Claims
- 1. A displacement measuring sensor comprising:an elongated bobbin of non-magnetic material, said bobbin having a hollow hub; electrical winding having at least one coil wound of insulated, electrically conductive wire disposed about said bobbin producing at least one bobbin winding assembly such that said bobbin winding assembly has an ability to receive a direct current excitation; an elongated core of magnetic material movably disposed within said hollow hub of said bobbin winding assembly, said elongated core producing a magnetic flux flow upon said direct current excitation of said bobbin winding assembly; an elongated housing, said housing consisting, generally, of a magnetic shell and two washers of non-magnetic material; said bobbin-winding assembly rigidly disposed within said housing; axes of said housing, and said bobbin-winding assembly substantially coincide; axial length of said housing and axial length of said bobbin-winding assembly are generally the same; an inner annular magnetic member disposed about and rigidly attached to the periphery of said bobbin, generally, at an end portion of said bobbin; a outer annular magnetic member disposed about said inner annular magnetic member; said outer annular magnetic member surrounding said inner annular magnetic member; said inner annular magnetic member and said outer annular magnetic member are concentric, forming a radial, substantially uniform, air-gap; periphery of said outer annular magnetic member rigidly attached to inner surface of said magnetic shell, generally, at an end portion of said shell; at least one Hall effect drive rigidly attached within said air-gap, said Hall effect device generating a direct current output in relation to said magnetic flux flow thereby providing a measuring factor for a displacement of said elongated core.
- 2. The invention in accordance with claim 1 wherein said Hall effect is rigidly attached at a boundary of said air-gap.
- 3. The invention in accordance with claim 1 wherein said bobbin is made of non- magnetic stainless steel.
- 4. The invention in accordance with claim 2 wherein said bobbin is made of non-magnetic stainless steel.
- 5. A displacement measuring sensor comprising:an elongated bobbin of non-magnetic material, said bobbin having a hollow hub and wherein one end of said bobbin is closed; electrical winding, having at least one coil wound of insulated, electrically conductive wire, disposed about said bobbin, producing at least one bobbin-winding assembly such that said bobbin winding assembly has an ability to receive a direct current excitation; an elongated core of magnetic material tubing movably disposed within said hollow hub of said bobbin-winding assembly, said elongated core producing a magnetic flux flow upon said direct current excitation; an elongated housing, said housing consisting, generally, of a magnetic shell and two washers of non-magnetic material; said bobbin-winding assembly rigidly disposed within said housing; axes of said housing and said bobbin-winding assembly substantially coincide; axial length of said housing and axial length of said bobbin-winding assembly are generally the same; an inner annular magnetic member disposed about and rigidly attached to the periphery of said bobbin, generally, at an end portion of said bobbin opposite said closed end of said bobbin; an outer annular magnetic member disposed about said inner annular magnetic member; said outer annular magnetic member surrounding said inner annular magnetic member; said Inner annular magnetic member and said outer annular magnetic member are concentric, forming a radial, substantially uniform, air-gap; periphery of said outer annular magnetic member rigidly attached to inner surface of said magnetic shell, generally, at an end portion of said shell opposite said closed end of said bobbin; at least one Hall effect device rigidly attached within said air-gap, said Hall effect device generating a direct current output in relation to said magnetic flux flow thereby providing a measuring factor for a displacement of said elongated core.
- 6. The invention in accordance with claim 5 wherein said Hall effect device is rigidly attached at a boundary of said air-gap.
- 7. The invention in accordance with claim 5 wherein said bobbin is made of non-magnetic stainless steel.
- 8. The invention in accordance with claim 6 wherein said bobbin is made of non-magnetic stainless steel.
- 9. The invention in accordance with claim 5 wherein said core is made of magnetic material rod.
- 10. The invention in accordance with claim 9 wherein said bobbin is made of non-magnetic stainless steel.
- 11. The invention in accordance with claim 1 wherein said electrical winding comprising of two coils; said two coils connected in series opposition relationship.
- 12. The invention in accordance with claim 5 wherein said electrical winding comprising of two coils; said two coils connected in series opposition relationship.
- 13. The invention in accordance with claim 11 wherein said Hall effect device is rigidly attached at a boundary of said air-gap.
- 14. The invention in accordance with claim 12 wherein said Hall effect device is rigidly attached at a boundary of said air-gap.
- 15. The invention in accordance with claim 11 wherein said bobbin is made of non-magnetic stainless steel.
- 16. The invention in accordance with claim 12 wherein said bobbin is made of non-magnetic stainless steel.
CROSS REFERENCE
United States Patents:
U.S. Pat. No. 4,807,516 Feburary 1989 Takats
U.S. Pat. No. 4,107,604 August 1978 Brenier
U.S. Pat. No. 4,319,236 March 1982 Brace, Balmer
U.S. Pat. No. 4,322,709 March 1982 Vonder, Petkewicz
US Referenced Citations (5)