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    • 2. 发明授权
    • Connection structure for small diameter shielded cable
    • 小直径屏蔽电缆的连接结构
    • US07854626B2
    • 2010-12-21
    • US12053917
    • 2008-03-24
    • Tetsuro IshidaJunichi Tanigawa
    • Tetsuro IshidaJunichi Tanigawa
    • H01R12/24
    • H01R12/598H01R12/775
    • A shielded cable connection structure includes a plurality of shielded cables. Each of the shielded cables has a center conductor, a shielding conductor, and an insulative jacket. A metal grounding member has at least two rows of mutually parallel substantially comb shaped teeth. The comb shaped teeth in each of the rows have a wire receiving portion formed there between that receives at least one of the shielded cables. A holding member mates with the metal grounding member to clamp the shielded cables between the metal grounding member and the holding member. The center conductor is directly clamped by the comb shaped teeth in one of the rows, and the shielding conductor is clamped through the insulative jacket by the comb shaped teeth in the other row.
    • 屏蔽电缆连接结构包括多个屏蔽电缆。 每个屏蔽电缆具有中心导体,屏蔽导体和绝缘外壳。 金属接地构件具有至少两排相互平行的大致梳状齿。 每行中的梳齿形状在其间形成有线接收部分,其接收至少一个屏蔽电缆。 保持构件与金属接地构件配合,以将屏蔽电缆夹在金属接地构件和保持构件之间。 中心导体由一排中的梳状齿直接夹紧,并且屏蔽导体通过另一排中的梳齿形成由绝缘套夹紧。
    • 5. 发明申请
    • Connection Structure for Small Diameter Shielded cable
    • 小直径屏蔽电缆的连接结构
    • US20080236889A1
    • 2008-10-02
    • US12053917
    • 2008-03-24
    • Tetsuro IshidaJunichi Tanigawa
    • Tetsuro IshidaJunichi Tanigawa
    • H02G15/04
    • H01R12/598H01R12/775
    • A shielded cable connection structure includes a plurality of shielded cables. Each of the shielded cables has a center conductor, a shielding conductor, and an insulative jacket. A metal grounding member has at least two rows of mutually parallel substantially comb shaped teeth. The comb shaped teeth in each of the rows have a wire receiving portion formed there between that receives at least one of the shielded cables. A holding member mates with the metal grounding member to clamp the shielded cables between the metal grounding member and the holding member. The center conductor is directly clamped by the comb shaped teeth in one of the rows, and the shielding conductor is clamped through the insulative jacket by the comb shaped teeth in the other row.
    • 屏蔽电缆连接结构包括多个屏蔽电缆。 每个屏蔽电缆具有中心导体,屏蔽导体和绝缘外壳。 金属接地构件具有至少两排相互平行的大致梳状齿。 每行中的梳齿形状在其间形成有线接收部分,其接收至少一个屏蔽电缆。 保持构件与金属接地构件配合,以将屏蔽电缆夹在金属接地构件和保持构件之间。 中心导体由一排中的梳状齿直接夹紧,并且屏蔽导体通过另一排中的梳齿形成由绝缘套夹紧。
    • 6. 发明授权
    • Portable electronic apparatus
    • 便携式电子仪器
    • US5949565A
    • 1999-09-07
    • US825553
    • 1997-03-19
    • Tetsuro Ishida
    • Tetsuro Ishida
    • G06F1/18G06F1/16G06F3/00H04B10/00H05K5/00H05K7/00
    • G06F1/1616G06F1/1681G06F1/1683
    • A display unit is rotatably supported on an apparatus body of a portable electronic apparatus, by a hinge portion. The display unit has a hollow boss projecting into the apparatus body, and the boss is engaged with the apparatus body to be rotatable around the rotation center axis of the hinge portion. An inner hole in the boss communicates with the inside of the display unit and with the inside of the apparatus body, thereby forming a communication path coaxial with the rotation center axis. In the apparatus body, there is provided a light emission element for emitting image data to be transmitted to the display unit, in form of an optical signal into the communication path. In the display unit, there is provided a light receive element for receiving the optical signal from the light emission element through the communication path.
    • 显示单元通过铰链部分可旋转地支撑在便携式电子设备的装置主体上。 显示单元具有突出到装置主体中的中空凸台,并且凸台与装置主体接合以围绕铰链部分的旋转中心轴线旋转。 凸台中的内孔与显示单元的内部和装置主体的内部连通,从而形成与旋转中心轴同轴的连通路径。 在装置主体中,设置有发光元件,用于以将光信号形式发送到显示单元的图像数据发送到通信路径中。 在显示单元中,设置有用于通过通信路径从发光元件接收光信号的光接收元件。
    • 10. 发明授权
    • Air-fuel ratio detecting device
    • 空燃比检测装置
    • US5231864A
    • 1993-08-03
    • US661614
    • 1991-02-28
    • Tetsuro IshidaNobuaki MurakamiYoshiaki Danno
    • Tetsuro IshidaNobuaki MurakamiYoshiaki Danno
    • G01N27/406G01N27/416G01N27/417
    • G01N27/417G01N27/4065F02D41/1456Y10T436/208339
    • An air fuel ratio detecting device is disposed in an exhaust gas passage of an engine, and detects the oxygen concentration in exhaust gases to produce a signal indicative of the air-fuel ratio of an air-fuel mixture supplied to the engine. The air-fuel ratio detecting device serves as a linear A/F sensor for detecting whether the air-fuel mixture is on a leaner or richer side of a stoichiometric ratio and for also detecting the value of the air-fuel ratio. An electric signal representative of the oxygen concentration in a detection chamber supplied with exhaust gases is applied by a sensor cell to a controller which then controls a pump cell to cause the oxygen concentration in the detection chamber to indicate a nearly stoichiometric ratio. The air-fuel ratio detecting device can continuously detect the air-fuel ratio with an electric control signal from the controller. The stoichiometric ratio is detected when the potential difference between the electrode of the pump cell jumps or varies discontinuously. Since the oxygen concentration difference directly serves as detected stoichiometric ratio information, the stoichiometric ratio can be detected with an increased response. The stoichiometric ratio may be detected, using a variable threshold value, based on the potential difference across the pump cell, and the threshold value is selected depending on a control parameter for fine adjustments of a target air-fuel ratio.