Claims
- 1. In combination, a transformer including at least one core of ferromagnetic material, a first winding across which an exciting voltage is to be applied, the first winding provided on one of the cores, a second winding provided on one of the cores, the second winding including first and second terminals across which a voltage is to be induced in response to the exciting voltage, a first device for providing a relatively higher impedance between the first and second terminals of the second winding, the first device coupled between the first and second terminals, one of the terminals of the second winding adapted for coupling to a relatively lower impedance, third, fourth and fifth windings, the third winding having first and second terminals, the fourth winding having first and second terminals, the fifth winding having first and second terminals, the third and fourth windings being wound on one of the cores with a first polarity, and the fifth winding being would on one of the cores with a second polarity opposite to the first polarity, a second device for providing a relatively higher impedance between at least one pair of the following pairs of terminals: the first and second terminals of the third winding; the first and second terminals of the fourth winding; and, the first and second terminals of the fifth winding, one of the first and second terminals of each of the third, forth and fifth windings also adapted for coupling to the relatively lower impedance.
- 2. The combination of claim 1 wherein the first device comprises a first amplifier having an output terminal characterized by a relatively lower impedance and an input terminal characterized by a relatively higher impedance.
- 3. The combination of claim 2 wherein the said one of the terminals of the second winding is further coupled to the input terminal of the first amplifier.
- 4. The combination of claim 3 wherein the first amplifier comprises a substantially unity-gain amplifier.
- 5. The combination of claim 2 wherein the second device comprises a second amplifier having an output terminal characterized by a relatively lower impedance and an input terminal characterized by a relatively higher impedance.
- 6. The combination of claim 5 wherein the said one of the terminals of the third winding is further coupled to the input terminal of the second amplifier.
- 7. The combination of claim 6 wherein at DC, the second amplifier comprises a substantially unity-gain amplifier.
- 8. The combination of claim 7 wherein the second amplifier comprises a differential amplifier having inverting and non-inverting input terminals, and further including a third device characterized by a relatively low impedance at DC for coupling the output terminal of the second amplifier to the inverting input terminal of the second amplifier at DC to constitute the second amplifier a unity gain amplifier at DC.
- 9. The combination of claim 8 wherein the third device comprises a bifilar inductor having a sixth winding and a seventh winding, the sixth and seventh windings being would with the same polarity, the sixth and seventh windings including a common terminal coupled to the output terminal of the second amplifier, the remaining terminal of the sixth winding being coupled to the first terminal of the third winding and the remaining terminal of the seventh winding being coupled to the input terminal of the second amplifier.
- 10. The combination of claim 1 wherein the second device comprises an amplifier having an output terminal characterized by a relatively lower impedance and an input terminal characterized by the relatively higher impedance.
- 11. The combination of claim 10 wherein the said one of the terminals of the third winding is further coupled to the input terminal of the second device amplifier.
- 12. The combiniation of claim 11 wherein the second device amplifier comprises a substantially unity-gain amplifier at DC.
- 13. The combination of claim 12 wherein the second device amplifier comprises a differential amplifier having inverting and non-inverting input terminals, and further including a third device for coupling the output terminal of the second device amplifier to the inverting input terminal of the second device amplifier DC to constitute the second device amplifier a unity gain amplifier at DC.
- 14. The combination of claim 13 wherein the third device comprises a bifilar inductor having a sixth winding and a seventh winding, the sixth and seventh windings being would with the same polarity, the sixth and seventh windings including a common terminal coupled to the output terminal of the second device amplifier, the remaining terminal of the sixth winding being coupled to the first terminal of the third winding and the remaining terminal of the seventh winding being coupled to the input terminal of the second device amplifier.
- 15. The combination of claim 1 further comprising at least two cores with parallel axes, at least one of the first, second, third, fourth and fifth windings being wound on one of the cores and at least one of the first, second, third, fourth and fifth windings being wound on the other of the cores.
- 16. The combination of claim 15 wherein at least one of the cores is constructed from moldable ferromagnetic material.
- 17. The combination of claim 15 wherein the at least two cores have common axes.
- 18. The combination of claim 17 wherein at least one of the cores is constructed from moldable ferromagnetic material.
- 19. The combination of claim 15 further comprising more than two cores with parallel axes, at least one of the first, second, third, fourth and fifth windings being wound on a first one of the cores, at least one of the first, second, third, fourth and fifth windings being would on a second of the cores, and at least one of the first, second, third, fourth and fifth windings being would on a third of the cores.
- 20. The combination of claim 19 wherein at least one of the cores is constructed from moldable ferromagnetic material.
- 21. The combination of claim 19 wherein the more than two cores have common axes.
- 22. The combination of claim 21 wherein at least one of the cores is constructed from moldable ferromagnetic material.
- 23. The combination of claim 18 wherein said at least one core is molded in multiple parts, the multiple parts being joined together during assembly of the transformer.
- 24. The combination of claim 22 wherein said at least one core is molded in multiple parts, the multiple parts being joined together (during assembly of the transformer.
- 25. A transformer comprising at least two magnetically coupled cores with a common axis, at least one winding being wound on one of the cores, the cores having cross sectional configurations transverse to the common axis which are not rectangular.
