Description

Book Synopsis
Light signals in optical waveguides can be used to transmit very large amounts of data quickly and largely without interference. In the industrial and infrastructural sectors, e.g. in the automotive and aerospace industries, the demand to further exploit this potential is therefore increasing. Which technologies can be used to effectively integrate systems that transmit data by means of light into existing components? This is a central question for current research. So far, there have been some technical limitations in this regard. For example, it is difficult to couple the signal of an optical waveguide to other optical waveguides without interruption. There is also a lack of suitable fabrication technologies for three-dimensional waveguides, as well as design and simulation environments for 3D opto-MID. This book addresses these and other challenges.

Table of Contents
Current development in the field of optical short-range interconnects.- Design and modeling of electro-optical, three-dimensional interconnect devices.- Three-dimensional simulations of optical multimode waveguides.- Conditioning of flexible substrates for the application of optical waveguides.- Aerosol Jet printing of optical waveguides.- 3D-Opto-MID coupling concept using printed waveguides.- Impact on the further development of optoelectronics.

Optical Polymer Waveguides: From the Design to the Final 3D-Opto Mechatronic Integrated Device

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    A Hardback by Jörg Franke, Ludger Overmeyer, Norbert Lindlein

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      View other formats and editions of Optical Polymer Waveguides: From the Design to the Final 3D-Opto Mechatronic Integrated Device by Jörg Franke

      Publisher: Springer Nature Switzerland AG
      Publication Date: 07/12/2022
      ISBN13: 9783030928537, 978-3030928537
      ISBN10:

      Description

      Book Synopsis
      Light signals in optical waveguides can be used to transmit very large amounts of data quickly and largely without interference. In the industrial and infrastructural sectors, e.g. in the automotive and aerospace industries, the demand to further exploit this potential is therefore increasing. Which technologies can be used to effectively integrate systems that transmit data by means of light into existing components? This is a central question for current research. So far, there have been some technical limitations in this regard. For example, it is difficult to couple the signal of an optical waveguide to other optical waveguides without interruption. There is also a lack of suitable fabrication technologies for three-dimensional waveguides, as well as design and simulation environments for 3D opto-MID. This book addresses these and other challenges.

      Table of Contents
      Current development in the field of optical short-range interconnects.- Design and modeling of electro-optical, three-dimensional interconnect devices.- Three-dimensional simulations of optical multimode waveguides.- Conditioning of flexible substrates for the application of optical waveguides.- Aerosol Jet printing of optical waveguides.- 3D-Opto-MID coupling concept using printed waveguides.- Impact on the further development of optoelectronics.

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