2018
DOI: 10.1364/prj.6.000666
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Single-mode VCSEL for pre-emphasis PAM-4 transmission up to 64  Gbit/s over 100–300  m in OM4 MMF

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Cited by 36 publications
(8 citation statements)
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“…WUT-VIS [50] NTU [48] Corning-NTU -NYCU [49] GIT [45] NTU [46] SJTU [43] SJTU [42] SU [41] NTU [40] GIT-CUT [39] NTU [38] Finisar [35] Huawei-Keysight [37] CUT [34] Panduit [33] CUT [31] Huawei [47] Huawei [32] CUT [30] [40]. In BtB and 300-m OM4 MMF conditions, the data rates of the PAM-4 transmission can be respectively obtained as 64 Gbit/s and 48 Gbit/s [40]. In 2019, Zhang and co-workers used 850-nm VCSEL to perform the PAM-4 transmission at 137 Gbit/s over the 40-cm optical backplane [41].…”
Section: Wut-vis [36]mentioning
confidence: 99%
“…WUT-VIS [50] NTU [48] Corning-NTU -NYCU [49] GIT [45] NTU [46] SJTU [43] SJTU [42] SU [41] NTU [40] GIT-CUT [39] NTU [38] Finisar [35] Huawei-Keysight [37] CUT [34] Panduit [33] CUT [31] Huawei [47] Huawei [32] CUT [30] [40]. In BtB and 300-m OM4 MMF conditions, the data rates of the PAM-4 transmission can be respectively obtained as 64 Gbit/s and 48 Gbit/s [40]. In 2019, Zhang and co-workers used 850-nm VCSEL to perform the PAM-4 transmission at 137 Gbit/s over the 40-cm optical backplane [41].…”
Section: Wut-vis [36]mentioning
confidence: 99%
“…The arbitrary waveform generator (AWG, Keysight M8196A) delivered the PAM-4 data synthesized by the built-in program and 16-QAM OFDM generated from the homemade MATLAB code. The AWG with a sample rate of 92 GS/s can support the maximal Baud rate up to 46 GBaud, and the pseudo-random bit sequence pattern lengths of 2 13 − 1 and 2 18 − 1 were respectively provided for the PAM-4 and 16-QAM OFDM data. Note that the bit length of the 16-QAM OFDM data was defined by the formula L total = N subcarrier × N bit × N symbol , where N subcarrier , N bit , and N symbol denote the subcarrier number, bit per symbol, and symbol number, respectively.…”
Section: B Encoding and Decoding Architectures For Testing The Pam-4mentioning
confidence: 99%
“…Therefore, numerous types of modulation data formats have been applied to efficiently utilize the finite bandwidth of the VCSEL with high spectral efficiency [11], [12]. For example, the 4-level pulse amplitude modulation (PAM-4) and PAM-8 with doubling and tripling the symbol rate of the NRZ-OOK format have respectively been demonstrated [13] at 70 and 56 Gbit/s by Szczerba et al [14]. Furthermore, the M-level orthogonal frequency division multiplexed quadrature amplitude modulation (M-QAM OFDM) [15] with the data rate upscaled to log 2 M per symbol has enabled the 100-Gbit/s BtB broadband data transmission with VCSEL [16].…”
Section: Introductionmentioning
confidence: 99%
“…Moreover, a pre-emphasis filter technology for the PAM-4 data format was proposed to apply to VCSEL, which further improves the data rate to 100 Gbps over 100-m MM fiber 39 . In 2018, the same group employed the pre-emphasizing technology to demonstrate the SM VCSEL based PAM-4 data transmission above 50 Gbps over 100-300-M OM4 fiber 40 . With the modulation bandwidth of the SM VCSEL at 18.9 GHz, the data rate of PAM-4 data can be achieved to 64 Gbps under BtB transmission and over 100-m MMF, as shown in Fig.…”
Section: Data Transmission Performance Of the High-speed Vcselmentioning
confidence: 99%