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    • 2. 发明申请
    • TRANSPARENT ELECTROMAGNETIC WAVE SHIELD MEMBER AND METHOD FOR MANUFACTURING THE SAME
    • 透明电磁波屏蔽部件及其制造方法
    • US20100206628A1
    • 2010-08-19
    • US12440016
    • 2007-09-04
    • Yoshitaka MatsuiMasaaki KotouraOsamu WatanabeTadashi YoshiokaKeitaro Sakamoto
    • Yoshitaka MatsuiMasaaki KotouraOsamu WatanabeTadashi YoshiokaKeitaro Sakamoto
    • H05K9/00B05D5/12C23C14/14C23C14/34B23K26/00
    • H05K9/0096H01J11/10H01J11/44H01J2211/446
    • The present invention aims to provide a transparent electromagnetic wave shield member, which is free from a moirè phenomenon which could not be solved by the prior art, and in which an excellent electromagnetic wave shielding properties and a sufficient total light transmittance based on an appropriate network structure are compatible, and a method for manufacturing the same.The transparent electromagnetic wave shield member of the present invention is a transparent electromagnetic wave shield member in which a metal layer of an electroconductive metal network structure having a geometrical shape is formed on a transparent substrate, and which is characterized in that a spacing of said network structure is 200 μm or less, an opening ratio of the network structure is 84% or more, and in addition, a thickness of the electroconductive metal layer is 2 μm or less.Furthermore, the method for manufacturing such transparent electromagnetic wave shield member is a method for manufacturing a transparent electromagnetic wave shield member in which a metal layer of a network structure having a geometrical shape is formed on a transparent substrate, which is characterized in that a metal layer of a thickness of 2 μm or less is provided on a transparent substrate and the metal layer is removed by laser abrasion to form a metal layer of a network structure having a spacing of the network structure of 200 μm or less, and in addition, an opening ratio of the network structure of 84% or more.
    • 本发明的目的在于提供一种透明的电磁波屏蔽构件,其不存在现有技术无法解决的莫尔现象,并且其中基于适当的网络具有优异的电磁波屏蔽性能和足够的全光透射率 结构是兼容的,以及其制造方法。 本发明的透明电磁波屏蔽部件是在透明基板上形成具有几何形状的导电金属网络结构的金属层的透明电磁波屏蔽部件,其特征在于,所述网络的间隔 结构为200μm以下,网状结构的开口率为84%以上,另外导电性金属层的厚度为2μm以下。 此外,这种透明电磁波屏蔽部件的制造方法是在透明基板上形成具有几何形状的网状结构的金属层的透明电磁波屏蔽部件的制造方法,其特征在于,金属 在透明基板上设置厚度为2μm以下的层,通过激光研磨去除金属层,形成网状结构的间隔为200μm以下的网状结构体的金属层,另外, 网络结构的开放率为84%以上。
    • 4. 发明授权
    • Driving-state switching device equipped with synchronizing mechanism
    • 驱动状态切换装置配备同步机构
    • US06481304B1
    • 2002-11-19
    • US09647716
    • 2000-10-04
    • Tadashi YoshiokaShigeyuki YoshidaKaoru SawaseTakahisa NiwaYoshihiro Ikushima
    • Tadashi YoshiokaShigeyuki YoshidaKaoru SawaseTakahisa NiwaYoshihiro Ikushima
    • F16H5900
    • B60K23/08F16H61/32F16H63/304F16H2059/6807F16H2061/2823F16H2063/3059Y10T74/19251Y10T477/613
    • Disclosed herein is a driving state switching unit with a synchro-mechanism which employs a synchro-mechanism to perform switching of a driving state. The switching unit is equipped with a first gear (32) and a second gear (33) coaxially disposed, a gear connecting member (34) axially movable so that the first gear (32) and the second gear (33) can be connected, and a synchro-mechanism (35) interposed between the first gear (32) and the second gear (33). By moving the gear connecting member (34) by an electric actuator (50), the first gear (32) and the second gear (33) are connected, while they are being synchronized by the synchro-mechanism (35). When this occurs, control means (102) controls a supply current to the electric actuator (50), and judgement means (102) judges synchronization of the synchro-mechanism (35), based on a change in the supply current value to the electric actuator (50). With this, the judgement of the synchronization of the synchro-mechanism (35) is made possible without providing dedicated sensors, switches, etc., and an accurate judgement, corresponding even to an individual difference in the sliding resistance between members and a change in running conditions, is made possible.
