IP Library › Patent Application 13299273
Patent Application
App. No. 13/299,273

ON-CHIP RADIO CALIBRATION

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Quick Facts
Patent No.
US None
App. No.
13/299,273
Abstract

One embodiment of the present invention provides a quadrature-mixing transmitter for wireless communication. The transmitter includes a quadrature modulator comprising an in-phase (I) channel and a quadrature (Q) channel, a calibration-signal generator configured to generate calibration signals that are sent to the I channel and the Q channel, and a calibration circuit configured to calibrate an imbalance between the I channel and the Q channel. The modulator, the calibration-signal generator, and the calibration circuit are located on a same integrated circuit (IC) chip, thereby facilitating on-chip calibration of the imbalance between the I channel and the Q channel.

Claims (29)

1 . A quadrature-mixing transmitter for wireless communication, comprising:

a quadrature modulator comprising an in-phase (I) channel and a quadrature (Q) channel;

a calibration-signal generator configured to generate calibration signals that are sent to the I channel and the Q channel; and

a calibration circuit configured to calibrate an imbalance between the I channel and the Q channel, wherein the modulator, the calibration-signal generator, and the calibration circuit are located on a same integrated circuit (IC) chip, thereby facilitating on-chip calibration of the imbalance between the I channel and the Q channel.

2 . The transmitter of claim 1 , wherein the calibration-signal generator includes one or more digital-to-analog converters (DACs).

3 . The transmitter of claim 1 , wherein the calibration signals include a pair of conjugate DC signals.

4 . The transmitter of claim 1 , wherein the calibration circuit includes a power detector configured to receive an output of the quadrature modulator, in response to the calibration signals.

5 . The transmitter of claim 1 , wherein the calibration circuit includes a control module configured to control paths of the I channel and the Q channel based on outputs of the power detector.

6 . The transmitter of claim 1 , wherein the imbalance includes a phase imbalance and an amplitude imbalance.

7 . The transmitter of claim 1 , wherein the calibration circuit is further configured to calibrate a DC offset.

8 . A quadrature-mixing transceiver for wireless communication, comprising:

a transmitter, wherein the transmitter includes a quadrature modulator comprising an in-phase (I) channel and a quadrature (Q) channel;

a calibration-signal generator configured to generate calibration signals that are sent to the I channel and the Q channel;

a receiver; and

a calibration control module coupled to the receiver, wherein the control module is configured to calibrate an imbalance between the I channel and the Q channel, wherein the transmitter, the calibration-signal generator, the receiver, and the calibration control module are located on a same integrated circuit (IC) chip, thereby facilitating on-chip calibration of the imbalance between the I channel and the Q channel.

9 . The transceiver of claim 8 , wherein the calibration-signal generator includes one or more digital-to-analog converters (DACs).

10 . The transceiver of claim 8 , wherein the calibration signals include a pair of conjugate DC signals.

11 . The transceiver of claim 8 , wherein the receiver is configured to receive outputs of the quadrature modulator in response to the calibration signals, and wherein the control module is configured to control paths of the I channel and the Q channel based on the received outputs.

12 . The transceiver of claim 8 , wherein the imbalance includes a phase imbalance and an amplitude imbalance.

13 . The transceiver of claim 8 , wherein the calibration control module is further configured to calibrate a DC offset.

14 . A method for calibrating an imbalance between an I channel and a Q channel of a quadrature modulator, comprising:

generating, by a calibration-signal generator, calibrations signals, wherein the calibration signals include a pair of conjugate DC signals;

inputting the calibration signals to the quadrature modulator;

detecting outputs of the quadrature modulator in response to the calibration signals; and

calibrating the imbalance between the I channel and the Q channel based on the detected outputs.

15 . The method of claim 14 , wherein the calibration signal generator includes one or more digital-to-analog converters (DACs).

16 . The method of claim 14 , wherein the calibration signal generator and the quadrature modulator are located on a same integrated circuit (IC) chip, thereby facilitating on-chip calibration of the imbalance between the I channel and the Q channel.

17 . The method of claim 14 , wherein the imbalance includes a phase imbalance and an amplitude imbalance.

18 . The method of claim 14 , wherein the method further comprises calibrating a DC offset.

Assignments (3)
CORRECTIVE ASSIGNMENT TO CORRECT THE NAME AND SIGNATURE OF THE SIGNATORY OF THE ASSIGNEE INSIDE THE ASSIGNMENT DOCUMENT PREVIOUSLY RECORDED AT REEL: 053461 FRAME: 0858. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT . Recorded Aug 31, 2020
From: AVIACOMM INC.
To: NANJING AVIACOMM SEMICONDUCTOR CO., LTD.
Reel/Frame 053651/0216 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 11, 2020
From: AVIACOMM INC.
To: NANJING AVIACOMM SEMICONDUCTOR CO., LTD.
Reel/Frame 053461/0858 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 5, 2012
From: LIN, CHUNG-CHIEH; MO, SHIH HSIUNG; CUI, YAN; CHANG, CHUNG-HSING
To: AVIACOMM INC.
Reel/Frame 027488/0661 →