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    • 4. 发明授权
    • Molding, production method therefor, part for electronic devices and electronic device
    • 成型及其制造方法,电子设备和电子设备部件
    • US09556513B2
    • 2017-01-31
    • US13818050
    • 2011-07-27
    • Wataru IwayaTakeshi Kondo
    • Wataru IwayaTakeshi Kondo
    • C23C14/48B29C59/14B05D7/04B05D1/00C08J7/04C08J7/12
    • C23C14/48B05D1/62B05D7/04B05D2252/02B29C59/14B29C2059/147C08J7/045C08J7/047C08J7/123C08J2367/02C08J2433/12C08J2483/16Y10T428/31667
    • The invention is a formed article including a gas barrier layer, the gas barrier layer including a surface layer part that is formed of a material that includes at least a carbon atom, an oxygen atom, and a silicon atom, the surface layer part having a carbon atom content rate of more than 0 and not more than 70%, an oxygen atom content rate of 10 to 70%, a nitrogen atom content rate of 0 to 35%, and a silicon atom content rate of 20 to 55%, based on a total content rate of carbon atoms, oxygen atoms, nitrogen atoms, and silicon atoms; a method for producing the formed article; an electronic device member including the formed article; and an electronic device comprising the electronic device member. The formed article of the invention exhibits an excellent gas barrier capability, excellent transparency, and excellent bending resistance. The method for producing a formed article of the invention can efficiently, safely, and conveniently produce the formed article of the invention. The electronic device member of the invention may suitably be used for electronic devices such as displays and solar cells.
    • 本发明是一种包含气体阻隔层的成形制品,所述阻气层包括由至少包含碳原子,氧原子和硅原子的材料形成的表面层部分,所述表面层部分具有 碳原子含有率大于0且不超过70%,氧原子含量率为10〜70%,氮原子含量率为0〜35%,硅原子含有率为20〜55%,基于 碳原子,氧原子,氮原子和硅原子的总含量比; 一种生产成形品的方法; 包括所述成形制品的电子装置构件; 以及包括电子设备构件的电子设备。 本发明的成型体具有优异的阻气性,优异的透明性和优异的耐弯曲性。 本发明的成型体的制造方法能够有效,安全,方便地制造本发明的成型体。 本发明的电子设备构件可以适用于诸如显示器和太阳能电池的电子设备。
    • 6. 发明授权
    • Luminescent composition and inorganic electroluminescent sheet using the same
    • 发光组合物和使用其的无机电致发光片
    • US08890400B2
    • 2014-11-18
    • US12993610
    • 2009-05-18
    • Satoshi NaganawaTakashi MoriokaNaoki TayaTakeshi KondoKazue SaitoYuko IwamotoShinichi HoshiYumiko Matsubayashi
    • Satoshi NaganawaTakashi MoriokaNaoki TayaTakeshi KondoKazue SaitoYuko IwamotoShinichi HoshiYumiko Matsubayashi
    • H01J1/62H01J63/04H05B33/10C09K11/02H05B33/14H05B33/20
    • H05B33/10C09K11/02C09K11/584H05B33/14H05B33/20
    • The present invention provides a luminescent composition which is capable of providing an inorganic electroluminescent sheet with a high productivity at low costs in an efficient manner, and has a desired light transmittance (transparency) when no electric voltage is applied thereto, an inorganic electroluminescent sheet obtained from the luminescent composition which can be mass-produced, and a process for producing the inorganic electroluminescent sheet. The present invention relates to a luminescent composition including an inorganic electroluminescent substance and a binder resin, wherein a content of the inorganic electroluminescent substance is not less than 0.5 part by mass and less than 100 parts by mass on the basis of 100 parts by mass of the binder resin; and an inorganic electroluminescent sheet including at least a first transparent substrate, a first transparent electrode, an inorganic electroluminescent layer, a first transparent electrode and a second transparent substrate which are successively laminated in this order, wherein the inorganic electroluminescent layer is formed from the above luminescent composition, and the inorganic electroluminescent sheet has a light transmittance of 60% or more as measured at a wavelength of 550 nm under a non-light emitting condition.
