IP Library Granted Patent US 6,850,750
Granted Patent B2
US 6,850,750 · App. 09/781,251 · Granted Feb 1, 2005

Radio set and frequency converting method therefor

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Quick Facts
Patent No.
US 6,850,750
App. No.
09/781,251
Granted
Feb 1, 2005
Kind
B2
Abstract

To obtain a radio set in a direct conversion system so as not to have any undesired influence of a signal of a transmission system on a reception system. In a transmission system, a frequency Flo of a local signal used in a frequency converting process performed by a frequency converter is expressed as (M/N)·Frx by a frequency conversion circuit. Based on the frequency Flo and the transmission frequency Ftx, a intermediate frequency Ftxif of the transmission system is expressed as Ftxif=Flo−Ftx=(M/N)·Frx−Ftx which is an oscillation frequency of a second local oscillator. Therefore, an equation exists as Ftx+Ftxif={(M/N)·Frx−Ftxif}+Ftxif=(M/N)·Frx, although Ftx+Ftxif leak to the reception system. As a result, since it is different from a reception frequency band, no interference wave is generated for a received signal.

Claims (25)

1. A radio set having a reception system utilizing a direct conversion system and a transmission system utilizing a single conversion system, comprising:

a local oscillator which provides a local signal for both direct conversion in the reception system and single conversion in the transmission system; and

first frequency conversion means which converts the local frequency of said local oscillator prior to input to a frequency converter of the transmission system such that the local signal provided to the reception system is different from the local signal provided to the transmission system, wherein an intermediate frequency of said transmission system is not equal to a difference between a reception frequency and a transmission frequency.

2. The radio set according to claim 1 , further comprising:

second frequency conversion means which converts the local frequency of said local oscillator prior to input into said reception system.

3. The radio set according to claim 1 , wherein said first frequency conversion means comprises a multiplication unit for multiplying the oscillation frequency of said local oscillator by a conversion constant.

4. The radio set according to claim 3 , wherein said multiplication unit comprises at least one of a frequency multiplier and a frequency divider.

5. The radio set according to claim 4 , wherein said frequency multiplier is an M (positive number other than 0) multiplier, and said frequency divider is an N (positive number other than 0, and M≠N) divider.

6. The radio set according to claim 1 , further comprising channel control means for variably controlling channel frequencies of said transmission system and said reception system simultaneously.

7. The radio set according to claim 6 , wherein said channel control means is configured such that the oscillation frequency of said local oscillator and a conversion constant of said first frequency conversion means can be variably controlled.

8. The radio set according to claim 7 ,

wherein said channel control means controls said transmission and reception channel frequencies such that the transmission and reception channel frequencies can constantly maintain predetermined intervals.

9. The radio set according to claim 8 , wherein said radio set is used in a WCDMA communication system.

10. The radio set according to claim 6 , further comprising a second local oscillator for orthogonally modulating a base band signal in said transmission system,

wherein said channel control means variably controls the oscillation frequencies of said second local oscillator and the local oscillator of said transmission and said reception systems.

11. A frequency converting method for use with a radio set having a reception system utilizing a direct conversion system and a transmission system utilizing a single conversion system, and having a local oscillator which provides a local signal for both direct conversion in the reception system and single conversion in the transmission system, comprising:

converting the local frequency of the local oscillator prior to input to a frequency converter of the transmission system such that the local signal provided to the reception system is different from the local signal provided to the transmission system, wherein an intermediate frequency of said transmission system cannot be equal to a difference between a reception frequency and a transmission frequency.

12. The frequency converting method according to claim 11 , further comprising:

converting the local frequency of the local oscillator prior to input into said reception system.

13. The frequency converting method according to claim 11 , further comprising the step of variably controlling channel frequencies of said transmission system and said reception system simultaneously.

14. The frequency converting method according to claim 13 , comprising the step of:

simultaneously and variably controlling oscillation frequencies of a second local oscillator for orthogonally modulating a base band signal in said transmission system and a local oscillator of said transmission and said reception systems.

15. The frequency converting method according to claim 13 ,

wherein said transmission and reception channel frequencies can be variably controlled such that said frequencies can constantly maintain predetermined intervals.

16. The frequency converting method according to claim 15 , wherein said method is used in a WCDMA communication system.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 11, 2014
From: NEC CORPORATION
To: LENOVO INNOVATIONS LIMITED (HONG KONG)
Reel/Frame 033720/0767 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 13, 2001
From: TAKAKI, TESUYA; MITAMA, MASATAKA
To: NEC CORPORATION
Reel/Frame 011546/0599 →