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    • 1. 发明授权
    • Switch structure having forcedly opening-and-locking mechanism equipped
therewith for emergency use
    • 具有强制开启和锁定机构的开关结构用于紧急使用
    • US6100483A
    • 2000-08-08
    • US197467
    • 1998-11-23
    • Yoshiyuki HorieHiroyuki Hirose
    • Yoshiyuki HorieHiroyuki Hirose
    • H01H13/52H01H3/00H01H13/66H01H1/14
    • H01H3/001H01H15/18Y10S200/42
    • Disclosed is an improved switch structure having forcedly opening-and-locking mechanism installed therein. It is responsive to the sticking of the movable and stationary contact elements for forcedly breaking an associated heavy-current carrying circuit which otherwise, would remain closed through the stuck contact elements. The forcedly opening-and-locking mechanism comprises an auxiliary contact section spring-biased to retain the stationary contact element in conductive condition to the associated circuit. It is responsive to the sticking-and-rising of the movable and stationary contact elements for allowing the stationary contact element to be apart from the conductive position to the associated circuit by yielding the rising force of the stuck contact elements until the locking position is reached, in which position the stationary contact element is kept in non-conductive position.
    • 公开了一种改进的开关结构,其中安装有强制开启和锁定机构。 它响应于可移动和固定接触元件的粘附,用于强制断开相关联的大电流承载回路,否则该保持接触元件将通过卡住的接触元件保持闭合。 强制打开和锁定机构包括弹簧偏置的辅助接触部分,以将固定接触元件保持在导电状态到相关联的电路。 它响应于可移动和固定接触元件的粘附和上升,以通过产生卡住的接触元件的上升力使固定接触元件离开导电位置到相关联的电路,直到达到锁定位置 ,其中固定接触元件保持在非导电位置。
    • 5. 发明授权
    • Operation-staggered dual switch
    • 操作交错双开关
    • US5981885A
    • 1999-11-09
    • US196435
    • 1998-11-20
    • Yuichi KatohHiroyuki Yahagi
    • Yuichi KatohHiroyuki Yahagi
    • H01H7/08H01H7/04H01H9/42H01H13/08H01H13/24
    • H01H13/08H01H7/04H01H9/42
    • An operation-staggered dual switch is provided having a casing, first and second switching mechanisms installed in the casing, the switching mechanisms being operatively connected such that operation of the first switching mechanism may follow operation of the second switching mechanism after a predetermined delay, wherein the operation-staggered dual switch includes delay means comprising a connection rod having indentations formed on one side, a train of toothed wheels having a leading toothed wheel and a trailing toothed wheel, the leading toothed wheel of the train of toothed wheels being engaged with selected indentations of the connection rod, and a rotary damper connected to the trailing toothed wheel of the train of toothed wheels, the connection rod being responsive to initiation of operation of the first switching mechanism for moving in a given direction.
    • 提供了一种操作交错双开关,其具有壳体,安装在壳体中的第一和第二切换机构,切换机构可操作地连接,使得第一切换机构的操作可以在预定延迟之后跟随第二切换机构的操作,其中 操作交错的双开关包括延迟装置,其包括具有形成在一侧的凹口的连接杆,具有前齿轮和后齿轮的齿轮系,齿轮系的前齿轮与选定的啮合 所述连接杆的凹口以及连接到所述齿轮系的所述后齿轮的旋转阻尼器,所述连接杆响应于所述第一切换机构的启动而在给定方向上移动。
    • 9. 发明授权
    • Phase controller for intermittently supplying an AC motor with electric
power
    • 用于间歇地为AC电动机供电的相位控制器
    • US5990639A
    • 1999-11-23
    • US102634
    • 1998-06-23
    • Hiroyuki AraiHiroyuki YahagiShinichi Masuda
    • Hiroyuki AraiHiroyuki YahagiShinichi Masuda
    • H02P25/04H02P25/14H02P27/02H02P27/04H02K23/64
    • H02P25/14
    • An improved phase controller is operatively connected to the operating lever or trigger of an electrically powered tool for supplying its motor with electric power from an ac power supply. It includes a device for establishing a divisional voltage derived from the ac voltage across the electric power supply. A variable resistor-and-capacitor series-connection is connected across the motor-and-power supply series-connection. A device provided for supplying the ac motor with electric power when the charging voltage across the capacitor rises above the divisional voltage. The variable resistor is operatively connected to the operating lever, and the capacitor can be charged with electricity at a charging rate which is determined by the variable resistance and the fixed capacitance under the control of the operating lever. The divisional voltage varies in the same way as the voltage across the ac power supply, thus permitting the ignition angle to remain substantially unchanged no matter whether the commercially available electric power may be of different cycles.
    • 改进的相位控制器可操作地连接到电动工具的操作杆或触发器,用于向交流电源的电动机提供电力。 它包括用于建立从电源上的交流电压得到的分压的装置。 可变电阻和电容器串联连接在电机和电源串联之间。 当电容器两端的充电电压上升到分压以上时,提供给交流电动机供电的装置。 可变电阻器可操作地连接到操作杆,并且可以在由操作杆的控制下由可变电阻和固定电容确定的充电速率下对电容器进行充电。 分压电压以与交流电源两端的电压相同的方式变化,从而允许点火角度基本上保持不变,无论市售电力是否可以是不同的周期。
    • 10. 发明授权
    • High-speed seesaw breaking switch with raised fulcrum and accelerator
ramp
    • 高速跷跷板断路开关带有支架和加速器
    • US5794764A
    • 1998-08-18
    • US756535
    • 1996-11-26
    • Hiroyuki HiroseHirotaka Tachibana
    • Hiroyuki HiroseHirotaka Tachibana
    • H01H13/20H01H1/58H01H13/52H01H15/10H01H5/08
    • H01H1/5833H01H15/102
    • A high-speed breaking switch of the seesaw type having an up-and-down contact plate balanced at the middle by the support of the switch body, a push member slidably attached to the up-and-down contact plate to push the up-and-down plate against the support all the time and at least one terminal formed on the switch body to permit one end of the up-and-down contact plate to abut thereon. The up-and-down contact plate has a raised fulcrum vertically at a level which is higher than the level at which the push member abuts on the up-and-down contact plate. The raised fulcrum is formed by a pair of raised fulcrum archs, one on each side of the contact plate. The up-and-down contact plate has a ramp-and-step plateau or inverted "V"-shaped projection formed thereon. This arrangement increases the rotating force or moment of the up-and-down contact plate, thereby increasing the speed at which the connections in an associated electric circuit can be broken, thereby suppressing the arc across the contact-to-contact space.
    • 一种跷跷板型高速断路开关,其具有由开关体的支撑件在中间平衡的上下接触板,可滑动地安装在上下接触板上的推动构件, 所有时间都抵抗支撑件,并且至少一个端子形成在开关主体上,以允许上下接触板的一端抵靠在其上。 上下接触板具有垂直上升的支点,其高度高于推动件抵接在上下接触板上的水平。 凸起的支点由一对凸起的支点拱形成,一个在接触板的每一侧上。 上下接触板具有形成在其上的斜坡平台或倒置的“V”形突起。 这种布置增加了上下接触板的旋转力或力矩,从而增加了相关电路中的连接可能被破坏的速度,从而抑制了接触到接触空间的电弧。