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    • 1. 发明申请
    • TIMER AND POWER CONTROL SYSTEM
    • 定时器和功率控制系统
    • WO1980002083A1
    • 1980-10-02
    • PCT/US1980000295
    • 1980-03-20
    • DYNASCAN CORP
    • DYNASCAN CORPSCHORNAK LGOLDSTEIN R
    • H01H43/04
    • G04G15/006H05B37/0281Y02B20/42Y10T307/878Y10T307/944Y10T307/977
    • A timer system includes a power switch (4) operable to power circuit closing and opening conditions, timing means (26) for identifying various timing segments over a 24-hour period and marker storage means (21) having respective power turn on and off marker storage locations assigned to the time intervals encompassing a 24-hour period. An on-off push button (28) or other on-off control operates the power switch (4) and may act as an aid in setting the markers in the storage means. The timer system may also include a rotatable present time setting dial (28), also adjustable to different positions representing the different time intervals, and a manually operable timer on-off setting member (19). For real time programming, control means (12) respond to normal operation of the on-off control during a first24-hour period, initially to set said markers in the storage locations. For fast programming, the control means (12) responds to the successive advancement of time set dial (2(Alpha)) from a present time setting through said various positions and the selective operation of the pushbutton or other on-off control (15) to set the markers in the storage locations assigned to the time interval involved, which markers automatically control the operation of the power switch (4) when the timer on-offsetting member is in its timer-on position, except when overridden by operation of the on-off control (15).
    • 3. 发明申请
    • COMMUNICATION INTERFACE FOR BUS CONNECTED CIRCUIT BREAKERS
    • 总线连接断路器的通讯接口
    • WO1993007597A1
    • 1993-04-15
    • PCT/US1992008522
    • 1992-10-07
    • SQUARE D COMPANY
    • SQUARE D COMPANYFARRINGTON, Ronald, L.SERBOUSEK, Larry, J.HAUN, Andy, AllenTESSMER, Earl, J
    • G08B01/00
    • H02H1/0061H02B1/056H02H7/262H02J13/0055Y02E60/725Y04S10/20Y10T307/477Y10T307/826Y10T307/878
    • The present invention provides a circuit breaker control arrangement that is reliable, accurate and cost-effective to manufacture, install and maintain. This circuit breaker arrangement also provides increased modularity by alleviating the need for installing wires to connect each circuit breaker with the control station. The present invention uses circuit breakers (12) that contain internal control technology for interrupting and establishing an associated current path. At least one coded signal designates each circuit breaker, and a communication bus (30) carries these coded signals to each circuit breaker. Decoding technology (55) located on each circuit breaker determines whether the coded signal corresponds to that circuit breaker. If the coded signal does correspond to that circuit breaker, then the decoding technology responds by sending the appropriate response signal over the communication bus, and the circuit breaker's internal control technology either interrupts or establishes the associated current path.
    • 本发明提供一种断路器控制装置,其制造,安装和维护是可靠,准确和成本有效的。 该断路器装置还通过减少安装导线将每个断路器与控制站连接的需要来提供增加的模块化。 本发明使用包含用于中断和建立相关联的电流路径的内部控制技术的断路器(12)。 至少一个编码信号指定每个断路器,并且通信总线(30)将这些编码信号携带到每个断路器。 位于每个断路器上的解码技术(55)确定编码信号是否对应于该断路器。 如果编码信号对应于该断路器,则解码技术通过在通信总线上发送适当的响应信号进行响应,并且断路器的内部控制技术中断或建立相关联的电流路径。
    • 5. 发明申请
    • MICROMACHINED RELAY AND METHOD OF FORMING THE RELAY
    • 微型继电器和形成继电器的方法
    • WO1994018688A1
    • 1994-08-18
    • PCT/US1994001091
    • 1994-01-31
    • BROOKTREE CORPORATION
    • BROOKTREE CORPORATIONCHRISTOPHER, James, D.KATZENSTEIN, Henry, S.
