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Foveal model of artificial retina with phototransistors in Darlington configuration in the high-resolution region

机译:高分辨率区域达林顿配置中带有光电晶体管的人工视网膜的中央凹模型

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In this article, a structure of foveal artificial retina to use bipolar phototransistors in configuration Darlington within the central zone and bipolar phototransistors in the periphery is proposed. These last ones are forming groups of four elements with a size that is growing towards the periphery, this causes an increase of the area of incidence without modifying to a great extent the size of the phototransistors and thus to take advantage of better the area silicon, in addition it occurs to know a new structure in where the analysis of the foveal model with rectangular phototransistors is possible. This new structure is not necessary that the photodetectors have a specific and complex design, as can be the circular form that has been used in diverse models. An analysis is made on the voltage of operation the two configurations of phototransistors with the objective to present the idea raised in relation cones and canes a biological retina. With the previous, is a simulation in which an image with the proposed model can be observed. The results in Mat Lab appear with which the degree of resolution in the center of the foveal model is observed.
机译:在本文中,提出了一种中心凹人工视网膜的结构,该结构将在中心区域内使用达林顿构造的双极光电晶体管,在外围使用双极光电晶体管。这些最后一组形成四个元素的组,其大小朝着外围生长,这导致入射面积的增加,而不会在很大程度上改变光电晶体管的大小,因此可以更好地利用硅的面积,此外,还出现了一种新的结构,在该结构中可以使用矩形光电晶体管进行中心凹模型的分析。这种新的结构对于光电检测器具有特定而复杂的设计是不必要的,就像在各种模型中使用的圆形形式一样。对光电晶体管的两种配置的工作电压进行了分析,目的是提出有关锥体和棒状生物视网膜的想法。与之前的一样,是一种仿真,其中可以观察到具有所提出模型的图像。出现在Mat Lab中的结果,可观察到中心凹模型中心的分辨度。

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