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    • 94. 发明授权
    • Connecting device for electrically connecting first and second component blocks of a robot
    • 用于电连接机器人的第一和第二组件块的连接装置
    • US06491537B1
    • 2002-12-10
    • US09743311
    • 2001-04-09
    • Hiroshi Watanabe
    • Hiroshi Watanabe
    • H01R1122
    • H01R13/2442H01R12/714H01R12/88H01R13/44H01R13/62
    • A connecting device that electrically connects first and second component blocks of a robot which includes an electrode projection hole provided in a connecting section of the first component block facing the second component block and an electrode terminal provided inside the first component block corresponding to the electrode projection hole. An electrode is provided in a connecting face of the second component block facing the electrode projection hole of the first component block. In applicant's connecting device, an electrode terminal driving member drives the electrode terminal so that, in accordance with a connecting action and a detaching action of the first and second component blocks, a corresponding section of the electrode terminal is projected outside the first component block through the electrode projection hole at the time of the connecting action. However, the electrode terminal driving member drives the corresponding section of the electrode terminal so as to be contained in the first component block through the electrode projection hole at the time of the detaching action.
    • 一种电连接机器人的第一和第二部件块的连接装置,其包括设置在与第二部件块相对的第一部件块的连接部中的电极突出孔和设置在与电极突起相对应的第一部件块内部的电极端子 孔。 在与第一部件块的电极突出孔对置的第二部件块的连接面上设置电极。 在申请人的连接装置中,电极端子驱动构件驱动电极端子,使得根据第一和第二部件块的连接动作和分离动作,电极端子的相应部分突出到第一部件块的外部, 连接动作时的电极突出孔。 然而,电极端子驱动部件驱动电极端子的相应部分,以便在分离动作时通过电极凸出孔容纳在第一部件块中。
    • 95. 发明授权
    • Power-off detection circuit
    • 断电检测电路
    • US06476651B1
    • 2002-11-05
    • US09865254
    • 2001-05-25
    • Hiroshi Watanabe
    • Hiroshi Watanabe
    • H03L700
    • H03K17/223
    • The object of the invention is to provide a power-off detection circuit with low power consumption and little dependence on power supply voltage. Detecting capacitor 11 is charged by the power supply voltage Vcc. When the power supply voltage Vcc drops at the time of power off, the drop is detected by starting transistor 14. Said detecting transistor 11 is discharged, and the discharge current is supplied to gate voltage generating circuit 21. Gate voltage generating circuit 21 generates a gate voltage depending on the discharge current. As a result, output transistor 17 is turned on, and the signal at control terminal 35 is inverted. Another circuit can detect the power-off state depending on the signal at control terminal 35.
    • 本发明的目的是提供一种具有低功耗且对电源电压几乎不依赖的断电检测电路。 检测电容器11由电源电压Vcc充电。 当电源电压Vcc在断电时下降时,通过启动晶体管14来检测下降。所述检测晶体管11被放电,放电电流被提供给栅极电压产生电路21.栅极电压发生电路21产生 栅极电压取决于放电电流。 结果,输出晶体管17导通,控制端子35的信号反转。 另一电路可以根据控制端子35处的信号检测掉电状态。
    • 98. 发明授权
    • Stencil printing machine and a wrinkle preventing method on a stencil sheet of the stencil printing machine
    • 模版印刷机和模具印刷机的蜡纸上的防皱方法
    • US06382097B2
    • 2002-05-07
    • US09796793
    • 2001-03-02
    • Hiroshi WatanabeKenji OshimaHideyuki KinoshitaKenji Yoshida
    • Hiroshi WatanabeKenji OshimaHideyuki KinoshitaKenji Yoshida
    • B41M112
    • B41L13/06
    • An ink supplying roller (17) is disposed in a rotary cylindrical drum (16), and is moved so that the ink supplying roller (17) can be brought into contact with an inner peripheral surface of a cylindrical circumferential wall (15). The ink supplying roller (17) is placed at a contact position with an ink permeable portion (15a) of the circumferential wall (15). The rotary cylindrical drum (16) is rotated in a state in which a stencil sheet (M) is not wound around the rotary cylindrical drum (16). Therefore, ink (50) drawn out through the ink permeable portion to the outer peripheral surface of the circumferential wall (15) because the stencil sheet (M) is peeled off at the stencil discharging operation is pulled into the ink permeable portion of the circumferential wall (15) by negative pressure produced by the ink supplying roller (17) coming in contact with the inner peripheral surface of the circumferential wall (15) and is removed.
    • 供墨辊(17)设置在旋转圆柱形滚筒(16)中并移动,使得供墨辊(17)能够与圆柱形周壁(15)的内周表面接触。 供墨辊(17)放置在与周壁(15)的墨水可渗透部分(15a)的接触位置。 旋转圆筒形滚筒(16)在没有卷绕在旋转圆柱形滚筒(16)上的模板(M)的状态下旋转。 因此,由于在模板排出操作下将蜡纸(M)剥离,所以通过墨水可渗透部分向外周壁表面引出的油墨(50)被拉入圆周的墨水渗透部分 通过由与周壁(15)的内周面接触的供墨辊(17)产生的负压来除去壁(15)。
    • 99. 发明授权
    • Connector assembly and method of mounting same
    • 连接器组件及其安装方法
    • US06364681B1
    • 2002-04-02
    • US09444578
    • 1999-11-19
    • Hiroshi Watanabe
    • Hiroshi Watanabe
    • H01R450
    • H01R13/625H01R13/743H01R2201/26
    • A connector assembly includes a generally cylindrical lock frame for being fixed to a through hole in a vehicle body panel, a first connector fitted in one open end of the lock frame, and a second connector fitted in the other open end of the lock frame. A pair of first cam grooves are formed in a cylindrical portion of the lock frame, and extend spirally along an axis of the lock frame in continuous relation to the one open end thereof, and a pair of second cam grooves are formed in the cylindrical portion, and extend spirally in the same direction as the direction of helically-extending of the first cam grooves in continuous relation to the other open end of the cylindrical portion, and the pair of first cam grooves as well as the pair of second cam grooves are disposed at an equal interval around the axis of the connector assembly. The first connector has bosses for engagement in the respective cam grooves, and the second connector has bosses for engagement in the respective cam grooves.
    • 连接器组件包括:大致圆柱形的锁定框架,用于固定在车体面板中的通孔上,第一连接器装配在锁定框架的一个开口端中,第二连接器装配在锁定框架的另一开口端。 一对第一凸轮槽形成在锁定框架的圆柱形部分中,并且沿着与锁定框架的一个开口端连续地沿着锁定框架的轴线螺旋地延伸,并且在圆柱形部分中形成一对第二凸轮槽 并且沿与第一凸轮槽的螺旋延伸方向相同的方向螺旋地延伸,与圆柱形部分的另一开口端连续,并且一对第一凸轮槽以及一对第二凸轮槽是 以等间隔设置在连接器组件的轴线周围。 第一连接器具有用于接合在相应的凸轮槽中的凸台,并且第二连接器具有用于接合在各个凸轮槽中的凸起。