• Title/Summary/Keyword: AMOLED driving

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A New Pixel Structure for Active-Matrix Organic Light Emitting Diode

  • Choi, Sang-Moo;Kwon, Oh-Kyong
    • 한국정보디스플레이학회:학술대회논문집
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    • 2003.07a
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    • pp.881-884
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    • 2003
  • We propose a new pixel structure for Active Matrix OLED (AMOLED). The proposed pixel structure can display full color images by compensating threshold voltage (Vth) variation of driving TFTs. And we obtain an improved contrast ratio(C/R) of higher than 600:1

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Inverted OLED Structure for 3.5 inch Full Color AMOLED Display on a-Si TFT Backplane

  • Park, Jae-Hee;Park, Jae-Young;Hwang, Kwang-Jo;Choi, Hee-Dong;Myoung, Nho-Hoon;Lee, Seok-Jong;Park, Seung-Chul;Kim, Jung-Bum;Hahm, Yun-Hye;Noh, Jeoung-Kwen;Lee, Jung-Hyoung;Kim, Jong-Seok;Kang, Min-Soo
    • 한국정보디스플레이학회:학술대회논문집
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    • 2007.08a
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    • pp.51-54
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    • 2007
  • Top-emission 3.5 inch qVGA IOD (Inverted AMOLED) was fabricated with inverted EL structure driven by a-Si TFT backplane. In order to get stable driving TFT, we used FCP(Field Control Plate) layer which was connected with the source of the driving TFT. And we developed planarization process to planarize the cathode layer which was the bottom layer of inverted OLED. Our unique IOD structure is “a-Si TFT/ Al(Cathode)/ LiF/ LG-201(ETL)/ EML(RGB)/ HTL/ LG-101(HIL & Buffer layer)/ IZO(Anode)”. LG-201(ETL) layer was studied for more efficient electron injection from cathode to EML, and LG-101(HIL & Buffer layer) covered by IZO anode was also explored for decreasing the EL surface damage.

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An a-Si:H TFT Pixel Circuit with Novel Threshold Voltage Compensation Technique for AMOLED Displays

  • Shin, Min-Seok;Min, Ung-Gyu;Choi, Jung-Hwan;Song, Jun-Yong;Lee, Seung-Yong;Kwon, Oh-Kyong
    • 한국정보디스플레이학회:학술대회논문집
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    • 2006.08a
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    • pp.1697-1700
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    • 2006
  • A Novel pixel structure with a new threshold voltage compensation technique is proposed for large-size a-Si:H AMOLED panel application. The proposed pixel improves image quality with threshold voltage compensation and alleviates annealing technique for display-off time. Sensing the threshold voltage of driving TFT for 20-inch WUXGA panel is verified by the HSPICE simulation.

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5-TFT OLED Pixel Circuit Compensating Threshold Voltage Variation of p-channel Poly-Si TFTs (p-채널 다결정 실리콘 박막 트랜지스터의 문턱전압 변동을 보상할 수 있는 5-TFT OLED 화소회로)

  • Chung, Hoon-Ju
    • The Journal of the Korea institute of electronic communication sciences
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    • v.9 no.3
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    • pp.279-284
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    • 2014
  • This paper proposes a novel OLED pixel circuit to compensate the threshold voltage variation of p-channel low temperature polycrystalline silicon thin-film transistors (LTPS TFTs). The proposed 5-TFT OLED pixel circuit consists of 4 switching TFTs, 1 OLED driving TFT and 1 capacitor. One frame of the proposed pixel circuit is divided into initialization period, threshold voltage sensing and data programming period, data holding period and emission period. SmartSpice simulation results show that the maximum error rate of OLED current is -4.06% when the threshold voltage of driving TFT varies by ${\pm}0.25V$ and that of OLED current is 9.74% when the threshold voltage of driving TFT varies by ${\pm}0.50V$. Thus, the proposed 5T1C pixel circuit can realize uniform OLED current with high immunity to the threshold voltage variation of p-channel poly-Si TFT.

Advanced Amorphous Silicon TFT Backplane for AMOLED Display

  • Han, Min-Koo;Shin, Hee-Sun
    • 한국정보디스플레이학회:학술대회논문집
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    • 2007.08b
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    • pp.1673-1676
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    • 2007
  • We have investigated the degradation mechanism of hydrogenated amorphous silicon (a- Si:H) thin film transistors (TFTs) The threshold voltage of driving a-Si:H TFT is shifted severely by electrical bias due to a charge trapping and defect state creation. And the short channel TFTs exhibit less threshold voltage degradation than long channel TFTs. We propose the pixel circuits employing negative bias annealing scheme in order to suppression of threshold voltage shift of a-Si:H TFT.

