Claims
- 1. A magnetic encoder apparatus comprising:
a housing, the housing including a base portion; a magnet, the magnet contained in the base portion of the housing; a sensor chip having a major surface located adjacent to the magnet, the major surface defining a reference plane; and an alignment spacer comprising a first side and a second side, the first side having an opening through to the second side, the opening enclosing the sensor chip, the second side fitting into the base portion of the housing.
- 2. The magnetic encoder apparatus of claim 1, wherein the sensor chip is included on a printed circuit board.
- 3. The magnetic encoder apparatus of claim 1, wherein the base portion of the housing further comprises a shaft assembly.
- 4. The magnetic encoder apparatus of claim 3, wherein the magnet is further attached to the shaft assembly.
- 5. The magnetic encoder apparatus of claim 3, wherein the shaft assembly further comprises at least one bearing.
- 6. The magnetic encoder apparatus of claim 1, wherein the opening enclosing the sensor chip and the alignment spacer diameter control alignment of the sensor chip in a direction parallel to the reference plane.
- 7. The magnetic encoder apparatus of claim 1, wherein the alignment spacer comprises at least one tab extending outwardly from the periphery of the alignment spacer to control alignment of the sensor chip in a direction perpendicular to the reference plane.
- 8. The magnetic encoder apparatus of claim 1, wherein the alignment spacer is comprised of a liquid crystal polymer.
- 9. The magnetic encoder apparatus of claim 1, wherein the alignment spacer is comprised of a thermoplastic.
- 10. The magnetic encoder apparatus of claim 1, wherein the alignment spacer is comprised of a non-conductive material.
- 11. The magnetic encoder apparatus of claim 1, wherein the sensor chip comprises an angular magnetic encoder integrated circuit.
- 12. The magnetic encoder apparatus of claim 1, wherein the magnet comprises a diametrically polarized magnet.
- 13. An alignment spacer having a diameter for use in a magnetic encoder apparatus for controlling the alignment of a magnet to a sensor chip, the sensor chip having a major surface defining a reference plane, the alignment spacer comprising:
a surface having at least one tab extending outwardly from the periphery of the surface; and a raised portion extending from the surface defining an opening for receiving the sensor chip.
- 14. The alignment spacer of claim 13, wherein the alignment spacer is comprised of liquid crystal polymer.
- 15. The alignment spacer of claim 13, wherein the alignment spacer is comprised of a non-conductive material.
- 16. The alignment spacer of claim 13, wherein the alignment spacer is comprised of a thermoplastic.
- 17. The alignment spacer of claim 13, wherein the surface comprises three tabs extending outwardly for the periphery of the surface.
- 18. The alignment spacer of claim 13, wherein the opening for receiving the sensor chip and the alignment spacer diameter control alignment of the sensor chip in a direction parallel to the reference plane.
- 19. The alignment spacer of claim 13, wherein the at least one tab extending outwardly from the periphery of the surface of the alignment spacer controls alignment of the sensor chip in a direction perpendicular to the reference plane.
- 20. An alignment spacer for use in a magnetic encoder apparatus for controlling the alignment of a magnet to a sensor chip, the sensor chip having a major surface defining a reference plane, the alignment spacer adapted to be coupled to the sensor chip for control of direction of movement of the sensor chip.
- 21. The alignment spacer of claim 20, wherein the alignment spacer controls the direction of movement in a direction parallel to the reference plane.
- 22. The alignment spacer of claim 20, wherein the alignment spacer controls the direction of movement in a direction perpendicular to the reference plane.
- 23. A method of restricting movement of a sensor chip in relation to a magnet in a magnetic encoder apparatus, the sensor chip included on a printed circuit board, the method comprising the steps of:
placing an alignment spacer over the sensor chip included on the printed circuit board; and placing the magnet adjacent to the sensor chip contained on the printed circuit board.
RELATED APPLICATIONS
[0001] The application claims priority to provisional U.S. Application Serial No. 60/426,296, which was filed on Nov. 14, 2002, the disclosure and content of which is hereby incorporated by reference in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60426296 |
Nov 2002 |
US |