Display panels using fibrous field emitters

Electric lamp and discharge devices – Discharge devices having an electrode of particular material

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Details

313309, 313336, 313351, 313495, 313496, 313497, 313238, 313244, 313283, H01J 105

Patent

active

060971401

DESCRIPTION:

BRIEF SUMMARY
FIELD OF THE INVENTION

The present invention generally relates to display panels. In particular, the invention relates to display panels having a suspended fibrous cathode containing an electron field emitter.


BACKGROUND OF THE INVENTION

Display screens are used in a wide variety of applications, such as home and commercial large screen televisions, laptop and desktop computers, and indoor and outdoor advertising and information presentations. So-called flat panel displays are only a few inches thick in contrast to deep cathode ray tube monitors found on most televisions and desktop computers. Flat panel displays are a necessity for laptop computers, but also provide advantages in size and weight for many other applications. Currently, laptop computer flat panel displays utilize liquid crystals which can be switched from a transparent state to an opaque state by the application of small electrical signals. It is difficult to reliably produce these displays in sizes larger than those suitable for laptop computers.
Plasma displays have been proposed as an alternative to liquid crystal displays. Plasma displays utilize tiny pixel cells of electrically-charged gases to produce an image and require relatively large electrical power to operate.
Display panels having a cathode using a field emission electron source, i.e., a field emission material or field emitter, and a phosphor capable of emitting light upon bombardment by electrons emitted by the field emitter have been proposed. Such display panels have the potential for providing the visual display advantages of conventional cathode ray tubes and the depth, weight and power consumption advantages of flat panel displays. U.S. Pat. Nos. 4,857,799 and 5,015,912 disclose matrix-addressed flat panel displays using micro-tip cathodes constructed of tungsten, molybdenum or silicon. WO 94-15352, WO 94-15350 and WO 94-28571 disclose flat panel displays wherein the cathodes have relatively flat emission surfaces.
It has now been discovered that a fibrous cathode provides advantages over a cathode having a relatively flat emission surface. The fibrous cathode is supported by a substrate and further improved performance is achieved when the portions of the fibrous cathode addressed, and from which electron emission occurs, are suspended and not in direct physical contact with the substrate. As a result, there is a need for alternative technology for producing high quality and efficient display panels for all these applications and for producing them in large sizes when required. Other objects and advantages of the present invention will become apparent to those skilled in the art upon reference to the attached drawings and to the detailed description of the invention which hereinafter follows.


SUMMARY OF THE INVENTION

The present invention provides a display panel comprising a fibrous cathode formed of at least one fiber comprised of a field emission material, an electrically-conductive film serving as an anode and spaced apart from the fibrous cathode, and a phosphor layer capable of emitting light upon bombardment by electrons emitted by the fiber field emission material and positioned adjacent to the anode, wherein the fibrous cathode is supported by a substrate and the portions of the fibrous cathode addressed, and from which electron emission occurs, are suspended and not in direct physical contact with the substrate.
One embodiment provides for: parallel rows of crests and valleys and a second set of parallel rows of crests and valleys wherein the rows of crests and valleys of the first set are not parallel to the rows of crests and valleys of the second set; of a field emission material aligned along the length of each of the valleys of the first set of parallel rows of crests and valleys; and the second set of parallel rows of crests and valleys and supporting the fibrous cathode.
Preferably, the parallel rows of crests and valleys of the first set are perpendicular to the parallel rows of crests and valleys of the second set. It is also preferable to hav

REFERENCES:
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patent: 4857799 (1989-08-01), Spindt et al.
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patent: 5578901 (1996-11-01), Blanchet-Fincher et al.
Patent Abstracts of Japan, vol. 007, No. 072, Mar. 25, 1983 & JP 58 001956, Jan. 7, 1983 (Tokyo Shibaura Denki KK).
"Feldemitter", Sep. 20, 1990, Neues Aus Der Technik, Nr. 3, page(s) 6 XP000121490 (English Translation).
F. Davanloo, et al., "Laser Plasma Diamond", J. Mater. Res., vol. 5, No. 11, Nov. 1990, pp. 2398-2404.

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