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    • 2. 发明申请
    • AUTOMATICALLY COMMISSIONING OF DEVICES OF A NETWORKED CONTROL SYSTEM
    • 网络控制系统设备的自动调试
    • WO2010097737A1
    • 2010-09-02
    • PCT/IB2010/050736
    • 2010-02-19
    • KONINKLIJKE PHILIPS ELECTRONICS N. V.VAN DER STOK, Petrus, D., V.FERI, LorenzoPASVEER, Willem, F.SCHENK, Tim, C., W.
    • VAN DER STOK, Petrus, D., V.FERI, LorenzoPASVEER, Willem, F.SCHENK, Tim, C., W.
    • H05B37/02
    • H05B37/0254H05B37/0272
    • The invention relates to automatically commissioning of devices of a networked control system, particularly to automatically commissioning (auto-commissioning) of light sources of a lighting system, where a control of light sources on an individual and local basis is required. A basic idea of the invention is to route commissioning messages through a grid, particularly an approximately rectangular grid of devices in that each device is able to receive commissioning messages from and to transmit commissioning messages to directly neighbored devices in the grid via light. An embodiment of the invention relates to a method for automatically commissioning of devices (10, 12, 14, 16, 18) of a networked control system, which comprises several devices arranged in a grid (20), wherein each device is adapted for routing messages, which were received from directly neighbored devices in the grid, to directly neighbored devices in the grid via light, wherein the commissioning comprises the acts of - transmitting a commissioning message (SlO), which comprises a hops counter, by a first device (10) to a second device (12), which is neighbored to the first device in a predetermined direction (22) in the grid, - receiving the commissioning message (S 12) from the first device by the second device, - updating the hops counter (S 14) by the second device and a location counter of the second device and - transmitting the commissioning message (S 16) with the updated hops counter to one or more third devices.
    • 本发明涉及自动调试网络化控制系统的设备,特别是自动调试(自动调试)照明系统的光源,其中需要个人和本地的光源的控制。 本发明的基本思想是通过电网,特别是近似矩形的设备网路路由调试消息,其中每个设备能够从光接收到来自网格中的直接相邻设备的调试消息并向其发送调试消息。 本发明的一个实施例涉及一种用于自动调试网络控制系统的设备(10,12,14,16,18)的方法,其包括布置在网格(20)中的若干设备,其中每个设备适于路由 从电网中的直接相邻设备接收的消息通过光直接与电网中的相邻设备相连,其中调试包括由第一设备(包括跳计数器)发送包括跳计数器的调试消息(SlO) 10)连接到与所述电网中的预定方向(22)相邻的所述第一设备的第二设备(12), - 由所述第二设备从所述第一设备接收所述调试消息(S12), - 更新所述跳 计数器(S14)和第二设备的位置计数器;以及 - 将更新的跳数计数器发送到一个或多个第三设备的调试消息(S16)。
    • 3. 发明申请
    • A PHOTOVOLTAIC SYSTEM FOR AN ELECTRONIC APPLIANCE
    • 一种用于电子器具的光伏系统
    • WO2010070607A2
    • 2010-06-24
    • PCT/IB2009/055820
    • 2009-12-17
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.LIFKA, HerbertPASVEER, Willem, F.
    • LIFKA, HerbertPASVEER, Willem, F.
    • H01L31/052
    • H01L31/055H01L31/0547Y02E10/52
    • This invention relates to a photovoltaic system for electronic appliance. The photovoltaic system comprises an energy concentrator having an outer layer (201) and an inner layer (202), the outer layer (201) adapted to gather incoming electromagnetic radiation into the energy concentrator (101) and the inner layer (202) being adapted for reflecting the incoming electromagnetic radiation such that the incoming electromagnetic radiation becomes concentrated within the energy concentrator (101). The system further comprises a solar cell (102) optically coupled to the energy concentrator (101), such that light concentrated in the energy concentrator is directed to the solar cell, the solar cell adapted to act as a power source for the electronic appliance (103). The outer layer (201) of the energy concentrator (101) forms part of an outer surface of the electronic appliance (103) and the inner layer (202) of the energy concentrator (101) is formed around a cavity for hosting electronic or mechanical components of the electronic appliance (103) and the energy concentrator is configured to reflect light through the energy concentrator (101) around at least a part of the cavity (305).
