Serial data transmission at 224 Gbit/s applying directly modulated 850 and 910 nm VCSELs

Author:

Ledentsov N.12ORCID,Chorchos Ł.12,Makarov O. Yu.1,Shchukin V. A.1,Kalosha V. P.1,Kropp J.‐R.1,Turkiewicz J. P.2,Kottke C.3,Jungnickel V.3,Freund R.3,Ledentsov N. N.1

Affiliation:

1. VI Systems GmbH Hardenbergstr. 7 Berlin Germany

2. Mixed Signal Circuit Design, Dept. of Computer Engineering and Microelectronics Warsaw University of Technology Nowowiejska 15/19 Warsaw Poland

3. Photonic Networks and Systems Department Fraunhofer Heinrich Hertz Institute Einsteinufer 37 Berlin Germany

Publisher

Institution of Engineering and Technology (IET)

Subject

Electrical and Electronic Engineering

Reference8 articles.

1. OIF press release: OIF Approves CEI‐224G Development Project.www.oiforum.com/technical‐work/hot‐topics/common‐electrical‐i‐o‐cei‐224g/ Accessed 20 August2020

2. IEEE 802.3 NEA Ad hoc: Beyond 400 Gb/s Ethernet.www.ieee802.org/3/ad_hoc/ngrates/public/calls/20_1029/CFI_Beyond400GbE_Rev7_201029.pdf Accessed 10 October2020

3. Lavrencik J. et al.:168 Gbps PAM‐4 multimode fiber transmission through 50 m using 28GHz 850 nm Multimode VCSELs. In:Optical Fiber Communication Conference p.W1D.3.OSA Publishing Washington D.C. (2020)

4. Wu W.‐L. et al.:VCSEL with bi‐layer oxidized aperture enables 140‐Gbit/s OFDM Transmission over 100‐m‐long OM5 MMF. In:Optical Fiber Communication Conference p.Tu3A.3.OSA Publishing Washington D.C. (2019).

5. High-Speed DMT and VCSEL-Based MMF Transmission Using Pre-Distortion

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