IP Library Granted Patent US 7,551,906
Granted Patent B2
US 7,551,906 · App. 11/383,087 · Granted Jun 23, 2009

AM/FM radio receiver and local oscillator circuit used therein

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Quick Facts
Patent No.
US 7,551,906
App. No.
11/383,087
Granted
Jun 23, 2009
Kind
B2
Abstract

A couple of frequency doubler circuits 21 and 22 which multiplys a frequency of a reference oscillation signal outputted from a reference oscillator 12 is provided, thereby a frequency of a reference oscillation signal, as the greatest common divisor between a frequency (300 KHz) determined by multiplying the frequency (fx=75 KHz) of a crystal oscillator 11 by four and a frequency (54 KHz) determined by multiplying an assigned frequency per one channel in AM radio broadcasting by a prescribed divide ratio, can be higher than a conventional frequency. This way realizes the decrease of a divide ratio in a programmable counter 17 , resulting in the reduction of the circuit scale, shortening of the lock-up time, and improvement of the S/N ratio.

Claims (68)

1. An AM/FM radio receiver, comprising:

a local oscillation circuit which generates a local oscillation signal;

first mixture circuit which mixes the local oscillation signal outputted from said local oscillation circuit and a FM radio broadcast signal to generate an intermediate frequency signal for FM broadcasting;

first divide circuit which divides the local oscillation signal outputted from said local oscillation circuit; and

second mixture circuit which mixes the local oscillation signal divided in said first divide circuit and an AM radio broadcast signal to generate an intermediate frequency signal for AM broadcasting;

wherein said local oscillation circuit, comprising:

an oscillator which operates with a prescribed reference frequency;

reference oscillator which generates a reference oscillation signal using said oscillator;

frequency doubler circuit which multiplies the frequency of the reference oscillation signal outputted from said reference oscillator; and

second divide circuit which divides the reference oscillation signal outputted from said frequency doubler circuit to generate a reference oscillation signal with a frequency of the greatest common divisor between the frequency of the reference oscillation signal outputted from said frequency doubler circuit and an assigned frequency per one channel in AM radio broadcasting or the frequency determined by multiplying the assigned frequency divided by an integer by a divide ratio of said first divide circuit.

2. The AM/FM radio receiver according to claim 1 ,

wherein the reference frequency of said oscillator is 75 KHz, said assigned frequency per one channel in AM radio broadcasting is 9 KHz, the divide ratio of said first divide circuit is 1/6, and the frequency determined by multiplying the assigned frequency per one channel in AM radio broadcasting by the divide ratio of said first divide circuit is 54 KHz.

3. The AM/FM radio receiver according to claim 1 ,

wherein the reference frequency of said oscillator is 75 KHz, said assigned frequency per one channel in AM radio broadcasting is 10 KHz, the divide ratio of said first divide circuit is 1/8 or 1/10, and the frequency determined by multiplying the assigned frequency per one channel in AM radio broadcasting by the divide ratio of said first divide circuit is 80 or 100 KHz.

4. The AM/FM radio receiver according to claim 1 ,

wherein the reference frequency of said oscillator is 75 KHz, said assigned frequency per one channel in AM radio broadcasting is 9 KHz, the divide ratio of said first divide circuit is 1/8 or 1/10, and the frequency determined by multiplying the assigned frequency per one channel in AM radio broadcasting by the divide ratio of said first divide circuit is 72 or 90 KHz.

5. The AM/FM radio receiver according to claim 1 ,

wherein said frequency doubler circuit multiplies the frequency of the reference oscillation signal outputted from said reference oscillator by two's power.

6. The AM/FM radio receiver according to claim 5 ,

wherein said frequency doubler circuit multiplies the frequency of the reference oscillation signal outputted from said reference oscillator by 2 2 .

7. The AM/FM radio receiver according to claim 1 , further comprising:

a clock generating circuit which generates a clock signal to be supplied to a switched capacitor filter having a configuration so that passband characteristics are variable by changing the capacity of the switched capacitor;

wherein said clock generating circuit generates said clock signal using the reference oscillation signal outputted from said frequency doubler circuit.

8. An AM/FM radio receiver, comprising:

a local oscillation circuit which generates a local oscillation signal;

first mixture circuit which mixes the local oscillation signal outputted from said local oscillation circuit and a FM radio broadcast signal to generate an intermediate frequency signal for FM broadcasting;

first divide circuit which divides the local oscillation signal outputted from said local oscillation circuit; and

second mixture circuit which mixes the local oscillation signal divided in said first divide circuit and an AM radio broadcast signal to generate an intermediate frequency signal for AM broadcasting;

wherein said local oscillation circuit, comprising:

an oscillator which operates with a prescribed reference frequency;

reference oscillator which generates a reference oscillation signal using said oscillator;

frequency doubler circuit which multiplies the frequency of the reference oscillation signal outputted from said reference oscillator; and

second divide circuit which divides the reference oscillation signal outputted from said frequency doubler circuit to generate a reference oscillation signal with a frequency of the greatest common divisor between the frequency of the reference oscillation signal outputted from said frequency doubler circuit and an assigned frequency per one channel in FM radio broadcasting or the assigned frequency divided by an integer.

