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    • 21. 发明申请
    • MULTIPLE-CHIP EXCITATION SYSTEMS FOR WHITE LIGHT EMITTING DIODES (LEDS)
    • 用于白光发光二极管(LED)的多芯片激励系统
    • WO2009114390A3
    • 2009-12-30
    • PCT/US2009036214
    • 2009-03-05
    • INTEMATIX CORPLI YI-QUNWANG GANGCHEN LI-DE
    • LI YI-QUNWANG GANGCHEN LI-DE
    • H01J1/62
    • H01L33/504C09K11/0883C09K11/7733C09K11/7734C09K11/7739C09K11/7774C09K11/7792F21K9/00F21V9/16H01L25/0753H01L33/50H01L2924/0002Y02B20/181H01L2924/00
    • Embodiments of the invention are directed toward white light illumination systems (so called 'white LEDs') that comprise a multi-chip excitation source and a phosphor package. In a two-chip source, the two LEDs may be UV-emitting and blue emitting, or blue-emitting and green-emitting. The phosphor package is configured to emit photoluminescence in wavelengths ranging from about 440 nm to about 700 nm upon co-excitation from the first and second radiation sources. The photoluminescence emitted by the phosphors is at least 40 percent of the total power in the white light illumination, and the portion of the total power in the white light illumination contributed by the first and second radiation sources (LEDs) is less than about 60 percent. This ratio can vary in alternative embodiments, and includes 50/50, 60/40, 70/30, and 80/20, respectively. The white light illumination emitted by the system has in one embodiment a color rendering index (CRI) greater than about 90.
    • 本发明的实施例针对包括多芯片激励源和磷光体封装的白光照明系统(所谓的“白色LED”)。 在双芯片源中,两个LED可以是紫外发射和蓝色发射,或蓝色发射和绿色发射。 磷光体封装被配置为在从第一和第二辐射源共同激发时发射范围从约440nm到约700nm的波长的光致发光。 由荧光体发射的光致发光是白光照明中总功率的至少40%,并且由第一和第二辐射源(LED)贡献的白光照明中的总功率部分小于约60% 。 该比率可以在替代实施例中变化,并且分别包括50 / 50,60 / 40,70 / 30和80/20。 在一个实施例中,由系统发射的白光照明具有大于约90的显色指数(CRI)。
    • 22. 发明申请
    • LIGHT EMITTING DIODE LIGHTING SYSTEM
    • 发光二极管照明系统
    • WO2008100277A2
    • 2008-08-21
    • PCT/US2007016128
    • 2007-07-16
    • INTEMATIX CORPLI YI-QUN
    • LI YI-QUN
    • H01J1/62F21V9/16
    • F21S6/002A61B1/0653A61B5/0084A61B5/4547F21S8/02F21S8/033F21S8/04F21S8/06F21V14/06F21Y2105/00F21Y2115/10G02B6/0008G02B6/0021G02B6/005
    • A lighting system for generating an illumination product comprises an excitation source, blue/UV LED, operable to generate excitation radiation and a remotely located phosphor, photo luminescent material. Excitation radiation is guided from the excitation source to the phosphor by a waveguiding medium, the waveguiding medium being configured such that the distance the radiation travels from the excitation source to the phosphor layer is at least one centimeter in length. The UV/blue excitation source provides excitation radiation to the phosphor(s), causing the phosphor(s) to photo luminesce, and it may also provide a component of the final illumination product. The configuration of the waveguide allows a greater flexibility in lighting system configurations, such as hanging lighting fixtures, desk lighting fixtures, floor standing lighting fixtures, desk lamps, track lighting, spot lighting, accent lighting, lighting panels, inspection lamps and endoscopes.
