Claims
- 1. A variable attenuator comprising:
a first attenuator for attenuating a RF signal according to a fixed voltage; a second attenuator connected in parallel to the first attenuator and attenuating the RF signal according to a control voltage for determining an attenuation mode; and a first impedance matching unit for maintaining input/output impedance matching of the second attenuator.
- 2. The attenuator claim 1, further comprising:
a second impedance matching unit for maintaining input/output impedance matching of the first attenuator.
- 3. The attenuator claim 1, further comprising:
a first capacitor for removing serial current elements from an input RF signal and for providing the RF signal to the first attenuator; and a second capacitor for removing serial current elements from an output signal of the first and second attenuators.
- 4. The attenuator of claim 1, wherein the first attenuator comprises a short key diode.
- 5. The attenuator of claim 1, wherein the fixed voltage is a power voltage divided by a certain level.
- 6. The attenuator of claim 1, wherein the RF signal flows to the first attenuator in a low attenuation mode.
- 7. The attenuator of claim 1, wherein the RF signal flows to the second attenuator in a high attenuation mode.
- 8. The attenuator of claim 1, wherein the RF signal flows to the first and second attenuators in an intermediate attenuation mode.
- 9. The attenuator of claim 1, wherein the second attenuator comprises a third capacitor connected in parallel to an input terminal of the first attenuator.
- 10. The attenuator of claim 9, wherein the second attenuator comprises a first short key diode for attenuating the RF signal transmitted through the third capacitor.
- 11. The attenuator of claim 10, wherein the second attenuator comprises a second short key diode connected in parallel to an output terminal of the first attenuator.
- 12. The attenuator of claim 11, wherein the second attenuator comprises a first and a second resistance means connected in serial between anodes of the first and second short key diodes.
- 13. The attenuator of claim 12, wherein the second attenuator comprises a control voltage input terminal is provided between the first and second resistance means.
- 14. A variable attenuator comprising:
a first attenuator for attenuating a RF signal according to a first voltage; a first impedance matching unit for maintaining impedance matching of the first attenuator in a low attenuation mode; a second attenuator provided between input and output terminals of the first attenuator for attenuating the RF signal according to a control voltage for determining an attenuation mode; and a second impedance matching unit for maintaining input/output impedance matching of the second attenuator in a high attenuation mode.
- 15. The attenuator of claim 14, wherein the first and second impedance matching units have the same resistance.
- 16. The attenuator of claim 14, wherein the second impedance matching unit comprises at least two resistors provided between the second attenuator and a ground connection and each resistance is 50 Ω.
- 17. The attenuator of claim 14, wherein the RF signal flows to the first attenuator in a low attenuation mode and flows to the second attenuator in a high attenuation mode.
- 18. The attenuator of claim 14, wherein the RF signal flows to the first and second attenuators in an intermediate attenuation mode.
- 19. The attenuator of claim 14, wherein the second attenuator comprises:
a third capacitor connected in parallel to an input terminal of the first attenuator for cutting off a control voltage to the first attenuator; a first short key diode for attenuating the RF signal transmitted through the third capacitor; a second short key diode connected in parallel to an output terminal of the first attenuator; and first and second resistance means corrected to anodes of the first and second short key diodes for applying the control voltage.
- 20. A variable attenuator comprising:
a first short key diode for attenuating a RF signal according to a first voltage; a second short key diode, connected in parallel to an anode of the first short key diode for attenuating the RF signal, according to a control voltage; a third short key diode connected in parallel to a cathode of the first short key diode for attenuating the RF signal, according to the control voltage; a first resistor provided between a cathode of the short key diode and a ground connection; and a second resistor provided between a cathode of the third short key diode and the ground connection.
- 21. The attenuator of claim 20, further comprising:
a capacitor connected to the anode of the first short key diode for cutting off a control voltage provided to the first short key diode.
- 22. The attenuator of claim 20, further comprising:
third and fourth resistors for applying the control voltage to the anodes of the second and third short key diodes, respectively.
- 23. The attenuator of claim 20, wherein the first and second resistors are approximately 50 Ω.
- 24. The attenuator of claim 20, wherein the RF signal flows to the first short key diode, in a low attenuation mode.
- 25. The attenuator of claim 20, wherein the RF signal flows to the second and third short key diodes in a high attenuation mode.
- 26. The attenuator of claim 20, wherein the RF signal flows to the first, second, and third short key diodes, in an intermediate attenuation mode.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2002-70154 |
Nov 2002 |
KR |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] Pursuant to 35 U.S.C. § 119(a), this application claims the benefit of earlier filing date and right of priority to the Korean Application No. 2002-70154, filed on Nov. 12, 2002, the content of which is hereby incorporated by reference herein in its entirety.