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    • 3. 发明申请
    • LIGHT SOURCE INTEGRATED PHOTOELECTRIC CONVERSION APPARATUS
    • 光源集成光电转换装置
    • US20100155578A1
    • 2010-06-24
    • US12634155
    • 2009-12-09
    • Tomotaka Matsumoto
    • Tomotaka Matsumoto
    • H01J40/02
    • H01L27/14632H01L27/14623H01L27/14678H01L27/14687H01L27/14692H01L27/3234H01L27/3244H01L27/3248H01L2251/5315
    • A light source integrated photoelectric conversion apparatus is provided, which includes: a light-emitting element that includes a light-emitting layer, and emits light in a predetermined emission direction through one surface of the light-emitting layer; and a plurality of photoelectric conversion elements that includes a photoelectric conversion layer formed on a region which is not overlapped with the light-emitting layer, and converts light having passed through one surface of the photoelectric conversion layer into an electrical signal. In the light source integrated photoelectric conversion apparatus, the light-emitting element is formed on the same substrate as that of the plurality of photoelectric conversion element, one surface of the photoelectric conversion layer is disposed on the side opposite to the emission direction further away from the other surface of the light-emitting layer, and one surface of the light-emitting layer and the substrate face each other.
    • 提供了一种光源集成光电转换装置,其包括:发光元件,其包括发光层,并且通过所述发光层的一个表面沿预定发射方向发光; 以及多个光电转换元件,其包括形成在不与发光层重叠的区域上的光电转换层,并将通过光电转换层的一个表面的光转换为电信号。 在光源集成光电转换装置中,发光元件形成在与多个光电转换元件相同的基板上,光电转换层的一个表面设置在与发射方向相反的一侧,远离 发光层的另一个表面和发光层和基板的一个表面彼此面对。
    • 9. 发明授权
    • Image converter having cylindrical housing and photocathode separated by
spacing element from luminescent screen on frustrum
    • 图像转换器具有圆柱形外壳和光电阴极,隔开间隔元件与发光屏幕上的楔形
    • US4293790A
    • 1981-10-06
    • US967620
    • 1978-12-06
    • Hans-Wolfgang FunkKurt FrankGunter Flasche
    • Hans-Wolfgang FunkKurt FrankGunter Flasche
    • H01J29/86H01J31/50H01J43/24H01J40/02H01J40/18
    • H01J29/86H01J31/505H01J43/24
    • An image converter is disclosed which can be operated by means of a relatively low voltage D.C. supply. In this invention, the luminescent screen of the image converter is brought closer to the photocathode by forming the exit window with a frustrum-shaped platform with a top surface that is parallel to the entrance window, and upon which top surface the luminescent screen is mounted. As a result of the closer spacing between the photocathode and the luminescent screen, lower D.C. supply voltages can be utilized. Moreover, the shape of the housing which supports the two windows at the image converter is so designed that the interior surface of the housing is non-perpendicular to the equipotential lines of the electric field which is established between the photocathode and the luminescent screen. As a result of this geometrical relationship, avalanche discharge is reduced or eliminated altogether, thereby reducing or eliminating the undesirable arcing which can occur as a result of such avalanche discharge. Embodiments are taught for amplification of projected images in the visible portion of the electromagnetic spectrum, along with embodiments which can be utilized to form images of radioactive radiation, X-ray radiation and ultraviolet radiation.
    • 公开了一种图像转换器,其可以通过相对低的电压直流供电来操作。 在本发明中,图像转换器的荧光屏通过形成具有平行于入口窗口的顶表面的楔形平台的出口窗而靠近光电阴极,并且在该顶表面上安装发光屏 。 由于光电阴极和发光屏幕之间的间隔越来越窄,所以可以使用更低的直流供电电压。 此外,在图像转换器处支撑两个窗口的壳体的形状被设计成使得壳体的内表面与建立在光电阴极和发光屏幕之间的电场的等电位线非垂直。 作为这种几何关系的结果,雪崩放电总体上减少或消除,从而减少或消除由于这种雪崩放电而可能发生的不期望的电弧。 教导实施例用于放大电磁光谱的可见部分中的投影图像以及可用于形成放射性辐射,X射线辐射和紫外线辐射的图像的实施例。