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Dive into the research topics where S. Hovey is active.

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Featured researches published by S. Hovey.


international conference on group iv photonics | 2012

25 Gb/s silicon photonic transceivers

Thierry Pinguet; Peter De Dobbelaere; D. Foltz; Steffen Gloeckner; S. Hovey; Yi Liang; Michael Mack; Gianlorenzo Masini; Attila Mekis; Mark Peterson; Subal Sahni; J. Schramm; M. Sharp; Lieven Verslegers; Brian Welch; K. Yokoyama; S. Yu

We report on the demonstration of an integrated 4×25 Gb/s parallel optical transceiver built in Luxteras CMOS photonics platform, and discuss how we can scale this platform to even higher data rates.


optical fiber communication conference | 2014

Packaging of silicon photonics systems

P. De Dobbelaere; Ali Ayazi; Y. Chi; A. Dahl; Scott Denton; Steffen Gloeckner; Kam-Yan Hon; S. Hovey; Yi Liang; Michael Mack; Gianlorenzo Masini; Attila Mekis; Mark Peterson; Thierry Pinguet; J. Schramm; M. Sharp; C. Sohn; K. Stechschulte; P. Sun; G. Vastola; Lieven Verslegers; R. Zhou

We address the effects of packaging on performance, reliability and cost of photonic devices. For silicon photonics we address some specific packaging aspects. Finally we propose an approach for integration of photonics and ASICs.


Proceedings of SPIE | 2012

Scaling CMOS photonics transceivers beyond 100 Gb/s

Attila Mekis; Sherif Abdalla; Peter De Dobbelaere; D. Foltz; Steffen Gloeckner; S. Hovey; S. Jackson; Yi Liang; Michael Mack; Gianlorenzo Masini; Rafaela Novais; Mark Peterson; Thierry Pinguet; Subal Sahni; J. Schramm; M. Sharp; D. Song; Brian Welch; K. Yokoyama; S. Yu

We report on the performance of an integrated four-channel parallel optical transceiver built in a CMOS photonics process, operating at 28 Gb/s per channel. The optical engine of the transceiver comprises a single silicon die and a hybrid integrated DFB laser. The silicon die contains the all functionalities needed for an optical transceiver: transmitter and receiver optics, electrical driver, receiver and control circuits. We also describe the CMOS photonics platform used to build such transceiver device, which consists of: an optically enabled CMOS process, a photonic device library, and a design infrastructure that is modeled after standard circuit design tools. We discuss how this platform can scale to higher speeds and channel counts.


conference on lasers and electro optics | 2012

Silicon photonic integrated circuits

Subal Sahni; A. Narasimha; Attila Mekis; Brian Welch; C. Bradbury; C. Sohn; D. Song; D. Martinez; D. Foltz; Gianlorenzo Masini; J. Eicher; J. Dong; J. Schramm; J. White; J. Redman; K. Yokoyama; M. Tlalka; M. Harrison; Mark Peterson; M. Saberi; Michael Mack; M. Sharp; P. De Dobbelaere; R. LeBlanc; S. Leap; Sherif Abdalla; Steffen Gloeckner; S. Hovey; S. Jackson; S. Yu

This paper reviews the CMOS photonics technology developed and commercialized by Luxtera. IC design and CMOS integration methodologies are highlighted and the performance of Luxteras newest 4×14Gbps and 4×25Gbps transceiver chips is discussed.


optical interconnects conference | 2012

Silicon photonics for high data rate optical interconnect

P. De Dobbelaere; A. Narasimha; Attila Mekis; Brian Welch; C. Bradbury; C. Sohn; D. Song; D. Foltz; Gianlorenzo Masini; J. Schramm; J. White; J. Redman; K. Yokoyama; M. Harrison; Mark Peterson; Michael Mack; M. Sharp; R. LeBlanc; Sherif Abdalla; Steffen Gloeckner; S. Hovey; S. Jackson; Subal Sahni; S. Yu; Thierry Pinguet; Y. Liang