    • 这里公开了具有同步机构的驱动状态切换单元,其采用同步机构来执行驱动状态的切换。 开关单元配备有同轴设置的第一齿轮(32)和第二齿轮(33),轴向可移动的齿轮连接部件(34),使得第一齿轮(32)和第二齿轮(33)能够连接, 以及介于所述第一齿轮(32)和所述第二齿轮(33)之间的同步机构(35)。 通过用电致动器(50)移动齿轮连接部件(34),第一齿轮(32)和第二齿轮(33)在被同步机构(35)同步的同时被连接。 当发生这种情况时,控制装置(102)控制到电致动器(50)的供应电流,并且判断装置(102)基于电源电流值与电动机构(35)的变化来判断同步机构(35)的同步 致动器(50)。 由此,能够在不设置专用的传感器,开关等的情况下进行同步机构(35)的同步判断,并且能够准确地判断对应于构件之间的滑动阻力的个体差异 运行条件成为可能。
    • 6. 发明授权
    • Driving state switching unit with synchro-mechanism
    • 具有同步机构的驱动状态切换单元
    • US06681650B2
    • 2004-01-27
    • US10259424
    • 2002-09-30
    • Tadashi YoshiokaShigeyuki YoshidaKaoru SawaseTakahisa NiwaYoshihiro Ikushima
    • Tadashi YoshiokaShigeyuki YoshidaKaoru SawaseTakahisa NiwaYoshihiro Ikushima
    • F16H5900
    • B60K23/08F16H61/32F16H63/304F16H2059/6807F16H2061/2823F16H2063/3059Y10T74/19251Y10T477/613
    • Disclosed herein is a driving state switching unit with a synchro-mechanism which employs a synchro-mechanism to perform switching of a driving state. The switching unit is equipped with a first gear (32) and a second gear (33) coaxially disposed, a gear connecting member (34) axially movable so that the first gear (32) and the second gear (33) can be connected, and a synchro-mechanism (35) interposed between the first gear (32) and the second gear (33). By moving the gear connecting member (34) by an electric actuator (50), the first gear (32) and the second gear (33) are connected, while they are being synchronized by the synchro-mechanism (35). When this occurs, control means (102) controls a supply current to the electric actuator (50), and judgement means (102) judges synchronization of the synchro-mechanism (35), based on a change in the supply current value to the electric actuator (50). With this, the judgement of the synchronization of the synchro-mechanism (35) is made possible without providing dedicated sensors, switches, etc., and an accurate judgement, corresponding even to an individual difference in the sliding resistance between members and a change in running conditions, is made possible.
    • 这里公开了具有同步机构的驱动状态切换单元,其采用同步机构来执行驱动状态的切换。 开关单元配备有同轴设置的第一齿轮(32)和第二齿轮(33),轴向可移动的齿轮连接部件(34),使得第一齿轮(32)和第二齿轮(33)能够连接, 以及介于所述第一齿轮(32)和所述第二齿轮(33)之间的同步机构(35)。 通过用电致动器(50)移动齿轮连接部件(34),第一齿轮(32)和第二齿轮(33)在被同步机构(35)同步的同时被连接。 当发生这种情况时,控制装置(102)控制到电致动器(50)的供应电流,并且判断装置(102)基于电源电流值与电动机构(35)的变化来判断同步机构(35)的同步 致动器(50)。 由此,能够在不设置专用的传感器,开关等的情况下进行同步机构(35)的同步判断,并且能够准确地判断对应于构件之间的滑动阻力的个体差异 运行条件成为可能。