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    • 23. 发明申请
    • A LOUVER ASSEMBLY AND A LIGHTING DEVICE COMPRISING THE LOUVER ASSEMBLY
    • 一个LOUVER组件和一个包含LOUVER组件的照明设备
    • WO2013093745A1
    • 2013-06-27
    • PCT/IB2012/057339
    • 2012-12-14
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.
    • JI, HangfengPENG, ShengCHEN, Yawen
    • F21V11/04
    • F21V11/04
    • The invention proposes a louver assembly (12, 22). The louver assembly (12, 22) comprises a stringer (121, 221) extending in a longitudinal direction; a plurality of blades (122, 222) spaced apart from one another, each of which is connected to the stringer (121, 221) at the upper edge thereof and extends substantially transversely to the stringer (121, 221), the plurality of blades (122, 222) being capable of directing the light emitted by the light source (11, 21); wherein one part of the plurality of blades (122, 222) are configured to be adjustable such that at least part of the light emitted by the light source (11, 21) can be redirected into a desired direction, while the other part of the plurality of blades (122, 222) are configured to be non-adjustable. The invention also provides a lighting device (10, 20) comprising the louver assembly (12, 22) and a lighting system (30) comprising a plurality of lighting devices (10, 20).
    • 本发明提出了一种百叶窗组件(12,22)。 百叶窗组件(12,22)包括沿纵向方向延伸的纵梁(121,221); 多个叶片(122,222)彼此间隔开,每个叶片在其上边缘处连接到桁条(121,221),并且基本上横向于桁条(121,221)延伸,所述多个叶片 (122,222)能够引导由所述光源(11,21)发射的光; 其中所述多个叶片(122,222)中的一部分被配置为可调节的,使得由所述光源(11,21)发射的光的至少一部分可被重定向到期望的方向,而所述另一部分 多个叶片(122,222)被配置为不可调节。 本发明还提供一种包括百叶窗组件(12,22)和包括多个照明装置(10,20)的照明系统(30)的照明装置(10,20)。
    • 25. 发明申请
    • PROTOCOLS FOR VISIBLE LIGHT COMMUNICATIONS
    • 可见光通信协议
    • WO2013093721A1
    • 2013-06-27
    • PCT/IB2012/057233
    • 2012-12-12
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.
    • RIETMAN, RonaldDAVIES, Robert James
    • H04L29/06H04W28/06H04B10/116
    • H04B10/116H04L69/04H04L69/22
    • The invention relates to the field of IEEE 802.15.4 based networks, and in particular to methods and devices for transmitting and receiving messages in IEEE 802.15.4 based networks. The existing IEEE 802.15.4 standard is further improved and adapted to better fit the properties of a network of lighting devices. The improvements and adaptations of the existing IEEE 802.15.4 standard allow for more flexible addressing. Bits which are indicative of use of address fields and/or whether one or two frame control fields is/are present in the ordered data portions of the message to be transmitted are defined by the device transmitting the message in the IEEE 802.15.4 based network. Existing features of the existing IEEE 802.15.4 standard protocol are retained.
    • 本发明涉及基于IEEE 802.15.4的网络领域,特别涉及用于在基于IEEE 802.15.4的网络中发送和接收消息的方法和设备。 现有的IEEE 802.15.4标准进一步改进,适用于更好地适应照明设备网络的属性。 现有IEEE 802.15.4标准的改进和改进允许更灵活的寻址。 指示使用地址字段的位和/或一个或两个帧控制字段是否存在于要发送的消息的有序数据部分中的设备由在基于IEEE 802.15.4的网络中发送消息的设备定义 。 保留现有IEEE 802.15.4标准协议的现有特性。
    • 29. 发明申请
    • X-RAY DETECTOR
    • X射线探测器
    • WO2013093684A2
    • 2013-06-27
    • PCT/IB2012/057009
    • 2012-12-06
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.PHILIPS INTELLECTUAL PROPERTY&STANDARDS GMBH
    • HERRMANN, Christoph
    • G01T1/17G01N23/04G01T1/208G01T1/247G01T1/2985
    • The present invention relates to an x-ray detector comprising a sensor unit (200, 300) for detecting incident x-ray radiation comprising a number of sensor elements (230, 311-314 ), a counting channel (240) per sensor element for obtaining a count signal by counting photons or charge pulses generated in response to the incident x-ray radiation since a beginning of a measurement interval, an integrating channel (250) per sensor element for obtaining an integration signal representing the total energy of radiation detected since the beginning of the measurement interval, and a processing unit (260) for estimating, from the integration signals of the sensor elements (321), count signals of sensor elements (311, 312) whose counting channel has been saturated during the measurement interval.
    • 本发明涉及一种包括用于检测入射X射线辐射的传感器单元(200,300)的X射线检测器,包括多个传感器元件(230,311-314),每个传感器元件的计数通道(240),用于 通过计数从测量间隔的开始起响应于入射的X射线辐射而生成的光子或充电脉冲来获得计数信号,每个传感器元件的积分通道(250),用于获得表示自从检测到的辐射的总能量的积分信号 测量间隔的开始,以及用于根据传感器元件(321)的积分信号估计在测量间隔期间其计数通道已经饱和的传感器元件(311,312)的计数信号的处理单元(260)。