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    • 3. 发明申请
    • APPARATUS AND METHOD FOR DISPLAYING OPERATING CHARACTERISTICS ON STATUS INDICATORS
    • 用于显示状态指示器的操作特性的装置和方法
    • WO2007016332A3
    • 2007-04-05
    • PCT/US2006029380
    • 2006-07-27
    • LUTRON ELECTRONICS COLEHMER MATTHEW JBORING NATHANDOBBINS AARON
    • LEHMER MATTHEW JBORING NATHANDOBBINS AARON
    • G01R13/40
    • G09F9/302G09F9/33H05B33/0803H05B33/0842H05B37/0272H05B37/029H05B39/04Y10T307/76Y10T307/937Y10T307/944
    • A user interface for a load control device comprising a plurality of status indicators allows a user to control an operating characteristic of a load to a plurality of discrete levels, where the number of discrete levels is greater than the number of status indicators. The user interface also includes an adjustment member for allowing the user to select one of the discrete levels of operating characteristics. The status indicators are arranged in a linear array and collectively designate the presently selected discrete level by illuminating one or more of the individual status indicators. According to a first embodiment of the present invention, either one status indicator or two consecutive status indicators are illuminated to indicate the presently selected discrete level. According to a second embodiment of the present invention, three consecutive status indicators are illuminated to indicate the presently selected discrete level, where the three consecutive status indicators may comprise a fully illuminated status indicator surrounded by two dimly illuminated status indicators. According to a third embodiment of the present invention, a single status indicator may be illuminated to indicate one or more of the M discrete levels.
    • 包括多个状态指示器的用于负载控制设备的用户界面允许用户将负载的操作特性控制到多个离散的级别,其中离散级别的数量大于状态指示器的数量。 用户界面还包括用于允许用户选择离散级别的操作特征之一的调节构件。 状态指示符以线性阵列排列,并通过点亮一个或多个单独状态指示符来共同指定当前选择的离散级别。 根据本发明的第一实施例,照亮一个状态指示器或两个连续状态指示器以指示当前选择的离散水平。 根据本发明的第二实施例,三个连续状态指示器被照亮以指示当前选择的离散水平,其中三个连续状态指示器可以包括由两个昏暗照明状态指示器围绕的完全照亮状态指示器。 根据本发明的第三实施例,单个状态指示器可被照亮以指示M个离散水平中的一个或多个。
    • 5. 发明申请
    • METHOD AND APPARATUS FOR QUIET FAN SPEED CONTROL
    • 用于快速风扇速度控制的方法和装置
    • WO2007061901A3
    • 2007-08-02
    • PCT/US2006044786
    • 2006-11-17
    • LUTRON ELECTRONICS COSTEINER JAMES PDOBBINS AARONWU CHEN MING
    • STEINER JAMES PDOBBINS AARONWU CHEN MING
    • H02P25/04
    • H02P1/24H02P7/288
    • An AC motor speed controller includes a plurality of capacitors that may be selectively switched, by means of controllably conductive switches, into series electrical connection with an AC motor and an AC voltage source to control the speed of the motor. To change the speed of the motor, a control circuit renders a first switch conductive, in response to a first detected AC voltage zero crossing, to charge a first capacitor to a predetermined voltage. The control circuit then renders a second switch conductive, in response to a subsequent second detected AC voltage zero crossing, to charge a second capacitor to the predetermined voltage. The control circuit then renders both switches simultaneously conductive at a predetermined time after a subsequent third detected AC voltage zero crossing. The capacitors will thereby be charged to the same voltage prior to being switched into series with the motor, thereby resulting in reduced acoustic noise when changing motor speeds.
    • AC电动机速度控制器包括可以通过可控制的导电开关与AC电动机和AC电压源串联电连接以选择性地切换多个电容器,以控制电动机的速度。 为了改变电动机的速度,控制电路响应于第一检测到的交流电压过零而使第一开关导通,以将第一电容器充电至预定电压。 然后,控制电路响应于随后的第二检测到的交流电压过零而使第二开关导通,以将第二电容器充电到预定电压。 然后,控制电路在随后的第三检测到的AC电压过零之后,在预定的时间使两个开关同时导通。 因此,在电动机切换成串联之前,电容器将被充电到相同的电压,从而在改变电动机速度时导致降低的声学噪声。
    • 7. 发明申请
    • WALL-MOUNTABLE SMART DUAL LOAD CONTROL DEVICE
    • 可安装智能双负载控制装置
    • WO2008063963A3
    • 2008-07-31
    • PCT/US2007084442
    • 2007-11-12
    • LUTRON ELECTRONICS CODOBBINS AARONMCCARTER KYLE A
    • DOBBINS AARONMCCARTER KYLE A
    • H05B39/08
    • H05B39/044H05B37/0281Y02B20/42Y02B20/48
    • A smart dual load control device is operable to control the amount of power delivered from an AC power source to a first electrical load and to switch the power delivered from the AC power source to a second electrical load between an on state and an off state. A control circuit is coupled to first and second controllably conductive devices for controlling the amount of power delivered to the first and second electrical loads, respectively. A power supply generates a DC voltage to power the control circuit and is coupled in parallel electrical connection with the first controllably conductive device such that the power supply is operable to draw current through the first electrical load. The second controllably conductive device is operable to provide substantially zero current through the second electrical load when the second electrical load is in the off state.
    • 智能双重负载控制装置可操作以控制从AC电源传递到第一电负载的功率量,并将从AC电源传递的功率切换到处于导通状态和关断状态之间的第二电负载。 控制电路耦合到第一和第二可控导电装置,用于分别控制输送到第一和第二电负载的功率量。 电源产生DC电压以对控制电路供电并且与第一可控制导电装置并联电连接,使得电源可操作地通过第一电负载拉动电流。 当第二电负载处于关闭状态时,第二可控导电装置可操作以提供通过第二电负载的基本零电流。