scholarly journals Flat panel display and polymer. Prospects of plasma display and expectation to polymer materials

Kobunshi ◽  
2005 ◽  
Vol 54 (5) ◽  
pp. 293-296
Author(s):  
Masataka UCHIDOI
2019 ◽  
Vol 28 (6) ◽  
pp. 1429-1447
Author(s):  
Derek Lehmberg ◽  
Charles Dhanaraj ◽  
Rod White

Abstract What determines the emergence of a winner between competing technologies? We examine competition between flat panel display technologies, with the purpose of understanding of how liquid crystal display was able to surpass plasma display panel technology despite the initial lack of a convincing technological or cost advantage, and in the absence of network externalities. We propose an explanation whereby the relative availability of pathways of suitable adjacent applications markets provides differential opportunities for technologies to increase their scope and scale of application incrementally, effecting the speed of development as well as the cost effectiveness of the end products. Our findings suggest that these sets of adjacent application markets available can strongly influence which technologies emerge as winners and which are eventually abandoned.


2018 ◽  
Vol 4 (11) ◽  
pp. 133
Author(s):  
HyungTae Kim ◽  
EungJoo Ha ◽  
KyungChan Jin ◽  
ByungWook Kim

A system for inspecting flat panel displays (FPDs) acquires scanning images using multiline charge-coupled device (CCD) cameras and industrial machine vision. Optical filters are currently installed in front of these inspection systems to obtain high-quality images. However, the combination of optical filters required is determined manually and by using empirical methods; this is referred to as passive color control. In this study, active color control is proposed for inspecting FPDs. This inspection scheme requires the scanning of images, which is achieved using a mixed color light source and a mixing algorithm. The light source utilizes high-power light emitting diodes (LEDs) of multiple colors and a communication port to dim their level. Mixed light illuminates an active-matrix organic light-emitting diode (AMOLED) panel after passing through a beam expander and after being shaped into a line beam. The image quality is then evaluated using the Tenenbaum gradient after intensity calibration of the scanning images. The dimming levels are determined using the simplex search method which maximizes the image quality. The color of the light was varied after every scan of an AMOLED panel, and the variation was iterated until the image quality approached a local maximization. The number of scans performed was less than 225, while the number of dimming level combinations was 20484. The proposed method can reduce manual tasks in setting-up inspection machines, and hence is useful for the inspection machines in FPD processes.


2011 ◽  
Vol 50 (3) ◽  
pp. 03CB06 ◽  
Author(s):  
Tong-Hun Hwang ◽  
Ik-Seok Yang ◽  
Oh-Kyong Kwon ◽  
Min-Ki Ryu ◽  
Choon-Won Byun ◽  
...  

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