CMOS integration methodologies, design and performance of advanced silicon photonics ICs are highlighted. The roadmap towards low power and high density optical interconnect as well as close integration with ASICs are addressed.


photonics society summer topical meeting series | 2012

Silicon photonics multicore transceivers

Thierry Pinguet; Peter De Dobbelaere; D. Foltz; Steffen Gloeckner; S. Hovey; Yi Liang; Michael Mack; Gianlorenzo Masini; Attila Mekis; Mark Peterson; Subal Sahni; J. Schramm; M. Sharp; D. Song; Brian Welch; K. Yokoyama; S. Yu

We examine how the continued increase of single channel data rates combined with spatial multiplexing enabled by multi-core fibers will lead to the aggressive scaling of the aggregate bandwidth of silicon photonics transceivers.


Proceedings of SPIE | 2016

Silicon-photonics-based optical transceivers for high-speed interconnect applications

P. De Dobbelaere; G. Armijo; Joseph Balardeta; B. Chase; Y. Chi; A. Dahl; Y. De Koninck; Scott Denton; M. Eker; S. Fathpour; D. Foltz; F. Gholami; Steffen Gloeckner; Kam-Yan Hon; S. Hovey; S. Jackson; W. Li; Y. Liang; Michael Mack; Gianlorenzo Masini; G. McGee; Attila Mekis; S. Pang; Mark Peterson; Thierry Pinguet; L. Planchon; K. Roberson; Subal Sahni; J. Schramm; M. Sharp

In this paper we discuss design and characterization of silicon-photonics-based 100 Gbps (4×26 Gbps) transceivers for parallel single mode fiber communication. We also address some key underlying technologies including silicon photonics wafer processing, photonic device libraries, light source integration and packaging technologies.


international conference on group iv photonics | 2015

Advanced silicon photonic transceivers

Thierry Pinguet; G. Armijo; Joseph Balardeta; S. Barabas; B. Chase; Y. Chi; A. Dahl; P. De Dobbelaere; Y. De Koninck; Scott Denton; M. Eker; S. Fathpour; D. Foltz; F. Gholami; Steffen Gloeckner; Kam-Yan Hon; S. Hovey; S. Jackson; W. Li; Y. Liang; Michael Mack; Gianlorenzo Masini; G. McGee; Attila Mekis; S. Pang; Mark Peterson; L. Planchon; K. Roberson; Subal Sahni; J. Schramm

We report on the development of Luxteras silicon photonics platform for the production of high-speed optical transceivers using a hybrid-integrated approach.


photonics society summer topical meeting series | 2015

High-speed silicon photonics optical transceivers

Attila Mekis; G. Armijo; Joseph Balardeta; S. Barabas; B. Chase; Y. Chi; A. Dahl; Y. De Koninck; Scott Denton; M. Eker; S. Fathpour; D. Foltz; F. Gholami; Steffen Gloeckner; Kam-Yan Hon; S. Hovey; S. Jackson; W. Li; Y. Liang; Michael Mack; Gianlorenzo Masini; G. McGee; S. Pang; Mark Peterson; Thierry Pinguet; L. Planchon; K. Roberson; Subal Sahni; J. Schramm; M. Sharp

We discuss key design elements that enable highspeed optical transceivers based on Luxteras hybrid integrated silicon photonics platform.


opto electronics and communications conference | 2015

Silicon photonics transceivers for high speed optical interconnect

P. De Dobbelaere; G. Armijo; Joseph Balardeta; S. Barabas; B. Chase; Y. Chi; A. Dahl; Y. De Koninck; Scott Denton; M. Eker; S. Fathpour; D. Foltz; F. Gholami; Steffen Gloeckner; Kam-Yan Hon; S. Hovey; S. Jackson; W. Li; Y. Liang; Michael Mack; Gianlorenzo Masini; G. McGee; Attila Mekis; S. Pang; Mark Peterson; Thierry Pinguet; L. Planchon; K. Roberson; Subal Sahni; J. Schramm

In this paper we address key design and performance aspects of high-speed optical transceivers based on silicon photonics technology.

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