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    • 83. 发明申请
    • ORGANIC EL DISPLAY APPARATUS AND DRIVING METHOD THEREFOR
    • 有机EL显示装置及其驱动方法
    • US20070229428A1
    • 2007-10-04
    • US11693931
    • 2007-03-30
    • Katsumi NakagawaSomei KawasakiMasami IsekiYutaka Inaba
    • Katsumi NakagawaSomei KawasakiMasami IsekiYutaka Inaba
    • G09G3/36
    • G09G3/3233G09G2300/0819G09G2300/0861G09G2310/0262G09G2320/043
    • An organic EL display apparatus has a driving circuit. In the driving circuit, the source and drain of a driving transistor and the anode and cathode of an organic EL device are connected in series between voltage sources. A current passes between the source and drain of the driving transistor and between the anode and cathode of the organic EL device in accordance with a voltage between the gate and source of the driving transistor. Consequently, the organic EL device emits light. In order to store the voltage in the capacitor, a constant voltage source is connected to the gate of the driving transistor and the above-described series connection is disconnected at the source of the driving transistor and connected to a signal source. Then, a current signal output from the signal source passes between the source and drain of the driving transistor, and charges are stored in a capacitor in accordance with the current signal.
    • 有机EL显示装置具有驱动电路。 在驱动电路中,驱动晶体管的源极和漏极以及有机EL器件的阳极和阴极串联连接在电压源之间。 根据驱动晶体管的栅极和源极之间的电压,电流在驱动晶体管的源极和漏极之间以及有机EL器件的阳极和阴极之间通过。 因此,有机EL器件发光。 为了将电压存储在电容器中,将恒定电压源连接到驱动晶体管的栅极,并且上述串联连接在驱动晶体管的源极处断开并连接到信号源。 然后,从信号源输出的电流信号在驱动晶体管的源极和漏极之间通过,并且根据电流信号将电荷存储在电容器中。
    • 85. 发明授权
    • Process for fabricating array of photovoltaic elements connected in
series
    • 串联连接的光电元件阵列的制造工艺
    • US5798284A
    • 1998-08-25
    • US647730
    • 1996-05-15
    • Katsumi Nakagawa
    • Katsumi Nakagawa
    • H01L31/04H01L27/142H01L31/20H01L31/18
    • H01L31/208H01L31/046H01L31/0463H01L31/206Y02E10/50Y02P70/521Y10S136/29
    • Disclosed is a process for fabricating an array of photovoltaic elements connected in series, which can be used as a high-efficiency solar battery, at low cost and with high reliability. The process for fabricating the array of photovoltaic elements connected in series is characterized in that a step (.alpha.) for forming insulating strips of second electrode material is carried out by immersing in a solution a substrate having a first electrode thereon, and on which the second electrode is deposited, and an opposed electrode of a concentrated electric field type positioned opposite the surface of the second electrode in the vicinity thereof and applying a voltage between the first electrode and the opposed electrode. Further, it is characterized in that a step (.beta.) for electrochemically passivating electrical defect regions in a photovoltaic layer is carried out by immersing in a solution the substrate having a first electrode thereon, and on which the second electrode is deposited, and a flat-plate-shaped opposed electrode positioned opposite the surface of the second electrode and applying a voltage between the first electrode and the opposed electrode. The process is further characterized in that the step .alpha. and the step .beta. are carried out at the same time or in succession independently of each other.
    • 公开了以低成本和高可靠性制造串联连接的光电元件阵列的方法,其可以用作高效率太阳能电池。 用于制造串联连接的光电元件阵列的工艺的特征在于,用于形成第二电极材料的绝缘条的步骤(α)是通过将其中具有第一电极的基板浸入溶液中而进行的, 电极沉积,并且在其附近与第二电极的表面相对设置的集中电场型的相对电极,并且在第一电极和相对电极之间施加电压。 此外,其特征在于,通过将具有第一电极的基板在其上沉积有第二电极的基板浸渍在溶液中进行电化学钝化光电层中的电缺陷区域的步骤(β) 位于与第二电极的表面相对并且在第一电极和相对电极之间施加电压的板状对置电极。 该方法的特征还在于步骤α和步骤β是相互独立地相同或相继地进行的。