Abstract
TFT Technologies developed for fabricating active matrix (AM) backplanes on rigid glass substrates for conventional flat panel displays cannot readily be used for fabricating active matrix backplanes on flexible substrates and displays. In addition to mechanical handling issues, flexible substrates impose many additional constraints such as process temperature limitation and thermal stress issues due to CTE mismatch with the TFT thin films for fabricating backplanes for flexible displays. In this chapter, we discuss the flexible substrate options and TFT processing strategies for fabricating flexible backplanes and flexible displays using a various display media. Current status on TFT fabrication by printing and roll-to-roll fabrication for flexible displays is also discussed.
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Abbreviations
- AM EPD:
-
Active Matrix Electrophoretic Display
- AM LCD:
-
Active Matrix Liquid Crystal Display
- AM OLED:
-
Active Matrix Organic Light Emitting Display
- a-Si:H:
-
Hydrogenated Amorphous Silicon
- CNT:
-
Carbon Nanotubes
- ELA:
-
Excimer Laser Annealing
- EPD:
-
Electrophoretic Display
- LCD:
-
Liquid Crystal Display
- LTPS:
-
Low-Temperature Polysilicon
- MEMS:
-
Micro-Electromechanical Systems
- MOSFET:
-
Metal Oxide Semiconductor Field Effect Transistor
- OLED:
-
Organic Light Emitting Diode
- OSC-TFT:
-
Oxide Semiconductor Thin Film Transistor
- OTFT:
-
Organic Thin Film Transistor
- PEN:
-
Polyethylene Naphthalate
- PI:
-
Polyimide
- RTR:
-
Roll-to-Roll
- TCE:
-
Thermal Coefficient of Expansion
- TFT:
-
Thin Film Transistor
- ULTPS:
-
Ultralow-Temperature Polysilicon
References
Erlat AG, Yan M, Duggal AR (2009) Substrates and thin film barrier technology for flexible electronics. In: Wong WS, Sallelo A (eds) Flexible electronics. Springer, New York
Jin DU, Jeong JK, Kim TW, Lee JS, Ahn TK, Mo YK, Chung HK (2006) Flexible AM OLED display on stainless steel foil. J Soc Inf Disp 14(12):1083–1090
Paek SH, Kim KL, Seo HS, Jeong YS, Yi SY, Lee SY, Choi NB, Kim SH, Kim CD, Chung IJ (2006) 10.1 inch SVGA ultra thin and flexible active matrix electrophoretic display. SID ’06 Dig 37(1):1834–1837
Raupp GB, Colaneri N, O’Rourke SM, Kaminski J, Allee DR, Venugopal SM, Bawolek EJ, Loy DE, Moye C, Angeno SK, O’Brien BP, Bottesch D, Rednour S, Blanchard R, Marrs M, Dailey J, Long K (2006) Flexible display technology in a pilot line manufacturing environment. In: Army science conference, Orlando, 27–30 Nov 2006
Raupp G (2007) Active matrix TFT technology development and pilot line manufacturing for reflective and emissive flexible displays. In: Proceedings of the USDC flexible displays & microelectronics conference & exhibit, Phoenix, Az, 5–8 Feb 2007
Jin DU, Jeong JK, Shin HS, Kim MK, Ahn TK, Kwon SY, Kwack JHo, Kim TW, Mo YG, Chung HK (2006) 5.6-inch Flexible full color top emission AM OLED display on stainless steel foil. SID ’06 Dig 37(1):1855–1857
Chwang A, Hewitt R, Urbanik K, Silvernail J, Rajan K, Hack M, Brown J, Lu JP, Shih C, Ho J, Street R, Ramos T, Moro L, Rutherford N, Tognoni K, Anderson B, Huffman D (2006) Full color 100 dpi AMOLED displays on flexible stainless steel substrates. SID ’06 Dig 37:1858–1861
Paek SH, Park YI, Park CH, Lim YS, Shin SI, Kim CD, Hwang YK (2010) Flexible display technology for a mass production using the improved etching technology. SID ’10 Dig 41(1):1047–1049
Long K, Kattami AZ, Chen IC, Gleskova H, Wagner S, Sturm J (2006) Stability of amorphous silicon TFTs deposited on clear plastic substrates at 250°C to 280°C. IEEE Electron Device Lett 27(2):111–113
