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    • 1. 发明授权
    • Multi-segment light-emitting diode
    • 多段发光二极管
    • US06606175B1
    • 2003-08-12
    • US09268877
    • 1999-03-16
    • Jeffrey B. SampsellJames M. FlorenceLarry Alan Westerman
    • Jeffrey B. SampsellJames M. FlorenceLarry Alan Westerman
    • H04B1000
    • H04B10/1141
    • A power conservative multi-segment LED transmitter including a multi-segment LED with a plurality of independently addressable LED segments, each LED segment suitable for selectively emitting a beam segment. A controller selectively enables and disables the LED segments. Depending on whether the beam segments overlap or not and whether low or high power is supplied to the enabled LED segments, the combined resulting beam may be a low power steered beam, a power conservative steered beam, an overlapping low power intense steered beam, or an overlapping power conservative steered beam. The steerable multi-segment LED transmitter and receiver system preferably includes an “all enabled” state in which each of the LED segments are enabled and emit a respective beam segment; a “training” state in which the LED segments are selectively enabled and disabled and the receiver determines substantially detected beam segments; and a “steered” state in which only the LED segments emitting the substantially detected beam segments are enabled.
    • 一种功率保守的多段LED发射器,包括具有多个可独立寻址的LED段的多段LED,每个LED段适于选择性地发射光束段。 控制器选择性地启用和禁用LED段。 取决于光束段是否重叠,以及是否向使能的LED段提供低功率或高功率,所组合的光束可以是低功率转向光束,功率保持转向光束,重叠低功率强光转向光束或 重叠的保守转向梁。 可操纵的多段LED发射器和接收器系统优选地包括“全使能”状态,其中每个LED段被启用并且发射相应的光束段; “训练”状态,其中LED段被选择性地启用和禁用,并且接收器确定基本上检测的光束段; 和“转向”状态,其中只有发射基本上检测到的光束段的LED段被启用。
    • 2. 发明授权
    • Computer system with efficient memory usage for managing multiple application programs
    • 具有高效内存使用的计算机系统,用于管理多个应用程序
    • US06256714B1
    • 2001-07-03
    • US09270932
    • 1999-03-16
    • Jeffrey B. SampsellJon A. FairhurstEugene P. Martinez, Jr.Larry Alan Westerman
    • Jeffrey B. SampsellJon A. FairhurstEugene P. Martinez, Jr.Larry Alan Westerman
    • G06F1200
    • G06F9/44557
    • A first device includes a processor, a first memory, and a memory manager. A second device includes a second memory and a first application program, and a third device includes a third memory and a second application program. The first application program is loaded into the first memory to be executed by the processor. Application program variables related to the first application are stored in the first memory. The second application program to be executed by the processor is loaded into the memory in at least a partially overlapping manner of the first application program. The creation of second application program variables related to the second application program in the first memory is in a region not occupied by the first application program. Alternatively, the first and second application programs may be in the same device and/or memory.
    • 第一设备包括处理器,第一存储器和存储器管理器。 第二设备包括第二存储器和第一应用程序,并且第三设备包括第三存储器和第二应用程序。 第一应用程序被加载到第一存储器中以由处理器执行。 与第一个应用程序相关的应用程序变量存储在第一个存储器中。 要由处理器执行的第二应用程序以第一应用程序的至少部分重叠的方式被加载到存储器中。 在第一存储器中与第二应用程序相关的第二应用程序变量的创建在第一应用程序未占用的区域中。 或者,第一和第二应用程序可以在相同的设备和/或存储器中。
    • 5. 发明授权
    • Projection display system for reflective light valves
    • 反光灯投影显示系统
    • US06113239A
    • 2000-09-05
    • US148727
    • 1998-09-04
    • Jeffrey B. SampsellJames M. Florence
    • Jeffrey B. SampsellJames M. Florence
    • G03B33/12G02B27/18G02B27/28G02F1/13G02F1/1335G02F1/1347G03B21/00H04N9/31G03B21/14
    • H04N9/3105H04N9/3167
    • A projection display system for reflective light valves includes a light source for generating a light beam having RGB light components, wherein the red light component is p-polarized and the green and blue light components are s-polarized; a reflector structure having plural polarizing beam splitter and dichroic filters therein, wherein each PBS and DF reflects a preselected light component and transmits a different preselected light component, and a LCD panel for generating a light-component-specific image associated with each light component; and a projection lens for projecting an image combined from the light-component-specific images from the LCDs; wherein a light-component-specific image passes through one and only one PBS and through one and only one DF between the LCD and the projection lens.
