• Title/Summary/Keyword: LCD driver IC

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Output-Buffer design for LCD Source Driver IC (LCD 소스 드라이버의 출력 버퍼 설계)

  • Kim, Jin-Hwan;Lee, Ju-Sang;Yu, Sang-Dae
    • Proceedings of the KIEE Conference
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    • 2004.11c
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    • pp.629-631
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    • 2004
  • The proposed output buffer is presented for driving large-size LCD panels. This output buffer is designed by adding some simple circuitry to the conventional two-stage operational amplifier. The proposed circuit is simulated in a high-voltage 0.35um CMOS process with HSPICE. The simulated result is more improved settling time than that of conventional one.

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A Study on Data Driver IC for Field Emission Display (FED 용 Data Driver IC에 관한 연구)

  • Jang, Young-Min;Lee, Jin-Seok;Lee, Jun-Sung;Cho, Jun-Dong
    • Proceedings of the Korea Information Processing Society Conference
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    • 2004.05a
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    • pp.797-800
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    • 2004
  • FED(Field Emission Display)는 CRT(Cathode Ray Tube)의 화질과 LCD(Liquid Crystal Display)와 같은 FPD(Flat Panel Display)의 경량, 박형의 장점을 만족시키는 차세대 Display 소자로서 주목을 받고 있다. 본 논문은 저항열을 이용하여 256 Gray-Scale Level을 출력하는 8 비트 FED Data Driver IC 설계에 관한 것이다. 즉, 저항열과 D/A 변환기를 통하여 디지털 입력 데이터에 따른 아날로그 출력 데이터를 갖는 FED 용 Data Driver IC이다. 본 논문에서 설계된 Driver IC는 집적도를 높여 Output Channel 수를 증가시키는 것을 목표로, 하이닉스 0.6um High Voltage 공정을 사용하였으며, 8 비트 RGB 데이터 입력과 40V 구동전압에서 동작하도록 설계하였다.

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Design of LCD Backlight Driver IC to improve the Brightness Uniformity (LCD Backlight의 휘도 균일성을 개선한 인버터 드라이버 IC 설계)

  • Oh Myeong-Woo;Yang Sung-hyun;Cho Kyoung-Rok
    • Journal of the Institute of Electronics Engineers of Korea SD
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    • v.42 no.4 s.334
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    • pp.53-60
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    • 2005
  • This work Proposes and describes an LCD backlight driver IC using a voltage feedback circuit which improves the brightness uniformity. The proposed circuit controls the brightness of a backlight by amplifying of sampling voltage at a lamp. To keep the uniformity of brightness, the circuit has a reference lamp. The output voltage of the reference lamp is supplied commonly to each lamp that reduces a resistance deviation of the lamps. As a result, the proposed circuit shows brightness uniformity improvement of about $40\%$ compared to the conventional ones.

New Charge-Recycling Structure and Driving Scheme for TFT-LCD Source-Driver IC Application

  • Lu, Chih-Wen;Hsu, Kuo-Jen;Liao, Hsueh-Chih;Chen, Chun-Hung
    • 한국정보디스플레이학회:학술대회논문집
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    • 2005.07a
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    • pp.653-656
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    • 2005
  • New charge-recycling structure and driving scheme for TFT-LCD source-driver IC application are proposed. The number of additional switches for the charge recycling is greatly reduced. An experimental prototype 6-bit source driver with five-level seven-phase charge recycling implemented in a $0.35-{\mu}m$ CMOS technology demonstrates that the quiescent current is only 3.1 mA, dynamic power saving is 75 %, and the settling time, which includes the charge-recycling and data driving, is within 25 $25{\mu}s$.

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Dynamic Slew-Rate Control for High Uniformity and Low Power in LCD Driver ICs

  • Choi, Sung-Pil;Lee, Mira;Jin, Jahoon;Kwon, Kee-Won;Chun, Jung-Hoon
    • JSTS:Journal of Semiconductor Technology and Science
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    • v.14 no.5
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    • pp.688-696
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    • 2014
  • A slew-rate control method of LCD driver ICs is introduced to increase uniformity between adjacent driver ICs and reduce power consumption. The slew rate of every voltage follower is calibrated by a feedback algorithm during the non-displaying period. Under normal operation mode, the slew rate is dynamically controlled for improving power efficiency. Experimental results show that the power consumption is reduced by 16% with a white pattern and by 10% with a black pattern, and display defects are successfully eliminated.

