2017
DOI: 10.1002/sdtp.11916
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P‐53: A Novel Pixel Circuit Providing Expanded Input Voltage Range for OLEDoS Microdisplays

Abstract: A novel pixel circuit providing expanded data voltage range is proposed for high resolution and high image quality organic lightemitting diode-on-silicon (OLEDoS) microdisplay applications. The proposed pixel circuit adopts a structure of four series connected NMOSFETs (4-SCN) to expand the input data voltage range, within which the circuit operates in the subthreshold region. In addition, the pixel circuit has improved image quality by introducing a compensation scheme. The proposed circuit is verified by the… Show more

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Cited by 18 publications
(16 citation statements)
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“…In this paper, we propose a pixel circuit with a feedback network of backgate which utilizes active source loads on a source of a drive transistor for detecting output current. A combination of the active load and backgates has already been reported [5], but the proposed circuit is new with two points. Firstly, the effect of backgate can be arbitrarily adjusted by a balance of capacitances of upper and lower gate insulating films.…”
Section: Objective and Backgroundmentioning
confidence: 99%
“…In this paper, we propose a pixel circuit with a feedback network of backgate which utilizes active source loads on a source of a drive transistor for detecting output current. A combination of the active load and backgates has already been reported [5], but the proposed circuit is new with two points. Firstly, the effect of backgate can be arbitrarily adjusted by a balance of capacitances of upper and lower gate insulating films.…”
Section: Objective and Backgroundmentioning
confidence: 99%
“…Therefore, the data voltage rang could be extended to precisely control the emission current of OLED, especially small current of low gray levels. Moreover, equation (5) shows that due to the compensation scheme of "source-follower" structure, the proposed pixel circuit could also decrease the sensitivity of the driving transistor to the threshold voltage variation, simultaneously [2], [3], [5].…”
Section: Proposed Pixel Circuitmentioning
confidence: 99%
“…For high resolution applications, the pixel circuit area of OLEDoS micro-displays is limited to tens of μm 2 . The luminance of OLED is proportional to its current density [3]. To realize the same luminance, the OLED emission current decreases as the pixel circuit area becomes smaller.…”
Section: Introductionmentioning
confidence: 99%
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