- 26. The combination of claim 25 wherein at least one of the cores is constructed from moldable ferromagnetic material.
- 27. The combination of claim 26 wherein the at least two cores are constructed from moldable ferromagnetic material, at least one winding being wound on each of the cores.
- 28. The combination of claim 25 further comprising more than two cores with a common axis, at least one winding being would on each of at least two of the cores.
- 29. The combination of claim 28 wherein at least one of the cores is constructed from moldable ferromagnetic material.
- 30. The combination of claim 29 wherein at least two of the cores are constructed from moldable ferromagnetic material.
- 31. The combination of claim 25 wherein a first one of the windings is provided on a first one of the cores, a second one of the windings is provided on a second one of the cores, the second winding including first and second terminals across which a voltage is to be induced in response to an exciting voltage applied across said first one of the windings, and a first device for providing a first impedance between the first and second terminals of the second winding, the first device coupled between the first and second terminals.
- 32. The combination of claim 31 wherein the first device for providing a first impedance between the first and second terminals of the second winding comprises a first device for providing a relatively higher impedance between the first and second terminals of the second winding, one of the terminals of the second winding adapted for coupling to a relatively lower impedance.
- 33. The combination of claim 32 wherein the first device comprises a first amplifier having an output terminal characterized by a relatively lower impedance and an input terminal characterized by a relatively higher impedance.
- 34. The combination of claim 33 wherein the said one of the terminals of the second winding is further coupled to the input terminal of the first amplifier.
- 35. The combination of claim 34 wherein the first amplifier comprises a substantially unity-gain amplifier.
- 36. The combination of claim 32 further comprising third, fourth and fifth windings, the third winding having first and second terminals, the fourth winding having first and second terminals, the fifth winding having first and second terminals, the third and fourth windings being wound on one of the cores with a first polarity, and the fifth winding being wound on one of the cores with a second polarity opposite to the first polarity, a second device for providing a relatively higher impedance between at least one pair of the following pairs of terminals: the first and second terminals of the third winding; the first and second terminals of the fourth winding; and, the first and second terminals of the fifth winding, one of the first and second terminals of each of the third, fourth and fifth windings also adapted for coupling to the relatively lower impedance.
- 37. The combination of claim 36 wherein the second device comprises a second amplifier having an output terminal characterized by a relatively lower impedance and an input terminal characterized by a relatively higher impedance.
- 38. The combination of claim 37 wherein the said one of the terminals of the third winding is further coupled to the input terminal of the second amplifier.
- 39. The combination of claim 38 wherein at DC, the second amplifier comprises a substantially unity-gain amplifier.
- 40. The combination of claim 39 wherein the second amplifier comprises a differential amplifier having inverting and non-inverting input terminals, and further including a third device characterized by a relatively low impedance at DC for coupling the output terminal of the second amplifier to the inverting input terminal of the second amplifier at DC to constitute the second amplifier a unity gain amplifier at DC.
- 41. The combination of claim 40 wherein the third device comprises a bifilar inductor having a sixth winding and a seventh winding, the sixth and seventh windings being wound with the same polarity, the sixth and seventh windings including a common terminal coupled to the output terminal of the second amplifier, the remaining terminal of the sixth winding being coupled to the first terminal of the third winding and the remaining terminal of the seventh winding being coupled to the input terminal of the second amplifier.
- 42. The combination of claim 25 wherein the second device comprises an amplifier having an output terminal characterized by a relatively much lower impedance and an input terminal characterized by the relatively higher impedance.
- 43. The combination of claim 42 wherein the said one of the terminals of the third winding is further coupled to the input terminal of the second device amplifier.
- 44. The combination of claim 43 wherein the second device amplifier comprises a substantially unity-gain amplifier at DC.
- 45. The combination of claim 44 wherein the second device amplifier comprises a differential amplifier having inverting and non-inverting input terminals, and further including a third device for coupling the output terminal of the second device amplifier to the inverting input terminal of the second device amplifier at DC to constitute the second device amplifier a unity gain amplifier at DC.
- 46. The combination of claim 45 wherein the third device comprises a bifilar inductor having a sixth winding and a seventh winding, the sixth and seventh windings being would with the same polarity, the sixth and seventh windings including a common terminal coupled to the output terminal of the second device amplifier, the remaining terminal of the sixth winding being coupled to the first terminal of the third winding and the remaining terminal of the seventh winding being coupled to the input terminal of the second device amplifier.
