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NTIS 바로가기Journal of micromechanics and microengineering.: structures, devices, and systems, v.18 no.8, 2008년, pp.085009 -
Hsiao, Sheng-Yi , Lee, Chih-Chun , Fang, Weileun
This study demonstrates a novel approach to implementing a double-concave (DCV) microlens using a simple polymer dispensing and sucking process. The DCV microlens is implemented at room temperature using a commercially-available pneumatic-controlled polymer dispensing system. The DCV lens profile ca...
2007 10.1088/0960-1317/17/8/037 17 1703 0960-1317 J. Micromech. Microeng. Hsieh J
Kwon, S., Milanovic, V., Lee, L.P.. Large-displacement vertical microlens scanner with low driving voltage. IEEE photonics technology letters : a publication of the IEEE Laser and Electro-optics Society, vol.14, no.11, 1572-1574.
Toshiyoshi, H., Su, G.-D.J., LaCosse, J., Wu, M.C.. A surface micromachined optical scanner array using photoresist lenses fabricated by a thermal reflow process. Journal of lightwave technology : a joint IEEE/OSA publication, vol.21, no.7, 1700-1708.
2001 337 Proc. MEMS 2001 (Jan.) Lin Y-S Pan C-T Lin K-L Chen S-C Yang J-J Yang J-P
Jeon, C.W., Gu, E., Liu, C., Girkin, J.M., Dawson, M.D.. Polymer microlens arrays applicable to AlInGaN ultraviolet micro-light-emitting diodes. IEEE photonics technology letters : a publication of the IEEE Laser and Electro-optics Society, vol.17, no.9, 1887-1889.
Eun-Hyun Park, Moon-Jung Kim, Young-Se Kwon. Microlens for efficient coupling between LED and optical fiber. IEEE photonics technology letters : a publication of the IEEE Laser and Electro-optics Society, vol.11, no.4, 439-441.
Jain, Ankur, Xie, Huikai. Microendoscopic Confocal Imaging Probe Based on an LVD Microlens Scanner. IEEE journal on selected topics in quantum electronics : a publication of the IEEE Communications Society, vol.13, no.2, 228-234.
2005 231 Proc. MEMS 2005 (Feb. 2005) Tohara M Iwase E Hoshino K Matsumoto K Shimoyama I
Krupenkin, T., Yang, S., Mach, P.. Tunable liquid microlens. Applied physics letters, vol.82, no.3, 316-318.
Hsieh, W.H., Chen, J.H.. Lens-profile control by electrowetting fabrication technique. IEEE photonics technology letters : a publication of the IEEE Laser and Electro-optics Society, vol.17, no.3, 606-608.
Kuiper, S., Hendriks, B. H. W.. Variable-focus liquid lens for miniature cameras. Applied physics letters, vol.85, no.7, 1128-1130.
Chronis, Nikolas, Liu, Gang, Jeong, Ki-Hun, Lee, Luke. Tunable liquid-filled microlens array integrated with microfluidic network. Optics express, vol.11, no.19, 2370-.
Sugiura, Norio, Morita, Shinzo. Variable-focus liquid-filled optical lens. Applied optics. Optical technology, vol.32, no.22, 4181-.
De-Ying Zhang, Justis, N., Yu-Hwa Lo. Fluidic zoom-lens-on-a-chip with wide field-of-view tuning range. IEEE photonics technology letters : a publication of the IEEE Laser and Electro-optics Society, vol.16, no.10, 2356-2358.
Lee, S.-Y., Tung, H.-W., Chen, W.-C., Fang, W.. Thermal Actuated Solid Tunable Lens. IEEE photonics technology letters : a publication of the IEEE Laser and Electro-optics Society, vol.18, no.21, 2191-2193.
Sz-Yuan Lee, Wen-Chih Chen, Hsi-Wen Tung, Weileun Fang. Microlens With Tunable Astigmatism. IEEE photonics technology letters : a publication of the IEEE Laser and Electro-optics Society, vol.19, no.18, 1383-1385.
Fan, Yun-Hsing, Ren, Hongwen, Liang, Xiao, Wang, Haiying, Wu, Shin-Tson. Liquid crystal microlens arrays with switchable positive and negative focal lengths. Journal of display technology, vol.1, no.1, 151-156.
2006 9 Proc. IEEE Optial MEMS 2006 (Aug.) Kanbara N Tezuka S-I Watanabe T
2007 10.1088/0960-1317/17/1/011 17 81 0960-1317 J. Micromech. Microeng. Desmet L
Oppliger, Y., Sixt, P., Stauffer, J.M., Mayor, J.M., Regnault, P., Voirin, G.. One-step 3D shaping using a gray-tone mask for optical and microelectronic applications. Microelectronic engineering, vol.23, no.1, 449-454.
Lee, Yung-Chun, Chen, Chun-Ming, Wu, Chun-Ying. A new excimer laser micromachining method for axially symmetric 3D microstructures with continuous surface profiles. Sensors and actuators. A, Physical, vol.117, no.2, 349-355.
Chen, C.-F., Tzeng, S.-D., Chen, H.-Y., Gwo, S.. Silicon microlens structures fabricated by scanning-probe gray-scale oxidation. Optics letters, vol.30, no.6, 652-.
2003 258 Proc. Transducers'03 Merz P Quenzer H J Bernt H Wagner B Zoberbier M
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