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    • 1. 发明申请
    • MAGNETICALLY ADJUSTING COLOR-CONVERTING MATERIALS WITHIN A MATRIX AND ASSOCIATED DEVICES, SYSTEMS, AND METHODS
    • 在矩阵和相关设备,系统和方法中磁性调整颜色转换材料
    • US20130119419A1
    • 2013-05-16
    • US13294780
    • 2011-11-11
    • Sameer S. VadhavkarTim J. CorbettXiao Li
    • Sameer S. VadhavkarTim J. CorbettXiao Li
    • H01L33/50H01L33/44H01L31/18C09K11/80G01J3/46H01F1/00H01F1/06H01L31/0232H01L21/66
    • H01L33/502H01F1/083H01L33/504H01L33/507H01L2933/0041
    • Magnetically adjusting color-converting particles within a matrix and associated devices, systems, and methods are disclosed herein. A magnetic-adjustment process can include applying a magnetic field to a mixture including a non-solid matrix and a plurality of color-converting particles (e.g. magnetically anisotropic color-converting particles). The magnetic field can cause the plurality of color-converting particles to move into a generally non-random alignment (e.g., a generally non-random magnetic alignment and/or a generally non-random shape alignment) within the non-solid matrix. The non-solid matrix then can be solidified to form a solid matrix. A magnetic-adjustment process can be performed in conjunction with testing and/or product binning of solid-state radiation transducer devices. For example, a position, direction, strength, or duration of a magnetic field used to perform a magnetic-adjustment process can be controlled according to optical output collected from a solid-state radiation transducer device. Measuring the optical output and performing the magnetic-adjustment process can be at least partially concurrent.
    • 本文公开了磁矩调节矩阵内的颜色转换粒子和相关的装置,系统和方法。 磁调整方法可以包括将磁场施加到包括非固体基质和多个颜色转换颗粒(例如磁各向异性颜色转换颗粒)的混合物中。 磁场可以使多个颜色转换粒子移动到非固体基质内的大致非随机对准(例如,通常非随机的磁性取向和/或一般非随机的形状对准)中。 然后可以固化非固体基质以形成固体基质。 可以结合固态辐射换能器装置的测试和/或产品分组来执行磁调整过程。 例如,可以根据从固体辐射换能器装置收集的光输出来控制用于执行磁调整处理的磁场的位置,方向,强度或持续时间。 测量光输出并执行磁调整过程可以至少部分同步。
    • 2. 发明授权
    • Magnetically adjusting color-converting materials within a matrix and associated devices, systems, and methods
    • 磁矩调整矩阵内的颜色转换材料和相关的设备,系统和方法
    • US09039474B2
    • 2015-05-26
    • US13294780
    • 2011-11-11
    • Sameer S. VadhavkarTim J. CorbettXiao Li
    • Sameer S. VadhavkarTim J. CorbettXiao Li
    • F23Q23/08H01L33/50H01F1/08
    • H01L33/502H01F1/083H01L33/504H01L33/507H01L2933/0041
    • Magnetically adjusting color-converting particles within a matrix and associated devices, systems, and methods are disclosed herein. A magnetic-adjustment process can include applying a magnetic field to a mixture including a non-solid matrix and a plurality of color-converting particles (e.g. magnetically anisotropic color-converting particles). The magnetic field can cause the plurality of color-converting particles to move into a generally non-random alignment (e.g., a generally non-random magnetic alignment and/or a generally non-random shape alignment) within the non-solid matrix. The non-solid matrix then can be solidified to form a solid matrix. A magnetic-adjustment process can be performed in conjunction with testing and/or product binning of solid-state radiation transducer devices. For example, a position, direction, strength, or duration of a magnetic field used to perform a magnetic-adjustment process can be controlled according to optical output collected from a solid-state radiation transducer device. Measuring the optical output and performing the magnetic-adjustment process can be at least partially concurrent.
    • 本文公开了磁矩调节矩阵内的颜色转换粒子和相关的装置,系统和方法。 磁调整方法可以包括将磁场施加到包括非固体基质和多个颜色转换颗粒(例如磁各向异性颜色转换颗粒)的混合物中。 磁场可以使多个颜色转换粒子移动到非固体基质内的大致非随机对准(例如,通常非随机的磁性取向和/或一般非随机的形状对准)中。 然后可以固化非固体基质以形成固体基质。 可以结合固态辐射换能器装置的测试和/或产品分组来执行磁调整过程。 例如,可以根据从固体辐射换能器装置收集的光输出来控制用于执行磁调整处理的磁场的位置,方向,强度或持续时间。 测量光输出并执行磁调整过程可以至少部分同步。