    • 一种用于反射光阀的投影显示系统包括用于产生具有RGB光分量的光束的光源,其中红光分量为p偏振,绿和蓝光分量为s偏振光; 具有多个偏振分束器和二向色滤光器的反射器结构,其中每个PBS和DF反射预选的光分量并透射不同的预选光分量;以及LCD面板,用于产生与每个光分量相关联的光分量特异性图像; 以及投影透镜,用于投影从来自LCD的光分量特定图像组合的图像; 其中光分量特异性图像通过一个且仅一个PBS,并且通过LCD和投影透镜之间的一个且仅一个DF。
    • 6. 发明授权
    • Projection display system using polarized light
    • 投影显示系统采用偏振光
    • US06995917B1
    • 2006-02-07
    • US09289327
    • 1999-04-08
    • Jeffrey B. SampsellJames M. Florence
    • Jeffrey B. SampsellJames M. Florence
    • G02B27/14G02F1/1335G03B21/26
    • G02B27/123G02B27/145G02B27/149G02B27/283H04N5/7441H04N9/3105H04N9/3167
    • A projection display system using polarized light comprises a light source for generating a light beam having at least two light components, wherein the light components are polarized and at least one of the light components is polarized differently than another of the light components. The projection display system has a projection system having a plurality of polarized light modulators, each modulator generating a light-component-specific image associated with one of the light components. The projection display system also has a projection lens for projecting an image combined from the light-component-specific images from the modulators. The present invention also provides a polarization converter for use with a light source that generates a light beam having at least two light components. The polarization converter comprises an optics array capable of separating the light beam into at least one light component having a polarization that is different than another light component.
    • 使用偏振光的投影显示系统包括用于产生具有至少两个光分量的光束的光源,其中光分量被极化,并且至少一个光分量与另一个光分量不同地偏振。 投影显示系统具有具有多个偏振光调制器的投影系统,每个调制器产生与光分量之一相关联的光分量特定图像。 投影显示系统还具有用于投影从调制器的光分量特定图像组合的图像的投影透镜。 本发明还提供一种用于产生具有至少两个光分量的光束的光源的偏振转换器。 偏振转换器包括能够将光束分离成具有不同于另一光分量的偏振的至少一个光分量的光学阵列。
    • 8. 发明授权
    • Dual film light guide for illuminating displays
    • 用于照明显示屏的双膜光导
    • US08373821B2
    • 2013-02-12
    • US12795542
    • 2010-06-07
    • Jeffrey B. SampsellRussell W. GruhlkeMark MienkoGang XuIon Bita
    • Jeffrey B. SampsellRussell W. GruhlkeMark MienkoGang XuIon Bita
    • G02F1/1335
    • G02B6/0053G02B6/0038G02B26/001
    • A front light guide panel including a plurality of embedded surface features is provided. The front light panel is configured to deliver uniform illumination from an artificial light source disposed at one side of the font light panel to an array of display elements located behind the front light guide while allowing for the option of illumination from ambient lighting transmitted through the light guide panel. The surface embedded surface relief features create air pockets within the light guide panel. Light incident on the side surface of the light guide propagates though the light guide until it strikes an air/light material guide interface at one on the air pockets. The light is then turned by total internal reflection through a large angle such that it exits an output face disposed in front of the array of display elements.
    • 提供了包括多个嵌入表面特征的前导光板。 前面板被配置成将来自设置在字体灯面板的一侧的人造光源的均匀照明传送到位于前导光体后面的显示元件的阵列,同时允许从透过光的环境光照射的选择 导板。 表面嵌入式表面浮雕特征在导光板内形成气穴。 入射在光导的侧表面的光通过光导传播,直到其在空气袋上的空气/光材料引导界面上撞击。 然后光通过大的角度的全内反射转动,使得它离开布置在显示元件阵列前面的输出面。
    • 10. 发明申请
    • OPTICAL FEATURES FOR SOLAR CELLS
    • 太阳能电池的光学特性
    • US20110308609A1
    • 2011-12-22
    • US12817980
    • 2010-06-17
    • Jeffrey B. Sampsell
    • Jeffrey B. Sampsell
    • H01L31/00H01L31/18
    • H01L31/022425H01L31/0547H01L31/068H01L31/072H01L31/075Y02E10/52Y02E10/547Y02E10/548
    • Reflectors formed in front of a solar cell reduce loss from reflections from specular conductors formed in front of the photovoltaic material in the solar cell by reflecting light otherwise incident upon the conductors onto the photovoltaic material. In one embodiment, a solar cell includes a photovoltaic material having a front surface, a conductive bus line extending along a first direction, the conductive bus line being disposed over the front surface of the photovoltaic material, a primary reflector disposed on the bus line, the primary reflector comprising a first reflective surface obtusely angled relative to the front surface of the photovoltaic material to reflect light onto the photovoltaic material, and a first secondary reflector extending along the first direction, spaced apart from the conductive bus line, the first secondary reflector comprising at least one reflective surface to reflect a portion of light reflected from the primary reflector towards the photovoltaic material.
    • 形成在太阳能电池前面的反射器通过反射入射到光伏材料上的光而将太阳能电池中的光电材料前面形成的镜面导体的反射减少。 在一个实施例中,太阳能电池包括具有前表面的光伏材料,沿着第一方向延伸的导电总线,设置在光伏材料前表面上的导电总线,设置在总线上的主反射器, 所述主反射器包括相对于所述光伏材料的前表面钝角的第一反射表面以将光反射到所述光伏材料上,以及沿着所述第一方向延伸的第一次级反射器,与所述导电总线间隔开,所述第一次级反射器 包括至少一个反射表面以将从主反射器反射的光的一部分反射向光伏材料。