Claims
- 1. A variable inductor comprising:
a signal input terminal which receives an input signal; a distributor including first and second active elements, configured to vary a distribution ratio of first and second currents flowing through the first and second active elements respectively; output terminals which output the first and second currents, respectively; a first inductor through which the first current flows; and a second inductor through which the second current flows, the first and second inductors mutually coupled with each other.
- 2. The variable inductor according to claim 1, wherein the first and second active elements include first and second transistors composing common source or common emitter circuits.
- 3. The variable inductor according to claim 1, wherein the first and second active elements include first and second transistors having gate terminals or base terminals which are connected to the signal input terminal and having source terminals or emitter terminals which are connected to the corresponding first and second inductors, respectively.
- 4. The variable inductor according to claim 1, wherein the first and second active elements include first and second transistors having gate terminals or base terminals which are connected to the signal input terminal and having drain terminals or collector terminals which are connected to the corresponding first and second inductors, respectively.
- 5. The variable inductor according to claim 1, wherein the control section includes first and second current sources which supply first and second currents, and at least one of the first and second current sources varies the corresponding one of the first and second currents.
- 6. The variable inductor according to claim 1, wherein the first and second active elements include first and second transistors composing common gate or common base circuits, respectively.
- 7. The variable inductor according to claim 1, wherein the distributor includes a source follower circuit or an emitter follower circuit.
- 8. The variable inductor according to claim 1, wherein the distributor includes a cascode-connected circuit.
- 9. The variable inductor according to claim 1, wherein the distributor has an amplifier provided with input and output terminals the input terminal of the amplifier being connected to the signal input terminal and the output terminal being connected to the first inductor, and
a gain variable buffer circuit provided with input and output terminals, the input terminal of the buffer circuit being connected to the output terminal of the amplifier, and the output terminal of the buffer circuit being connected to the second inductor.
- 10. The variable inductor according to claim 1, wherein the distributor includes a differential circuit.
- 11. An oscillator comprising:
a voltage control oscillation circuit having a first inductor; and a frequency control circuit having a second inductor electro-magnetically coupled to the first inductor, configured to supply a control current to the second inductor, and controls an oscillation frequency of the voltage control oscillation circuit by changing the control current to change an inductance value of the first inductor.
- 12. The oscillator according to claim 11, wherein the frequency control circuit includes a plurality of second inductors, and controls control currents flowing through the plurality of second inductors.
- 13. The oscillator according to claim 11, wherein the frequency control circuit changes at least one of an amplitude value and a phase of the current flowing through each of the second inductors.
- 14. The oscillator according to claim 11, wherein the frequency control circuit comprises a plurality of second inductors connected to the first inductor based on different coupling coefficients.
- 15. A radio terminal comprising:
an oscillator according to claim 11, configured to deal with a plurality of communication systems having different frequency bands.
- 16. An amplifier comprising:
an amplifier circuit having a first inductor; and a control section having a second inductor electro-magnetically coupled to the first inductor, configured to supply a control current to the second inductor, and change the control current to change an inductance value of the first inductor, thereby changing amplification characteristics of the amplifier circuit.
- 17. The amplifier according to claim 16, wherein the control section changes at least one of an amplitude value and a phase of a current flowing through the second inductor.
- 18. The amplifier according to claim 17, further comprising an input impedance control section configured to control an impedance of the amplifier.
- 19. The amplifier according to claim 18, wherein the input impedance controls section includes a variable resistor.
- 20. A radio terminal comprising:
an RF signal processing circuit including a low noise amplifier according to claim 16.
- 21. An amplifier comprising:
an input terminal which receives an input signal; a variable gain amplification circuit configured to amplify the input signal with a variable gain of an amplification, which includes a plurality of amplification stages arranged in parallel; and an input impedance adjustment circuit including a variable resistor circuit connected to the input terminal, configured to adjust a resistance value of the variable resistor to compensate a change in input impedance in accordance with a change of the gain.
- 22. The amplifier according to claim 21, wherein the variable resistor circuit includes variable resistors.
- 23. The amplifier according to claim 21, wherein amplification stages have different amplification characteristics, the amplification stage or stages being selectively operated to vary the gain of the gain amplification circuit.
- 24. The amplifier according to claim 21, wherein amplification stages have same amplification characteristics, selected one or ones of the amplification stages being selectively operated to vary the gain of the gain amplification circuit.
- 25. A radio communication apparatus comprising:
an RF circuit including a low noise amplifier according to claim 21.
Priority Claims (3)
Number |
Date |
Country |
Kind |
2002-160621 |
May 2002 |
JP |
|
2002-188946 |
Jun 2002 |
JP |
|
2002-270984 |
Sep 2002 |
JP |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is based upon and claims the benefit of priority from the prior Japanese Patent Applications No. 2002-160621, filed May 31, 2002; No. 2002-188946, filed Jun. 28, 2002; and No. 2002-270984, filed Sep. 18, 2002, the entire contents of all of which are incorporated herein by reference.