Claims
- 1. A method for producing a soft magnetic thin film comprising:forming an amorphous alloy film of a single layer structure represented by the compositional formula FeaTbNc, wherein a, b and c stand for atomic percent and T stands for at least one selected from the group consisting of Zr, Hf, Ti, Nb, Ta, V, Mo and W and wherein the composition is in the range of 0<b≦20 and 0<c≦22 with the exclusion of the range wherein both b≦7.5 and c≦5, and heat-treating said amorphous alloy film at a temperature of 350° C. to 650° C. to form microcrystalline grains having a grain size of 30 nm or less, thereby producing a coercivity Hc of 1.5 Oe or less, and thermally stable soft magnetic properties as against heating to a temperature of at least 350° C.
- 2. A method according to claim 1, wherein the composition of said amorphous alloy film is within the range of 69≦a≦93, 2≦≦b≦15 and 5.5≦c≦22.
- 3. A method according to claim 1, wherein the composition of said amorphous alloy film is within the range defined by a line interconnecting points P (91, 2, 7), Q (92.5, 2, 5.5), R (87, 7.5, 5.5), S (73, 12, 15), T (69, 12, 19), U (69, 9, 22) and V (76, 5, 19) in a ternary composition coordinate system (Fe, T, N).
- 4. A method according to claim 3, wherein said heat treatment is performed in a magnetic field to produce a soft magnetic thin film exhibiting uniaxial anisotropy.
- 5. A method according to claim 1, wherein T includes Zr, and said heat-treated thin film comprises micro-crystallites of α-Fe, and in addition Fe3Zr or ZrN or both, having a crystal grain size of 30 nm or less.
- 6. A method according to claim 1, wherein said heat treating is carried out at a temperature of from 450° C. to 650° C.
- 7. A method according to claim 1, wherein said heat treating is carried out at a temperature of from 500° C. to 650° C.
- 8. A method according to claim 1, wherein said heat-treating is carried out at a temperature of about 550° C. for at least one hour.
- 9. A soft magnetic thin film according to claim 8, wherein T is Zr.
- 10. A method according to claim 1, wherein said heat-treating is carried out at a temperature and for a time period needed to provide a coercivity Hc of 1.5 Oe or less.
Priority Claims (8)
Number |
Date |
Country |
Kind |
1-15112 |
Jan 1989 |
JP |
|
1-27518 |
Feb 1989 |
JP |
|
1-33726 |
Feb 1989 |
JP |
|
1-204586 |
Aug 1989 |
JP |
|
1-304811 |
Nov 1989 |
JP |
|
1-310607 |
Dec 1989 |
JP |
|
1-315361 |
Dec 1989 |
JP |
|
2-6242 |
Jan 1990 |
JP |
|
Parent Case Info
This is a Continuation of application Ser. No. 07/707,359 filed May 29, 1991 now abandoned which is a Divisional of application Ser. No. 07/470,662 filed Jan. 26, 1990 now U.S. Pat. No. 5,117,321.
US Referenced Citations (4)
Number |
Name |
Date |
Kind |
4836865 |
Sakakima et al. |
Jun 1989 |
|
4881989 |
Yoshizawa et al. |
Nov 1989 |
|
4935314 |
Kobayashi et al. |
Jun 1990 |
|
5019190 |
Sawa et al. |
May 1991 |
|
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Country |
3707522 |
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DE |
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EP |
63-236304 |
Oct 1988 |
JP |
63-299219 |
Dec 1988 |
JP |
6442108 |
Feb 1989 |
JP |
1229408 |
Sep 1989 |
JP |
Non-Patent Literature Citations (2)
Entry |
Thermal Stability of Compositionally Modulated Amorphous Nitride Alloy Films, Sakakima et al, The Journal of the Magnetics Society of Japan, vol. 12, No. 2, (1988), pp. 299-304. |
Magnetics Properties of Amorphous Films Prepared by N2 Reactive Sputtering, Sakakima et al, IECE Technical Report MR 86-4, vol. 86, No. 27, pp. 25-32 (IECE: Institute of Electronics & Communication Engineers of Japan. |
Continuations (1)
|
Number |
Date |
Country |
Parent |
07/707359 |
May 1991 |
US |
Child |
08/178441 |
|
US |