Claims
- 1. A rotation angle sensor, especially for a throttle adjustment device, comprising:
a stator unit having at least two stator part elements, said at least two stator part elements being positioned relative to each other leaving a spacer recess therebetween; at least one Hall sensor positioned in the spacer recess; a rotor unit having at least one annular magnetic part element, said rotor unit being moveable relative to stator unit; a plug unit; and a housing unit adapted to at least partially house the stator unit, wherein said at least one annular magnetic part element has a connector element molded into the rotor unit.
- 2. A rotation angle sensor, for use in a throttle adjustment device, comprising:
a stator unit having at least two stator part elements, said at least two stator part elements being positioned relative to each other leaving a spacer recess therebetween, each of said at least two stator part elements having a connector element; at least one Hall sensor positioned in the spacer recess; a rotor unit having at least one annular magnetic part element, said rotor unit being movable relative to stator unit; a plug unit connected to said at least one Hall sensor by a pressed screen; and a housing unit adapted at least partially house the stator unit, wherein at least said connector elements of said stator part elements and the pressed screen are at least partially molded into the housing element.
- 3. A rotation angle sensor, for use in a throttle adjustment device, comprising:
a stator unit having at least two stator part elements, said at least two stator part elements being positioned relative to each other leaving a spacer recess therebetween; at least one Hall sensor positioned in the spacer recess, a rotor unit having at least one annular magnetic part element having a magnetic segment, said rotor unit being movable relative to said stator unit; a plug unit; and a housing unit in which at least said stator unit is at least partially housed, wherein said at least one annular magnetic part element had a connector element positioned with said magnetic segment in said rotor unit.
- 4. A rotation angle sensor for use in a throttle adjustment device, comprising:
a stator unit having at least two stator part elements, said at least two stator part elements being positioned relative to each other leaving a spacer recess therebetween; at least one Hall sensor positioned in the spacer recess; a rotor unit having at least one annular magnetic part element, said rotor unit being movable relative to said stator unit, said at least one annular magnetic part element having at least one magnetic segment with at least one flux conductor sheet thereon; a plug unit; and a housing unit in which at least the stator unit is at least partially housed.
- 5. A rotation angle sensor for use in a throttle adjustment device, comprising:
a stator unit having at least two stator part elements, said at least two stator part elements being positioned relative to each other leaving a spacer recess therebetween, each of said at least two stator part elements having a connector element; at least one Hall sensor positioned in the spacer recess; a rotor unit with at least one annular magnetic part element having at least one magnetic segment having a connector element, said rotor unit being movable relative to stator unit; said magnetic part element being molded at least with the connector element into the rotor unit; a plug unit connected to said at least one Hall sensor by a pressed screen; and a housing unit adapted to at least partially house the stator unit, wherein said connector elements of the stator part elements and the pressed screen are at least partially molded into the housing unit.
- 6. A rotation angle sensor, for use in a throttle adjustment device, comprising:
a stator unit having at least two stator part elements, said at least two stator part elements being position relative to each other leaving a spacer recess therebetween, each of said at least two stator part elements having a connector element; at least one Hall sensor positioned in the spacer recess; a rotor unit having at least one annular magnetic part element, said rotor unit being movable relative to stator unit, said at least one annular magnetic part element having at least one magnetic segment with at least one flux conductor sheet located thereon, said at least one magnetic segment and said at least one flux conductor sheet being molded at least partially into said rotor unit; a plug unit connected to said at least one Hall sensor by a pressed screen; and a housing unit adapted to at least partially house the stator unit, said pressed screens being at least partially molded into said housing unit.
- 7. A rotation angle sensor according to claim 1, wherein said annular magnetic part element comprises at least a magnetic segment.
- 8. A rotation angle sensor according to claim 7, further comprising a flux conductor sheet molded into the rotor unit on at least one side of at least one magnetic segment.
- 9. A rotation angle sensor according to claim 7, further comprising a flux conductor sheet molded into the rotor unit on both sides of two magnetic elements having a spacer therebetween.
- 10. A rotation angle sensor according to claim 2, wherein said stator part elements are formed in stator segments.
- 11. A rotation angle sensor according to claim 6, said flux conductor sheet being equal length to said at least one magnetic segment.
- 12. A rotation angle sensor according to claim 6, said flux conductor sheet being essentially longer than at least a second magnetic segment.
- 13. A rotation angle sensor according to claim 12, further comprising a mounting element molded in a space between the flux conductor sheet and the second magnetic segment.
- 14. A rotation angle sensor according to claim 13, wherein the first magnetic segment is at least partially enclosed by an outer element.
- 15. A rotation angle sensor according to claim 14, wherein the first magnetic segment or the second magnetic segment and the flux conductor sheet are least partially enclosed by the outer element.
- 16. A rotation angle sensor according to claim 2, further comprising at least one component arranged on the pressed screen.
- 17. A rotation angle sensor according to claim 5, wherein the at least two stator par elements comprise half-disks in the shape of apple segments.
