Claims
- 1. A solenoid, comprising:
a housing having a coil for generating a first magnetic field; an armature slidably mounted in said housing; a permanent magnet having a second magnetic field, wherein said magnet is located adjacent said armature; and a stator affixed in said housing for cooperation with said armature and said magnet to form a third magnetic field.
- 2. The solenoid according to claim 1, wherein said stator has a frusto-conical configuration.
- 3. The solenoid according to claim 1, wherein a magnetic flux density of said third magnetic field has a counterclockwise orientation.
- 4. The solenoid according to claim 2, wherein a magnetic flux density of said third magnetic field is concentrated on a tip of said stator.
- 5. The solenoid according to claim 4, wherein a magnetic flux density in an upper portion of said stator is approximately 2524 kiloGauss.
- 6. The solenoid according to claim 2, wherein said magnet is colinear with a tip of said stator.
- 7. A valve, comprising:
a housing having first and second ports and a coil for generating a first magnetic field; an armature slidably mounted in said housing, said armature having a valve head for closing and opening said first port; a permanent magnet having a second magnetic field, wherein said magnet is located adjacent said armature; a stator affixed in said housing for cooperation with said armature and said magnet to form a third magnetic field.
- 8. The solenoid according to claim 7, wherein said stator has a frusto-conical configuration.
- 9. The solenoid according to claim 7, wherein a magnetic flux density of said third magnetic field has a counterclockwise orientation.
- 10. The solenoid according to claim 8, wherein a magnetic flux density of said third magnetic field is concentrated on a tip of said stator.
- 11. The solenoid according to claim 8, wherein a magnetic flux density in an upper portion of said stator is approximately 2524 kiloGauss.
- 12. The solenoid according to claim 8, wherein said magnet is colinear with a tip of said stator.
- 13. A method for operating a valve, comprising the steps of:
providing a housing having first and second ports; generating a first magnetic field by using a coil; providing an armature having a valve head for closing and opening said first port; providing a permanent magnet for generating a second magnetic field, wherein said magnet is located adjacent said armature; and providing a stator for cooperation with said armature and said magnet to form a third magnetic field for moving said armature and thus said valve head to open and close said first port.
- 14. The method according to claim 13, wherein said stator has a frusto-conical configuration.
- 15. The method according to claim 13, wherein a magnetic flux density of said third magnetic field has a counterclockwise orientation.
- 16. The method according to claim 14, wherein a magnetic flux density of said third magnetic field is concentrated on a tip of said stator.
- 17. The method according to claim 14, wherein a magnetic flux density in an upper portion of said stator is approximately 2524 kiloGauss.
- 18. The method according to claim 14, wherein said magnet is colinear with a tip of said stator.
CROSS REFERENCE TO RELATED APPLICATION AND PRIORITY CLAIM
[0001] This application claims the benefit of U.S. Provisional Application No. 60/373,382 (Attorney Docket No. 2002 P 06213 US) filed on Apr. 12, 2002 in the name of Gilles Delaire and Frederic Gagnon and entitled USE OF A MAGNET IN A LINEAR SOLENOID ACTUATOR, which is incorporated by reference herein in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60373382 |
Apr 2002 |
US |