    • 本发明涉及一种用于电子设备的光伏系统。 光伏系统包括具有外层(201)和内层(​​202)的能量集中器,外层(201)适于将进入的电磁辐射收集到能量集中器(101)中,并且内层(202)适于 用于反射入射的电磁辐射,使得入射的电磁辐射集中在能量集中器(101)内。 该系统还包括光学耦合到能量集中器(101)的太阳能电池(102),使得集中在能量集中器中的光被引导到太阳能电池,太阳能电池适合用作电子设备的电源( 103)。 能量集中器(101)的外层(201)形成电子设备(103)的外表面的一部分,并且能量集中器(101)的内层(202)形成在用于托管电子或机械 电子设备(103)和能量集中器的部件被配置为将光通过能量集中器(101)反射到空腔(305)的至少一部分周围。
    • 5. 发明申请
    • A PHOTOVOLTAIC SYSTEM FOR AN ELECTRONIC APPLIANCE
    • 一种用于电子器具的光伏系统
    • WO2010070607A3
    • 2011-05-12
    • PCT/IB2009055820
    • 2009-12-17
    • KONINKL PHILIPS ELECTRONICS NVLIFKA HERBERTPASVEER WILLEM F
    • LIFKA HERBERTPASVEER WILLEM F
    • H01L31/052
    • H01L31/055H01L31/0547Y02E10/52
    • This invention relates to a photovoltaic system for electronic appliance. The photovoltaic system comprises an energy concentrator having an outer layer (201) and an inner layer (202), the outer layer (201) adapted to gather incoming electromagnetic radiation into the energy concentrator (101) and the inner layer (202) being adapted for reflecting the incoming electromagnetic radiation such that the incoming electromagnetic radiation becomes concentrated within the energy concentrator (101). The system further comprises a solar cell (102) optically coupled to the energy concentrator (101), such that light concentrated in the energy concentrator is directed to the solar cell, the solar cell adapted to act as a power source for the electronic appliance (103). The outer layer (201) of the energy concentrator (101) forms part of an outer surface of the electronic appliance (103) and the inner layer (202) of the energy concentrator (101) is formed around a cavity for hosting electronic or mechanical components of the electronic appliance (103) and the energy concentrator is configured to reflect light through the energy concentrator (101) around at least a part of the cavity (305).
    • 本发明涉及一种用于电子设备的光伏系统。 光伏系统包括具有外层(201)和内层(​​202)的能量集中器,外层(201)适于将进入的电磁辐射收集到能量集中器(101)中,并且内层(202)适于 用于反射入射的电磁辐射,使得入射的电磁辐射集中在能量集中器(101)内。 该系统还包括光学耦合到能量集中器(101)的太阳能电池(102),使得集中在能量集中器中的光被引导到太阳能电池,太阳能电池适合用作电子设备的电源( 103)。 能量集中器(101)的外层(201)形成电子设备(103)的外表面的一部分,并且能量集中器(101)的内层(202)形成在用于托管电子或机械 电子设备(103)和能量集中器的部件被配置为将光通过能量集中器(101)反射到空腔(305)的至少一部分周围。
    • 9. 发明申请
    • BIOMETRIC SENSOR
    • 生物传感器
    • WO2007060609A2
    • 2007-05-31
    • PCT/IB2006/054360
    • 2006-11-21
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.PASVEER, Willem, F.OUWERKERK, MartinOOSTVEEN, Jim, T.
    • PASVEER, Willem, F.OUWERKERK, MartinOOSTVEEN, Jim, T.
    • A61B5/0408
    • A61B5/0478A61B5/0408A61B5/04284A61B5/411A61B5/7203A61B2562/182
    • A bio metric sensor device (1) comprises: - a thin, flexible, layered sensor body (2); - a conductive sense plate (21); - a first non-conductive layer (41) between the sense plate and an outer surface (7); - a conductive shield plate (53) having a passage opening (54), overlaying the sense plate; - a second non-conductive layer (51) between the sense plate and the shield plate; - conductive circuit lines (73) on an inner surface (6); - a non-conductive separation layer (61, 71) between the shield plate and the circuit lines; - a signal processing circuit (100) mounted on the inner surface (6), the circuit (100) comprising a differential amplifier (110) having an input (111); - a conductive interconnector (82) crossing the second non-conductive layer (51) and the separation layer (61, 71), extending through the passage opening (54) of the shield plate (53), coupling the sense plate (21) and said input (111) of said amplifier (110).
    • 生物测量传感器装置(1)包括: - 薄的,柔性的,分层的传感器体(2); - 导电感测板(21); - 感测板和外表面(7)之间的第一非导电层(41); - 导电屏蔽板(53),具有覆盖所述感测板的通道开口(54); - 感测板和屏蔽板之间的第二非导电层(51); - 内表面(6)上的导电电路线(73); - 屏蔽板和电路线之间的非导电分离层(61,71); - 安装在所述内表面(6)上的信号处理电路(100),所述电路(100)包括具有输入端(111)的差分放大器(110) - 穿过所述第二非导电层(51)的导电互连器(82)和延伸穿过所述屏蔽板(53)的通道开口(54)的所述分离层(61,71),将所述感测板(21) 和所述放大器(110)的所述输入端(111)。