- 18. A rotation angle sensor according to claim 1, further comprising a sealing ring positioned between the rotor unit and the housing unit.
- 19. A rotation angle sensor according to claim 1, wherein the stator unit is at least partially a part of housing unit and the rotor unit is at least partially a part of a gear mechanism of the throttle adjustment device.
- 20. A rotation angle sensor according to claim 19, wherein the drive part is a gear.
- 21. A rotation angle sensor according to claim 1, further comprising pressed screens connected in series to a plurality of sensor contacts of at least one Hall sensor.
- 22. A rotation angle sensor according to claim 1, further comprising a second pressed screen connected in parallel to the sensor contacts of said at least one Hall sensor.
- 23. A rotation angle sensor according to claim 22, wherein said housing unit comprises a housing wall, into which the first and second pressed screens are molded, a housing sensor block which is molded with the housing wall, and hosing stator walls formed with the housing wall, and in which the connector elements of the stator segments are molded.
- 24. A rotation angle sensor according to claim 23, further comprising a second housing unit having a housing element into which the connector elements of the stator half-disks and the third and fourth pressed screens are molded in.
- 25. A rotation angle sensor according to claim 24, wherein at least one component is molded in with the pressed screens in the first and second housing units.
- 26. A rotation angle sensor according to claim 24, wherein the first and second housing units are formed at least partially from a magnetically and/or electrically nonconducting material.
- 27. A rotation angle sensor according to claim 24, wherein the first and second housing units comprise a cover element of a sensor housing, a housing of a sensor housing, a cover element of the throttle adjustment device or a housing of the throttle adjustment device.
- 28. A rotation angle sensor according to claim 23, further comprising a further stator segment connected to at least one of the two stator segments.
- 29. An improved rotation angle sensor comprising: a stator unit comprising two asymmetric partial stator elements positioned relative to each other to leave two spacer openings therebetween, and at least one Hall unit located in at least one spacer opening, and a rotor unit comprising a magnet element supported by a magnet support element, and which is movable relative to the stator elements while maintaining an air gap, the improvement comprising, the partial stator elements are divided in the shape of partial rings, comprising a large partial stator element and a small partial stator element, in a ratio of about 2/3 to 1/3, with the two co-linear spacer openings therebetween, the large and the small stator elements are at least partially molded of a magnetically non-conducting material, and the magnet element consists of two magnetically bi-polar partial magnet segment elements, which are at least partially molded of an additional magnetically non-conducting material.
- 30. An improved rotation angle sensor as set forth in claim 29, wherein the Hall units positioned in the spacer openings are connected to a pc-board element.
- 31. An improved rotation angle sensor as set forth in claim 29, wherein the large and the small partial stator elements further comprise protrusions into the area of the spacer openings.
- 32. An improved rotation angle sensor as set forth in claim 1, further comprising at least one stator fastening element.
- 33. An improved rotation angle sensor as set forth in claim 1, wherein said large partial stator element further comprises two large partial stator fastening elements located in a mirror image opposite to one another.
- 34. An improved rotation angle sensor as set forth in claim 1, wherein said small partial stator element further comprises two small partial stator fastening elements located in a mirror image opposite to one another.
- 35. An improved rotation angle sensor as set forth in claim 1, further comprising a strip element, at least partially enclosing said magnet segment elements, and thereby supporting the partial magnet segment elements on the magnet support unit.
- 36. An improved rotation angle sensor as set forth in claim 1, wherein the partial magnet segment elements supported by the strip element are molded into the stator support unit.
- 37. An improved rotation angle sensor as set forth in claim 1, wherein one magnet segment element is a north magnet segment element and the other is a south magnet segment element.
- 38. An improved rotation angle sensor as set forth in claim 1, wherein the one partial stator element is a partial damper flap housing, and the other is a moving element connected to a damper flap shaft.
- 39. An improved rotation angle sensor as set forth in claim 1, wherein the moving element is a gear wheel.
- 40. An improved rotation angle sensor as set forth in claim 1, wherein the large and the small stator elements comprise magnetically conducting material.
- 41. An improved rotation angle sensor as set forth in claim 1, wherein the magnetically conducting material is a sintered iron.
- 42. An improved rotation angle sensor as set forth in claim 1, wherein the magnetically non-conducting material is a synthetic material.
- 43. An improved rotation angle sensor as set forth in claim 1, wherein the Hall units comprise ASIC circuit elements that each exhibit a Hall element.
- 44. An improved rotation angle sensor as set forth in claim 1, wherein the north and the south partial magnet elements are each at least 90° long.
Priority Claims (2)
Number |
Date |
Country |
Kind |
200 02 719.0 |
Feb 2000 |
DE |
|
200 03 512.6 |
Feb 2000 |
DE |
|
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application is a continuation-in-part of U.S. patent application Ser. No. 09/788,630, filed Feb. 15, 2001, and entitled “ROTATION ANGLE SENSOR”.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09788630 |
Feb 2001 |
US |
Child |
10270776 |
Oct 2002 |
US |