The design and FPGA implementation of a general-purpose LDI controller for the portable small-medium sized TFT-LCD (중소형 TFT-LCD용 범용 LDI 제어기의 설계 및 FPGA 구현)

  • Lee, Si-Hyun
    • Journal of the Korea Society of Computer and Information
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    • v.12 no.4
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    • pp.249-256
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    • 2007
  • AIn this paper, a new desist of LDI controller IC for general purpose is proposed for driving the LDI(LCD Driver Interface) controller in $4{\sim}9$ inches sized portable small-medium TFT-LCD(Thin Film Transistor addressed -Liquid Crystal Display) panel module. The designed LDI controller was verified on the FPGA(Reld Programmable Gate Array) test board, and was made the interactive operation with the commercial TFT-LCD panel successfully. The purpose of design is that it is standardized the LDI controller's operation by one LDI controller for driving all TFT-LCD panel without classifying the panel vendor, and size. The main advantage for new general-purpose LDI controller is the usage for the desist of all panel's SoG(System on a Glass) module because of the design for the standard operation. And in the previous method, it used each LDI controller for every LCD vendor, and panel size, but because a new one can drive all portable small-medium sized panel, it results in reduction of LDI controller supply price, and manufacturing cost of AV(Audio Video) board and panel. In the near future, the development of SoG IC(Integrated Circuit) for manufacturing more excellent functional TFT-LCD panel module is necessary. As a result of this research, the TFT-LCD panel can make more small size, and light weight, and it results in an upturn of domestic company's share in the world market. With the suggested theory in this paper, it expects to be made use of a basic data for developing and manufacturing for the SoG chip of TFT-LCD panel module.

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A Dithering Algorithm for Full-Color (16,777,216-Color) Support in an LCD with 6-bit Driver ICs

  • Lee, Seung-Woo;Kim, Sang-Soo
    • 한국정보디스플레이학회:학술대회논문집
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    • 2004.08a
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    • pp.389-392
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    • 2004
  • A new dithering algorithm, "Hi-FRC", to enable full (16,777,216) color display on LCD panel with 6-bit source D-IC's is presented. The conventional FRC can display only 16,194,277 colors. In addition, The LCD panel with Hi-FRC can meet the color grayscale linearity of TCO '03 because it can improve the color shift problem.

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A Novel Driving Method for Cost Competitive a-Si TFT-LCD

  • Moon, Su-Hwan;Lim, Hong-Youl;Kim, Dae-Kyu;Lee, Min-Kyung;Ko, Kyung-Tai;Lee, Jun-Ho;Yoon, Sung-Hoe;Kim, Byeong-Koo
    • 한국정보디스플레이학회:학술대회논문집
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    • 2009.10a
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    • pp.470-473
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    • 2009
  • We have developed a novel driving method, Six times Rate Driving(SRD) for the purpose of making cost competitive TFT-LCD. By applying SRD method to an a-Si TFT-LCD, the driving rate was increased six times as it was named but the number of data lines and so its D-Ics were reduced to one sixth of the conventional one which resulted in the cost saving of that much. We also newly designed the gate driver in order to avoid any expansion of the bezel width caused by applying SRD. Our newly developed driving technology, SRD was successfully applied to 7.0-inch WSVGA (1024 ${\times}$ 600) TFT-LCD which can be driven with only one data D-IC and here introduced.

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a-Si TFT based systems on TFT-LCD panels

  • Wang, Wen-Chun;Chan, Chien-Ting;Han, Hsi-Rong
    • 한국정보디스플레이학회:학술대회논문집
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    • 2007.08b
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    • pp.1168-1171
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    • 2007
  • Integrating systems on TFT-LCD panels is more and more popular for the mobile display application. However, it may not be necessary to use LTPS TFT devices. A-Si TFTs are used to integrate systems on TFT-LCD panels, especially scan (gate) drivers. To further reduce the chip size of driver IC, the triplegate pixel structure is developed. Therefore, the number of the source lines is reduced to 1/3 times.

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A Study on the Design of Amplifier for Source Driver IC applicable to the large TFT-LCD TV (대형 TFT-LCD TV에 적용 가능한 Source Driver IC 감마보정전압 구동용 앰프설계에 관한 연구)

  • Son, Sang-Hee
    • Journal of IKEEE
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    • v.14 no.2
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    • pp.51-57
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    • 2010
  • A CMOS rail-to-rail high voltage buffer amplifier is proposed to drive the gamma correction reference voltage of large TFT LCD panels. It is operating by a single supply and only shows current consumption of 0.5mA at 18V power supply voltage. The circuit is designed to drive the gamma correction voltage of 8-bit or 10-bit high resolution TFT LCD panels. The buffer has high slew rate, 0.5mA static current and 1k$\Omega$ resistive and capacitive load driving capability. Also, it offers wide supply range, offset voltages below 50mV at 5mA constant output current, and below 2.5mV input referred offset voltage. To achieve wide-swing input and output dynamic range, current mirrored n-channel differential amplifier, p-channel differential amplifier, a class-AB push-pull output stage and a input level detector using hysteresis comparator are applied. The proposed circuit is realized in a high voltage 0.18um 18V CMOS process technology for display driver IC. The circuit operates at supply voltages from 8V to 18V.