会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 72. 发明申请
    • PERFUSION IMAGING
    • 灌注成像
    • WO2013061202A2
    • 2013-05-02
    • PCT/IB2012/055594
    • 2012-10-15
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.
    • CARMI, RazLAMASH, Yechiel
    • A61B6/00
    • G06T7/0012A61B5/026A61B6/032A61B6/486A61B6/507A61B6/5217
    • A perfusion imaging data processor (122) includes an agent peak characteristic-time determiner (206) configured to determine two or more agent peak characteristic-times respectively for two or more circulatory sub-systems represented in a same sub-set of voxels of a set of time-series data of perfusion imaging data, an agent peak argument determiner (210)configured to determine an agent peak argument for each of the two or more agent peak characteristic-times,an agent peak argument relation determiner (212) configured to determine a relationship between the agent peak arguments of the two or more agent peak characteristic-times, and a perfusion map generator (214) configured to generate, based on the determined relationship and the perfusion imaging data, at least one perfusion map, wherein the at least one perfusion map includes volumetric image data visually presenting at least one of a relationship or a difference between the two or more circulatory sub-systems.
    • 灌注成像数据处理器(122)包括代理峰值特征 - 时间确定器(206),其被配置为分别确定在同一子集的体素中表示的两个或更多个循环子系统的两个或更多个代理峰特征时间 一组代理峰值参数确定器(210),被配置为确定所述两个或多个代理峰值特征时间中的每一个的代理峰值参数;代理峰值参数关系确定器(212),被配置为 确定两个或多个代理峰值特征时间的代理峰值参数与被配置为基于确定的关系和灌注成像数据生成至少一个灌注图的灌注图生成器(214)之间的关系,其中, 至少一个灌注图包括视觉上呈现两个或多个循环子系统之间的关系或差异中的至少一个的体积图像数据。
    • 74. 发明申请
    • LIGHT-EMITTING ARRANGEMENT
    • 发光布置
    • WO2013061193A1
    • 2013-05-02
    • PCT/IB2012/055474
    • 2012-10-10
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.
    • HIKMET, Rifat Ata MustafaBIJLSMA, AlbertVAN BOMMEL, Ties
    • F21V9/16F21V13/02F21Y103/00
    • F21K9/56F21V7/005F21V9/30F21V13/02F21V13/08F21V29/70F21Y2101/00F21Y2103/10F21Y2115/10
    • A light-emitting arrangement (100) comprises: a reflective member (101) having a reflective surface (102); at least one light-emitting diode (103) arranged on the reflective surface of the reflective member, the at least one light-emitting diode being adapted to emit light of a first wavelength; and a wave length converting member (104) comprising a first wavelength converting material adapted to convert light of the first wavelength into light of a second wavelength. The wavelength converting member is arranged on the reflective member and having a top face (105)oriented parallel to the reflective surface of the reflective member, and having a first side face (106) and a second side face (107)each arranged between the top face and the reflective member on a respective side of the at least one light- emitting diode, and wherein the top face is arranged at a vertical distance (V1) from a light- emitting surface (108) of the at least one light-emitting diode. By adapting the properties, dimensions and/or orientation of the faces of the wavelength converting member according to the invention, a desirable light distribution from the light-emitting arrangement is achieved.
    • 发光装置(100)包括:具有反射表面(102)的反射构件(101); 布置在所述反射构件的反射表面上的至少一个发光二极管(103),所述至少一个发光二极管适于发射第一波长的光; 以及包括适于将第一波长的光转换为第二波长的光的第一波长转换材料的波长转换构件(104)。 波长变换部件配置在反射部件上,具有与反射部件的反射面平行的顶面(105),并具有第一侧面(106)和第二侧面(107),第一侧面(106)和第二侧面 上表面和所述反射构件在所述至少一个发光二极管的相应侧上,并且其中所述顶面布置成与所述至少一个发光二极管的发光表面(108)垂直的距离(V1) 发光二极管。 通过适应根据本发明的波长转换构件的表面的性质,尺寸和/或取向,实现了从发光装置的期望的光分布。
    • 76. 发明申请
    • DRIVER FOR CONNECTING LED TO ELECTRONIC BALLAST
    • 驱动器将LED连接到电子镇流器
    • WO2013057669A1
    • 2013-04-25
    • PCT/IB2012/055652
    • 2012-10-17
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.
