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    • 41. 发明授权
    • Light source assembly and LCD
    • 光源组件和LCD
    • US08520163B2
    • 2013-08-27
    • US13318350
    • 2011-05-26
    • Gang Yu
    • Gang Yu
    • G02F1/1335
    • G02F1/133604
    • The present invention provides a light source assembly, which comprises a light tube, a conductive nesting element, a first insulative insert and a second insulative insert. A nesting body of the conductive nesting element is fitted over and fixed to an end of a tube body of the light tube and is electrically connected to a pin of the light tube, and a flap of the conductive nesting element is disposed on the nesting body and extends in a direction lateral to the light tube. The first insulative insert is formed with a first through-hole and a blind hole. The nesting body is inserted through the first through-hole, and the flap is disposed and supported in the blind hole from a side away from the light tube. The second insulative insert comprises an insulative body and a conductive elastic piece disposed inside the insulative body. Both ends of the conductive elastic piece are exposed from two opposite sides of the insulative body, and one end of the conductive elastic piece abuts against the flap located in the blind hole. The present invention further provides a liquid crystal display (LCD). With the above arrangement, damage to the light tube is prevented when a lead is welded onto the pin of the light tube, so the light source assembly and the LCD of the present invention can save the cost.
    • 本发明提供了一种光源组件,其包括光管,导电嵌套元件,第一绝缘插入件和第二绝缘插入件。 导电嵌套元件的嵌套体装配并固定在光管的管体的端部上并与光管的销电连接,并且导电嵌套元件的翼片设置在嵌套体上 并且沿着光管的横向方向延伸。 第一绝缘插入件形成有第一通孔和盲孔。 嵌套体通过第一通孔插入,并且从远离光管的一侧将挡板设置并支撑在盲孔中。 第二绝缘插入件包括绝缘体和设置在绝缘体内部的导电弹性片。 导电弹性片的两端从绝缘体的两个相对侧露出,并且导电性弹性片的一端与位于盲孔中的折片抵接。 本发明还提供一种液晶显示器(LCD)。 通过上述布置,当将引线焊接到光管的引脚上时,防止对光管的损坏,因此本发明的光源组件和LCD可以节省成本。
    • 42. 发明申请
    • Backlight Module
    • 背光模块
    • US20130208505A1
    • 2013-08-15
    • US13508728
    • 2012-03-16
    • Gang Yu
    • Gang Yu
    • F21V7/04
    • G02B6/0088G02B6/0055G02F1/133615
    • A backlight module includes a backboard, a light guide board arranged inside the backboard, and a side reflection plate arranged inside the backboard. The backboard includes a bottom plate and a plurality of side plates connected to the bottom plate. The light guide board includes a bottom surface facing the bottom plate, a top surface distant from the bottom plate, and a plurality of side surfaces connecting between the bottom surface and the top surface. The plurality of side surfaces comprises a plurality of passive light exit surfaces. The side reflection plate is made of an elastic material. The side reflection plate is positioned against both one of the passive light exit surfaces of the light guide board and one of the side plates of the backboard that opposes said one of the passive light exit surfaces.
    • 背光模块包括背板,布置在背板内部的导光板和布置在背板内侧的侧反射板。 背板包括底板和连接到底板的多个侧板。 导光板包括面向底板的底面,远离底板的顶表面和连接在底表面和顶表面之间的多个侧表面。 多个侧表面包括多个被动光出射表面。 侧面反射板由弹性材料制成。 侧面反射板抵靠光导板的一个被动光出射面和与所述一个被动光出射表面相对的背板的一个侧板。
    • 43. 发明申请
    • Backlight Module
    • 背光模块
    • US20130208503A1
    • 2013-08-15
    • US13508703
    • 2012-03-19
    • Gang Yu
    • Gang Yu
    • F21V13/02F21V29/00G09F13/04
    • G09F13/18G09F2013/222
    • The present invention provides a backlight module, which includes a backboard, a light bar mounted on the backboard, and a thermo-sensitive heat conduction material interposed between the backboard and the light bar. The thermo-sensitive heat conduction material functions to automatically adjust thermal conductivity coefficient with variation of temperature so that different portions of the light bar have different thermal conductivity coefficients in order to control the temperature of the whole light bar in a predetermined range to ensure desired performance of thermal conduction and further ensuring temperature uniformity of the whole backlight module and preventing the occurrence of luminance lowering of the whole backlight module due to excessive local high temperature.
