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    • 14. 发明授权
    • Photoelectric conversion device with dual insulating layer
    • 具有双重绝缘层的光电转换装置
    • US5591963A
    • 1997-01-07
    • US512698
    • 1995-08-08
    • Shinichi TakedaHidemasa MizutaniNoriyuki KaifuIsao Kobayashi
    • Shinichi TakedaHidemasa MizutaniNoriyuki KaifuIsao Kobayashi
    • H01L27/146H01J40/14
    • H01L27/14676H01L27/14609H01L27/14643
    • A photoelectric conversion device comprising, on a substrate, a photoelectric conversion element having in lamination, a first electrode layer, a first insulating layer for blocking carriers of first conduction type and second conduction type from passing therethrough, a photoelectric conversion semiconductor layer, a second insulating layer for blocking carriers of first conduction type and second conduction type from passing therethrough, and second electrode layers and a switch element having laminated a gate electrode layer, a third insulating layer, a semiconductor layer, an ohmic contact layer, a pair of first and second main electrode layers, and a wiring layer for electrically connecting first or second electrode layer of photoelectric conversion element to first main electrode layer of the switch element can be provided with high SN ratio and at lower cost without providing the injection blocking layer.
    • 一种光电转换装置,在基板上包括层叠的光电转换元件,第一电极层,用于阻挡第一导电型和第二导电型的载流子的第一绝缘层,通过其中的光电转换半导体层,第二 用于阻挡第一导电类型和第二导电类型的载流子的绝缘层,以及第二电极层和具有层叠栅电极层,第三绝缘层,半导体层,欧姆接触层,一对第一导电类型的开关元件 和第二主电极层,并且用于将光电转换元件的第一或第二电极层与开关元件的第一主电极层电连接的布线层可以以较低的成本提供高SN比,而不需要提供注入阻挡层。
    • 15. 发明授权
    • Electroluminescent device for illuminating a liquid crystal display
    • 用于照亮液晶显示器的电致发光装置
    • US5703666A
    • 1997-12-30
    • US512697
    • 1995-08-08
    • Toshihiro SaikaHidemasa MizutaniNoriyuki KaifuToshio Kameshima
    • Toshihiro SaikaHidemasa MizutaniNoriyuki KaifuToshio Kameshima
    • G09F13/22G02F1/13357H04N1/028H04N1/031H04N1/04H04N5/66H05B33/08H05B33/12H05B33/26G02F1/1335
    • H04N1/0316G02F1/133603H04N1/0313
    • A liquid crystal device has a light source and liquid crystal elements which selectively transmit light emitted by the light source. The liquid crystal device comprises: the light source, being an electroluminescent device, having a transparent electrode disposed on a light output side of the light source, an electrode opposite to the transparent electrode, and an electroluminescence emission layer interposed between the transparent electrode and the opposite electrode; voltage supply means connected to the transparent electrode in order to feed a reference voltage to the transparent electrode; and driving voltage application means for applying a driving voltage to the opposite electrode. The driving voltage application means comprises a separate excitation type driving circuit using the capacitance of the electroluminescent device itself to produce an alternating current, and pulse generating means for generating a pulse responsive to an input signal to turn on and off a switch of the separate excitation type driving circuit. The pulse generating means includes a multivibrator and a capacitor and a resistor determine the width of the pulse.
