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    • 2. 发明授权
    • Image display
    • 图像显示
    • US08320119B2
    • 2012-11-27
    • US12649398
    • 2009-12-30
    • Nobuyuki IsoshimaKohei MiyoshiMika RiYutaka YamadaToshihiro TsutsuiTeppei TanakaHidenao KubotaYuzo Nishinaka
    • Nobuyuki IsoshimaKohei MiyoshiMika RiYutaka YamadaToshihiro TsutsuiTeppei TanakaHidenao KubotaYuzo Nishinaka
    • H05K7/20
    • H05K7/20972
    • For improving a cooling efficiency of a display panel in a flat-type image display, various substrates and an image display element are disposed within a thin-sized housing thereof, including: a display panel; a chassis supporting the display panel from a rear surface side thereof; a front surface-side cover on a front side of the display panel; a rear surface-side cover on a rear side of the display panel; an image display element connected to the display panel; a display driver substrate connected to the display panel, and on a surface thereof opposite to the chassis are provided circuit parts; a power source substrate, supplying driving power to the display driver substrate and the image display element, and on a surface thereof opposite to the chassis are provided circuit parts thereof; and a first insulator board opposite to the display driver substrates and the power source substrate of the chassis.
    • 为了提高平面型图像显示器中的显示面板的冷却效率,将各种基板和图像显示元件设置在其薄型壳体内,包括:显示面板; 从其后表面侧支撑显示面板的底盘; 在所述显示面板的前侧的前表面侧盖; 在所述显示面板的后侧的后表面侧盖; 连接到显示面板的图像显示元件; 连接到显示面板的显示驱动器基板及其与底座相对的表面设置电路部分; 提供驱动电力到显示驱动器基板和图像显示元件的电源基板以及与其相反的表面上的电路基板的电路部分; 以及与显示器驱动器基板和底盘的电源基板相对的第一绝缘体板。
    • 3. 发明申请
    • IMAGE DISPLAY
    • 图像显示
    • US20100172098A1
    • 2010-07-08
    • US12649398
    • 2009-12-30
    • Nobuyuki IsoshimaKohei MiyoshiMika RiYutaka YamadaToshihiro TsutsuiTeppei TanakaHidenao KubotaYuzo Nishinaka
    • Nobuyuki IsoshimaKohei MiyoshiMika RiYutaka YamadaToshihiro TsutsuiTeppei TanakaHidenao KubotaYuzo Nishinaka
    • H05K7/20
    • H05K7/20972
    • A flat-type image display, such as, a plasma display, a LCD display, an OLED display, etc., in particular, for improving a cooling efficiency of a display panel, various kinds of substrates and an image display element, within the thin-sized housing thereof, comprises: a display panel; a chassis, which supports the display panel from a rear surface side thereof; a front surface-side cover, which is provided on a front side of the display panel; a rear surface-side cover, which is provided on a rear side of the display panel; an image display element connected with the display panel; a display driver substrate, which is connected with the display panel, and on a surface of which opposite to the chassis are provided circuit parts thereof; a power source substrate, which supplies driving power to the display driver substrate and the image display element, and on a surface of which opposite to the chassis are provided circuit parts thereof; and a first insulator board, which is provided at a position opposite to the display driver substrates and the power source substrate of the chassis.
    • 特别是用于提高显示面板,各种基板和图像显示元件的冷却效率的平面型图像显示器,例如等离子体显示器,LCD显示器,OLED显示器等 薄型壳体包括:显示面板; 底盘,其从后表面侧支撑显示面板; 前表面侧盖,其设置在所述显示面板的前侧; 后表面侧盖,其设置在所述显示面板的后侧; 与显示面板连接的图像显示元件; 与显示面板连接的显示驱动器基板及其与底座相反的表面设置电路部分; 提供电源基板,其向显示驱动器基板和图像显示元件提供驱动电力,并且在与其相反的表面上设置电源基板的电路部分; 以及第一绝缘体板,其设置在与显示驱动器基板和底架的电源基板相对的位置。
    • 4. 发明授权
    • Liquid crystal display device
    • 液晶显示装置
    • US08363179B2
    • 2013-01-29
    • US12912866
    • 2010-10-27
    • Hidenao KubotaKazuhiro KaizakiShigeyuki SasakiTakeshi MochizukiToshihiro Tsutsui
    • Hidenao KubotaKazuhiro KaizakiShigeyuki SasakiTakeshi MochizukiToshihiro Tsutsui
    • G02F1/1333
    • G02B6/008G02B6/0083G02B6/0085G02B6/009G02F1/133603G02F2001/133613
    • A liquid crystal display device with improved thermal exhaustion property, enabling a thickness reduction, includes a backlight including light sources illuminating a liquid crystal panel from a back face, and a chassis holding the backlight. The backlight includes: plural light-source units each including a combination of a LED emitting light in a direction parallel to a display surface of the panel, a wiring board mounted with the LED, and a light-guide plate having translucency for guiding the LED light toward the panel; a metal chassis supporting the light-source units; and a thermally conductive sheet tightly inserted between the metal chassis and a reverse side of the wiring board opposite to the LED-mounted face. A wiring pattern is formed on the reverse side. The metal chassis and the wiring pattern located within a predetermined distance of the LED outer periphery are connected through the thermally conductive sheet.
    • 具有改善的热耗尽特性的能够实现厚度减小的液晶显示装置包括背光,其包括从背面照射液晶面板的光源和保持背光的底座。 背光源包括:多个光源单元,每个光源单元包括在平行于面板的显示表面的方向上发光的LED的组合;安装有LED的布线板;以及具有用于引导LED的透光性的导光板 光朝面板; 支撑光源单元的金属底盘; 以及导热片,其紧密地插入在金属底座和与LED安装面相对的布线板的相反侧。 在相反侧形成布线图案。 位于LED外周的预定距离内的金属底盘和布线图案通过导热片连接。
    • 6. 发明授权
    • Rankine cycle apparatus
    • 兰金循环仪
    • US07159400B2
    • 2007-01-09
    • US10953343
    • 2004-09-30
    • Toshihiro TsutsuiSyogo KawajiriMakoto UdaHiroyoshi Taniguchi
    • Toshihiro TsutsuiSyogo KawajiriMakoto UdaHiroyoshi Taniguchi
    • F22D1/00
    • F01K9/00F01K23/065
    • When a flow of a working medium stagnates in an expander or evaporator of a Rankine cycle apparatus including a closed working medium circulation circuit, a high pressure exceeding an allowable maximum pressure level of the expander or evaporator is produced within the closed working medium circulation circuit. In such a case, the water-phase working medium is first discharged via relief valves out of the circulation circuit, so that the pressure within the circulation circuit can be lowered. Then, once vapor within the evaporator, having been lowered in temperature and pressure, flows backward within the closed working medium circulation circuit, the vapor is also discharged via the relief valves out of the circulation circuit. In this way, the pressure within the expander or evaporator can be reliably prevented from exceeding the allowable maximum pressure level.
    • 当工作介质的流动停滞在包括封闭的工作介质循环回路的兰金循环设备的膨胀器或蒸发器中时,在封闭的工作介质循环回路内产生超过膨胀机或蒸发器的容许最大压力水平的高压。 在这种情况下,水相加工介质首先通过溢流阀排出循环回路,从而可以降低循环回路内的压力。 然后,一旦蒸发器内的蒸气已经降低了温度和压力,就在封闭的工作介质循环回路内向后流动,蒸汽也经由溢流阀排出循环回路。 以这种方式,可以可靠地防止膨胀机或蒸发器内的压力超过容许最大压力水平。