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Journal Article 8-λ LAN-WDM TOSA for 800-Gb/s links with simplified, non-hermetic packaging
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Authors
Soo-Yong Jung, Eun Kyu Kang, Won-Bae Kwon, Sangjin Kwon, Myunghwan Kim, Gye-Sul Cho, Hae Chung Kang, Dae Woong Moon, Seok-Jun Yun, Young-Tak Han, Jongjin Lee
Issue Date
2026-03
Citation
Optics Express, v.34, no.6, pp.11259-11270
ISSN
1094-4087
Publisher
Optica Publishing Group (formerly OSA)
Language
English
Type
Journal Article
DOI
https://dx.doi.org/10.1364/OE.580570
Abstract
We present an 8-λ local-area-network wavelength-division-multiplexing (LAN-WDM) transmitter optical subassembly (TOSA) for 800-Gb/s operation, using an epoxy-sealed, non-hermetic package for improved cost-effectiveness and manufacturability. To shorten packaging time and improve packaging yield, a ball-lens alignment scheme replaces a square lens, reducing per-lane alignment degrees of freedom from six to three. All eight wavelengths are locked to the LAN-WDM grid with a single thermoelectric cooler (TEC). In addition, inserting series DC-blocking capacitors in the electro-absorption-modulated laser (EML) radio-frequency (RF) path reduces the internal heat load, lowering the TEC input power from 1.294 W to 1.086 W (∆P = 0.208 W; 16.1% reduction). Under 53.125-Gbaud PAM4 modulation (8 × 106.25 Gb/s), the TOSA delivers clear eye diagrams with transmitter and dispersion eye closure for PAM4 (TDECQ) ≤ 3.0 dB and outer extinction ratio (ER) ≥ 3.7 dB across all lanes. In link tests with a PIN-photodiode receiver optical subassembly (ROSA), per-lane receiver sensitivities of −11.2 to −7.7 dBm are achieved after 20-km transmission at BER = 2.4 × 10−4. These results indicate that the proposed non-hermetic 8-λ TOSA is a viable building block for ≥10-km intensity-modulated/direct-detect (IM/DD) 800-Gb/s deployments, with demonstrated operation over 20 km.
KSP Keywords
Cost-effectiveness, Degrees of freedom(DOF), Extinction Ratio(ER), Eye diagram, Heat load, Input power, Intensity-modulated, LAN-WDM, Modulated laser, Non-hermetic package, Photodiode receiver