- 47. In combination, a transformer including at least one core of ferromagnetic material, a first winding across which an exciting voltage is to be applied, the first winding provided on one of the cores, second, third and fourth windings, the second winding having first and second terminals, the third winding having first and second terminals, the fourth winding having first and second terminals, the second and third windings being would on one of the cores with a first polarity, and the fourth winding being wound on one of the cores with a second polarity opposite to the first polarity, a first device for providing a relatively higher impedance between at least one pair of the following pairs of terminals: the first and second terminals of the second winding; the first and second terminals of the third winding; and, the first and second terminals of the fourth winding, one of the first and second terminals of each of the second, third and fourth windings also adapted for coupling to a relatively lower impedance, fifth, sixth and seventh windings, the fifth winding having first and second terminals, the sixth winding having first and second terminals, the seventh winding having first and second terminals, the fifth and sixth windings being wound on one of the cores with a first polarity, and the seventh winding being wound on one of the cores with a second polarity opposite to the first polarity, a second device for providing a relatively higher impedance between at least one pair of the following pairs of terminals: the first and second terminals of the fifth winding; the first and second terminals of the sixth winding; and, the first and second terminals of the seventh winding, one of the first and second terminals of each of the fifth, sixth and seventh windings also adapted for coupling to the relatively lower impedance.
- 48. The combination of claim 47 wherein the first and second devices comprise a first amplifier and a second amplifier, respectively, each of the first and second amplifiers having an output terminal characterized by a relatively lower impedance and an input terminal characterized by a relatively higher impedance.
- 49. The combination of claim 48 wherein the said one of the terminals of the second winding is further coupled to the input terminal of the first amplifier and the said one of the terminals of the fifth winding is further coupled to the input terminal of the second amplifier.
- 50. The combination of claim 49 wherein at DC, each of the first and second amplifiers comprises a substantially unity-gain amplifier.
- 51. The combination of claim 50 wherein each of the first and second amplifiers comprises a differential amplifier having inverting and non-inverting input terminals, and further including a third device and a fourth device, each of the third and fourth devices characterized by a relatively low impedance at DC, the third device for coupling the output terminal of the first amplifier to the inverting input terminal of the first amplifier at DC to constitute the first amplifier a unity gain amplifier at DC, and the fourth device for coupling the output terminal of the second amplifier to the inverting input terminal of the second amplifier at DC to constitute each of the first and second amplifiers a unity gain amplifier at DC.
- 52. The combination of claim 51 wherein each of the third and fourth devices comprises a bifilar inductor, the third device having an eighth winding and a ninth winding, the eighth and ninth windings being wound with the same polarity, the eighth and ninth windings including a common terminal coupled to the output terminal of the first amplifier, the remaining terminal of the eighth winding being coupled to the first terminal of the second winding and the remaining terminal of the ninth winding being coupled to the input terminal of the first amplifier, the fourth device having a tenth winding and an eleventh winding, the tenth and eleventh windings being would with the same polarity, the tenth and eleventh windings including a common terminal coupled to the output terminal of the second amplifier, the remaining terminal of the tenth winding being coupled to the first terminal of the fifth winding and the remaining terminal of the eleventh winding being coupled to the input terminal of the second amplifier.
- 53. The combination of claim 47 further comprising at least two cores with parallel axes, at least one of the first, second, third, forth, fifth, sixth and seventh windings being wound on one of the cores and at least one of the first, second, third, fourth, fifth, sixth and seventh windings being would on the other of the cores.
- 54. The combination of claim 53 wherein at least one of the cores is constructed from a moldable ferromagnetic material.
- 55. The combination of claim 53 wherein the at least two cores have common axes.
- 56. The combination of claim 55 wherein at least one of the cores is constructed from a moldable ferromagnetic material.
- 57. The combination of claim 53 further comprising more than two cores with parallel axes, at least one of the first, second, third, fourth, fifth, sixth and seventh windings being would on a first one of the cores, at least one of the first, second, third, fourth, fifth, sixth and seventh windings being wound on a second of the cores, and at least one of the first, second, second, third, fourth, fifth, sixth and seventh windings being wound on a third of the cores.
- 58. The combination of claim 57 wherein at least one of the cores is constructed from a moldable ferromagnetic material.
- 59. The combination of claim 57 wherein the more than two cores have common axes.
- 60. The combination of claim 59 wherein at least one of the cores is constructed from a moldable ferromagnetic material.
- 61. The combination of claim 56 wherein said at least one core is molded in multiple parts, the multiple parts being joined together during assembly of the transform.
- 62. The combination of claim 60 wherein said at least one core is molded in multiple parts, the multiple parts being joined together during assembly of the transformer.
- 63. The combination of claim 47 further comprising an eighth winding provided on one of the cores, the eighth winding including first and second terminals across which a voltage is to be induced in response to the exciting voltage, a third device for providing a relatively higher impedance between the first and second terminals of the eighth winding, the third device coupled between the first and second terminals, one of the terminals of the eighth winding adapted for coupling to the relatively lower impedance.
- 64. The combination of claim 63 wherein the third device comprises a third device amplifier having an output terminal characterized by a relatively lower impedance and an input terminal characterized by a relatively higher impedance.
- 65. The combination of claim 64 wherein the said one of the terminals of the eighth winding is further coupled to the input terminal of the third device amplifier.
- 66. The combination of claim 65 wherein the third device amplifier comprises a substantially unity-gain amplifier.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority under 35 U.S.C. § 119(e) to U.S. Provisional Application Serial No. 60/338,784, filed on Dec. 3, 2001, the disclosure of which is hereby incorporated by reference herein.
Provisional Applications (1)
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Number |
Date |
Country |
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60338784 |
Dec 2001 |
US |