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Monolithic Microring-based WDM Optical I/O for Heterogeneous Computing
For the first time, we demonstrate an error-free, 128Gbps (8x16Gbps) optical transceiver using a microring-based wavelength-division multiplexed (WDM) architecture. The optical transceiver ran for 12 hours with zero errors, resulting in a measured bit-error rate of
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creator | Wade, Mark Jeong, Daniel Kim, Byungchae Zhang, Mason Bae, Woorham Zhang, Chong Bhargava, Pavan Van Orden, Derek Ardalan, Shahab Ramamurthy, Chandarasekaran Anderson, Erik Katzin, Austin Lu, Haiwei Buchbinder, Sidney Beheshtian, Behrooz Khilo, Anatoly Rust, Michael Li, Chen Sedgwick, Forrest Fini, John Meade, Roy Stojanovic, Vladimir Sun, Chen |
description | For the first time, we demonstrate an error-free, 128Gbps (8x16Gbps) optical transceiver using a microring-based wavelength-division multiplexed (WDM) architecture. The optical transceiver ran for 12 hours with zero errors, resulting in a measured bit-error rate of |
doi_str_mv | 10.23919/VLSICircuits52068.2021.9492382 |
format | conference_proceeding |
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subjects | Adaptive optics Computer architecture Measurement uncertainty monolithic optical I/O Optical variables measurement receiver silicon photonics transceivers transmitter Very large scale integration VLSI Wavelength division multiplexing Wavelength measurement WDM wireline |
title | Monolithic Microring-based WDM Optical I/O for Heterogeneous Computing |
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