    • 本发明提供了一种背光模块,其包括背板,安装在背板上的灯条和插入在背板和光棒之间的热敏导热材料。 热敏导热材料的功能是通过温度变化来自动调节导热系数,使得光棒的不同部分具有不同的导热系数,以便将整个光棒的温度控制在预定范围内,以确保所需的性能 并进一步保证整个背光模块的温度均匀性,并防止由于过度的局部高温而引起的整个背光模块的亮度降低。
    • 44. 发明申请
    • POSITIONING HOOK OF OPTICAL FILM OF BACKLIGHT MODULE
    • 背光模块光学定位钩
    • US20130140418A1
    • 2013-06-06
    • US13389553
    • 2011-12-23
    • Gang Yu
    • Gang Yu
    • H04N5/65
    • G02F1/133608G02F2201/54
    • A positioning hook of an optical film of a backlight module, wherein the backlight module has a frame, and the optical film is disposed on an inner side of the frame. The positioning hook includes a first hook portion and a second hook portion corresponding with each other. The first hook portion is disposed at a first end of the positioning hook for penetrating through and hooking on an edge of the optical film. The second hook portion is disposed at a second end of the positioning hook opposite to the first end for hooking on an edge of the frame, so that the optical film is disposed and fixed in the frame.
    • 背光模块的光学膜的定位钩,其中背光模块具有框架,并且光学膜设置在框架的内侧。 定位钩包括彼此对应的第一钩部和第二钩部。 第一钩部设置在定位钩的第一端,用于穿透并钩住光学膜的边缘。 第二钩部设置在与第一端相对的定位钩的第二端,用于钩在框架的边缘上,使得光学膜被布置并固定在框架中。
    • 45. 发明授权
    • Double self-aligned metal oxide TFT
    • 双自对准金属氧化物TFT
    • US08435832B2
    • 2013-05-07
    • US13406824
    • 2012-02-28
    • Chan-Long ShiehGang Yu
    • Chan-Long ShiehGang Yu
    • H01L21/00
    • H01L29/7869H01L21/02554H01L21/02565H01L29/42384H01L29/66969H01L29/78621
    • A method of fabricating MOTFTs on transparent substrates includes positioning opaque gate metal on the front surface of a transparent substrate and depositing transparent gate dielectric, transparent metal oxide semiconductor material, and passivation material on the gate metal and the surrounding area. Portions of the passivation material are exposed from the rear surface of the substrate. Exposed portions are removed to define a channel area overlying the gate area. A relatively thick conductive metal material is selectively deposited on the exposed areas of the semiconductor material to form thick metal source/drain contacts. The selective deposition includes either plating or printing and processing a metal paste.
    • 在透明基板上制造MOTFT的方法包括在透明基板的前表面上定位不透明栅极金属,并在栅极金属和周围区域上沉积透明栅极电介质,透明金属氧化物半导体材料和钝化材料。 钝化材料的一部分从基板的后表面露出。 去除暴露部分以限定覆盖栅极区域的沟道区域。 相对厚的导电金属材料被选择性地沉积在半导体材料的暴露区域上以形成厚的金属源极/漏极触点。 选择性沉积包括电镀或印刷和加工金属浆料。
    • 46. 发明申请
    • DOUBLE SELF-ALIGNED METAL OXIDE TFT
    • 双重自对准金属氧化物TFT
    • US20120300147A1
    • 2012-11-29
    • US13366503
    • 2012-02-06
    • Chan-Long ShiehGang Yu
    • Chan-Long ShiehGang Yu
    • G02F1/136
    • H01L29/7869H01L21/02554H01L21/02565H01L27/1225H01L27/1259H01L29/45H01L29/66969H01L29/78606
    • A method of fabricating metal oxide TFTs on transparent substrates includes the steps of positioning an opaque gate metal area on the front surface of the substrate, depositing transparent gate dielectric and transparent metal oxide semiconductor layers overlying the gate metal and a surrounding area, depositing transparent passivation material on the semiconductor material, depositing photoresist on the passivation material, exposing and developing the photoresist to remove exposed portions, etching the passivation material to leave a passivation area defining a channel area, depositing transparent conductive material over the passivation area, depositing photoresist over the conductive material, exposing and developing the photoresist to remove unexposed portions, and etching the conductive material to leave source and drain areas on opposed sides of the channel area.
