Claims
- 1. An amorphous iron-based alloy having a composition consisting essentially of about 70-87 atom percent iron, up to about 20 atom percent of the iron being optionally replaced by cobalt and up to about 3 atom percent of the iron being optionally replaced by nickel, manganese, vanadium, titanium or molybdenum, the balance of elements present comprising a member selected from the group consisting of boron, silicon and carbon, said alloy being heat-treated to induce a linear BH characteristic within an applied field ranging from about −15 Oe to +15 Oe and low magnetic loss.
- 2. A heat-treated amorphous iron-based alloy as recited by claim 1, having a saturation magnetic induction exceeding about 10 kG, or 1 Tesla.
- 3. An amorphous iron-based alloy as recited by claim 1, said alloy having the form of a strip having a predetermined easy magnetization direction and having been heat-treated in a magnetic field, the magnitude of said magnetic field ranging from about 50 Oe (4,000 A/m) to about 2,000 Oe (160,000 A/m), and said field having been applied perpendicular to the predetermined easy magnetization direction of said strip.
- 4. An amorphous iron-based alloy as recited by claim 1, said alloy having been heat-treated at a temperature near the Curie temperature of the alloy.
- 5. An amorphous iron-based alloy as recited by claim 4, said alloy having been heat-treated at a temperature high enough to allow atomic diffusion or rearrangement of its constituents.
- 6. An amorphous iron-based alloy having a composition consisting essentially of about 70-87 atom percent iron, up to about 20 atom percent of the iron being optionally replaced by cobalt and up to about 3 atom percent of the iron being optionally replaced by nickel, manganese, vanadium, titanium or molybdenum, the balance of elements present comprising a member selected from the group consisting of boron, silicon and carbon, said alloy being heat-treated in the presence of a magnetic field to induce a linear BH characteristic within an applied field ranging from about −15 Oe to +15 Oe and low magnetic loss.
- 7. A heat-treated amorphous iron-based alloy as recited by claim 6, having a saturation magnetic induction exceeding about 10 kG, or 1 Tesla.
- 8. An amorphous iron-based alloy as recited by claim 6, said alloy having the form of a strip having a predetermined easy magnetization direction and said magnetic field having a magnitude ranging from about 50 Oe (4,000 A/m) to about 2,000 Oe (160,000 A/m), and having been applied perpendicular to the predetermined easy magnetization direction of said strip.
- 9. An amorphous iron-based alloy as recited by claim 6, said alloy having been heat-treated at a temperature near the Curie temperature of the alloy.
- 10. An amorphous iron-based alloy as recited by claim 9, said alloy having been heat-treated at a temperature high enough to allow atomic diffusion or rearrangement of its constituents.
RELATED U.S. APPLICATION DATA
This application is related to U. S. patent application Ser. No. 10/071,682 filed Feb. 8, 2002, for “Current Transformer Having An Amorphous Fe-Based Core” and to U.S. patent application Ser. No. 10/071,368 filed Feb. 8, 2002, for “Filter Circuit Having An Fe-Based Core,” both of which are assigned to the assignee of the present application.
US Referenced Citations (10)
Foreign Referenced Citations (1)
Number |
Date |
Country |
WO-9828639 |
Jul 1998 |
WO |