和回波处的两个超声波分别被调谐到所述不同频率的接收机检测。 来自接收机的输出信号被转换为二进制编码信号,二进制编码信号中的一个被另外的二进制编码信号除。 将如此获得的比率或商与不同级别或强度的多个参考信号进行比较,以便检测比率或商是否高于最低电平或强度参考信号,低于最低电平或强度参考信号 或在相邻级别或强度处的两个参考信号之间,并随后根据所检测的比率或商的水平显示颜色。