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12 Publikationen


2024 | Konferenzband - Beitrag | ELSA-ID: 11595
Shahane, A. M., Shrotri, A. N., Wittenbröker, C., & Stübbe, O. (2024). Manufacturing of solid core optical waveguide based pressure sensor for 3D-printed below-knee orthosis. In G. von Freymann, A. M. Herkommer, & M. Flury (Eds.), 3D Printed Optics and Additive Photonic Manufacturing IV (Vol. 12995). SPIE. https://doi.org/10.1117/12.3016629
ELSA | DOI
 

2021 | Konferenzband - Beitrag | ELSA-ID: 7670
Shrotri, A. N., Beyer, M., Schneider, D. J., & Stübbe, O. (2021). Manufacturing of lens array prototypes containing spherical and fresnel lenses for visible light communications using stereolithography apparatus. In H. Helvajian, B. Gu, & H. Chen (Eds.), Laser 3D Manufacturing VIII (Vol. 11677). Society of Photo-Optical Instrumentation Engineers. https://doi.org/10.1117/12.2586907
ELSA | DOI | Download (ext.)
 

2021 | Konferenz - Beitrag | ELSA-ID: 7672
Schneider, D., Shrotri, A. N., Flatt, H., Stübbe, O., & Lachmayer, R. (2021). Efficient visible light communication drivers using illumination LEDs in industrial environments. In P. Cheben, J. Čtyroký, & I. Molina-Fernández (Eds.), Integrated Optics: Design, Devices, Systems and Applications VI (Vol. 11775). SPIE. https://doi.org/10.1117/12.2588923
ELSA | DOI
 

2020 | Konferenzband - Beitrag | ELSA-ID: 7676
Shrotri, A. N., Beyer, M., & Stübbe, O. (2020). Manufacturing and analyzing of cost-efficient fresnel lenses using stereolithography. In G. von Freymann, A. M. Herkommer, & M. Flury (Eds.), 3D Printed Optics and Additive Photonic Manufacturing II : 6-10 April 2020, online only, France (Vol. 11349). SPIE. https://doi.org/10.1117/12.2555367
ELSA | DOI
 

2018 | Konferenzband - Beitrag | ELSA-ID: 11134
Stübbe, O., Huxol, A., & Villmer, F.-J. (2018). Applying fused layer modeling technologies to print embedded 3D optical waveguide structures for communication and sensor applications. In G. von Freymann, A. M. Herkommer, & M. Flury (Eds.), 3D Printed Optics and Additive Photonic Manufacturing (Vol. 10675). SPIE. https://doi.org/10.1117/12.2306910
ELSA | DOI
 

2017 | Konferenz - Beitrag | ELSA-ID: 10226
Neu, M., Grünberg, O., Christophliemke, T., & Stübbe, O. (2017). Modeling, simulation and measurement of a bidirectional optical interconnection system for industrial applications. In H. Schröder & R. T. Chen (Eds.), Optical Interconnects XVII (Vol. 10109). SPIE. https://doi.org/10.1117/12.2251014
ELSA | DOI
 

2016 | Konferenzband - Beitrag | ELSA-ID: 7853
Hennigs, C., Lahdo, R., Springer, A., Kaierle, S., Hustedt, M., Brand, H., … Dültgen, P. (2016). Laser-based gluing of diamond-tipped saw blades. (F. Dorsch & S. Kaierle, Eds.), SPIE Proceedings. San Francisco, California, United States: Society of Photo-Optical Instrumentation Engineers (SPIE). https://doi.org/10.1117/12.2212842
ELSA | DOI
 

2015 | Konferenz - Beitrag | ELSA-ID: 10224
Stübbe, O. (2015). Semi-analytic ray tracing method for time-efficient computing of transmission behavior of PCB level optical interconnects with varying core cross sections. In H. Schröder & R. T. Chen (Eds.), Optical Interconnects XVII (No. 936804; Vol. 9368). SPIE. https://doi.org/10.1117/12.2076931
ELSA | DOI
 

2013 | Konferenzband - Beitrag | ELSA-ID: 7863
Schimek, M., Springer, A., Pfeifer, R., & Kaierle, S. (2013). Laser welding of dissimilar materials for lightweight construction and special applications. (F. Dorsch, Ed.), SPIE Proceedings. San Francisco, California, United States: SPIE. https://doi.org/10.1117/12.2006335
ELSA | DOI
 

2011 | Konferenzband - Beitrag | ELSA-ID: 11230
Schrage, J., Stübbe, O., Brusberg, L., Soenmez, Y., Schroeder, H., & Schuhmann, R. (2011). Evaluation of graded index glass waveguides for board-level WDM optical chip-to-chip communications. In A. L. Glebov & R. T. Chen (Eds.), Optoelectronic Interconnects and Component Integration XI (Vol. 7944). SPIE. https://doi.org/10.1117/12.876458
ELSA | DOI
 

2003 | Konferenzband - Beitrag | ELSA-ID: 11130
Stübbe, O., Bierhoff, T., Schrage, J., & Mrozynski, G. (2003). Influence of surface roughness on the bandwidth of optical multimode waveguides analyzed by modal noise theory. In P. Ambs & F. R. Beyette, Jr. (Eds.), Wave Optics and Photonic Devices for Optical Information Processing II (Vol. 5181). SPIE. https://doi.org/10.1117/12.505775
ELSA | DOI
 

2003 | Konferenzband - Beitrag | ELSA-ID: 11201
Stübbe, O., Bierhoff, T., Schrage, J., & Mrozynski, G. (2003). Influence of surface roughness on the bandwidth of optical multimode waveguides analyzed by modal noise theory. In P. Ambs & F. R. Beyette, Jr. (Eds.), Wave Optics and Photonic Devices for Optical Information Processing II (Vol. 5181). SPIE. https://doi.org/10.1117/12.505775
ELSA | DOI
 

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