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A New Organic Thin-Film Transistor based Current-driving Pixel Circuit for Active-Matrix Organic Light-Emitting Displays (유기박막트랜지스터(OFTF)를 이용한 AMOLED 픽셀 보상회로 연구)

  • Shin, A-Ram;Bae, Young-Seok;Hwang, Sang-Jun;Sung, Man-Young
    • Proceedings of the KIEE Conference
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    • 2006.10a
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    • pp.22-23
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    • 2006
  • A new current-driving pixel circuit for active-matrix organic light-emitting diodes (AMOLEDs), composed of four organic thin-film transistors (OTFTs) and one capacitor, is proposed using a current scaling method. Designing pixel circuits with OTFTs has many problems due to the instability of the OTFT parameters with still unknown characteristics of the material. Despite the problems in using OTFTs to drive the pixel circuit, our work could be set as a goal for future OTFT development. The simulation results show enhanced linearity between input data and OLEO luminescence at low current levels as well as successfully compensating the variation of the OTFTs, such as the threshold voltage and mobility.

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Fabrication of Test Panel for AMOLED driven by Pentacene TFTs

  • Ryu, Gi-Seong;Byun, Hyun-Sook;Xu, Yong-Xian;Choe, Ki-Beom;Song, Chung-Kun
    • 한국정보디스플레이학회:학술대회논문집
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    • 2004.08a
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    • pp.1034-1037
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    • 2004
  • In this paper we fabricated a test panel for AMOLED on glass and PET substrate. The test panel consisted of the various size of OTFTs and OLEDs and the current driving capability of OTFTs for OLEDs has been investigated. OTFTs were made of the inverted staggered structure and employed polyvinylphenol (PVP) as the gate insulator and pentacene thin film as the active layer. The OTFTs produced the filed effect mobility of 0.3$cm^2$/V.sec and on/off current ratio of $10^5$. OLEDs consisted of TPD for HTL and Alq3 for EML with 35nm thick, generating green monochrome light. We found that OTFT with channel length of 70${\mu}m$and channel width of over 3.5mm provided the sufficient current to OLED to generate the luminescence of 0.3Cd/$m^2$.

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A 2' QCIF Flexible OTFT driven AM-OLED Display

  • Suh, Kyung-Soo;You, In-Kyu;Kang, Seung-Youl;Ahn, Seong-Deok;Oh, Ji-Young;Kim, Gi-Hyun;Baek, Kyu-Ha;Kim, Chul-Am;Hwang, Chi-Sun;KoPark, Sang-Hee;Yang, Yong-Suk;Chung, Sung-Mook;Lee, Jeong-Ik;Do, Lee-Mi;Chu, Hye-Yong;Kang, Kwang-Yong
    • 한국정보디스플레이학회:학술대회논문집
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    • 2006.08a
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    • pp.181-185
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    • 2006
  • The flexible 2-inch AMOLED with $176{\times}144$ pixels has been demonstrated using top emission OLED driven by organic thin film transistors (OTFTs). For the development of AMOLED display on plastic substrate, we have developed several integration and unit process technologies. Through the optimization of the process based on plastic substrate, OTFT backplane with 2 transistors and 1 capacitor in a pixel has been fabricated and integrated with top emission OLED. The active addressing by OTFT driving circuit has been achieved and green light with 15 $cd/m^2$ at 15V has been observed.

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Organic LED Current Driving ability Analysis of Pentacene TFT's (펜타센TFT의 유기 LED 구동 능력 분석)

  • Ryu, Gi-Seong;Byun, Hyun-Sook;Choe, Ki-Beom;Kim, Yong-Kyu;Song, Chung-Kum
    • Proceedings of the IEEK Conference
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    • 2004.06b
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    • pp.379-382
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    • 2004
  • In this paper we fabricated a test panel for AMOLED on glass and PET substrate. The test panel consisted of the various size of OTFTs and OLEDs and the current driving capability of OTFTs for OLEDs has been investigated. OTFTs were made of the inverted staggered structure and employed polyvinylphenol (PVP) as the gate insulator and pentacene thin film as the active layer. The OTFTs produced the filed effect mobility of $0.3 cm^2/V.sec$ and on/off current ratio of $10^5$. OLEDs consisted of TPD for HTL and Alq3 for EML with 35nm thick, generating green monochrome light. We found that OTFT with channel length of 70${\mu}m$ and channel width of over 3.5mm provided the sufficient current to OLED to generate the luminescence of $0.3Cd/m^2$.

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Flexible OTFT-OLED Display Panel using Ag-paste for Source and Drain Electrodes

  • Ryu, Gi-Seong;Kim, Young-Bea;Song, Hyun-Jin;Song, Chung-Kun
    • 한국정보디스플레이학회:학술대회논문집
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    • 2007.08b
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    • pp.1789-1791
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    • 2007
  • We fabricated OTFT-OLED display panel by using Ag-paste for source and drains electrode of OTFTs. The OTFTs were fabricated by solution processes such as spin-coating for PVP gate dielectric and screen printing for S/D electrodes with Ag-paste, except pentacene active layer which was deposited by evaporation. The mobility was 0.024 cm2/V.sec , off state current ${\sim}10-11A$, threshold voltage 7.6 V and on/off current ratio ${\sim}105$. The panel consisted of 16 x 16 pixels and each pixel consisted of 2 OTFTs, 1 Capacitor and 1 OLED. The pixels successfully worked in terms of current magnitude supplied to OLED and the control ability of driving and switching OTFTs.

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