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Dive into the research topics where Paul N. Ludwig is active.

Publication


Featured researches published by Paul N. Ludwig.


Archive | 2000

Tuned sealing material for sealing of a flat panel display

Dmitriy Krupetsky; Anthony P. Schmid; Paul N. Ludwig


Archive | 1996

Gap jumping to seal structure, typically using combination of vacuum and non-vacuum environments

Steven T. Cho; Alfred S. Conte; Paul N. Ludwig; Anthony P. Schmid; Theodore S. Fahlen; Robert J. Pressley


Archive | 1996

Fabrication of gated electron-emitting device utilizing distributed particles to form gate openings typically beveled and/or combined with lift-off or electrochemical removal of excess emitter material

Duane A. Haven; Paul N. Ludwig; Christopher J. Spindt; Daniel M. Dobkin


Archive | 2000

Sealing of plate structures

Steven T. Cho; Alfred S. Conte; Paul N. Ludwig; Anthony P. Schmid; Theodore S. Fahlen; Robert J. Pressley


Archive | 2001

Sealing of flat-panel device

Paul N. Ludwig; Theodore S. Fahlen; Shinji Kanagawa; Jennifer Y. Sun


Archive | 1996

Gap jumping to seal structure including tacking of structure

Anthony J. Cooper; Floyd R. Pothoven; Paul N. Ludwig; Theodore S. Fahlen; Robert J. Pressley


Archive | 1999

Wall assembly and method for attaching walls for flat panel display

Chungdee Pong; John D. Porter; Theodore S. Fahlen; Christopher J. Curtin; Robert G. Neimeyer; Paul N. Ludwig


Archive | 1996

Fabrication of gated electron-emitting devices utilizing distributed particles to define gate openings, typically in combination with lift-off of excess emitter material

Duane A. Haven; N. Johan Knall; Paul N. Ludwig; John M. MaCaulay


Archive | 1996

Fabrication of gated electron-emitting device utilizing distributed particles to define gate openings and utilizing spacer material to control spacing between gate layer and electron-emissive elements

Paul N. Ludwig; Duane A. Haven; John M. MaCaulay; Christopher J. Spindt; James M. Cleeves; N. Johan Knall


Archive | 1998

Fabrication of gated electron-emitting device utilizing distributed particles to define gate openings, typically in combination with spacer material to control spacing between gate layer and electron-emissive elements

Paul N. Ludwig; Duane A. Haven; John M. MaCaulay; Christopher J. Spindt; James M. Cleeves; N. Johan Knall

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