    • H01H59/00
    • H01H59/0009H01H1/20H01H2001/0084H01H2059/0018Y10T307/878
    • A bridging member (18) extending across a cavity (16) in a semiconductor substrate (12) (e.g. polycrystalline silicon) has successive layers - a masking layer (20), an electrically conductive layer (22) (e.g. polysilicon) and an insulating layer (24) (e.g. SiO2). A first electrical contact (32) (e.g. gold coated with ruthenium) extends on the insulating layer in a direction perpendicular to the extension of the bridging members across the cavity. A pair of bumps (34) (e.g. gold) are on the insulating layer each between the contact and one of the cavity ends. Initially the bridging member (18) and then the contact (32) and the bumps (34) are formed on the substrate and then the cavity (16) is etched in the substrate through holes in the bridging member. A pair of second electrical contacts (44) (e.g. gold coated with ruthenium) are on the surface of an insulating substrate (14) (e.g. pyrex glass) adjacent the semiconductor substrate. The two substrates are bonded after the contacts are cleaned. The first contact (32) is normally separated from the second contacts (44) because the bumps (34) engage the insulating substrate surface. When a voltage is applied between an electrically conductive layer on the insulating substrate surface and the polysilicon layer, the bridging member (18) is deflected so that the first contact (33) engages the second contacts (44). Electrical leads extend on the surface of the insulating substrate from the second contacts to bonding pads disposed adjacent a second cavity in the semiconductor substrate. The resultant relays on a wafer may be separated by sawing the semiconductor and insulating substrates at the position of the second cavity in each relay to expose the pads for electrical connections.
    • 延伸穿过半导体衬底(12)(例如多晶硅)中的空腔(16)的桥接构件(18)具有连续的层 - 掩模层(20),导电层(22)(例如多晶硅)和绝缘层 层(24)(例如SiO 2)。 第一电接触件(32)(例如镀有钌的金)在绝缘层上沿垂直于跨越空腔的桥接构件的延伸方向延伸。 一对凸块(例如金)位于绝缘层上,每一个在接触件和一个空腔端部之间。 首先,在基板上形成桥接构件(18),然后形成接触件(32)和凸起(34),然后通过桥接构件中的孔在基板中蚀刻空腔(16)。 在与半导体衬底相邻的绝缘衬底(14)(例如发泡玻璃)的表面上,一对第二电触头(44)(例如镀有钌的金)。 触点清洁后,两个基板接合。 由于凸起(34)接合绝缘基板表面,所以第一触点(32)通常与第二触点(44)分离。 当在绝缘衬底表面上的导电层和多晶硅层之间施加电压时,桥接构件(18)被偏转,使得第一接触件(33)接合第二接触件(44)。 电引线在绝缘基板的表面上从第二触点延伸到邻近半导体衬底中的第二腔的接合焊盘。 可以通过在每个继电器中的第二腔的位置处锯切半导体和绝缘基板来分离晶片上的所得继电器,以露出用于电连接的焊盘。
    • 6. 发明申请
    • HYBRID ELECTRICAL SWITCHING DEVICE
    • 混合电气开关装置
    • WO02047100A1
    • 2002-06-13
    • PCT/NL2001/000881
    • 2001-12-04
    • H01H9/54
    • H01H9/542Y10T307/747Y10T307/865Y10T307/872Y10T307/878Y10T307/937
    • The invention relates to a hybrid electrical switching device, comprising an electromechanical relay (1) including a mechanical switching element (2) to be operated by an electrical coil, and a main semiconductor switching element (10) including a control input (12) and a current conduction path (11) which is connected in parallel with the mechanical switchin element (2) for energising an electric load (8). The main semiconductor switching element (10) is of the type that ceases to conduct when a current (iT) through the current conduction path (11) thereof drops below a threshold value. The circuit furthermore comprises an auxiliary semiconductor switching element (15) including a control input (17) and a current conduction path (16) which is connected for controlling the main semiconductor switching element (10).
    • 本发明涉及一种混合电气开关装置,包括机电继电器(1),其包括由电线圈操作的机械开关元件(2),以及包括控制输入端(12)的主半导体开关元件 电流传导路径(11),其与机械开关元件(2)并联连接,用于激励电负载(8)。 主半导体开关元件(10)是当其通过电流导通路径(11)的电流(iT)下降到阈值以下时不再导通的类型。 电路还包括辅助半导体开关元件(15),其包括控制输入端(17)和连接用于控制主半导体开关元件(10)的电流传导路径(16)。