    • TAO, Haimin
    • H05B33/08
    • H05B33/0809Y02B20/383Y02B20/386
    • To allow an electronic ballast (3) of a fluorescent tube lamp or a similar lamp to be replaced by a light emitting diode circuit (2) without removing the electronic ballast (3), a driver (1) is provided with a first circuit (10) for detuning a resonant tank of the electronic ballast (3). The first circuit (10) comprises a serial connection of a capacitor (11) and a bidirectional switch (12). The serial connection is coupled to the electronic ballast (3) for receiving an alternating current signal. The driver (1) is provided with a second circuit (20) for providing a direct current signal to the light emitting diode circuit (2). The second circuit (20) comprises a rectifier with inputs coupled to the serial connection and with outputs coupled to the light emitting diode circuit (2). Further, the driver (1) is provided with a third circuit (30) for providing a control signal to the first circuit (10) for controlling an amount of power supplied to the light emitting diode circuit (2).
    • 为了允许荧光管灯或类似灯的电子镇流器(3)由发光二极管电路(2)代替而不移除电子镇流器(3),驱动器(1)设置有第一电路( 10)用于使电子镇流器(3)的谐振槽失谐。 第一电路(10)包括电容器(11)和双向开关(12)的串联连接。 串联连接耦合到电子镇流器(3),用于接收交流信号。 驱动器(1)设置有用于向发光二极管电路(2)提供直流信号的第二电路(20)。 第二电路(20)包括具有耦合到串行连接的输入并且耦合到发光二极管电路(2)的输出的整流器。 此外,驱动器(1)设置有用于向第一电路(10)提供控制信号的第三电路(30),用于控制提供给发光二极管电路(2)的功率量。
    • 77. 发明申请
    • LED WAFER BONDED TO CARRIER WAFER FOR WAFER LEVEL PROCESSING
    • LED波形焊接到移动式水平加工的载体波形
    • WO2013057668A1
    • 2013-04-25
    • PCT/IB2012/055651
    • 2012-10-17
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.
    • SCHIAFFINO, StefanoAKRAM, Salman
    • H01L33/00
    • H01L33/0079H01L33/0095
    • An LED wafer comprises semiconductor layers and LED electrodes on a bottom surface of the LED wafer. The LED wafer is bonded to a carrier wafer. In a first embodiment, the carrier wafer is fully processed prior to the bonding. In a second embodiment, the carrier wafer is processed after the bonding. In the second embodiment, the LED wafer is bonded to the carrier wafer using a polymer bonding layer. Holes are then etched through the carrier wafer to expose the LED electrodes and then filled with a metal for electrically contacting the LED electrodes and forming bottom electrodes on the carrier wafer. The LED wafer is further processed, such as by removing the epitaxial growth substrate, roughening the surface for increased light extraction, depositing a phosphor, encapsulating, and forming lenses. The bonded wafers are then singulated to form surface mounted LED dies.
