Claims
- 1. A method of producing a nonreciprocal circuit element comprising the steps of:
- providing a ferrite body;
- providing three central conductors such that said conductors intersect each other at predetermined angles in an electrically isolated condition, wherein all three of the intersection angles formed by the intersection of said three central conductors have different values;
- providing a terminating resistor electrically connected to at least one of said three central conductors thereby providing an isolator, and setting the resistance of said terminating resistor to greater than 50 ohms so as to provide isolation; and
- applying a DC magnetic field to the ferrite body.
- 2. A method according to claim 1, further comprising the step of adjusting said intersection angles so as to reduce insertion loss.
- 3. A method of producing a nonreciprocal circuit element comprising the steps of:
- providing a ferrite body;
- providing three central conductors such that said conductors intersect each other at predetermined angles in an electrically isolated condition, wherein all three of the intersection angles formed by the intersection of said three central conductors have different values, at least one of said intersection angles being more than 120 degrees;
- providing a terminating resistor electrically connected to at least one of said three central conductors thereby providing an isolator, and setting the resistance of said terminating resistor to greater than 50 ohms so as to provide isolation; and
- applying a DC magnetic field to the ferrite body.
- 4. A method according to claim 3, further comprising the step of adjusting said intersection angles so as to reduce insertion loss.
- 5. A nonreciprocal circuit element comprising:
- a ferrite body;
- three central conductors which are disposed such that they intersect each other at predetermined angles in an electrically isolated condition, wherein all three of the intersection angles formed by the intersection of said three central conductors have different values;
- a DC magnetic field being applied to the intersection and to the ferrite body; and
- a terminating resistor electrically connected to at least one of said three central conductors thereby providing an isolator, wherein the resistance of said terminating resistor is greater than 50 ohms.
- 6. A nonreciprocal circuit element comprising:
- a ferrite body;
- three central conductors which are disposed such that they intersect each other at predetermined angles in an electrically isolated condition, wherein all three of the intersection angles formed by the intersection of said three central conductors have different values,
- at least one of said intersection angles being more than 120 degrees;
- a DC magnetic field being applied to the intersection and to the ferrite body; and
- a terminating resistor electrically connected to at least one of said three central conductors thereby providing an isolator, wherein the resistance of said terminating resistor is greater than 50 ohms.
- 7. A method of producing a nonreciprocal circuit element comprising the steps of:
- providing a ferrite body;
- providing three central conductors such that said conductors intersect each other at predetermined angles in an electrically isolated condition, one of the three intersection angles formed by the intersection of said three central conductors being set to a value different from the other two intersection angles, wherein said three intersection angles are 110, 120 and 130 degrees, respectively; and
- applying a DC magnetic field to the ferrite body.
- 8. A method of producing a nonreciprocal circuit element comprising the steps or:
- providing a ferrite body;
- providing three central conductors such that said conductors intersect each other at predetermined angles in an electrically isolated condition, one of the three intersection angles formed by the intersection of said three central conductors being set to a value different from the other two intersection angles, wherein said three intersection angles are 100, 110 and 150 degrees, respectively; and
- applying a DC magnetic field to the ferrite body.
- 9. A method of producing a nonreciprocal circuit element comprising the steps of:
- providing a ferrite body;
- providing three central conductors such that said conductors intersect each other at predetermined angles in an electrically isolated condition, one of the three intersection angles formed by the intersection of said three central conductors being set to a value different from the other two intersection angles, wherein one of the angles is about 150 degrees, and the other two angles are about 105 degrees respectively; and
- applying a DC magnetic field to the ferrite body.
- 10. A method of producing a nonreciprocal circuit element comprising the steps of:
- providing a ferrite body;
- providing three central conductors such that said conductors intersect each other at predetermined angles in an electrically isolated condition, one of the three intersection angles formed by the intersection of said three central conductors being set to a value different from the other two intersection angles, wherein said three intersection angles are 150, 150 and 60 degrees, respectively; and
- applying a DC magnetic field to the ferrite body.
Priority Claims (2)
Number |
Date |
Country |
Kind |
7-195030 |
Jul 1995 |
JPX |
|
7-341374 |
Dec 1995 |
JPX |
|
Parent Case Info
This is a Continuation of application Ser. No. 08/681,849, filed Jul. 29, 1996, now U.S. Pat. No. 5,745,014.
US Referenced Citations (3)
Continuations (1)
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Number |
Date |
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Parent |
681849 |
Jul 1996 |
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