Claims
- 1. Magnetic actuator comprising a fixed magnetic part (3) cooperating magnetically with a mobile magnetic part (1), means (4) for initiating movement of the mobile magnetic part (1), characterized in that the mobile magnetic part (1) comprises at least one magnet (1-1) and in that the fixed magnetic part (3) has at least two attraction zones (3-2) onto which the mobile magnetic part is able to come to attach itself, the mobile magnetic part (1) levitating when it is not attached to one of attraction zones (3-2), its movement being magnetically guided.
- 2. Magnetic actuator as in claim 1, characterized in that the fixed magnetic part (3) is made in a material chosen from the group of soft magnetic materials, hard magnetic materials, hysteresis materials, supraconductor materials, diamagnetic materials, these materials being used alone or in combination.
- 3. Magnetic actuator as in claim 1, characterized in that means (4) for initiating movement of the mobile magnetic part (1) are magnetic means.
- 4. Magnetic actuator as in claim 3, characterized in that the means (4) for initiating movement of mobile magnetic part (1) are heating means (R) to heat fixed magnetic part (3).
- 5. Magnetic actuator as in claim 4, characterized in that the material of the fixed magnetic part (3) has a Curie temperature lower than that of magnet (1-1) of mobile magnetic part (1).
- 6. Magnetic actuator as in claim 4, characterized in that magnet (1-1) of mobile magnetic part (1) is heat insulated from fixed magnetic part (3).
- 7. Magnetic actuator as in claim 3, characterized in that means (4) for initiating movement of the mobile magnetic part set up a magnetic field in the vicinity of mobile magnetic part (1).
- 8. Magnetic actuator as in claim 7, characterized in that the means (4) for initiating movement of mobile magnetic part (1) consist of at least one conductor (4-1) through a which an electric current is able to pass.
- 9. Magnetic actuator as in claim 8, characterized in that it comprises means (5,6) for servo-controlling the current to be circulated in conductor (4-1) in relation to the position of mobile magnetic part (1) so that it is able to assume a plurality of stable levitating positions.
- 10. Magnetic actuator as in claim 8, characterized in that the conductor (40) surrounds the fixed magnetic part (3).
- 11. Magnetic actuator as in claim 8, characterized in that conductor (4-1) is in the form of a substantially planar winding.
- 12. Magnetic actuator as in claim 1, characterized in that the fixed (3) and mobile (1) magnetic parts are substantially planar.
- 13. Magnetic actuator as in claim 12, characterized in that the fixed (3) and mobile (1) magnetic parts are arranged substantially in the same plane.
- 14. Magnetic actuator as in claim 8, characterized in that conductor (4-1) firstly and fixed (3) and mobile (1) magnetic parts secondly are arranged in substantially parallel planes.
- 15. Magnetic actuator as in claim 1, characterized in that fixed (3) magnetic part consists of a member (30) which surrounds mobile magnetic part (1).
- 16. Magnetic actuator as in claim 1, characterized in that the fixed magnetic part (3) consists of several members (3-1), the mobile magnetic part (1) coming to attach itself onto one or other of members (3-1) of fixed magnetic part (3).
- 17. Magnetic actuator as in claim 16, in which the fixed magnetic part (3) comprises several members (3-1) oriented along different planes, the mobile magnetic part (1) assuming the orientation of member (3-1) to which it is attached.
- 18. Magnetic actuator as in claim 1, characterized in that the magnetization of fixed magnetic part (3) and that of mobile magnetic part (1) are directed in one same direction.
- 19. Magnetic actuator as in claim 1, characterized in that the magnetization of fixed magnetic part (3) and that of mobile magnetic part (1) are directed in opposite directions.
- 20. Magnetic actuator as in claim 17, characterized in that the means (4) for initiating movement of mobile magnetic part (1) are able to initiate rotational movement.
- 21. Magnetic actuator as in claim 1, characterized in that the fixed magnetic part (3), at an attraction zone (3-2), comprises a pair of electric contacts (C1,C2), and in that the mobile magnetic part (1) comprises at least one electric contact (C), the mobile magnetic part (1) connecting the two contacts (C1,C2) of the pair when it attaches itself to attraction zone (3-2).
- 22. Magnetic actuator as in claim 1, characterized in that mobile magnetic part (1) comprises a reflective zone (10) intended to reflect a light ray (F).
- 23. Magnetic actuator as in claim 1, characterized in that it is fabricated on an amagnetic substrate (9), the means (4) for initiating movement of mobile magnetic part (1) being embedded in the substrate.
- 24. Matrix of magnetic actuators characterized in that it comprises a plurality of magnetic actuators (A) according to claim 1, these magnetic actuators being grouped together on one same carrier (9).
- 25. Device according to claim 1 characterized in that it comprises at least one magnetic actuator.
- 26. Method for fabricating a magnetic actuator, characterized in that it comprises the following steps:
on a first substrate (91;93) forming chambers (51) able to receive a fixed magnetic part and a mobile magnetic part with magnet, depositing fixed magnetic part (3) and mobile magnetic part (1) with magnet (1-1) in chambers (51); depositing a dielectric layer (54) and etching the latter to expose the mobile magnetic part (1) and its surround as far as fixed magnetic part (3); on a second substrate (92) forming at least one chamber (55) able to receive a conductor intended to initiate movement of the mobile magnetic part; depositing conductor (4-1) in chamber (55); assembling the two substrates (91 or 93, 92) by placing them face to face; full or partial removal of the first substrate (91,93) so as to free mobile magnetic part (1).
- 27. Method as in claim 26, characterized in that it comprises a step to magnetize magnet (1-1) of mobile magnetic part (1) and optionally of fixed magnetic part (3) before freeing mobile magnetic part (1).
- 28. Method as in claim 26, characterized in that the etching step of dielectric layer (54) of the first substrate (91,93) is also intended to form at least one opening (46) to access at least one electric contact supplying conductor (4-1).
- 29. Method as in claim 26, characterized in that it comprises a step to fabricate at least one electric contact (47) to supply conductor (4-1) on the second substrate after depositing the conductor and before assembling the two substrates (91 or 93, 92).
- 30. Method as in claim 26, characterized in that it comprises a step to deposit a dielectric material (59) on the surface of the second substrate (92) before assembling the two substrates (91 or 93, 92) to protect conductor (4-1).
- 31. Method as in claim 26, characterized in that the substrates are solid semiconductor substrates or of SOI type (93).
Priority Claims (1)
Number |
Date |
Country |
Kind |
0110081 |
Jul 2001 |
FR |
|
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application claims priority based on International Patent Application No. PCT/FR02/002666, entitled “Mobile-Magnet Actuator” by Jerome Delamare, Christel Locatelli and Orphee Cugat, which claims priority of French application no. 01 10081, filed on Jul. 27, 2001, and which was not published in English.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
PCT/FR02/02666 |
7/25/2002 |
WO |
|