    • 本发明提供一种发光组合物,其能够以低成本有效地提供高生产率的无机电致发光片,并且当不施加电压时具有期望的透光率(透明度),获得的无机电致发光片 从可以大量生产的发光组合物和无机电致发光片的制造方法。 本发明涉及包含无机电致发光物质和粘合剂树脂的发光组合物,其中无机电致发光物质的含量不小于0.5质量份且小于100质量份,基于100质量份 粘合剂树脂; 以及至少包括依次层叠的第一透明基板,第一透明电极,无机电致发光层,第一透明电极和第二透明基板的无机电致发光片,其中无机电致发光层由上述形成 发光组合物,无机电致发光片在非发光条件下的波长550nm下的透光率为60%以上。
    • 8. 发明授权
    • Power conversion device
    • 电源转换装置
    • US08482245B2
    • 2013-07-09
    • US12933206
    • 2009-03-19
    • Takeshi KondoKatsutoshi Miyazaki
    • Takeshi KondoKatsutoshi Miyazaki
    • H02P27/04
    • B60L11/1861B60L11/005B60W2510/244H01M10/44H02M3/1582Y02T10/7005Y02T10/7022Y02T10/7044Y02T10/705
    • A power conversion device in which an inverter for controlling a load is connected to an alternating current power system, and arranged to perform an electric power assist by connecting a direct-current power assist device having a chopper and a charge device to a direct-current circuit of the inverter. The device including a setting section to set charge and discharge target values in accordance with a sensed value of the direct-current voltage of the inverter; a charge control section to perform a charge control based on the charge target value; a discharge control section to perform a discharge control based on the discharge target value; and an instantaneous-low high-speed-compensation section to estimate an electric power corresponding to a direct-current sensed voltage of the inverter, and to output a value to the discharge control section which is obtained by dividing the estimated value by the direct-current sensed voltage.
    • 一种电力转换装置,其中用于控制负载的逆变器连接到交流电力系统,并且被布置成通过将具有斩波器和充电装置的直流辅助装置连接到直流电来执行电力辅助 逆变器电路。 所述装置包括根据所述逆变器的直流电压的感测值来设定充放电目标值的设定部; 充电控制部,其基于所述充电目标值进行充电控制; 放电控制部,其基于所述放电目标值进行放电控制; 以及用于估计与逆变器的直流感测电压相对应的电力的瞬时低速高速补偿部,并且通过将所述估计值除以所述直流输出而获得的所述放电控制部输出值, 电流检测电压。
    • 10. 发明申请
    • SCREEN PRINTING LINE AND SCREEN PRINTING METHOD
    • 屏幕打印线和屏幕打印方法
    • US20130055911A1
    • 2013-03-07
    • US13643567
    • 2011-04-25
    • Manabu MizunoTakeshi KondoMitsuaki Kato
    • Manabu MizunoTakeshi KondoMitsuaki Kato
    • B41F15/18
    • B41F15/08B41F15/0881B41F15/26B41M1/12H05K3/1233H05K13/0061
    • A screen printing line with higher utility is provided. In a screen printing line including a plurality of screen printing machines and a plurality of shuttle conveyors each provided between any adjacent two of the plurality of screen printing machines, each of the screen printing machines includes: a main body; a front conveyor having a substrate support device; a rear conveyor configured to allow passage of a circuit substrate; a printing device configured to carry out screen printing on the circuit substrate supported by the substrate support device. Also, each of the plurality of shuttle conveyors includes a movable conveyor movable between a position continuous to the front conveyor and a position continuous to the rear conveyor.
    • 提供了具有更高实用性的丝网印刷线。 在包括多个丝网印刷机和多个往复输送机的丝网印刷线中,每个丝网印刷机均设置在多个丝网印刷机中的相邻的两个丝网印刷机之间,每个丝网印刷机包括:主体; 具有基板支撑装置的前传送带; 后传送器,其构造成允许电路基板通过; 打印装置,被配置为在由所述基板支撑装置支撑的所述电路基板上进行丝网印刷。 此外,多个梭式输送机中的每一个包括可在与前输送机连续的位置和与后输送机连续的位置之间移动的可移动输送机。