Detachable Optical Chiplet Connector for Co-Packaged Photonics

被引:5
作者
Psaila, Nicholas [1 ]
Nekkanty, Srikant [2 ]
Shia, David [3 ]
Tadayon, Pooya [3 ]
机构
[1] Intel Corp, Livingston EH54 7EJ, Scotland
[2] Intel Corp, Chandler, AZ 85226 USA
[3] Intel Corp, Hillsboro, OR 97124 USA
关键词
Co-packaged photonics; integrated waveguides; optical bridge; optical connector;
D O I
10.1109/JLT.2023.3285149
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
A key barrier to mainstream adoption of co-package photonics is a high-yielding and scalable assembly process. The current industry state-of-the-art for edge coupling is to attach fibers directly onto V-grooves etched into the silicon. With no ability for rework, any errors in this process will lead to loss of the entire package along with the expensive silicon committed to it. This problem is exacerbated by the yield compounding effect as the number of photonic chips on a package increases. In this article, we discuss a novel approach to overcome this limitation. Our solution relies on a glass optical bridge with integrated waveguides and connector mechanical alignment features that can be attached to the photonics silicon at die level to produce a photonics module. The bridge attach can take place using existing V-grooves or alternate registration features in the silicon for alignment. Each photonic module is then tested to ensure it is known-good prior to committing it to the package, and overall yield is no longer compounded by the number of photonic modules on the package. Other benefits of this approach are the elimination of fiber pigtails which simplifies material handling in the manufacturing flow, and results in a fully detachable solution where the low-reliability fibers are no longer permanently attached to the expensive silicon. Low loss coupling was demonstrated using an optical bridge, with average losses from fiber into PIC of 1.41 dB. Average detachable connector losses of 0.33 dB were demonstrated along with integration into a photonic-electronic co-packaged assembly.
引用
收藏
页码:6315 / 6323
页数:9
相关论文
共 20 条
[1]  
[Anonymous], 2019, Release 2.0
[2]   Automated, high-throughput photonic packaging [J].
Barwicz, Tymon ;
Lichoulas, Ted W. ;
Taira, Yoichi ;
Martin, Yves ;
Takenobu, Shotaro ;
Janta-Polczynski, Alexander ;
Numata, Hidetoshi ;
Kimbrell, Eddie L. ;
Nah, Jae-Woong ;
Peng, Bo ;
Childers, Darrell ;
Leidy, Robert ;
Khater, Marwan ;
Kamlapurkar, Swetha ;
Cyr, Elaine ;
Engelmann, Sebastian ;
Fortier, Paul ;
Boyer, Nicolas .
OPTICAL FIBER TECHNOLOGY, 2018, 44 :24-35
[3]   Glass Platform for Co-Packaged Optics [J].
Brusberg, Lars ;
Grenier, Jason R. ;
Zakharian, Aramais R. ;
Yeary, Lucas W. ;
Seok, Seong-Ho ;
Noh, Jung-Hyun ;
Kim, Young-Gon ;
Matthies, Juergen ;
Terwilliger, Chad C. ;
Paddock, Barry J. ;
Bellman, Robert A. ;
Levesque, Daniel W. ;
Force, Robin M. ;
Sutton, Clifford G. ;
Clark, Jeffrey S. ;
Johnson, Betsy J. .
IEEE JOURNAL OF SELECTED TOPICS IN QUANTUM ELECTRONICS, 2023, 29 (03)
[4]   Ultrafast laser inscription: perspectives on future integrated applications [J].
Choudhury, Debaditya ;
Macdonald, John R. ;
Kar, Ajoy K. .
LASER & PHOTONICS REVIEWS, 2014, 8 (06) :827-846
[5]   Detachable interface toward a low-loss reflow-compatible fiber coupling for co-packaged optics (CPO) [J].
Du, Yinchao ;
Wang, Feng ;
Hong, Ziming ;
Shi, Yuechun ;
Chen, Xiangfei ;
Zheng, Xuezhe .
OPTICS EXPRESS, 2023, 31 (02) :1318-1329
[6]   Ultrafast-laser-inscribed 3D integrated photonics: challenges and emerging applications [J].
Gross, S. ;
Withford, M. J. .
NANOPHOTONICS, 2015, 4 (03) :332-352
[7]   Photonic plug for scalable silicon photonics packaging [J].
Israel, Abraham ;
Ulfan, Faivush ;
Pascar, Leonid ;
Menezo, Sylvie ;
Wilmart, Quentin ;
Malhouitre, Stephane ;
Wang, Ying ;
Li, Chao ;
Lo, Patrick Guo Qiang ;
Taha, Hesham .
OPTICAL INTERCONNECTS XX, 2020, 11286
[8]  
itu, ITU G.652 standard
[9]   Perspective on the future of silicon photonics and electronics [J].
Margalit, Near ;
Xiang, Chao ;
Bowers, Steven M. ;
Bjorlin, Alexis ;
Blum, Robert ;
Bowers, John E. .
APPLIED PHYSICS LETTERS, 2021, 118 (22)
[10]   Detachable 1x8 Single Mode Optical Interface for DWDM Microring Silicon Photonic Transceivers [J].
Mathai, Sagi ;
Rosenberg, Paul ;
Panotopoulos, George ;
Kurtz, Dan ;
Childers, Darrell ;
Van Vaerenbergh, Thomas ;
Sun, Peng ;
Hulme, Jared ;
Rhim, Jinsoo ;
Seyedi, Ashkan ;
Tan, Michael ;
Fiorentino, Marco .
OPTICAL INTERCONNECTS XX, 2020, 11286