Sarma KR, Chanley C, Dodd S, Roush J, Schmidt J, Srdanov G, Stevenson M, Yu G, Wessel R, Innocenzo J, O’Regan M, MacDonald WA, Eveson R, Long K, Gleskova H, Wagner S, Sturm JC (2003) Active matrix OLED using 150°C a-Si TFT backplane. In: Proceedings of the SPIE 2003, Orlando. Cockpit displays X, vol 5080, pp 180–191
Sarma KR, Schmidt J, Roush J, Dodd S, Chanley C (2004) Active matrix OLED displays using a-Si TFT backplanes fabricated on flexible plastic substrates. In: Proceedings of the SPIE defence displays conference, Orlando, FL, April 2004
Sarma KR et al (2007) Flexible OLED displays. In: Proceedings of the AM FPD ’07, Hugo
MacDonald WA, Mace JM, Polack NP (2002) 45th Annual technical conference proceedings of the Society of Vacuum Coaters, p 482
MacDonald WA (2004) Engineered films for display technologies. J Mater Chem 14:4–10
MacDonald WA, Eveson R, MacKerron D, Adam R, Rollins K, Rustin R, Looney MK, Hashimoto K (2006) The impact of environment on dimensional reproducibility of polyester film during flexible electronics processing. SID ’06 Dig 37(1):414–417
Eveson R, MacDonald WA, MacKerron D, Hadgson A, Adam R, Rakos K, Rollins K, Rustin R, Looney SJ, Asai M, Hashimoto K (2008) Optimizing polyester films for flexible electronics applications. SID ’08 Dig 39(1):1431–1434
Graff G, Burrows PE, Williford RE, Praino RF (2005) Barrier layer technology for flexible displays. In: Crawford GP (ed) Flexible flat panel displays. Wiley, Chichester
Moro M, Chu X, Hirayama H, Krajewski T, Visser RJ (2006) A mass manufacturing process for Barix encapsulation of OLED displays. In: IMID/IDMC, Daegu Exhibition and Convention Center (EXCO), Daegu, 22–25 Aug 2006
Kwon JY, Jung JS, Park KB, Kim JM, Lim H, Lee SY, Kim JM, Noguchi T, Hur JH, Jang J (2006) 2.2 inch qqVGA AMOLED driven by Ultra Low Temperature Poly Silicon (ULTPS) TFT direct fabricated below 200°C. SID’06 Dig 37(2):1358–1361
Gosain DP, Usui TNS (2000) High mobility thin film transistors fabricated on plastic substrates as process temperature of 110°C. Jpn J Appl Phys 39L:179
Gleskova H, Wagner S (2001) DC-gate bias stressing of a-Si:H TFTs fabricated at 150°C on ployimide foil. IEEE Trans Electron Device 48(8):1667
Gleskova H, Wagner S (1999) Amorphous silicon thin-film transistors on compliant polyimide foil substrates. IEEE Electron Device Lett 20(9):473
He S, Nishiki H, Hartzell J, Nakata Y (2000) Low temperature PECVD a-Si TFT for plastic substrate. SID 2000 Dig 31(1):278–281
Wagner S, Han L, Hekmatshoar B, Song K, Mandlik P, Cherenack KH, Sturm J (2010) Amorphous silicon TFT technology for rollable OLED displays. SID ’10 Dig 41(1):917–920
Nomoto K (2010) Development of flexible displays driven by organic TFTs. SID ’10 Digest, p 1165
Gundlach DJ, Kuo DJ, Nelson CC, Jackson TN (1999) Organic thin film transistors with field effect mobility >2 cm2/V-sec. IEEE Electron Device Lett: p 164
Burns SE et al (2006) A flexible plastic SVGA e-paper display. SID’06 Dig 37(1):74–76
Noda M, Kobayashi N, Katsuhara M, Yumoto A, Ushikura SI, Yasuda RI, Hirai N, Yukawa G, Yagi I, Nomoto K, Urabe T (2010) A rollable AM-OLED display driven by OTFTs. SID ’10 Dig 41(1):710–713
Burns S (2010) QUE: an e-Reader built using flexible display technology. SID ’10 Dig:477–479
Hirao T, Furuta M, Furuta H, Matsuda T, Hiramatsu T, Hokari H, Yoshida M (2006) High mobility top-gate zinc oxide thin film transistors (ZnO-TFTs) for active matrix liquid crystal displays. SID ’06 Digest, pp 18–21
Carcia PF, McLean RS, Reilly MH (2005) Oxide engineering of ZnO thin-film transistors for flexible electronics. J Soc Inf Disp 13:547
