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    • 41. 发明授权
    • Display device and electronic device
    • 显示设备和电子设备
    • US07737444B2
    • 2010-06-15
    • US11926259
    • 2007-10-29
    • Mitsuaki OsameAya AnzaiJun KoyamaYasuko WatanabeShunpei Yamazaki
    • Mitsuaki OsameAya AnzaiJun KoyamaYasuko WatanabeShunpei Yamazaki
    • H01L29/04
    • H01L25/048H01L27/3267H01L27/3286H01L51/524H01L51/525H01L2924/0002H01L2924/00
    • The invention provides a display device and an electronic device, each of which has one of a structure in which a substrate provided with a light emitting element which performs bottom light emission and a substrate provided with a light emitting element which performs top light emission are attached, and a structure in which two substrates, each of which is provided with a light emitting element which performs bottom light emission are attached. By attaching two substrates, each of which is provided with a light emitting element, displays are provided on the front and back of the display device, thus a high added value can be realized. One of the two substrates, each of which is provided with a light emitting element also functions as a sealing substrate for another substrate, thus a compact, thin, and lightweight display device can be obtained.
    • 本发明提供了一种显示装置和电子装置,每个显示装置和电子装置具有以下结构之一:附接有设置有执行底部发光的发光元件的基板和设置有执行顶部发光的发光元件的基板 ,并且附接有两个基板,其中每个基板设置有执行底部发光的发光元件。 通过连接两个基板,每个基板设置有发光元件,在显示装置的正面和背面设置有显示器,因此可以实现高附加值。 两个基板中的每一个设置有发光元件也用作另一基板的密封基板,因此可以获得紧凑,薄且轻的显示装置。
    • 46. 发明授权
    • Light-emitting device
    • 发光装置
    • US07262556B2
    • 2007-08-28
    • US11147317
    • 2005-06-08
    • Mitsuaki OsameAya AnzaiJun KoyamaMakoto UdagawaMasahiko HayakawaShunpei Yamazaki
    • Mitsuaki OsameAya AnzaiJun KoyamaMakoto UdagawaMasahiko HayakawaShunpei Yamazaki
    • G09G3/10
    • H01L33/08G09G3/3233G09G2300/0426G09G2300/0842G09G2310/0254G09G2320/043H01L27/3211H01L27/3262H01L27/3265H01L27/3295H01L2924/0002H01L2924/00
    • A light-emitting device which realizes a high aperture ratio and in which the quality of image is little affected by the variation in the characteristics of TFTs. A large holding capacitor Cs is not provided in the pixel portion but, instead, the channel length and the channel width of the driving TFTs are increased, and the channel capacitance is utilized as Cs. The channel length is selected to be very larger than the channel width to improve current characteristics in the saturated region, and a high VGS is applied to the driving TFTs to obtain a desired drain current. Therefore, the drain currents of the driving TFTs are little affected by the variation in the threshold voltage. In laying out the pixels, further, wiring is arranged under the partitioning wall and the driving TFTs are arranged under the wiring in order to avoid a decrease in the aperture ratio despite of an increase in the size of the driving TFT. In the case of the 3-transistor pixels, the switching TFT and the erasing TFT are linearly arranged to further increase the aperture ratio.
    • 实现高开口率并且图像质量几乎不受TFT的特性变化影响的发光器件。 在像素部分中不设置大的保持电容器Cs,而是增加了沟道长度和沟道宽度,并且将沟道电容用作Cs。 通道长度选择为非常大于沟道宽度以改善饱和区域中的电流特性,并且向驱动TFT施加高V S GS以获得所需的漏极电流。 因此,驱动TFT的漏极电流几乎不受阈值电压的变化的影响。 此外,在布置像素时,布线布置在分隔壁下方,并且驱动TFT布置在布线下方,以避免开口率的降低,尽管驱动TFT的尺寸增加。 在3晶体管像素的情况下,开关TFT和擦除TFT被线性布置以进一步增加开口率。