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Quantitative analysis of pixel crosstalk in AMOLED displays

机译:AMOLED显示器中像素串扰的定量分析

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ABSTRACTThe resolution of organic light-emitting diode (OLED) displays is increasing steadily as these displays are adopted for mobile and virtual reality (VR) devices. This leads to a stronger pixel crosstalk effect, where the neighbors of active pixels unintentionally emit light due to a lateral electric current between the pixels. Recently, the crosstalk was quantified by measuring the current flowing through the common hole transport layer between the neighboring pixels and comparing it to the current through the active pixel diode [S.-K. Kwon, K.-S. Kim, H.-C. Choi and J. H. Kwon, presented at the International Meeting on Information Display, Jeju, South Korea, 2016]. The measurements showed that the crosstalk is more crucial for low light levels. In such cases, the intended and parasitic currents are similar. The simulations performed in this study validated these measurement results. By simulations, we quantify the crosstalk current through the diode. The luminous intensity can be calculated with the measured current efficiency of the diodes. For low light levels, the unintended luminance can reach up to 40% of the intended luminance. The luminance due to pixel crosstalk is perceivable by humans. This effect should be considered for OLED displays with resolutions higher than 300 PPI.
机译:摘要随着有机发光二极管(OLED)显示器被用于移动和虚拟现实(VR)设备,这些显示器的分辨率正在稳步提高。这导致更强的像素串扰效应,其中有源像素的相邻像素由于像素之间的横向电流而无意间发光。最近,通过测量流过相邻像素之间的公共空穴传输层的电流并将其与流过有源像素二极管的电流[S.-K]来量化串扰。权志勋Kim H.-C. Choi和J. H. Kwon,在国际信息显示会议上发表,韩国济州,2016年]。测量表明,串扰对于弱光水平更为重要。在这种情况下,预期电流和寄生电流是相似的。在这项研究中进行的仿真验证了这些测量结果。通过仿真,我们可以量化通过二极管的串扰电流。可以通过测得的二极管电流效率来计算发光强度。对于低光照水平,意外亮度可能会达到预期亮度的40%。人们可以感觉到由于像素串扰引起的亮度。对于分辨率高于300 PPI的OLED显示器,应考虑这种效果。

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