IP Library Granted Patent US 8,725,099
Granted Patent B2
US 8,725,099 · App. 13/663,832 · Granted May 13, 2014

Rotating harmonic rejection mixer

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Quick Facts
Patent No.
US 8,725,099
App. No.
13/663,832
Granted
May 13, 2014
Kind
B2
Abstract

In one embodiment, the present invention includes a mixer circuit to receive and generate a mixed signal from a radio frequency (RF) signal and a master clock signal, a switch stage coupled to an output of the mixer circuit to rotatingly switch the mixed signal to multiple gain stages coupled to the switch stage, and a combiner to combine an output of the gain stages.

Claims (26)

1. A mixer comprising:

a single mixer circuit to receive and generate a mixed signal from an input radio frequency (RF) signal and a master clock signal corresponding to a local oscillator (LO) frequency multiplied by a stage number N;

a switch stage coupled to an output of the single mixer circuit to cyclically rotate the mixed signal to each of a plurality of gain stages coupled to the switch stage during a single cycle of the LO frequency, when there is no signal through the switch stage, wherein N corresponds to a number of the plurality of gain stages to be enabled; and

a combiner to combine an output of the plurality of gain stages.

2. The mixer of claim 1 , wherein N is controllable based on a type of the input RF signal.

3. The mixer of claim 1 , wherein N is controllable based on a frequency of the input RF signal.

4. The mixer of claim 1 , wherein the switch stage is to cyclically rotate the mixed signal to each of the plurality of gain stages during a single cycle of the LO frequency.

5. The mixer of claim 1 , wherein the mixer comprises a quadrature mixer having an in-phase portion and a quadrature portion.

6. The mixer of claim 5 , wherein the plurality of gain stages are weighted according to a predetermined value, and outputs of the plurality of gain stages are added together.

7. The mixer of claim 6 , wherein an in-phase portion of the plurality of gain stages are weighted according to a sampled sine wave and a quadrature phase portion of the gain stages are weighted according to a sampled cosine wave.

8. A mixer comprising:

a single mixer circuit to receive and generate a mixed signal from an input radio frequency (RF) signal and a master clock signal corresponding to a local oscillator (LO) frequency multiplied by a stage number N;

a switch stage comprising a plurality of switches, each of the plurality of switches having a first terminal coupled to an output of the single mixer circuit and having a second terminal respectively coupled to a predetermined one of a plurality of gain stages coupled to the switch stage to cyclically rotate the mixed signal during a single cycle of the LO frequency, when there is no signal through the switch stage; and

a combiner to combine an output of the plurality of gain stages.

9. The mixer of claim 8 , wherein N is controllable based on a type of the input RF signal and corresponds to a number of the plurality of gain stages to be enabled.

10. The mixer of claim 8 , wherein N is controllable based on a frequency of the input RF signal.

11. The mixer of claim 8 , wherein the switch stage is to cyclically rotate the mixed signal to each of the plurality of gain stages during a single cycle of the LO frequency.

12. The mixer of claim 8 , wherein the mixer comprises a quadrature mixer having an in-phase portion and a quadrature portion.

13. The mixer of claim 12 , wherein the plurality of gain stages are weighted according to a predetermined value, and outputs of the plurality of gain stages are added together.

14. The mixer of claim 13 , wherein an in-phase portion of the plurality of gain stages are weighted according to a sampled sine wave and a quadrature phase portion of the gain stages are weighted according to a sampled cosine wave.

15. A method comprising:

providing a single mixer circuit to receive and generate a mixed signal from an input radio frequency (RF) signal and a master clock signal corresponding to a local oscillator (LO) frequency multiplied by a stage number N;

coupling a switch stage to an output of the single mixer circuit to cyclically rotate the mixed signal to each of a plurality of gain stages coupled to the switch stage during a single cycle of the LO frequency, when there is no signal through the switch stage; and

coupling a combiner to the plurality of gain stages to combine an output of the plurality of gain stages.

16. The method of claim 15 further comprising controlling a value of N based on a frequency of the input RF signal.

17. The method of claim 15 further comprising cyclically rotating the switch stage to cyclically rotate the mixed signal to each of the plurality of gain stages during a single cycle of the LO frequency.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 29, 2021
From: SILICON LABORATORIES INC.
To: SKYWORKS SOLUTIONS, INC.
Reel/Frame 057033/0579 →