    • 在透明基板上制造金属氧化物TFT的方法包括以下步骤:在衬底的前表面上定位不透明栅极金属区域,沉积覆盖栅极金属和周围区域的透明栅极电介质和透明金属氧化物半导体层,沉积透明钝化 在所述半导体材料上沉积光致抗蚀剂,在所述钝化材料上沉积光致抗蚀剂,曝光和显影所述光致抗蚀剂以去除暴露部分,蚀刻所述钝化材料以留下限定沟道区的钝化区,在所述钝化区上沉积透明导电材料, 导电材料,曝光和显影光致抗蚀剂以去除未曝光部分,并且蚀刻导电材料以在沟道区域的相对侧上留下源极和漏极区域。
    • 47. 发明授权
    • Self-aligned metal oxide TFT with reduced number of masks
    • 具有减少掩模数量的自对准金属氧化物TFT
    • US08273600B2
    • 2012-09-25
    • US13195882
    • 2011-08-02
    • Chan-Long ShiehGang YuFatt Foong
    • Chan-Long ShiehGang YuFatt Foong
    • H01L21/00
    • H01L29/7869H01L21/02554H01L21/02565
    • A method of fabricating MOTFTs on transparent substrates by positioning opaque gate metal on the substrate front surface and depositing gate dielectric material overlying the gate metal and a surrounding area and metal oxide semiconductor material on the dielectric material. Depositing selectively removable etch stop material on the semiconductor material and photoresist on the etch stop material to define an isolation area in the semiconductor material. Removing uncovered portions of the etch stop. Exposing the photoresist from the substrate rear surface using the gate metal as a mask and removing exposed portions leaving the etch stop material overlying the gate metal covered. Etching the semiconductor material to isolate the TFT. Selectively etching the etch stop layer to leave a portion overlying the gate metal defining a channel area. Depositing and patterning conductive material to form source and drain areas on opposed sides of the channel area.
    • 一种在透明基板上制造MOTFT的方法,该方法是将不透明栅极金属定位在衬底前表面上,并沉积覆盖在栅极金属上的栅介质材料以及介电材料上的周围区域和金属氧化物半导体材料。 在半导体材料和蚀刻停止材料上的光致抗蚀剂上沉积选择性可移除的蚀刻停止材料以限定半导体材料中的隔离区域。 去除蚀刻停止件的未覆盖部分。 使用栅极金属作为掩模从基板后表面露出光致抗蚀剂,并去除暴露部分,留下覆盖栅极金属的蚀刻停止材料。 蚀刻半导体材料以隔离TFT。 选择性地蚀刻蚀刻停止层以留下覆盖栅极金属的部分限定沟道区域。 沉积和图案化导电材料以在通道区域的相对侧上形成源区和漏区。
    • 49. 发明授权
    • Two-terminal switching devices and their methods of fabrication
    • 两端开关器件及其制造方法
    • US08193594B2
    • 2012-06-05
    • US13015013
    • 2011-01-27
    • Gang YuChan-Long ShiehHsing-Chung Lee
    • Gang YuChan-Long ShiehHsing-Chung Lee
    • H01L21/00H01L47/00H01L29/04
    • H01L29/861G02F1/1365G02F1/167H01L29/22H01L29/417H01L29/786H01L45/00H01L51/0035H01L51/0579H01L51/0587
    • Two-terminal switching devices characterized by high on/off current ratios and by high breakdown voltage are provided. These devices can be employed as switches in the driving circuits of active matrix displays, e.g., in electrophoretic, rotating element and liquid crystal displays. The switching devices include two electrodes, and a layer of a broad band semiconducting material residing between the electrodes. According to one example, the cathode comprises a metal having a low work function, the anode comprises an organic material having a p+ or p++ type of conductivity, and the broad band semiconductor comprises a metal oxide. The work function difference between the cathode and the anode material is preferably at least about 0.6 eV. The on/off current ratios of at least 10,000 over a voltage range of about 15 V can be achieved. The devices can be formed, if desired, on flexible polymeric substrates having low melting points.
    • 提供了具有高导通/截止电流比和高击穿电压特性的两端开关器件。 这些器件可以用作有源矩阵显示器的驱动电路中的开关,例如在电泳,旋转元件和液晶显示器中。 开关器件包括两个电极和位于电极之间的宽带半导体材料层。 根据一个示例,阴极包括具有低功函数的金属,阳极包括具有p +或p ++类型的导电性的有机材料,并且宽带半导体包括金属氧化物。 阴极和阳极材料之间的功函数差异优选为至少约0.6eV。 可以实现在约15V的电压范围内的至少10,000的开/关电流比。 如果需要,可以在具有低熔点的柔性聚合物基材上形成装置。