Dr. Sungwon D. Roh
Fellow at LG Innotek
SPIE Involvement:
Author | Instructor
Publications (9)

Proceedings Article | 18 February 2010 Paper
Proceedings Volume 7583, 758310 (2010) https://doi.org/10.1117/12.842785
KEYWORDS: Semiconductor lasers, Polarization, Diodes, Fiber lasers, Fiber coupled lasers, Laser applications, Lasers, Laser marking, Laser development, Nd:YAG lasers

Proceedings Article | 24 February 2009 Paper
Proceedings Volume 7198, 71980Y (2009) https://doi.org/10.1117/12.812511
KEYWORDS: Semiconductor lasers, Diffraction gratings, Fiber couplers, Laser systems engineering, Fiber lasers, Optical design, Polarization, Fiber coupled lasers, Diodes, Polymers

Proceedings Article | 24 February 2009 Paper
Proceedings Volume 7198, 719808 (2009) https://doi.org/10.1117/12.809785
KEYWORDS: Fiber lasers, Reliability, Diodes, Semiconductor lasers, Absorption, Packaging, Ytterbium, Measurement devices, Laser applications, Optical pumping

Proceedings Article | 17 April 2008 Paper
Proceedings Volume 6952, 69520B (2008) https://doi.org/10.1117/12.777723
KEYWORDS: Semiconductor lasers, Fiber lasers, Fiber couplers, Distortion, Polymers, Diffraction gratings, Fiber coupled lasers, Collimation, Lasers

Proceedings Article | 13 February 2008 Paper
Proceedings Volume 6876, 68760Y (2008) https://doi.org/10.1117/12.771150
KEYWORDS: Semiconductor lasers, Optical fibers, Fiber lasers, Laser systems engineering, Laser development, Diodes, Collimation, Laser optics, Packaging, Fiber coupled lasers

Showing 5 of 9 publications
Conference Committee Involvement (4)
Light-Emitting Devices, Materials, and Applications XXIV
3 February 2020 | San Francisco, California, United States
Light-Emitting Devices, Materials, and Applications
4 February 2019 | San Francisco, California, United States
Light-Emitting Diodes: Materials, Devices, and Applications for Solid State Lighting XXII
29 January 2018 | San Francisco, California, United States
Light-Emitting Diodes: Materials, Devices, and Applications for Solid State Lighting XXI
30 January 2017 | San Francisco, California, United States
Course Instructor
SC877: Introduction to High Power Diode Laser Technology
This course provides attendees with a basic working knowledge of the design of high power diode laser systems operating in the power range of 500 to 4000 watts. The course describes the building blocks of a complete system: semiconductor lasers, cooling/packaging, micro- and macro-optics, beam delivery fiber, and power supplies. The course also identifies the inter-dependencies of these building blocks and describes the inevitable trade-offs of different designs. At the completion of the course, attendees will have the knowledge to confidently specify or assemble systems for their own applications. Many practical and useful examples are included throughout.
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