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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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Main Authors: 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
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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
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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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