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    • 2. 发明申请
    • SOLAR-REDSHIFT SYSTEMS
    • 太阳能雷达系统
    • WO2013019330A1
    • 2013-02-07
    • PCT/US2012/043290
    • 2012-06-20
    • CORNING INCORPORATEDORSLEY, Timothy James
    • ORSLEY, Timothy James
    • H02N6/00
    • A01G9/02A01G33/00B82Y20/00C12M21/02C12M23/50C12M31/04C12M31/06G02B5/208G02B27/1006H01L31/035218H01L31/0543H01L31/0547H01L31/055Y02E10/52Y02P60/12Y10S977/774
    • Solar-redshift systems comprise an integral array of redshift modules, each having at least a focusing device, a target, and a quantum-dot vessel. The quantum-dot vessel contains quantum dots that emit light having an emission wavelength. The focusing device directs incident solar radiation through a focusing gap and toward the quantum-dot vessel, or into a slab waveguide and then toward the quantum-dot vessel, causing the quantum dots to emit redshifted light having the emission wavelength. The redshifted light is directed to the target, examples of which include a photovoltaic material or a living photosynthetic organism. The target has increased sensitivity or response to photons having the wavelength of the redshifted light. A trapping reflector component of the quantum-dot vessel prevents loss of redshifted light to the environment outside the solar-redshift system and allows undesirable infrared light to be removed from the system.
    • 太阳能 - 红移系统包括一个整体阵列的红移模块,每个红移模块至少有一个聚焦装置,一个靶和一个量子点容器。 量子点容器包含发射具有发射波长的光的量子点。 聚焦装置将入射的太阳辐射通过聚焦间隙引向量子点容器,或者进入平板波导,然后朝向量子点容器,导致量子点发射具有发射波长的红移光。 红移光指向目标,其实例包括光伏材料或活的光合生物。 目标已经增加了对具有红移光的波长的光子的灵敏度或响应。 量子点容器的捕获反射器部件防止红移红光移动到太阳 - 红移系统外的环境的损失,并允许不期望的红外光从系统中移除。
    • 6. 发明申请
    • PHASE TRANSITION COOLING IN LED LIGHTING DEVICES
    • LED照明设备中的相变过渡冷却
    • WO2014085420A1
    • 2014-06-05
    • PCT/US2013/071942
    • 2013-11-26
    • CORNING INCORPORATEDORSLEY, Timothy JamesTRUTNA, William Richard
    • ORSLEY, Timothy JamesTRUTNA, William Richard
    • H01L33/64
    • H01L33/648H01L2224/48091H01L2924/00014
    • A lighting device is provided comprising a chip-on-board (COB) light emitting diode (LED) light source, a phase transfer fluid disposed in a hermetically sealed phase transfer fluid chamber, a phase transfer fluid wicking structure, a distributed color conversion medium, and a glass containment plate. The color conversion medium is distributed in two dimensions over an emission field of the lighting device within the glass containment plate. The COB LED light source comprises a thermal heat sink framework and at least one LED and defines the hermetically sealed phase transfer fluid chamber in which the phase transfer fluid is disposed. The phase transfer fluid wicking structure is transparent to the operating wavelength bandwidth of the LED and is configured within the hermetically sealed phase transfer fluid chamber to encourage transport of phase transfer fluid, permit vaporization of transported phase transfer fluid, and receive condensed phase transfer fluid vapor.
    • 提供了一种照明装置,其包括:芯片上的(COB)发光二极管(LED)光源,设置在气密密相的相转移流体室中的相转移流体,相转移流体芯吸结构,分布式颜色转换介质 ,和玻璃容纳板。 颜色转换介质分布在玻璃容纳板内的照明装置的发射场上的二维中。 COB LED光源包括热散热器框架和至少一个LED并且限定其中设置有相转移流体的密封相转移流体室。 相转移流体芯吸结构对于LED的工作波长带宽是透明的,并且被配置在密封相转移流体室内,以促进相转移流体的输送,允许输送的相转移流体蒸发,并且接收凝结相转移流体蒸气 。
    • 7. 发明申请
    • TOUCH SCREEN ASSEMBLIES FOR ELECTRONIC DEVICES
    • 电子设备触摸屏组件
    • WO2013138458A1
    • 2013-09-19
    • PCT/US2013/030854
    • 2013-03-13
    • CORNING INCORPORATEDORSLEY, Timothy James
    • ORSLEY, Timothy James
    • G06F3/041H01L51/50
    • G06F3/044G06F2203/04103
    • In one embodiment, a touch screen assembly includes a sealing glass comprising ion-exchange strengthened glass having a first coefficient of thermal expansion CTE 1 . The assembly may also include a backplane glass comprising ion-exchangeable glass having a device surface, an underside and a second coefficient of thermal expansion CTE 2 , wherein CTE 2 is within +/- 15.0x10 -7 /°C of CTE 1 . The device surface of the backplane glass is bonded and hermetically sealed to the underside of the sealing glass with a frit seal which encloses a device area between the underside of the sealing glass and the device surface of the backplane glass. An array of metal oxide thin film transistors may be deposited on the device surface of the backplane glass in the device area, wherein the array of metal oxide thin film transistors have a third coefficient of thermal expansion CTE 3 that is within +/- 15.0x10 -7 /°C of CTE 1 .
    • 在一个实施例中,触摸屏组件包括具有第一热膨胀系数CTE1的离子交换强化玻璃的密封玻璃。 组件还可以包括背板玻璃,其包括具有器件表面,下侧和第二热膨胀系数CTE2的可离子交换的玻璃,其中CTE2在CTE1的+/- 15.0×10 -7 /℃以内。 背板玻璃的装置表面用密封玻璃的下侧粘合并密封到密封玻璃的下侧,玻璃料密封将密封玻璃的下侧和背板玻璃的装置表面之间的装置区域包围。 可以在器件区域中的背板玻璃的器件表面上沉积金属氧化物薄膜晶体管阵列,其中金属氧化物薄膜晶体管阵列具有在+/- 15.0×10 -3以内的第三热膨胀系数CTE3, 7 /℃CTE1。