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    • 12. 发明授权
    • Light emitting diode package assembly that emulates the light pattern produced by an incandescent filament bulb
    • 发光二极管封装组件,其模拟由白炽灯丝灯泡产生的光图案
    • US07964883B2
    • 2011-06-21
    • US10788116
    • 2004-02-26
    • Joseph MazzochetteEdmar AmayaLin LiGreg E. Blonder
    • Joseph MazzochetteEdmar AmayaLin LiGreg E. Blonder
    • H01L33/00
    • F21V29/89F21K9/68F21V29/70F21Y2107/90F21Y2115/10H01L2224/45144H01L2224/48091H01L2224/48465H01L2924/19107H05K1/053H01L2924/00014H01L2924/00
    • In accordance with the invention, a light emitting diode package assembly is provided to emulate the pattern of light produced by an incandescent filament bulb. The package assembly is composed of a substrate for LEDs comprising a heat-sinking base having a pair of opposing major surfaces. Each major surface has an overlying of thermally conducting ceramic and an outer surface layer of light reflective material. Disposed on each surface layer is a plurality of LEDs. Advantageously, the LEDs are arranged on the surface in a configuration of low mutual obstruction. Advantageously, reflecting elements transverse to each surface layer are positioned and shaped to reflect a substantial portion of the light emitted from the LEDs that would otherwise enter neighboring LEDs. In a preferred embodiment, the LEDs are arranged in the general form of a closed curve, and a transverse reflector is disposed in the interior of the curve. Alternatively, the LEDs can be arranged in a linear array. The assembly can be efficiently fabricated by back-to-back assembly of two similar subassemblies.
    • 根据本发明,提供一种发光二极管封装组件以模拟由白炽灯丝灯泡产生的光的图案。 封装组件由用于LED的衬底组成,其包括具有一对相对的主表面的散热底座。 每个主表面具有覆盖导热陶瓷和光反射材料的外表面层。 在每个表面层上设置有多个LED。 有利地,LED以低相互阻塞的构造布置在表面上。 有利地,横向于每个表面层的反射元件被定位和成形以反射从LED发射的光的相当大部分,否则其将进入相邻的LED。 在优选实施例中,LED以闭合曲线的一般形式布置,并且横向反射器设置在曲线的内部。 或者,LED可以以线性阵列布置。 可以通过两个相似的子组件的背靠背组装来有效地制造组件。
    • 14. 发明申请
    • STORAGE MEDIUM CASE
    • 存储介质盒
    • US20090055844A1
    • 2009-02-26
    • US11842558
    • 2007-08-21
    • Greg E. Blonder
    • Greg E. Blonder
    • G11B17/03
    • G11B33/0422Y10T70/5004
    • A case for storing a storage medium device, such as a compact disc or digital video disc, wherein the storage medium itself is used to transition the case from an unlocked position to a locked position, and vice versa. The case includes a front cover having a pocket, wherein when the storage medium is loaded in the pocket, the storage medium may be accessed via a latch window provided in the front cover, and moved to transition the case between the locked and unlocked positions. The latch window also provides the user with visual access to the interior of the pocket to determine whether a storage medium is loaded therein.
    • 用于存储诸如光盘或数字视频盘的存储介质设备的情况,其中存储介质本身用于将壳体从解锁位置转换到锁定位置,反之亦然。 壳体包括具有凹部的前盖,其中当存储介质被装载在口袋中时,存储介质可以经由设置在前盖中的闩锁窗口进入,并且移动以使壳体在锁定位置和解锁位置之间转换。 闩锁窗口还为用户提供对口袋内部的视觉访问,以确定是否在其中装载存储介质。
    • 17. 发明授权
    • LCD display with microtextured back reflector and method for making same
    • 具有微反射反射器的LCD显示器及其制造方法
    • US5245454A
    • 1993-09-14
    • US816405
    • 1991-12-31
    • Greg E. Blonder
    • Greg E. Blonder
    • G02F1/1333G02F1/1335
    • G02F1/133553Y10S359/90
    • Applicant has discovered a method for microembossing reflector surfaces with controlled reflecting patterns too small to be resolved by the unaided eye but capable of providing controlled reflection characteristics superior to uncontrolled random deformation. The result is a microtextured reflector of having dispersion characteristics of enhanced uniformity and a display device which can be read over an enhanced range of viewing angles. Specifically, a reflector in accordance with the invention comprises a base plane and a pattern of microelements having maximum lateral dimensions less than 125 micrometers and smooth, continuous mold-formed surfaces arising from the base plane. Such a reflector surface can be made using a master formed by covering a substrate with photoresist, exposing the resist to define a pattern of microelements having maximum lateral dimensions less than about 125 micrometers and heating the substrate to partially melt the resist elements thereby obtaining smooth-surfaced microelements. The master can be used to form an embossing surface or mold, which, in turn, can be used to make a microtextured reflecting surfaces. A preferred reflecting surface is composed of closely packed, smooth-surfaced spherical segments having diameters of twenty-five microns, altitudes of four microns. Advantageously random segments are disposed between successive spherical segments. The preferred reflector possesses reflecting characteristics superior to conventional isotropic reflectors.