Ïàòåíò ÑØÀ ¹ | 5920148 |
---|---|
Àâòîð(û) | Potter |
Äàòà âûäà÷è | 06 èþëÿ 1999 ã. |
A lateral-emitter field emission device has a thin-film emitter cathode 50 which has thickness of not more than several hundred angstroms and has an edge or tip 110 having a small radius of curvature. To form a novel display cell structure, a cathodoluminescent phosphor anode 60 is positioned below the plane of the thin-film lateral-emitter cathode 50, allowing a large portion of the phosphor anode's top surface to emit light in the desired direction. An anode contact layer contacts the phosphor anode 60 from below to form a buried anode contact 90 which does not interfere with light emission. The anode phosphor is precisely spaced apart from the cathode edge or tip and receives electrons emitted by field emission from the edge or tip of the lateral-emitter cathode, when a small bias voltage is applied. The device may be configured as a diode, triode, or tetrode, etc. having one or more control electrodes 140 and/or 170 positioned to allow control of current from the emitter to the phosphor anode by an electrical signal applied to the control electrode. In a particularly simple embodiment, a single control electrode 140 is positioned in a plane below the emitter edge or tip 110 and automatically aligned to that edge. The display cell structure may be repeated many times in an array, and the display cell structure of the invention lends itself to novel array structures which are also disclosed. A fabrication process is disclosed using subprocess steps S1-S19 similar to those of semiconductor integrated circuit fabrication to produce the novel display cell structures and their arrays. Various embodiments of the fabrication process allow the use of conductive or insulating substrates 20 and allow fabrication of devices having various functions and complexity.
Àâòîðû: | Michael D. Potter (Grand Isle County, VT) |
---|---|
Çàÿâèòåëü: | Advanced Vision Technologies, Inc. (W. Henrietta, NY) |
ID ñåìåéñòâà ïàòåíòîâ | 23738891 |
Íîìåð çàÿâêè: | 08/818,693 |
Äàòà ðåãèñòðàöèè: | 19 ìàðòà 1997 ã. |
Application Number | Filing Date | Patent Number | Issue Date | ||
---|---|---|---|---|---|
438023 | May 8, 1995 | 5644188 | |||
Êëàññ ïàòåíòíîé êëàññèôèêàöèè ÑØÀ: | 313/309; 313/308; 313/310; 313/331; 313/336; 313/351; 313/497 |
Êëàññ ñîâìåñòíîé ïàòåíòíîé êëàññèôèêàöèè: | H01J 3/022 (20130101); H01J 9/025 (20130101); H01J 31/127 (20130101); H01J 21/105 (20130101); H01J 21/04 (20130101) |
Êëàññ ìåæäóíàðîäíîé ïàòåíòíîé êëàññèôèêàöèè (ÌÏÊ): | H01J 3/02 (20060101); H01J 21/00 (20060101); H01J 31/12 (20060101); H01J 3/00 (20060101); H01J 9/02 (20060101); H01J 21/10 (20060101); H01J 001/16 (); H01J 019/24 () |
Îáëàñòü ïîèñêà: | ;313/351,497,310,309,311,312,336,346R,500,504,505,506,507,508,509,511,512,331 |
4702792 | October 1987 | Chow et al. |
4728851 | March 1988 | Lambe |
4789648 | December 1988 | Chow et al. |
4827177 | May 1989 | Lee et al. |
4857161 | August 1989 | Borel et al. |
4908539 | March 1990 | Meyer |
4923421 | May 1990 | Brodie et al. |
4940916 | July 1990 | Borel et al. |
4944836 | July 1990 | Beyer et al. |
4964946 | October 1990 | Gray et al. |
4999539 | March 1991 | Coovert et al. |
5063327 | November 1991 | Brodie et al. |
5064396 | November 1991 | Spindt |
5075591 | December 1991 | Holmberg |
5140219 | August 1992 | Kane |
5144191 | September 1992 | Jones et al. |
5150192 | September 1992 | Greene et al. |
5191217 | March 1993 | Kane et al. |
5209687 | May 1993 | Konishi |
5210462 | May 1993 | Konishi |
5210472 | May 1993 | Casper et al. |
5214347 | May 1993 | Gray |
5216324 | June 1993 | Curtin |
5231606 | July 1993 | Gray |
5232549 | August 1993 | Cathey et al. |
5233263 | August 1993 | Cronin et al. |
5266155 | November 1993 | Gray |
5277638 | January 1994 | Lee |
5281890 | January 1994 | Kane |
5289086 | February 1994 | Kane |
5308439 | May 1994 | Cronin et al. |
5329207 | July 1994 | Cathey et al. |
5342477 | August 1994 | Cathey |
5347292 | September 1994 | Ge et al. |
5374868 | December 1994 | Tjaden et al. |
5382185 | January 1995 | Gray et al. |
5386172 | January 1995 | Komatsu |
H H. Busta, "Vacuum Microelectronics --1992" Journal of Micromechanics and Microengineering, vol. 2, No. 2 (Jun. 1992), pp. 43-74. . K. Derbyshire "Beyond AMLCDs: Field emission displays?" Solid State Technology, vol. 37, No. 11 (Nov. 1994) pp. 55-65. . K. R. Shoulders "Microelectronics Using Electron-Beam-Activated Machining Techniques" in F. L. Alt (Ed.) "Advances in Computers" vol. 2, N.Y., Academic Press, 1961 p. 135-197. . C. A. Spindt "A Thin-Film Field-Emission Cathode" J. Applied Physics vol. 39, No. 7 (1968) pp. 3504-3505. . R. F. Greene et al. "Vacuum Microelectronics" Proc. IEDM 1989, (1.3.1-1.3.5), p. 15-19. . R. A. Lee et al., "Semiconductor Fabrication Technology Applied to Micrometer Valves" IEEE Transactions on Electron Devices, vol. 36, No. 11 (Nov. 1989) p. 2703-2708. . H. H. Busta et al. "Lateral Miniaturized Vacuum Devices" Proc. IEDM 1989, (20.4.1-20.4.4), p.533-536. . J. E. Cronin et al. "Matrix Display Using Electron-Emission Devices" IBM Technical Disclosure Bulletin, vol. 32, No. 5B (Oct. 1989) p. 239-240. . J. E. Cronin et al. "Field Emission Triode Integrated-Circuit Construction Method" IBM Technical Disclosure Bulletin, vol. 32, No. 5B (Oct. 1989) p. 242-243. . Anonymous "Ionizable Gas Device Compatible with Integrated Circuit Device Size and Processing" reproduced from Research Disclosure No. 305 (Sep. 1989). . W. N. Carr et al. "Vacuum Microtriode Characteristics" J. Vac. Sci. Technol. vol. A8, No. 4 (Jul./Aug. 1990), p. 3581-3585. . B. Goodman "Return of the Vacuum Tube" Discover, vol. 11, No, 3 (Mar. 1990) pp. 55-58. . S. Kanemaru et al. "Fabrication and Characterization of Lateral Field-Emitter Triodes" IEEE Transactions on electron Devices, vol. 38, No. 10 (Oct. 1991) pp. 2334-2336. . A. Kaneko et al. "Wedge-Shaped Field Emitter Arrays for Flat Display" IEEE Transactions on Electron Devices, vol. 38, No. 10 (Oct. 1991) pp. 2395-2397.. |