[23] Nikolaus Flöry, Zervos Charalampos, Tobias Lamprecht

     “Highly reliable polymer waveguide platform for multi-port photonic chip-packaging”, 2021 IEEE 71st Electronic Components and Technology Conference (ECTC). 2021, pp 1689-1694

 

[22] T. Lamprecht, Felix Betschon, Johan Bauwelinck, Joris Van Kerrebrouck, Joris Lambrecht, Holger Gaul, Alexander Eichler, Xin Yin

     “Electronic-photonic board as an integration platform for Tb/s multi-chip optical communication”, IET OPTOELECTRONICS. 2021, 15(2). p.92-101

 

[21] C. Zervos et al.

     “A new generation of high-speed electro-optical transceivers and flexible bandwidth wavelength selective switches for coherent DCI: the QAMeleon project approach” in Optical Interconnects XIX, 2019, vol. 10924, p. 109240E.

 

[20] T. Alexoudi et al.

     “Optics in Computing: From Photonic Network-on-Chip to Chip-to-Chip Interconnects and Disintegrated Architectures”, J. Light. Technol., vol. 37, no. 2, pp. 363–379, Jan. 2019

 

[19] J. Kremmel, N. Crameri, T. Lamprecht, and M. Michler

     “Passive aligned assembly of an integrated optical displacement sensor based on a reflective Mach–Zehnder interferometer with a 3 × 3 directional coupler”, Opt. Eng., vol. 57, no. 8, p. 087103, Aug. 2018

 

[18] T. Lamprecht et al.

     “EOCB-Platform for Integrated Photonic Chips Direct-on-Board Assembly within Tb/s Applications” in 2018 IEEE 68th Electronic Components and Technology Conference (ECTC), 2018, pp. 854–858

 

[17] L. Brusberg, M. Immonen, and T. Lamprecht

     “Electro-optical circuit boards with single- or multi-mode optical interconnects” in Optical Interconnects for Data Centers, T. Tekin, R. Pitwon, A. Håkansson, and N. Pleros, Eds. Woodhead Publishing, 2017, pp. 287–307

 

[16] S. Olivier et al.

     “Silicon photonic transceivers for beyond 1-Tb/s datacom applications (Conference Presentation)” in Optical Interconnects XVII, 2017, vol. 10109, p. 101090G

 

[15] J. Kremmel, M. Michler, T. Lamprecht, and N. Crameri

      “Polymer Optical Waveguide Based Thermo-Optical Switch on a Metal-Core PCB-Substrate” in Advanced Photonics 2017 (IPR, NOMA, Sensors, Networks, SPPCom, PS) (2017), paper PTh1D.1, 2017, p. PTh1D.1

 

[14] J. Kremmel, T. Lamprecht, N. Crameri, and M. Michler

     “Passively aligned multichannel fiber-pigtailing of planar integrated optical waveguides”, Opt. Eng., vol. 56, no. 2, p. 026115, Feb. 2017

 

[13] J. Kremmel, T. Lamprecht, and M. Michler

     “Measurement of the thermo-optical effect of integrated waveguides”, in Silicon Photonics and Photonic Integrated Circuits V, 2016, vol. 9891, p. 98911Y

 

[12] R. Krahenbuhl, T. Lamprecht, E. Zgraggen, F. Betschon, and A. Peterhans

     “High-Precision, Self-Aligned, Optical Fiber Connectivity Solution for Single-Mode Waveguides Embedded in Optical PCBs”, J. Light. Technol., vol. 33, no. 4, pp. 865–871, Feb. 2015

 

[11] R. S. E. John et al.

     “Thermally Stable, Low Loss Optical Silicones: A Key Enabler for Electro-Optical Printed Circuit Boards”, J. Light. Technol., vol. 33, no. 4, pp. 814–819, Feb. 2015

 

[10] T. Lamprecht et al.

     “Highly reliable silicone based optical waveguides embedded in PCBs”, in Optical Fiber Communications Conference and Exhibition (OFC), 2014, 2014, pp. 1–3

 

[9] K. Schmidtke et al.

     “960 Gb/s Optical Backplane Ecosystem Using Embedded Polymer Waveguides and Demonstration in a 12G SAS Storage Array”, J. Light. Technol., vol. 31, no. 24, pp. 3970–3975, Dec. 2013

 

[8] F. Betschon, T. Lamprecht, M. Halter, S. Beyer, and H. Peterson

     “Design principles and realization of electro-optical circuit boards”, 2013, vol. 8630, pp. 86300U-86300U–12

 

[7] R. Pitwon et al.

     “Polymer optical waveguides with reduced in-plane bend loss for electro-optical PCBs”, 2012, p. 82640Z

 

[6] F. Betschon, M. Halter, S. Beyer, T. Lamprecht, and D. Meier

    “Elektro-Optische Leiterplatte” in Elektronische Baugruppen und Leiterplatten, Stuttgart, 2012, pp. 91–94

 

[5] Betschon Felix, Markus Halter, Markus Michler, Johannes Kremmel, Björn Christensen, and Philipp Schraner

     “Novel Optical Titration Sensor based on Integrated Planar Polymer Waveguides”, Sensor + Test Conference 2011, Jun-2011

 

[4] F. Betschon et al.

     “Mass production of planar polymer waveguides and their applications”, presented at the Optoelectronic Interconnects and Component Integration IX, San Francisco, California, USA, 2010, pp. 76070M-76070M–14

 

[3] F. Betschon et al.,

     “Integration planarer Polymerwellenleiter” in Embedding-Technologien und ihre Wertschöpfungskette bei elektronischen Baugruppen, Nürnberg, 2010

 

[2] R. C. A. Pitwon et al.,

     “Design and implementation of an electro-optical backplane with pluggable in-plane connectors,” 2010, pp. 76070J-76070J–12

 

[1] T. Bierhoff, J. Schrage, M. Halter, F. Betschon, J. Duis, and W. Rietveld,

     “All optical pluggable board-backplane interconnection system based on an MPXTM-FlexTail connector solution,” 2010, pp. 91–92