    • LED晶片包括在LED晶片的底表面上的半导体层和LED电极。 LED晶片结合到载体晶片。 在第一实施例中,载体晶片在接合之前被完全加工。 在第二实施例中,在接合之后处理载体晶片。 在第二实施例中,使用聚合物接合层将LED晶片接合到载体晶片。 然后通过载体晶片蚀刻孔,以暴露LED电极,然后填充用于电接触LED电极并在载体晶片上形成底部电极的金属。 进一步处理LED晶片,例如通过去除外延生长衬底,使表面粗糙化以增加光提取,沉积磷光体,封装和形成透镜。 接合的晶片然后被分开以形成表面安装的LED管芯。
    • 79. 发明申请
    • PHOTON COUNTING DETECTOR
    • 光电计数检测器
    • WO2013057645A2
    • 2013-04-25
    • PCT/IB2012/055554
    • 2012-10-12
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.PHILIPS INTELLECTUAL PROPERTY & STANDARDS GMBH
    • STEADMAN BOOKER, RogerLUHTA, Randall, PeterHERRMANN, Christoph
    • H05G1/26G01N23/046G01T1/17G01T1/24G01T1/247G01T1/2985G01T7/005
    • An imaging system (300) includes a detector array (314)with direct conversion detector pixels that detect radiation traversing an examination region of the imaging system and generate a signal indicative of the detected radiation, a pulse shaper (316) configured to alternatively process the signal indicative of detected radiation generated by the detector array or a set of test pulses having different and known heights that correspond to different and known energy levels and to generate output pulses having heights indicative of the energy of the processed detected radiation or set of test pulses, and a thresholds adjuster (330) configured to analyze the heights of the output pulses corresponding to the set of test pulses in connection with the heights of set of test pulses and a set of predetermined fixed energy thresholds and generate a threshold adjustment signal indicative of a baseline based on a result of the analysis.
    • 成像系统(300)包括具有直接转换检测器像素的检测器阵列(314),其检测穿过成像系统的检查区域并产生指示检测到的辐射的信号的辐射;脉冲整形器(316),被配置为交替地处理 指示由检测器阵列产生的检测到的辐射的信号或具有对应于不同和已知能级的不同和已知高度的一组测试脉冲,并产生具有指示经处理的检测到的辐射或一组测试脉冲的能量的高度的输出脉冲 ,以及阈值调整器(330),其被配置为分析与所述一组测试脉冲相对应的输出脉冲的高度以及一组预定的固定能量阈值,并且生成指示 基于分析结果的基准。
    • 80. 发明申请
    • MAGNETIC FIELD PROBE FOR MRI WITH A FLUOROELASTOMER OR A SOLUTION OF A FLUORINE -CONTAINING COMPOUND
    • 具有荧光体的MRI的磁场探针或氟化物化合物的溶液
    • WO2013057643A1
    • 2013-04-25
    • PCT/IB2012/055548
    • 2012-10-12
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.
    • FUDERER, MihaPIKKEMAAT, Jeroen, Alphons
    • G01R33/24G01R33/565G01R33/58G01R33/44
    • G01R33/5601G01R33/24G01R33/34046G01R33/443G01R33/56563G01R33/58
    • A method of measuring a magnetic field within a magnetic resonance imaging system (300) comprising a magnet (304) with an imaging zone (308) and a radio-frequency transceiver (316). The magnetic resonance imaging system further comprises a magnetic field probe (322) located within the imaging zone. The magnetic field probe comprises a fluorine sample (404) comprising any one of the following: a fluoroelastomer (700), a fluorine containing ionic liquid (600), and a solution of a fluorine containing compound. The field probe further comprises an antenna (406) for manipulating the magnetic spins of the fluorine sample and for receiving fluorine magnetic resonance data from the fluorine sample. The antenna is connected to the radio-frequency transceiver. The method comprises the steps of acquiring (100, 200) the fluorine magnetic resonance data using the magnetic resonance imaging system; and calculating (102, 206) a magnetic field strength (344) using the fluorine magnetic resonance data.
    • 一种测量磁共振成像系统(300)内的磁场的方法,包括具有成像区(308)和射频收发器(316)的磁体(304)。 磁共振成像系统还包括位于成像区内的磁场探测器(322)。 磁场探针包括含氟物质(700),含氟离子液体(600)和含氟化合物溶液中的任何一种的氟样品(404)。 场探头还包括用于操纵氟样品的磁自旋并用于从氟样品接收氟磁共振数据的天线(406)。 天线连接到射频收发器。 该方法包括使用磁共振成像系统获取(100,200)氟磁共振数据的步骤; 以及使用氟磁共振数据计算(102,206)磁场强度(344)。