Патент США № | 7259510 |
---|---|
Автор(ы) | Gammel и др. |
Дата выдачи | 21 августа 2007 г. |
A microelectromechanical microwave vacuum tube device is disclosed. The device consists of a cathode formed on a substrate, the cathode comprising electron emitters. A cathode emission control grid is also attached to the device substrate. The device further includes an output structure where amplified microwave power is removed from the device. In the device, the cathode surface and the grid surface are substantially parallel to each other and substantially perpendicular to the substrate. One of either the cathode, the grid, or both the cathode and the grid, are attached to the device substrate by one or more flexural members. The device further comprises an anode that is substantially parallel to the cathode surface and the grid surface.
Авторы: | Peter Ledel Gammel (Millburn, NJ), Richard Edwin Howard (Highland Park, NJ), Omar Daniel Lopez (Summit, NJ), Wei Zhu (Warren, NJ) |
---|---|
Заявитель: | Agere Systems Inc. (Allentown, PA) |
ID семейства патентов | 24613849 |
Номер заявки: | 09/651,696 |
Дата регистрации: | 30 августа 2000 г. |
Класс патентной классификации США: | 313/497; 313/309; 313/311; 313/336; 313/351 |
Класс совместной патентной классификации: | H01J 9/02 (20130101); H01J 9/022 (20130101); H01J 21/105 (20130101); H01J 23/165 (20130101); H01J 25/00 (20130101); H01J 2209/18 (20130101) |
Класс международной патентной классификации (МПК): | H01J 19/00 (20060101) |
Область поиска: | ;313/307-311,336,351,495-497,339 ;310/309,40,308 |
4728851 | March 1988 | Lambe |
4827177 | May 1989 | Lee et al. |
5363021 | November 1994 | MacDonald |
5386172 | January 1995 | Komatsu |
5536988 | July 1996 | Zhang et al. |
5637539 | June 1997 | Hofmann et al. |
5786658 | July 1998 | Tsukamoto et al. |
5955828 | September 1999 | Sadwick et al. |
6027951 | February 2000 | MacDonald et al. |
6034810 | March 2000 | Robinson et al. |
6522055 | February 2003 | Uemura et al. |
6630772 | October 2003 | Bower et al. |
6686680 | February 2004 | Shaw et al. |
6803725 | October 2004 | Jin |
0880077 | May 1998 | EP | |||
WO98/44529 | Oct 1998 | WO | |||
I Brodie, et al., "Vacuum microelectronics", Advances in Electronics and Electron Physics, vol. 83 (1992). cited by other . D.K. Lynn, et al., "Thermionic Integrated Circuits: Electroics For Hostile Environments", IEEE Transactions on Nuclear Science, vol. NS-32, No. 6 (1985). cited by other . Green, R. et al., "Vacuum Integrated Circuits", IEDM 85, pp. 172-175. cited by other . Iannazzo, S., "A Survey Of The Present Status Of Vacuum Microelectronics", Solid-State Electronics, vol. 36, No. 3, pp. 301-320, Mar. 1, 1993. cited by other . Ren et al., "Synthesis of Large Arrays of Well-Aligned Carbon Nanotubes on Glass", Science, vol. 282, 1105 (1998). cited by other . Fan et al., "Self-Oriented Regular Arrays of Crbon Nanotubes and Their Field Emission Properties", Science vol. 283, 512 (1999). cited by other . Rinzler et al., "Unraveling Nanotubes: Field Emission from an Atomic Wire", Science, vol. 269, 1550 (1995). cited by other . de Heer, et al., "A Carbon Nanotube Field-Emission Electron Source", Science, vol. 270, 1179 (1995). cited by other . Saito et al., "Cathode Ray Tube Lighting Elements with Carbon Nanotube Field Emitters", Jpn. J. Appl. Phys., vol. 37, L346 (1998). cited by other . Wang et al., "A nanotube-based field-emission flat panel display", Appl. Phys. Lett., vol. 72, 2912 (1998). cited by other . Bonard et al., "Field emission from single-wall carbon nanotube films", Appl. Phys. Lett., vol. 73, 918 (1998). cited by other . D.A. Koester, et al., MUMPS.TM. Design handbook, Rev. 5.0 (2000). cited by other. |