Tae‐Hyung Kim
LG Electronics
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Publication
Featured researches published by Tae‐Hyung Kim.
SID Symposium Digest of Technical Papers | 2001
Jeong-Pil Choi; Tae‐Hyung Kim; Hwan‐You Kim; Dae‐Jin Myoung; Ken Lim; Eun‐Ho You; Myoung‐Ho Park
In this paper, we propose a new energy recovery driving method for column addressing. This new method is more efficient and saves more time than conventional method. By this method, the amount of power dissipation, which is from energy recovery circuit by itself, is reduced adaptively according to the varied image pattern. Besides, this circuit can be composed of fewer devices than conventional and it will be good solution for high resolution PDP.
SID Symposium Digest of Technical Papers | 2010
Dae‐Hun Kim; Tae‐Hyung Kim; Seonghak Moon; SungTae Kim
“Real black” plasma display panels (PDPs) having a background luminance of zero cd/m2 must be realized to obtain high picture quality. PDPs, however, must have reset discharges to initialize cell conditions, regardless of expressing any of the gray levels. The light emission from the reset discharges becomes a background luminance, degrading the picture quality having low luminance levels. A technique of substituting the role of the reset discharges is proposed for 50-in. full-HD PDPs. with this technique an infinite dark-room contrast ratio is obtained. However, it has the problem of the discharge delay. A solution to this was proposed by using the frame reset or the minimum surface reset discharge and selective reset.
SID Symposium Digest of Technical Papers | 2009
Dae‐Hun Kim; Sung‐Hwan Kim; Hyun‐Il Park; Jong‐Woon Kwak; Tae‐Hyung Kim; Kwanghyun Kim; Dae‐Jin Myoung; Jang‐Hwan Cho; Seonghak Moon
In order to improve image quality, there is a need for high definition, which is an increase in vertical lines. However, with such an increase, the data IC heat becomes an issue. The data ER circuit is used to solve this problem. We can eliminate the data ER circuit that is used by using a linear-subfield driving, a new data switching algorithm, and a new subfield mapping in a 50-in full HD PDP with single scan mode.
Journal of information display | 2006
Chang‐Joon Park; Jong‐Woon Kwak; Tae‐Hyung Kim; Hyun‐Il Park; Seonghak Moon
Abstract We have developed a new driving method named TROPHY(Talented Role‐playing Technology with Dual Polarity sustainer in Hybrid Mono board). In this method, the sustain voltage is partially compared to the conventional method and the number of power sources is reduced by voltage level unification during the reset, address and sustain period. The hybrid mono board was especially developed to implement those technologies. Through this, we can lower the cost with the TROPHY compared to the conventional one. It is a suitable technology to improve the reliability of circuit and image sticking problem. We can also reduce the number of driving boards and the EMI problem compared with those of the conventional method.
Archive | 2011
Tae‐Hyung Kim; Byeong Kil Ahn; Seong Hak Moon; Jang Hwan Cho
Archive | 2002
Geun Soo Lim; Jeong Pil Choi; Hwan Yu Kim; Tae‐Hyung Kim
Archive | 2001
Eun-Cheol Lee; Jae Sung Kim; Youngjoon Ahn; Seok Dong Kang; Young-kyo Shin; Sung-yong Ahn; Song-won Chi; Jae Hong Lee; Tae-wan Choi; Jeong-Pil Choi; Tae‐Hyung Kim; Geun-Soo Lim
Archive | 2013
Byeongkil Ahn; Seonghak Moon; Tae‐Hyung Kim
Archive | 2007
Jong‐Woon Kwak; Tae‐Hyung Kim; Woong-Kee Min; Seong Hak Moon; Oedong Kim
Archive | 2006
Eun-Cheol Lee; Jae Sung Kim; Youngjoon Ahn; Seok Dong Kang; Young-kyo Shin; Sung-yong Ahn; Song-won Chi; Jae Hong Lee; Tae-wan Choi; Jeong-Pil Choi; Tae‐Hyung Kim; Geun-Soo Lim