Illuminating display systems
    131.
    发明授权
    Illuminating display systems 有权
    照明显示系统

    公开(公告)号:US08739440B2

    公开(公告)日:2014-06-03

    申请号:US13787066

    申请日:2013-03-06

    Abstract: An exemplary system comprises a power regulator and an emitting apparatus. The emitting apparatus is typically attached to or integrated with a display object, such as a merchandise package or container. A support structure, such as a point of purchase display, typically contains or supports one or more power regulators and display objects. The power regulator comprises a controller and a primary inductor, and the controller is adapted to provide a voltage or current to the primary inductor to generate a first primary inductor voltage. The emitting apparatus comprises an illumination source and a secondary inductor coupled to the illumination source. The illumination source is adapted to emit visible light when the power regulator is in an on state and when the secondary inductor is within a predetermined distance of the primary inductor. In exemplary embodiments, the first and second inductors are substantially planar.

    Abstract translation: 示例性系统包括功率调节器和发射设备。 发光装置通常附接到显示对象,例如商品包装或容器上或与显示对象集成。 支持结构,例如购买点显示,通常包含或支持一个或多个功率调节器和显示对象。 功率调节器包括控制器和初级电感器,并且控制器适于向初级电感器提供电压或电流以产生第一初级电感器电压。 发光装置包括照明源和耦合到照明源的次级电感器。 当功率调节器处于导通状态并且次级电感器在初级电感器的预定距离内时,照明源适于发射可见光。 在示例性实施例中,第一和第二电感器基本上是平面的。

    PRINTED ENERGY STORAGE DEVICE
    134.
    发明申请
    PRINTED ENERGY STORAGE DEVICE 有权
    印刷能源存储设备

    公开(公告)号:US20140099528A1

    公开(公告)日:2014-04-10

    申请号:US14050145

    申请日:2013-10-09

    Abstract: A printed energy storage device includes a first electrode including zinc, a second electrode including manganese dioxide, and a separator between the first electrode and the second electrode, the first electrode, second, electrode, and separator printed onto a substrate. The device may include a first current collector and/or a second current collector printed onto the substrate. The energy storage device may include a printed intermediate layer between the separator and the first electrode. The first electrode, and the second electrode may include 1-ethyl-3-methylimidazolium tetrafluoroborate (C2mimBF4). The first electrode and the second electrode may include an electrolyte having zinc tetrafluoroborate (ZnBF4) and 1-ethyl-3-methylimidazolium tetrafluoroborate (C2mimBF4). The first electrode, the second electrode, the first current collector, and/or the second current collector can include carbon nanotubes. The separator may include solid microspheres.

    Abstract translation: 印刷储能装置包括:第一电极,包括锌,第二电极,包括二氧化锰;第一电极和第二电极之间的隔膜;第一电极,第二电极和隔膜;印刷在基板上。 该器件可以包括印刷到衬底上的第一集电器和/或第二集电器。 能量存储装置可以包括在分离器和第一电极之间的印刷中间层。 第一电极和第二电极可以包括1-乙基-3-甲基咪唑鎓四氟硼酸盐(C2mimBF4)。 第一电极和第二电极可以包括具有四氟硼酸锌(ZnBF 4)和1-乙基-3-甲基咪唑鎓四氟硼酸盐(C2mimBF4)的电解质。 第一电极,第二电极,第一集电体和/或第二集电体可以包括碳纳米管。 分离器可以包括固体微球。

    Printable Composition for an Ionic Gel Separation Layer for Energy Storage Devices
    136.
    发明申请
    Printable Composition for an Ionic Gel Separation Layer for Energy Storage Devices 审中-公开
    用于能量存储设备的离子凝胶分离层的可印刷组合物

    公开(公告)号:US20140017557A1

    公开(公告)日:2014-01-16

    申请号:US13571302

    申请日:2012-08-09

    Abstract: Representative embodiments provide a composition for printing a liquid or gel separator utilized to separate and space apart first and second conductors or electrodes of an energy storage device, such as a battery or a supercapacitor. A representative composition comprises a plurality of particles, typically having a size (in any dimension) between about 0.5 to about 50 microns; a first, ionic liquid electrolyte; and a polymer or polymeric precursor. In another representative embodiment, the plurality of particles comprise diatoms, diatomaceous frustules, and/or diatomaceous fragments or remains. Another representative embodiment further comprises a second electrolyte different from the first electrolyte; the plurality of particles are comprised of silicate glass; the first and second electrolytes comprise zinc tetrafluoroborate salt in 1-ethyl-3-methylimidazolium tetrafluoroborate ionic liquid; and the polymer comprises polyvinyl alcohol (“PVA”) or polyvinylidene fluoride (“PVFD”). Additional components, such as additional electrolytes and solvents, may also be included.