9. The AM/FM radio receiver according to claim 8 ,

wherein the reference frequency of said oscillator is 75 KHz, said assigned frequency per one channel in FM radio broadcasting is 50, 100, or 200 KHz.

10. The AM/FM radio receiver according to claim 8 ,

wherein said frequency doubler circuit multiplies the frequency of the reference oscillation signal outputted from said reference oscillator by two's power.

11. The AM/FM radio receiver according to claim 10 ,

wherein said frequency doubler circuit multiplies the frequency of the reference oscillation signal outputted from said reference oscillator by 2 2 .

12. The AM/FM radio receiver according to claim 8 , further comprising:

a clock generating circuit which generates a clock signal to be supplied to a switched capacitor filter having a configuration so that passband characteristics are variable by changing the capacity of the switched capacitor;

wherein said clock generating circuit generates said clock signal using the reference oscillation signal outputted from said frequency doubler circuit.

13. A local oscillation circuit, comprising:

an oscillator which operates with a prescribed reference frequency;

reference oscillator which generates a reference oscillation signal using said oscillator;

frequency doubler circuit which multiplies the frequency of the reference oscillation signal outputted from said reference oscillator; and

divide circuit which divides the reference oscillation signal outputted from said frequency doubler circuit to generate a reference oscillation signal with a frequency of the greatest common divisor between the frequency of the reference oscillation signal outputted from said frequency doubler circuit and an assigned frequency per one channel in AM radio broadcasting or the frequency determined by multiplying the assigned frequency divided by an integer by a prescribed value.

14. The local oscillation circuit according to claim 13 ,

wherein the reference frequency of said oscillator is 75 KHz, said assigned frequency per one channel in AM radio broadcasting is 9 KHz, said prescribed value is 6, and the frequency determined by multiplying the assigned frequency per one channel in AM radio broadcasting by said prescribed value is 54 KHz.

15. The local oscillation circuit according to claim 13 ,

wherein the reference frequency of said oscillator is 75 KHz, said assigned frequency per one channel in AM radio broadcasting is 10 KHz, said prescribed value is 8 or 10, and the frequency determined by multiplying the assigned frequency per one channel in AM radio broadcasting by said prescribed value is 80 or 100 KHz.

16. The local oscillation circuit according to claim 13 ,

wherein the reference frequency of said oscillator is 75 KHz, said assigned frequency per one channel in AM radio broadcasting is 9 KHz, said prescribed value is 8 or 10, and the frequency determined by multiplying the assigned frequency per one channel in AM radio broadcasting by said prescribed value is 72 or 90 KHz.

17. The local oscillation circuit according to claim 13 ,

wherein said frequency doubler circuit multiplies the frequency of the reference oscillation signal outputted from said reference oscillator by two's power.

18. The local oscillation circuit according to claim 17 ,

wherein said frequency doubler circuit which multiplies the frequency of the reference oscillation signal outputted from said reference oscillator by 2 2 .

19. A local oscillation circuit, comprising:

an oscillator which operates with a prescribed reference frequency;

reference oscillator which generates a reference oscillation signal using said oscillator;

frequency doubler circuit which multiplies the frequency of the reference oscillation signal outputted from said reference oscillator; and

divide circuit which divides the reference oscillation signal outputted from said frequency doubler circuit to generate a reference oscillation signal with a frequency of the greatest common divisor between the frequency of the reference oscillation signal outputted from said frequency doubler circuit and an assigned frequency per one channel in FM radio broadcasting or the assigned frequency divided by an integer.

20. The local oscillation circuit according to claim 19 ,

wherein the reference frequency of said oscillator is 75 KHz and said assigned frequency per one channel in FM radio broadcasting is 50, 100, or 200 KHz.

21. The local oscillation circuit according to claim 19 ,

wherein said frequency doubler circuit multiplies the frequency of the reference oscillation signal outputted from said reference oscillator by two's power.

22. The local oscillation circuit according to claim 21 ,

wherein said frequency doubler circuit which multiplies the frequency of the reference oscillation signal outputted from said reference oscillator by 2 2 .

Assignments (5)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 30, 2009
From: NSC CO., LTD.
To: RICOH CO., LTD.
Reel/Frame 023449/0462 →
CHANGE OF NAME Recorded Sep 16, 2009
From: NIIGATA SEIMITSU CO., LTD.
To: NSC CO., LTD.
Reel/Frame 023240/0899 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEES PREVIOUSLY RECORDED ON REEL 019890 FRAME 0858. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNEE TO BOTH RICOH CO., LTD. AND NIIGATA SEIMITSU CO., LTD. EQUALLY SHARING RIGHTS (50/50). Recorded Oct 7, 2008
From: NIIGATA SEIMITSU CO., LTD.
To: NIIGATA SEIMITSU CO., LTD.; RICOH CO., LTD.
Reel/Frame 021642/0242 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 27, 2007
From: NIIGATA SEIMITSU CO., LTD.
To: RICOH CO. LTD.
Reel/Frame 019890/0858 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 12, 2006
From: IKEDA, TAKESHI; MIYAGI, HIROSHI
To: NIIGATA SEIMITSU CO., LTD.
Reel/Frame 017613/0777 →