Gregory Victor Nelson
Mansfield University of Pennsylvania
10 Papers
642 Citations
Gregory Victor Nelson is an academic researcher from Mansfield University of Pennsylvania. The author has contributed to research in topics: Layer (electronics) & Substrate (printing). The author has an hindex of 9, co-authored 10 publications.
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Papers
Patent
Roll-to-roll fabricated light sheet and encapsulated semiconductor circuit devices
John James Daniels,Gregory Victor Nelson +1 more
- 04 Jan 2005
TL;DR: In this article, a hotmelt adhesive sheet with the embedded LED die is inserted between the electrically conductive surface and the transparent conductive layer to form a lamination.
299
Patent
Light active sheet and methods for making the same
John James Daniels,Gregory Victor Nelson +1 more
- 17 Aug 2004
TL;DR: In this paper, a sheet of light active material is formed using an electrostatic attraction and transferring process, where each light active semiconductor element has either of the n-side or the p-side in electrical communication with the transparent conductive layer.
77
Patent
Solid state light sheet and encapsulated bare die semiconductor circuits
John James Daniels,Gregory Victor Nelson +1 more
- 24 Oct 2007
TL;DR: In this article, a bottom substrate having a bottom electrically conductive surface is disposed facing the bottom substrate, and an electrical insulator separates the bottom from the top electrically conducting surface.
69
Patent
Light active sheet material
John James Daniels,Gregory Victor Nelson +1 more
- 17 Aug 2004
TL;DR: In this article, a pattern of light active semiconductor elements are fixed to the first substrate, and an adhesive is applied to the second substrate so that the other of said n-side or said p-side of each said LAS element is in electrical communication with the second conductive layer.
67
Patent
Photo-radiation source
John James Daniels,Gregory Victor Nelson +1 more
- 20 Sep 2007
TL;DR: In this paper, a method of manufacturing a photo-radiation source comprising the steps of providing a first planar conductor, disposing a formation of light emitting chips on the first conductors, each chip having a cathode and an anode, one of the cathodes and anodes of each chip being in contact with the first conductor, was described.
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