2006Unpublished venueRequires access

Study on the Fabrication of Under-Gate Triode Structure Field Emission Display

Yuan Dan

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Abstract

Field emission display inherits merits of traditional CRTs and becomes one of the most protective flat paneldisplays for applications. FEDs with triode structure can modulate with low voltage, still, under-gate triode structuretakes advantages in aspects of simple structure and uniformity. This paper has adopted screen print process to fabricateunder-gate FEDs using carbon nanotube as cathode material. Device aging, emission uniformity and dialectic layerthickness-influence to device wene also discussed.

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What this paper is about

Field emission display inherits merits of traditional CRTs and becomes one of the most protective flat paneldisplays for applications. FEDs with triode structure can modulate with low voltage, still, under-gate triode structuretakes advantages in aspects of simple structure and uniformity. This paper has adopted screen print process to fabricateunder-gate FEDs using carbon nanotube as cathode material. Device aging, emission uniformity and dialectic layerthickness-influence to device wene also discussed.

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Available abstract

Field emission display inherits merits of traditional CRTs and becomes one of the most protective flat paneldisplays for applications. FEDs with triode structure can modulate with low voltage, still, under-gate triode structuretakes advantages in aspects of simple structure and uniformity. This paper has adopted screen print process to fabricateunder-gate FEDs using carbon nanotube as cathode material. Device aging, emission uniformity and dialectic layerthickness-influence to device wene also discussed.

Key concepts: Triode, Field emission display, CRTS, Materials science, Field electron emission, Fabrication, Optoelectronics, Carbon nanotube

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