Nomura K, Ohta H, Takagi A, Kamiya T, Hirano M, Hosono H (2004) Room-temperature fabrication of transparent flexible thin-film transistors using amorphous oxide semiconductors. Nature 432:488
Kamiya T, Nomura K, Hosono H (2009) J Disp Technol 5(7):273
Mo YG, Kim M, Kang CK, Jeong JH, Park YS, Choi CG, Kim HD, Kim SS (2010) Amorphous oxide TFT backplane for large size AMOLED TVs. SID ’10 Dig 41(1):1037–1040
Suzuki M, Fukagawa H, Nakajima Y, Suzuki T, Yamamoto T, Tokito S (2008) 5.8-inch Phosphorescent color AM-OLED display driven by OTFTs on plastic substgrate. In: IDW’08, Toki Messe Niigata Convention Center, Niigata, 3–5 Dec 2008, p 1515
Chuang TK, Troccoli M, Hatalis M, Voutsas A (2007) Polysilicon TFT technology on flexible metal foil for AM PLED displays. J Soc Inf Disp 15(7):455
Kattamis AZ, Giebink N, Cheng CC, Wagner S, Forrest SR, Hong Y, Cannella V (2007) Active-matrix organic light-emitting displays employing two thin-film-transistor a-Si:H pixels on flexible stainless-steel foi. J Soc Inf Disp 15(7):433
Arihara K, Kano M, Motai K, Naitou Y, Kadowaki M, Nakajima H, Tsuboi T, Kato C, Kishimoto Y, Maeda H (2009) Fabrication of flexible 4.7-inch QVGA AM-OLED panel driven by In-Ga-Zn-Oxide TFTs with flexible color filter. In: IDW ’09, World Convention Center Summit, Miyazaki, 9–11 Dec 2009, p 1613
Utsunomiya S et al (2003) Flexible color AM OLED display fabricated using surface free technology by laser ablation/annealing (SUFTLA®) and Ink-jet Printing Technology. SID ’03 Dig 34(1):864–867
Inoue S, Utsunomiya S, Saeki T, Shimoda T (2002) Surface-free technology by laser annealing (SUFTLA) and its application to poly-Si TFT-LCDs on Plastic film with integrated drivers. IEEE Trans Electron Device 49(8):1353
Miyasaka M (2007) Suftla flexible microelectronics on their way to business. SID ’07 Dig 38(1):1673–1676
Miyasaka M, Nebashi S, Shimoda T (2006) Suftla flexible active-matrix electrophoretic displays. In: IMID/IDMC ’06 Digest, Daegu Exhibition and Convention Center (EXCO), Daegu, 22–25 Aug 2006, p 466
Asano A, Kinoshita T, Otani N (2003) A plastic 3.8-in low-temperature polycrystalline silicon TFT color LCD panel. SID ’03 Digest, pp 988–991
Hwang TH, Lee W, Hong WS, Kim SJ, Kim SI, Roh NS, Nikulin I, Choi JY, Jeon HI, Hong SJ, Lee JK, Han MJ, Baek SJ, Kim M, Lee SUk, Shin SS (2007) 14.3 inch active matrix-based plastic electrophoretic display using low temperature processes. SID ’07 Dig 38(1):1684–1685
Raupp GB, O’Rourke SM, Moyer C, O’Brien BP, Ageno SK, Loy DE, Bawolek EJ, Allee DR, Venugopal SM, Kaminski JP, Bottesch D, Dailey J, Long K, Marrs M, Munizza MR, Haverinen H, Colaneri N (2007) Low-temperature amorphous-silicon backplane technology development for flexible displays in a manufacturing pilot-line environment. J Soc Inf Disp 15(7):445
O’Rourke SM, Venugopal SM, Raupp GB, Allee DR, Ageno S, Bawolek EJ, Loy DE, Kaminski JP, Moyer C, O’Brien B, Long K, Marrs M, Bottesch D, Dailey J, Trujillo J, Cordova R, Richards M, Toy D, Colaneri N (2008) Active matrix electrophoretic displays on temporary bonded stainless steel substrates with 180°C a-Si:H TFTs. SID ’08 Dig 39(1):422–424
Loy D, Lee YK, Bell C, Richards M, Bawolek E, Ageno S, Moyer C, Marrs M, Venugopal SM, Kaminski J, Colaneri N, O’Rourke SM (2009) Active matrix PHOLED displays on temporary bonded polyethylene naphthalate substrates with 180°C a-Si:H TFTs. SID ’09 Dig 40(1):988–991
Ma R, Rajan K, Silvernail J, Urbanik K, Paynter J, Mandlik P, Hack M, Brown JJ, Yoo JS, Jung SH, Kim YC, Yoon SY, Kim CD, Kang IB, Hwang YK, Chung IJ, Tognoni K, Anderson R, Huffman D (2010) Wearable 4-in. QVGA full-color-video flexible AMOLEDs for rugged applications. J Soc Inf Disp 18(1):50
