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    • 2. 发明授权
    • Protective device against excessive currents, in particular for resettable protection of a controlled switch
    • 防过载电流的保护装置,特别是受控开关的可复位保护
    • US06342994B1
    • 2002-01-29
    • US09367351
    • 2000-02-04
    • Jean-Pierre CousySerge Batongue
    • Jean-Pierre CousySerge Batongue
    • H02H504
    • H03K17/08124H02H9/026H03K17/08144
    • A protective device against excessive currents occurring in an electric circuit between a voltage source and a load mounted downstream of said device, comprising a first triggering component with high current sensitivity and adapted to be triggered, rapidly, but reversibly, in case of excessive current in the circuit, and a second triggering component, mounted in parallel with the first, capable of bearing a temporary voltage higher than the power supply voltage, when the first component is triggered, and of being triggered rapidly and reversibly thereafter. The triggering component are preferably conductive polymer components. Also, a triac switch comprising such a protective device mounted upstream of the triac and a third component is mounted on the triac trigger.
    • 一种保护装置,用于防止在电压源和安装在所述装置下游的负载之间的电路中产生的电流的过大电流,包括具有高电流灵敏度的第一触发部件,并且适于在过大电流的情况下快速但可逆地触发 所述电路和与所述第一触发部件并联安装的第二触发部件能够承受比所述第一部件触发时高于所述电源电压的临时电压,并且此后被迅速且可逆地触发。 触发组分优选为导电聚合物组分。 此外,包括安装在三端双向可控硅开关元件上游的这种保护装置和第三部件的三端双向可控硅开关安装在三端双向可控硅触发器上。
    • 4. 发明授权
    • Control device for an appliance adapted to assume a level selected from a range of levels, method of controlling a roller blind using the device, and user module for the device
    • 用于适用于从水平范围选择的水平的装置的控制装置,使用该装置控制卷帘的方法,以及用于装置的用户模块
    • US06512338B2
    • 2003-01-28
    • US09741418
    • 2000-12-21
    • Jean-Pierre Cousy
    • Jean-Pierre Cousy
    • H05B4118
    • G05B19/425G05B19/40G05B2219/36467
    • A control device for an appliance which can assume a level selected from a range of levels includes a keypad representative of the range of levels to enable a user to select a level, an “off” key for switching off the appliance, and a processor unit connected to the keypad and to the “off” key. If the appliance is off and the keypad is operated to select a target level, the processor unit causes the appliance to assume the selected target level. If the appliance is off and the “off” key is operated, the processor unit leaves the appliance off. If the appliance is on and the keypad is operated to select a target level, the processor unit causes the appliance to assume the selected target level if that level is different from its current level. If the appliance is on and the “off” key is operated, the processor unit switches off the appliance.
    • 用于设备的控制装置,其可以采取从级别范围中选择的级别,包括代表使用户能够选择级别的级别范围的键盘,用于关闭设备的“关闭”键,以及处理器单元 连接到键盘和“关闭”键。 如果设备关闭并且操作键盘以选择目标级别,则处理器单元使设备采取所选择的目标级别。 如果设备关闭并且“关闭”键被操作,则处理器单元关闭设备。 如果设备打开并且操作键盘来选择目标电平,则处理器单元使设备在该电平与其当前电平不同的情况下承担所选择的目标电平。 如果设备打开并且“关闭”键被操作,则处理器单元关闭设备。
    • 7. 发明授权
    • Electronic switch
    • 电子开关
    • US6060793A
    • 2000-05-09
    • US138575
    • 1998-08-24
    • Jean-Pierre Cousy
    • Jean-Pierre Cousy
    • H01H9/54H03K17/725H01H47/00
    • H01H9/547H03K17/725Y10T307/826Y10T307/937
    • An electronic switch has an input terminal, an output terminal and an electronic switch unit between the input terminal and the output terminal controlled by a control circuit which extends from its anode to its trigger and is under the control of an actuator which the user can operate directly or indirectly. There is a current limiter resistor in series with said control circuit. The value of the current limiter resistor is less than the value of the voltage on triggering of the electronic switch unit divided by the minimal trigger current needed by the electronic switch unit for such triggering. It is in the order of 40 ohms at most, for example. Applications include controlling a load without generating spurious harmonics which are a problem on the mains supply.
