Study On Optical Communications, Volume. 46, Issue 4, 37(2020)
Design and Implementation of 4×25 Gbit/s Optoelectronic Transceiver Module Package
[1] [1] Miller D A B, Ozaktas H M.Limit to the Bit-Rate Capacity of Electrical Interconnects from the Aspect Ratio of the System Architecture[J].Journal of Parallel and Distributed Computing, 1997, 41(1): 42-52.
[2] [2] Pepeljugoski P, Kash J, Doany F, et al.Low Power and High Density Optical Interconnections for Future Supercomputers[C]//2010 Conference on Optical Fiber Communication (OFC/NFOEC), Collocated National Fiber Optic Engineers Conference.San Diego, CA, USA: IEEE, 2010: OThX2.
[3] [3] Cho H, Kapur P, Saraswat K C.Power Comparison between High-speed Electrical and Optical Interconnects for Interchip Communication[J].Journal of Lightwave Technology, 2004, 22(9): 2021-2033.
[4] [4] Nagashima K, Kise T, Ishikawa Y, et al.A Record 1-km MMF NRZ 25.78-Gb/s Error-Free Link Using a 1 060-nm DIC VCSEL[J].IEEE Photonics Technology Letters, 2016, 28(4): 418-420.
[5] [5] Mudavath R, Naik B R. Estimation of Far End Crosstalk and Near End Crosstalk Noise with Mutually Coupled RLC Interconnect Models[C]//International Conference on Communication and Signal Processing. Chennai, India: IEEE, 2018: I8524191.
Get Citation
Copy Citation Text
LI Zhi-xiong, HE Hui-min, LIU Feng-man, XUE Hai-yun, SUN Yu, WEI Juan, CAO Li-qiang. Design and Implementation of 4×25 Gbit/s Optoelectronic Transceiver Module Package[J]. Study On Optical Communications, 2020, 46(4): 37
Category:
Received: Nov. 8, 2019
Accepted: --
Published Online: Nov. 2, 2020
The Author Email: Hui-min HE (hehuimin@ime.ac.cn)