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A silicon current sensing amplifier and organic imager for an optical feedback OLED display

机译:用于光学反馈OLED显示器的硅电流感测放大器和有机成像器

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摘要

Organic LEDs (OLEDs) have the potential to be used to build thin, flexible cost effective displays. Currently, the primary drawback to their usage lies in the difficulty of producing OLEDs that emit light at a constant and predictable brightness over their lifetime. This leads to a non-uniform brightness and a limited effective lifetime in an OLED display. The solution presented herein uses organic photodetectors on a per-pixel basis using a column-parallel architecture for optical feedback to control the desired luminosity. The integrated silicon control chip and organic imager array, together with the OLED array, form a stable display. In particular, this thesis focuses on the design and fabrication of the Current Sensing Amplifier circuits for the organic imager array in an optical feedback OLED display. The results demonstrate functionality of the high gain Current Sensing Amplifier with a measured transimpedance gain of 496 MQ using a clock frequency of 20kHz, 50% duty cycle, and a Programmable Gain setting of 5x.
机译:有机LED(OLED)有潜力用于构建薄的,灵活的,具有成本效益的显示器。当前,其使用的主要缺点在于难以生产在其寿命期间以恒定且可预测的亮度发光的OLED。这导致OLED显示器的亮度不均匀和有效寿命有限。本文提出的解决方案在每个像素的基础上使用有机光电探测器,并使用列并行体系结构进行光学反馈以控制所需的发光度。集成的硅控制芯片和有机成像器阵列与OLED阵列一起形成稳定的显示器。特别地,本论文集中于光反馈OLED显示器中用于有机成像器阵列的电流感测放大器电路的设计和制造。结果证明了高增益电流感测放大器的功能,使用20kHz的时钟频率,50%的占空比和5x的可编程增益设置,测得的跨阻增益为496 MQ。

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