    • 液晶装置具有选择性地透射由光源发射的光的光源和液晶元件。 液晶装置包括:作为电致发光器件的光源,具有设置在光源的光输出侧的透明电极,与透明电极相对的电极,以及插入在透明电极和透明电极之间的电致发光层 相对电极 连接到透明电极的电压供给装置,以便将参考电压馈送到透明电极; 以及用于向对置电极施加驱动电压的驱动电压施加装置。 驱动电压施加装置包括使用电致发光器件本身的电容产生交流电的单独的激励型驱动电路,以及用于产生响应于输入信号的脉冲的脉冲发生装置,以接通和断开分开的励磁开关 型驱动电路。 脉冲发生装置包括多谐振荡器和电容器,并且电阻器确定脉冲的宽度。
    • 18. 发明授权
    • Image sensor in which illumination by electroluminescent device is
synchronized with reading operation
    • 图像传感器,其中电致发光器件的照明与读取操作同步
    • US5384456A
    • 1995-01-24
    • US934326
    • 1992-08-25
    • Toshihiro SaikaHidemasa MizutaniNoriyuki KaifuToshio Kameshima
    • Toshihiro SaikaHidemasa MizutaniNoriyuki KaifuToshio Kameshima
    • G09F13/22G02F1/13357H04N1/028H04N1/031H04N1/04H04N5/66H05B33/08H05B33/12H05B33/26H01J40/14
    • H04N1/0316G02F1/133603H04N1/0313
    • An electroluminescent device comprising a first electrode, a second electrode and an electroluminescence emission zone, the electroluminescence emission zone being made of a first electroluminescence emission layer, a second electroluminescence emission layer, and a transparent electrode which is interposed between the first electroluminescence emission layer and the second electroluminescence emission layer. At least either the first electrode or the second electrode is a transparent electrode. The first electroluminescence emission layer and the second electro luminescence emission layer emit light by applying a driving voltage to the transparent electrode with both the first electrode and the second electrode connected to a power supply for a reference voltage. In an image sensor using such an electroluminescent device as a light source, the electric field produced by the driving signal of the electroluminescent device does not escape outward, presenting no interfering noise to the image sensor. The resulting light quantity is almost double that of devices with only a single electroluminescent layer, substantially enhancing a resulting image. As a result, a high S/N ratio image sensor may be fabricated.
    • 一种电致发光器件,包括第一电极,第二电极和电致发光发射区,所述电致发光发射区由第一电致发光发射层,第二电致发光发射层和透明电极构成,所述第一电致发光发射层,第二电致发光发射层和透明电极介于第一电致发光发射层和 第二电致发光层。 至少第一电极或第二电极是透明电极。 第一电致发光发射层和第二电致发光发射层通过向透明电极施加驱动电压而发光,第一电极和第二电极都连接到用于参考电压的电源。 在使用这种电致发光器件作为光源的图像传感器中,由电致发光器件的驱动信号产生的电场不向外逸出,对图像传感器不产生干扰噪声。 所得到的光量几乎是仅具有单一电致发光层的装置的两倍,从而显着增强了所得到的图像。 结果,可以制造高S / N比的图像传感器。
    • 19. 发明授权
    • Electroluminescent device
    • 电致发光器件
    • US5486738A
    • 1996-01-23
    • US294361
    • 1994-08-23
    • Toshihiro SaikaHidemasa MizutaniNoriyuki KaifuToshio Kameshima
    • Toshihiro SaikaHidemasa MizutaniNoriyuki KaifuToshio Kameshima
    • G09F13/22G02F1/13357H04N1/028H04N1/031H04N1/04H04N5/66H05B33/08H05B33/12H05B33/26G09G3/10
    • H04N1/0316G02F1/133603H04N1/0313
    • An electroluminescent device comprising a first electrode, a second electrode and an electroluminescence emission zone, the electroluminescence emission zone being made of a first electroluminescence emission layer, a second electroluminescence emission layer, and a transparent electrode which is interposed between the first electroluminescence emission layer and the second electroluminescence emission layer. At least either the first electrode or the second electrode is a transparent electrode. The first electroluminescence emission layer and the second electroluminescence emission layer emit light by applying a driving voltage to the transparent electrode with both the first electrode and the second electrode connected to a power supply for a reference voltage. In an image sensor using such an electroluminescent device as a light source, the electric field produced by the driving signal of the electroluminescent device does not escape outward, presenting no interfering noise to the image sensor. The resulting light quantity is almost double that of devices with only a single electroluminescent layer, substantially enhancing a resulting image. As a result, a high S/N ratio image sensor may be fabricated.
    • 一种电致发光器件,包括第一电极,第二电极和电致发光发射区,所述电致发光发射区由第一电致发光发射层,第二电致发光发射层和透明电极构成,所述第一电致发光发射层,第二电致发光发射层和透明电极介于第一电致发光发射层和 第二电致发光层。 至少第一电极或第二电极是透明电极。 第一电致发光发射层和第二电致发光发射层通过向透明电极施加驱动电压来发光,第一电极和第二电极都连接到用于参考电压的电源。 在使用这种电致发光器件作为光源的图像传感器中,由电致发光器件的驱动信号产生的电场不向外逸出,对图像传感器不产生干扰噪声。 所得到的光量几乎是仅具有单一电致发光层的装置的两倍,从而显着增强了所得到的图像。 结果,可以制造高S / N比的图像传感器。