- Optical Network Technologies
- Semiconductor Lasers and Optical Devices
- Photonic and Optical Devices
Israel Electric (Israel)
2010-2024
Intel (Israel)
2010-2024
Mission College
2010-2011
Intel (United States)
2010-2011
The demonstration of a 4λ×10Gbps Silicon Photonics CWDM link integrating all optical components, electronics and packaging technologies required for system integration is reported. Further the operating at 50Gbps, 4λ×12.5Gbps, also shown.
Get PDF Email Share with Facebook Tweet This Post on reddit LinkedIn Add to CiteULike Mendeley BibSonomy Citation Copy Text B. Koch, A. Alduino, L. Liao, R. Jones, M. Morse, Kim, W. Lo, J. Basak, H. Liu, Rong, Sysak, C. Krause, Saba, D. Lazar, Horwitz, Bar, S. Litski, K. Sullivan, O. Dosunmu, N. Na, T. Yin, F. Haubensack, I. Hsieh, Heck, Beatty, Bovington, and Paniccia, "A 4×12.5 Gb/s CWDM Si photonics link using integrated hybrid silicon lasers," in CLEO:2011 - Laser Applications Photonic...
This article presents a 116-Gb/s PAM4 voltage-mode (VM) transmitter (TX). The TX includes 4:1-multiplexed 7-bit digital-to-analog converter (DAC) driver with an eight-tap feedforward equalizer (FFE). A high energy efficiency of 0.9 pJ/bit was achieved by novel data and clock path architectures that operate at up to 14.5 GHz. In the path, serializer is based mainly on MUXes are biased in unregulated low voltage supply 0.75 V. Since high-quality clocks not needed buffer loading can be reduced....
We present here a low cost, small form factor, optical transceiver module composed of CMOS IC transceiver, 850 nm emission wavelength VCSEL modulated at 25 Gb/s, and an InGaAs/InP PIN Photo Diode (PD). The is fabricated in standard 28 process integrates the analog circuits interfacing PD, namely driver Transimpedance Amplifier (TIA), as well all other required transmitter receiver like Phase Locked Loop (PLL), Post Clock & Data Recovery (CDR). couples into 62.5/125 um multi-mode (OM1) TX/RX...