    • 用于产生照明产品的照明系统包括可操作以产生激发辐射的激发源蓝光/ UV LED和远距离定位的荧光体光致发光材料。 激励辐射通过波导介质从激发源引导到荧光体,波导介质被配置成使得辐射从激发源传播到荧光体层的距离长度至少为一厘米。 UV /蓝色激发源向荧光体提供激发辐射,使磷光体照射发光,并且还可以提供最终照明产品的部件。 波导的配置允许在诸如悬挂照明灯具,桌面照明灯具,落地式照明灯具,台灯,轨道照明,现场照明,重点照明,照明面板,检查灯和内窥镜等照明系统配置中具有更大的灵活性。
    • 23. 发明申请
    • SEMICONDUCTOR COLOR IMAGE SENSOR
    • 半导体彩色图像传感器
    • WO2008021444A3
    • 2008-04-03
    • PCT/US2007018163
    • 2007-08-14
    • INTEMATIX CORPLI YI-QUNCHENG SHIFANRYDE MAGNUSKO MIKE
    • LI YI-QUNCHENG SHIFANRYDE MAGNUSKO MIKE
    • H01L21/339
    • H04N9/045H01L27/14621H01L27/14627
    • A semiconductor color image sensor comprises: an array of semiconductor photo-sensors (CMOS or CCD) and a color filter array comprising an aray of red, green and blue filter elements in which each filter element is associated with a respective one of the photo-sensors. The sensor further comprises a phosphor (photo-luminescent) material associated with each of the blue filter elements and configured to absorb blue light and re-emit light of a longer wavelength range which is then incident on the photo-sensor associated with the blue filter element. Prefereably the phosphor material is selected such that light of the longer wavelength range substantially matches the spectral response of the photo-sensor. The image sensor can further comprise an array of micro-lenses for focusing light onto the photo-sensors of the image sensor, wherein each micro-lens is associated with a respective one of the photo-sensors.
    • 半导体彩色图像传感器包括:半导体光电传感器(CMOS或CCD)的阵列和包括红色,绿色和蓝色滤色器元件的滤色器阵列的滤色器阵列,其中每个滤光元件与相应的一个光敏元件相关联, 传感器。 传感器还包括与每个蓝色滤光器元件相关联的荧光体(光致发光)材料,并且被配置为吸收蓝色光并重新发射较长波长范围的光,然后入射到与蓝色滤色器相关联的光电传感器上 元件。 优选地选择荧光体材料,使得较长波长范围的光基本上与光传感器的光谱响应匹配。 图像传感器还可以包括用于将光聚焦到图像传感器的光电传感器上的微透镜阵列,其中每个微透镜与相应的光传感器相关联。
    • 26. 发明申请
    • REMOTELY RF POWERED COMFORMABLE THERMAL APPLICATORS
    • 远程射频功率可控热应用
    • WO2007061843A2
    • 2007-05-31
    • PCT/US2006044672
    • 2006-11-17
    • INTEMATIX CORPXIANG XIAO-DONGWANG GANGYANG HAITAOMELMAN JONATHANDIONNE GERALD FRANCIS
    • XIANG XIAO-DONGWANG GANGYANG HAITAOMELMAN JONATHANDIONNE GERALD FRANCIS
    • A61F2/00
    • A61N1/406A61K41/0052A61K49/1818
    • The present embodiments are directed to cancer therapy; specifically a technique called "nanoparticle ferromagnetic resonance heating," where ferromagnetic resonance heating in addition to an RF hyperthermia treatment is used to cause cancer cell apoptosis and necrosis. An apparatus for carrying out a ferromagnetic resonance heating treatment of a tumor, comprises a volume concentration of super paramagnetic particles contained within the interior of the tumor, the concentration ranging from about 0.1 to about 1 percent; a magnetic field source configured to deliver a gradient DC magnetic field to the region of the tumor; and an energy source configured to deliver to the tumor an RF field at a frequency ranging from about 100 to 200 MHz. The apparatus of claim 1, wherein the super paramagnetic particles are selected from the group consisting of maghemite (?-Fe 2 O 3 ) based compounds, and yttrium iron garnet (Y 3 Fe 5 O 12 ) based compounds.
    • 本实施例涉及癌症治疗; 具体地,称为“纳米颗粒铁磁共振加热”的技术,其中除了RF热疗处理之外的铁磁共振加热被用于引起癌细胞凋亡和坏死。 用于进行肿瘤的铁磁共振加热处理的装置包括肿瘤内部所含的超顺磁性颗粒的体积浓度,其浓度范围为约0.1%至约1%; 磁场源,被配置为向所述肿瘤的区域递送梯度DC磁场; 以及能量源,其被配置为以大约100至200MHz的频率向所述肿瘤输送RF场。 2.根据权利要求1所述的装置,其中所述超顺磁性粒子选自由以下物质组成的组:由磁赤铁矿(α-Fe 2 O 3 O 3)基化合物和钇铁石榴石(Y 3 5 12 12)基的化合物。