    • 电子开关具有输入端子,输出端子和输入端子之间的电子开关单元,该输入端子和输出端子由控制电路控制,该控制电路从其阳极延伸到其触发器并处于用户可操作的致动器的控制下 直接或间接 有一个限流电阻与所述控制电路串联。 电流限制电阻的值小于触发电子开关单元的电压值除以电子开关单元所需的最小触发电流。 例如,它最多是40欧姆。 应用包括控制负载而不产生杂散谐波,这是电源上的问题。
    • 8. 发明授权
    • Tactile sensor, in particular for electrical equipment
    • 触觉传感器,特别适用于电气设备
    • US6003390A
    • 1999-12-21
    • US882076
    • 1997-06-25
    • Jean-Pierre Cousy
    • Jean-Pierre Cousy
    • H03K17/96G01L1/16G01L5/22H01L41/08
    • H03K17/9643
    • A tactile sensor includes, under a control key accessible to the user, at least one piezo-electric member which is responsive through the control key to any depression of the latter. For connecting it to an electrical circuit of any kind, the piezo-electric member is sandwiched between a top or forward metal electrode to which it is attached and a bottom or rearward metal electrode which is attached to a support of any kind. For holding the piezo-electric member in place relative to the support of the bottom electrode, the top electrode is fixed to the support by at least one fixing point. Applications include controlling various devices such as on/off switches, changeover switches, dimmers or keypads.
    • 触觉传感器包括在用户可访问的控制键下的至少一个压电构件,其通过控制键响应于后者的任何凹陷。 为了将其连接到任何类型的电路,压电构件夹在其所附接的顶部或前向金属电极和连接到任何种类的支撑件上的底部或后部金属电极之间。 为了将压电构件相对于底部电极的支撑件保持在适当位置,顶部电极通过至少一个固定点固定到支撑件。 应用包括控制各种设备,如开/关开关,切换开关,调光器或键盘。
    • 9. 发明授权
    • Electronic two-way switching circuit
    • 电子双向开关电路
    • US5982051A
    • 1999-11-09
    • US138569
    • 1998-08-24
    • Jean-Pierre Cousy
    • Jean-Pierre Cousy
    • H01H9/54H03K17/725H01H47/00
    • H03K17/725H01H9/547Y10T307/76Y10T307/964
    • A two-way switching circuit for connecting a supply power to a load comprises two electronic switches connected to each other. Each of the two electronic switches includes two electronic switch units connected to each other. Each of the two electronic switches has a control circuit including a common actuator selectively connected to both of the electronic switch units thereof for alternately turning on the respective electronic switch units. A first of the electronic switch unit of each of the two electronic switches is connected to each other and a second of the electronic switch units of each of the electronic switches is connected to each other, whereby switching circuit is thus adapted to connect a power supply to a load when both of the first electronic switch units or both of the second electronic switches are on.
    • 用于将电源连接到负载的双向切换电路包括彼此连接的两个电子开关。 两个电子开关中的每一个包括彼此连接的两个电子开关单元。 两个电子开关中的每一个具有包括选择性地连接到其两个电子开关单元的公共致动器的控制电路,用于交替地接通各个电子开关单元。 两个电子开关中的每一个的电子开关单元中的第一个彼此连接,并且每个电子开关的第二个电子开关单元彼此连接,由此开关电路适于连接电源 当第一电子开关单元或两个第二电子开关两者都接通时的负载。
    • 10. 发明授权
    • Insert and method of assembling such an insert
    • 插入件的组装方法
    • US08128432B2
    • 2012-03-06
    • US13055978
    • 2009-07-28
    • Jean-Marc JaouenDidier RevolVincent LarocheNathalie ForatierJean-Pierre Cousy
    • Jean-Marc JaouenDidier RevolVincent LarocheNathalie ForatierJean-Pierre Cousy
    • H01R13/6464H01R13/02H01R13/6625Y10T29/43
    • The insert includes at least three contacts having essentially linear parts and at least one three-pole capacitance between three of the contacts. One of the contacts of each three-pole capacitance is connected to a central armature. A first dimension of the central armature, in the direction perpendicular to the substantially linear parts, is greater than a second dimension, in a direction parallel to the substantially linear parts, the second dimension defining the widths of the zones of the central armature. The mean width of the central armature, between the zones where it faces other armatures, connected to the other contacts of the three-pole capacitance, is greater than one third of the mean length of the central armature in these regions. Preferably, in at least one three-pole capacitance, the mean width of the central armature between the regions where it faces the lateral armatures is greater than one third of the distance between the lateral armatures.
    • 插入件包括至少三个具有基本线性部分的触点和三个触点之间的至少一个三极电容。 每个三极电容的触点之一连接到中心电枢。 中心电枢的与基本线性部分垂直的方向的第一尺寸大于在平行于基本线性部分的方向上的第二尺寸,第二尺寸限定了中心电枢的区域的宽度。 连接到三极电容的其他触点的中心电枢的面对其他电枢的区域之间的平均宽度大于这些区域中心电枢的平均长度的三分之一。 优选地,在至少一个三极电容中,其面向横向电枢的区域之间的中心电枢的平均宽度大于横向电枢之间的距离的三分之一。