[1]楊舜量,「5-Gb/s與10Gb/s互補式金氧半光接收前端電路之設計」,碩士論文,國立高雄應用科技大學,2012。[2]原榮、鄔文杰、陳積德、宋馭民、劉正瑜,「光纖通訊系統原理與應用」,台北:新文京開發出版股份有限公司,民國91年,初版。
[3]http://www.ieee802.org/3/
[4]S. Walklin and J. Conradi, “Multilevel signaling for increasing the reach of 10 Gb/s lightwave systems,” Journal of Lightwave Technology, vol. 17, no. 11, PP. 2235-2248, Nov. 1999.
[5]E. Ip and J.M. Kahn, “Carrier synchronization for 3-and 4-bit-per-symbol optical transmission,” Journal of Lightwave Technology, vol. 23, no. 12, pp. 4110-4124, Dec. 2005.
[6]R.A. Griffin and A.C. Carter, “Optical differential quadrature phase-shift key (oDQPSK) for high capacity optical transmission,” Optical Fiber Communication Conference and Exhibit, Mar. 2002.
[7]K. Sekine, N. Kikuchi, S. Sasaki, S. Hayase, C. Hasegawa, T. Sugawara, “40 Gbit/s, 16-ary (4 bit/symbol) optical modulation/demodulation scheme,” Electronics Letters, vol. 41, no. 7, pp. 430-432, Mar. 2005.
[8]Ishida, Osamu. “40/100GbE technologies and related activities of IEEE standardization,” IEEE, Mar. 2009.
[9]IEEE P802.3bs, 200 Gb/s and 400 Gb/s Ethernet Task Force [online]. Available: http://www.ieee802.org/3/bs/
[10]C. Cole, Finisar, Jeffery J. Maki, Juniper Networks, A. Srivastava, NTT Electronics, P. Stassar, Huawei, “400Gb/s 2km & 10km duplex SMP PAM-4 PMD Baseline Specifications,” 400-Gb/s Ethernet Task Force IEEE 802.3 Interim Meeting, Pittsburgh, PA, 18 – 20 May 2015.
[11]T. Yazaki, N. Chujo, et al. “25-Gbps×4 optical transmitter with adjustable asymmetric pre-emphasis in 65-nm CMOS,” IEEE International Symposium on Circuits and Systems (ISCAS), June. 2014.
[12]G. Belfiore, M. Khafaji, R. Henker, F. Ellinger, “A 50 Gb/s 190 mW Asymmetric 3-Tap FFE VCSEL Driver,” IEEE Journal of Solid-State Circuits, vol. 52, no. 9, pp. 2422-2429, Sept. 2017.
[13]G. R. Talluri, K. K. Rakesh, M. S. Baghini, “A 4-14 Gbps Inductor-Less Adaptive Linear Equalizer Using Hybrid Filter in 65 nm CMOS Technology,” Sixteenth International Symposium on Quality Electronic Design, Mar. 2015.
[14]S.O. Kasap, “Optoelectronics and Photonics: Principles and Practices,” Prentice Hall, 2001.
[15]黃素真,「光纖技術手冊」,全華科技圖書股份有限公司,西元2003年。
[16]T. C. Huang, T. W. Chung, C. H. Chern, M. C. Huang, C. C. Lin, F. L. Hsueh, “8.4 A 28Gb/s 1pJ/b shared-inductor optical receiver with 56% chip-area reduction in 28nm CMOS,” IEEE International Solid-State Circuits Conference Digest of Technical Papers, Feb. 2014.
[17]Z. Zhiyao, K. Sun, G. Wang, T. Zhang, S. Kulis, P. Gui, P. Moreira, “A Compact Low-Power Driver Array for VCSELs in 65-nm CMOS Technology,” IEEE Transactions on Nuclear Science, vol. 64, no. 6, pp. 1599-1604, Jun. 2017.
[18]Z. Dawei, C. Yingmei, T. Ling, Z. Li, “Design of a 10 Gb/s Laser Diode Voltage Driver in 0.18 um CMOS technology,” IEEE MTT-S International Microwave Workshop Series on Millimeter Wave Wireless Technology and Applications, Sept. 2012.
[19]盧建君,「光通訊接收端轉阻放大器之設計與製作」,碩士論文,國立交通大學,2007。[20]D. M. Kuchta, A. V. Rylyakov, F. E. Doany, C. L. Schow, J. E. Proesel, C. W. Baks, P. Westbergh, J. S. Gustavsson, A. Larsson, “A 71-Gb/s NRZ Modulated 850-nm VCSEL-Based Optical Link,” IEEE Photonics Technology Letters, vol. 27, no. 6, pp. 577-580, Mar. 2015.
[21]G. Belfiore, R. Henker, and F. Ellinger, “The effect of strong equalization in high-speed VCSEL-based optical communications up to 48 Gbit/s,” IEEE Bipolar/BiCMOS Circuits and Technology Meeting, Sept. 2016.
[22]G. Belfiore, L. Szilagyi, R. Henker, F. Ellinger, “25 Gbit/s adaptive 3-tap FFE VCSEL driver in 28-nm CMOS for data center communications,” International Conference on Transparent Optical Networks (ICTON), July 2017.
[23]M. Lang, Z. G. Wang, et al. “20-40 Gb/s 0.2-/spl mu/m GaAs HEMT chip set for optical data receiver,” IEEE Journal of Solid-State Circuits, vol. 32, no. 9, pp. 1384 – 1393, Sept. 1997.
[24]J. Pliva, M. Khafaji, et al. “Opto-electrical analog front-end with rapid power-on and 0.82 pJ/bit for 28 Gb/s in 14 nm FinFET CMOS,” IEEE International System-on-Chip Conference (SOCC), Sept. 2017.
[25]H. Zirath, H. Zirath, et al. “Highly integrated 60 GHz transmitter and receiver MMICs in a GaAs pHEMT technology,” IEEE Journal of Solid-State Circuits, vol. 40, no. 11, pp. 2174–2186, Oct. 2005.
[26]G. Belfiore, R. Henker, F. Ellinger, “40 Gbit/s 4-PAM VCSEL Driver Circuit With Power Roll-off Compensation,” International Midwest Symposium on Circuits and Systems, Aug. 2018.