Battersby S, Fench I (2006) Plastic displays made by standard a-Si TFT technology. In: IMID/IDMC ’06, Daegu Exhibition and Convention Center (EXCO), Daegu, 22–25 Aug 2006, p 1546
French I, George D, Kretz T, Templier F, Lifka F (2007) Flexible displays and electronics made in AM-LCD facilities by the EPLaRTM process. SID ’07 Digest, p 1680
French I (2009) Flexible e-books. SID ’09 Digest, p 100
Pecora A, Maiolo L, Cuscuna M, Simeone D, Minotti A, Mariucci L, Fortunato G (2008) Low-temperature polysilicon thin film transistors on polyimide substrates for electronics on plastic. Solid State Electron 52:348–352
Lee CC, Chang YY, Cheng HC, Ho JC, Chen J (2010) A novel approach to make flexible active matrix displays. SID ’10 Dig 41(1):810–813
Cheng HC, Huang YS, Liu CJ, Li CW, Ho KY, Cheng CH, Peng SY, Chen YP, Lin HC, Kung BC, Lee PF, Huang JJ, Jiang LY, Lee CC (2009) Plastic substrate and backplane for flexible AM OLED by sheet to sheet process. IDW ’09, World Convention Center Summit, Miyazaki, 9–11 Dec 2009, p 1601
Jang J, Choi MH, Cheon JY (2010) TFT technologies for flexible displays. SID ’10 Dig 41(1):1143–1146
Jin DU, Lee JS, Kim TW, An SG, Straykhilev D, Pyo YS, Kim HS, Lee DB, Mo YG, Kim HD, Chung HK (2009) World-largest (6.5″) flexible full color top emission AMOLED display on plastic film and its bending properties. SID ’09 Digest, pp 983–985
An S, Lee J, Kim Y, Kim T, Jin D, Min H, Chung HK, Kim SS (2010) 2.8-inch WQVGA flexible AMOLED using high performance low temperature polysilicon TFT on plastic substrates. SID ’10 Dig
Jin DU, Kim TW, Koo HW, Stryakhilev D, Kim HS, Seo SJ, Kim MJ, Min HK, Chung HK, Kim SS (2010) Highly robust flexible AM OLED display on plastic substrate with new structure. SID ’10 Dig 41(1):703–705
Sujuki S, Yutani K, Nakashima M, Onodera A, Mizukami S, Kato M, Tano T, Tomono H, Yanagisawa M, Kameyama K (2009) A 200 ppi all-printed organic TFT backplane for flexible electrophoretic displays. In: IDW ’09, World Convention Center Summit, Miyazaki, 9–11 Dec 2009, p 1581
Hong Y, Chung S (2010) Technical issues towards all inkjet-printed organic thin-film transistors. SID ’10 Dig 41(1):1147–1150
Takechi K, Yamaguchi S, Tanabe H, Kaneko S (2010) Development of rollable silicon thin-film-transistor backplanes utilizing a roll-to-roll continuous lamination process. J Soc Inf Disp 18(6):391
Taussig C, Cobene R, Elder R, Jackson W, Jam M, Jeans A, Luo H, Maltabes J, Mei P, Smith M, Perlov C, Zhao L (2010) Roll-to-roll manufacturing of backplanes for paper-like displays. SID ’10 Dig 41(1):1151–1154
Miyasaka M, Hara H, Karaki N, Inoue S, Kawai K, Nebashi S (2008) Technical obstacles to thin film transistor circuits on plastic. Jpn JAP 47(6):4430
Fortunato G, Cuscuna M, Gaucci P, Maiolo L, Mariucci L, Pecora A, Valletta A, Templier F (2009) Self-heating effects in p-channel polysilicon TFTs fabricated on different substrates. J Korean Phys Soc 54(1):455
Suggestions for Further Reading on Poly-Si TFTs
Wong WS, Salleo A (eds) (2009) Flexible electronics: materials and applications. Springer, New York. ISBN:978-0-387-74362-2
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Sarma, K.R. (2012). Flexible Displays: TFT Technology: Substrate Options and TFT Processing Strategies. In: Chen, J., Cranton, W., Fihn, M. (eds) Handbook of Visual Display Technology. Springer, Berlin, Heidelberg. https://doi.org/10.1007/978-3-540-79567-4_62
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DOI: https://doi.org/10.1007/978-3-540-79567-4_62
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