Патент США № | 6215221 |
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Автор(ы) | Cabuz и др. |
Дата выдачи | 10 апреля 2001 г. |
An actuator device providing an active surface. The actuator has a base having at least one first electrostatic electrode mounted therein which is oriented for electrostatic cooperative action with an opposing electrostatic electrode in a cover mounted above the first electrostatic electrode to define an enclosed cavity. The cover has at least one second electrostatic electrode for cooperative electrostatic activation between the electrostatic electrodes. The cover also has an outer surface forming the active surface. A power supply is operably connected to the electrostatic electrodes for causing the cooperative electrostatic activation. A quantity of fluid is contained within the cavity for pneumatically defining active surface conditions during cooperative electrostatic actuation. The cavity may be closed to provide a sealed cavity for movement of the fluid, either a gas or a liquid, during the cooperative electrostatic actuation, or it may be open to the atmosphere. The electrostatic electrodes may comprise a plurality of electrostatic electrodes arranged in a pattern to cause a predetermined change in the active surface. Various patterns may be used, such as bands, patches and regions. Also provided is control electronics in the base for controlling application of power from the power supply.
Авторы: | Cleopatra Cabuz (Edina, MN), Thomas R. Ohnstein (Roseville, MN), Michael R. Elgersma (Plymouth, MN) |
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Заявитель: | Honeywell International Inc. (Morristown, NJ) |
ID семейства патентов | 22834961 |
Номер заявки: | 09/223,083 |
Дата регистрации: | 29 декабря 1998 г. |
Класс патентной классификации США: | 310/309; 251/129.01; 310/311; 310/328; 310/345 |
Класс совместной патентной классификации: | B64C 3/38 (20130101); B64C 3/46 (20130101); B64C 13/48 (20130101); B64C 13/50 (20130101); B64C 21/10 (20130101); B64C 23/005 (20130101); B81B 3/0054 (20130101); F04B 43/043 (20130101); F15B 15/103 (20130101); F15C 5/00 (20130101); F15D 1/12 (20130101); F16K 99/0001 (20130101); F16K 99/0015 (20130101); F16K 99/0028 (20130101); F16K 99/0051 (20130101); H02N 1/006 (20130101); B81B 2203/053 (20130101); F16K 2099/0078 (20130101); Y02T 50/166 (20130101) |
Класс международной патентной классификации (МПК): | B64C 21/00 (20060101); B64C 13/00 (20060101); B64C 21/10 (20060101); B64C 13/48 (20060101); B64C 13/50 (20060101); B64C 3/00 (20060101); B64C 3/38 (20060101); B64C 3/46 (20060101); B64C 23/00 (20060101); B81B 3/00 (20060101); F04B 43/04 (20060101); F04B 43/02 (20060101); F15C 5/00 (20060101); F15D 1/12 (20060101); F15B 15/00 (20060101); F15B 15/10 (20060101); F15D 1/00 (20060101); H02N 1/00 (20060101); H02N 001/00 (); H01L 041/04 (); F16K 031/02 () |
Область поиска: | ;310/309,311,316.03,317,323.01,324,325,328,329,330,341,342,345,365,366,313R ;251/14,129.01,129.02 |
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C Cabuz, et al., "High Reliability Touch-Mode Electrostatic Actuators", Technical Digest of the Solid State Sensor and Actuator Workshop, Hilton Head, S.C., Jun. 8-11, 1998, pp. 296-299. . C. Cabuz, "Tradeoffs in MOEMS Materials" Proceedings of the SPIE, vol. 2881, pp. 160-170, Austin, Tx., Jul. 1996.. |