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    • 3. 发明授权
    • Control means for an electrically adjustable piece of furniture
    • 用于电动调节的家具的控制装置
    • US09379536B2
    • 2016-06-28
    • US14342528
    • 2012-08-29
    • Stefan LukasMario Schenk
    • Stefan LukasMario Schenk
    • H02H9/00H02H7/20A61G7/018G05B19/042H02M1/00H02J9/06
    • H02H7/20A61G7/018G05B19/0428G05B2219/23316H02J9/061H02M2001/0032Y02B70/16Y02B70/3241Y04S20/227
    • A control means comprises a control segment (3) that is designed for driving an electrically adjustable piece of furniture and a switched-mode power supply unit (2) that supplies power to the control segment (3). The switched-mode power supply unit (2) features a switching regulator component (223) for controlling the switched-mode power supply unit and can be switched into a normal operating mode and into an idle mode. The switched-mode power supply unit (2) is designed for making available a supply voltage for the switching regulator component (223) in a clocked fashion with the aid of a start-up circuit (224) in the idle mode. The switched-mode power supply unit (2) features a power failure detection circuit (230) that is designed for detecting a failure of a line voltage applied to the input side of the switched-mode power supply unit (2) based on a signal within the start-up circuit (224) and for signaling this failure to the control segment (3).
    • 控制装置包括被设计用于驱动电可调整的家具的控制段(3)和向控制段(3)供电的开关式电源单元(2)。 开关型电源单元(2)具有用于控制开关模式电源单元的开关调节器组件(223),并且可以切换到正常操作模式并进入空闲模式。 开关型电源单元(2)被设计成借助于处于空闲模式的启动电路(224)以时钟方式为开关调节器组件(223)提供电源电压。 开关模式电源单元(2)具有电源故障检测电路(230),其被设计用于基于信号检测施加到开关模式电源单元(2)的输入侧的线路电压的故障 在启动电路(224)内并且用于将该故障发信号传给控制段(3)。
    • 4. 发明授权
    • Method and system for monitoring an industrial process
    • 监测工业过程的方法和系统
    • US09250772B2
    • 2016-02-02
    • US13858623
    • 2013-04-08
    • ABB Research Ltd.
    • Martin OlaussonSusanne TimsjoAnders Hanberg
    • G06F3/0484G05B19/042G05B19/409
    • G06F3/0484G05B19/042G05B19/409G05B2219/23316G05B2219/23434
    • A method for monitoring an industrial process with a graphical user interface of an operator panel. The graphical user interface is adapted to change between a default mode in which it presents a plurality of objects related to the industrial process, and a user-adapted mode in which a subset of the plurality of objects is presented. The subset of objects is selected based on a parameter value which is associated with each object of the plurality of objects. The graphical user interface enters the user-adapted mode by the method determining whether a time of inactivity of the operator panel exceeds a threshold value, and, provided that the threshold value has been exceeded, removing those objects of the plurality of objects on the graphical user interface which are not included in the subset of objects.
    • 一种用于使用操作面板的图形用户界面监视工业过程的方法。 图形用户界面适于在其呈现与工业过程相关的多个对象的默认模式和在其中呈现多个对象的子集的用户适配模式之间进行切换。 基于与多个对象的每个对象相关联的参数值来选择对象的子集。 图形用户界面通过确定操作面板的不活动时间是否超过阈值的方法进入用户适应模式,并且如果已经超过了阈值,则移除图形上的多个对象的那些对象 不包括在对象子集中的用户界面。
    • 6. 发明申请
    • SYSTEM AND METHOD FOR ENERGY DEVICE MANAGEMENT
    • 能源装置管理系统与方法
    • US20100318237A1
    • 2010-12-16
    • US12814295
    • 2010-06-11
    • Chad L. Maglaque
    • Chad L. Maglaque
    • G06F1/26
    • G05B19/0421G05B2219/23316G05B2219/25218G05B2219/25289G05B2219/2639G06Q10/06H02J3/382H02J3/383H02J3/386H02J3/387H02J13/0079H02J13/0086H02J2001/004H04L12/10Y02B70/3241Y02E10/563Y02E10/763Y02E40/72Y04S10/12Y04S10/123Y04S20/227
    • A system for managing energy device operation is disclosed. The system includes one or more network-enabled energy devices and an energy management system comprising at least one processor. The energy management system is to establish a network connection with each energy device via a first communication network, and to query each energy device to cause the energy management system to receive first information from each energy device via the first network. The first information includes, for each energy device, a first operating mode of the energy device. The first operating mode is a current operating mode of the energy device. The energy management system is to determine, for each energy device, a second operating mode based on at least one operational rule stored in a first database. For each energy device, when the second operating mode is different than the first operating mode, energy management system is to transmit an instruction to the energy device to change the first operating mode of the device to the second operating mode.
    • 公开了一种用于管理能量装置操作的系统。 该系统包括一个或多个网络能源设备和包括至少一个处理器的能量管理系统。 能量管理系统是通过第一通信网络与每个能量设备建立网络连接,并且查询每个能量设备以使得能量管理系统经由第一网络从每个能量设备接收第一信息。 对于每个能量装置,第一信息包括能量装置的第一操作模式。 第一种操作模式是能量装置的当前操作模式。 能量管理系统基于存储在第一数据库中的至少一个操作规则为每个能量装置确定第二操作模式。 对于每个能量装置,当第二操作模式不同于第一操作模式时,能量管理系统将向该能量装置发送指令以将装置的第一操作模式改变为第二操作模式。
    • 10. 发明申请
    • CONTROLS INTERFACE SOLUTION FOR ENERGY SAVINGS
    • 控制界面解决方案节能
    • US20110118893A1
    • 2011-05-19
    • US12946423
    • 2010-11-15
    • YOUSSEF A. LOLDJMAXIME CAYERTONY TONGMIROSLAV GELO
    • YOUSSEF A. LOLDJMAXIME CAYERTONY TONGMIROSLAV GELO
    • G06F1/26
    • G05B19/042G05B19/00G05B19/0405G05B2219/23316G05B2219/25286G05B2219/34306G05B2219/45031Y02P80/10Y02P80/114
    • Methods and apparatus for enhanced control over electronic device manufacturing systems are provided herein. In some embodiments, the integrated sub-fab system may employ Ethernet and/or RS232 Serial communications through an open platform of apparatus to achieve a reduced carbon footprint during electronic device manufacturing. For this example, the system could include a process tool set and controller linked by sensors or software interconnect with one or more sub-fab or local factory auxiliary systems that can be operated in one or more states of energy consumption. These one or more auxiliary systems can be switched between different levels of energy consumption, as required by the process, via the controller. For many auxiliary components or systems the integrated sub-fab system utilizes existing signal outputs, for others they may employ secondary sensors or monitors.
    • 本文提供了用于增强对电子设备制造系统的控制的方法和装置。 在一些实施例中,集成子晶圆系统可以通过设备的开放平台采用以太网和/或RS232串行通信,以在电子设备制造期间实现减少的碳足迹。 对于该示例,该系统可以包括通过传感器链接的过程工具集和控制器,或者可以在一个或多个能量消耗状态下操作的一个或多个子制造厂或本地工厂辅助系统进行软件互连。 这些一个或多个辅助系统可以通过控制器根据过程的要求在不同的能量消耗水平之间切换。 对于许多辅助部件或系统,集成子晶圆系统利用现有的信号输出,对于其他的,它们可以采用二次传感器或监视器。