    Abstract translation: 代表性的实施方案提供了用于印刷液体或凝胶分离器的组合物,其用于分离和分开能量存储装置(例如电池或超级电容器)的第一和第二导体或电极。 代表性组合物包含多个颗粒,通常具有约0.5至约50微米的尺寸(任何尺寸); 第一种离子液体电解质; 和聚合物或聚合物前体。 在另一个代表性的实施方案中,多个颗粒包括硅藻,硅藻土锥形体和/或硅藻质碎片或残留物。 另一个代表性的实施方案还包括不同于第一电解质的第二电解质; 多个颗粒由硅酸盐玻璃组成; 第一和第二电解质包括在1-乙基-3-甲基咪唑鎓四氟硼酸盐离子液体中的四氟硼酸锌盐; 聚合物包括聚乙烯醇(“PVA”)或聚偏二氟乙烯(“PVFD”)。 还可以包括另外的组分,例如附加的电解质和溶剂。

    ACTIVE LED MODULE
    137.
    发明申请
    ACTIVE LED MODULE 有权
    有源LED模块

    公开(公告)号:US20130221368A1

    公开(公告)日:2013-08-29

    申请号:US13737672

    申请日:2013-01-09

    Inventor: Bradley S. Oraw

    Abstract: LED modules are disclosed having a control MOSFET, or other transistor, in series with an LED. In one embodiment, a MOSFET wafer is bonded to an LED wafer and singulated to form thousands of active 3-terminal LED modules with the same footprint as a single LED. Despite the different forward voltages of red, green, and blue LEDs, RGB modules may be connected in parallel and their control voltages staggered at 60 Hz or greater to generate a single perceived color, such as white. The RGB modules may be connected in a panel for general illumination or for a color display. A single dielectric layer in a panel may encapsulate all the RGB modules to form a compact and inexpensive panel. Various addressing techniques are described for both a color display and a lighting panel. Various circuits are described for reducing the sensitivity of the LED to variations in input voltage.

    Abstract translation: 公开了具有与LED串联的控制MOSFET或其它晶体管的LED模块。 在一个实施例中,MOSFET晶片被结合到LED晶片并且被单片化以形成具有与单个LED相同的占空比的数千个有源3端子LED模块。 尽管红色,绿色和蓝色LED的正向电压不同,但是RGB模块可能并联连接,并且其控制电压以60Hz或更大的方式交错,以产生单个感知颜色,例如白色。 RGB模块可以连接在用于一般照明或彩色显示的面板中。 面板中的单个电介质层可以封装所有的RGB模块以形成紧凑且廉价的面板。 对于彩色显示器和照明面板都描述了各种寻址技术。 描述了各种电路,用于降低LED对输入电压变化的灵敏度。

    Method of Fabricating Static and Addressable Emissive Displays
    140.
    发明申请
    Method of Fabricating Static and Addressable Emissive Displays 审中-公开
    制造静态和可寻址发射显示器的方法

    公开(公告)号:US20120252302A1

    公开(公告)日:2012-10-04

    申请号:US13439655

    申请日:2012-04-04

    CPC classification number: H05B33/06 G09G3/30 G09G2300/0426 H05B33/10

    Abstract: The various embodiments of the invention provide an addressable or a static emissive display comprising a plurality of layers, including a first substrate layer, wherein each succeeding layer is formed by printing or coating the layer over preceding layers. Exemplary substrates include paper, plastic, rubber, fabric, glass, ceramic, or any other insulator or semiconductor. In an exemplary embodiment, the display includes a first conductive layer attached to the substrate and forming a first plurality of conductors; various dielectric layers; an emissive layer; a second, transmissive conductive layer forming a second plurality of conductors; a third conductive layer included in the second plurality of conductors and having a comparatively lower impedance; and optional color and masking layers.

    Abstract translation: 本发明的各种实施例提供了包括多个层的可寻址或静态发射显示器,其包括第一衬底层,其中每个后续层通过在先前层上印刷或涂覆该层而形成。 示例性基材包括纸,塑料,橡胶,织物,玻璃,陶瓷或任何其它绝缘体或半导体。 在示例性实施例中,显示器包括附接到基板并形成第一多个导体的第一导电层; 各种介电层; 发射层; 形成第二多个导体的第二透射导电层; 包括在所述第二多个导体中并且具有相对较低阻抗的第三导电层; 和可选的颜色和掩蔽层。

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