IP Library › Granted Patent US 9,973,148
Granted Patent B2
US 9,973,148 · App. 15/670,619 · Granted May 15, 2018

Radio frequency system with switch to receive envelope

Inventors: Yu Zhu (Wellesley, MA); Oleksiy Klimashov (Burlington, MA); Hailing Wang (Acton, MA); Dylan Charles Bartle (Arlington, MA); Paul T. DiCarlo (Marlborough, MA)
Assignee: Skyworks Solutions, Inc.
H03F1/0222H03F1/22H03K17/08122H03K17/102H03K17/693H04B1/04H03F2200/336H03F2203/7236H03F2203/7239H03K2217/0054H04B2001/045
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Quick Facts
Patent No.
US 9,973,148
App. No.
15/670,619
Granted
May 15, 2018
Kind
B2
Abstract

Aspects of this disclosure relate to a radio frequency system that includes an envelope generator configured to generate an envelope signal corresponding to an envelope of a radio frequency signal and at least two radio frequency components coupled to the envelope generator. One of the radio frequency components is a radio frequency switch configured to pass the radio frequency signal. The radio frequency switch is configured to receive the envelope signal to cause intermodulation distortion associated with the radio frequency switch to be reduced.

Claims (30)

1. A power amplifier system comprising:

an envelope generator configured to generate an envelope signal corresponding to an envelope of a radio frequency signal;

a power amplifier coupled to the envelope generator, the power amplifier configured to amplify the radio frequency signal and to receive a power amplifier supply voltage that is based on the envelope of the radio frequency signal; and

a radio frequency switch coupled to an output of the power amplifier, the radio frequency switch configured to receive the envelope signal from the envelope generator to cause intermodulation distortion associated with the radio frequency switch to be reduced.

2. The power amplifier system of claim 1 wherein the radio frequency switch includes a field effect transistor having a body configured to receive the envelope signal.

3. The power amplifier system of claim 1 wherein the radio frequency switch includes a field effect transistor having a gate configured to receive the envelope signal superimposed on a direct current control signal.

4. The power amplifier system of claim 1 wherein the envelope generator is configured to adjust a phase of the envelope signal.

5. The power amplifier system of claim 4 wherein the envelope generator is configured to adjust a magnitude of the envelope signal.

6. The power amplifier system of claim 1 wherein the envelope generator is configured to adjust a magnitude of the envelope signal.

7. The power amplifier system of claim 1 wherein the envelope generator is configured to generate the envelope signal from a baseband signal.

8. The power amplifier system of claim 1 further comprising an envelope tracking modulator configured to generate the power amplifier supply voltage, the power amplifier being coupled to the envelope generator by way of the envelope tracking modulator.

9. The power amplifier system of claim 1 wherein a band select switch includes the radio frequency switch.

10. The power amplifier system of claim 1 wherein an antenna switch includes the radio frequency switch.

11. The power amplifier system of claim 1 wherein a transmit/receive switch includes the radio frequency switch.

12. A radio frequency system comprising:

an envelope generator configured to generate an envelope signal corresponding to an envelope of a radio frequency signal;

a radio frequency switch configured to pass the radio frequency signal, the radio frequency switch configured to receive the envelope signal to cause intermodulation distortion associated with the radio frequency switch to be reduced; and

an other radio frequency component coupled to the envelope generator.

13. The radio frequency system of claim 12 wherein the other radio frequency component is a power amplifier configured to receive a supply voltage that is based on the envelope of the radio frequency signal.

14. The radio frequency system of claim 12 wherein the other radio frequency component includes a second radio frequency switch.

15. The radio frequency system of claim 14 wherein the radio frequency switch and the second radio frequency switch are both included in a signal path between a power amplifier and an antenna port.

16. A method of switching a radio frequency signal with improved linearity, the method comprising:

generating, with an envelope generator, an envelope signal corresponding to an envelope of a radio frequency signal;

providing a power amplifier supply voltage to a power amplifier that is coupled to the envelope generator by way of an envelope tracking modulator;

applying the envelope signal to a radio frequency switch configured to receive the radio frequency signal from the power amplifier; and

switching the radio frequency signal using the radio frequency switch during said applying so as to reduce intermodulation distortion associated with the radio frequency switch.

17. The method of claim 16 wherein said applying includes applying the envelope signal to a control terminal of the radio frequency switch.

18. The method of claim 16 wherein the radio frequency switch includes a field effect transistor and said applying includes applying the envelope signal to a body of the field effect transistor.

19. The method of claim 16 further comprising adjusting a phase of the envelope signal applied to the radio frequency switch relative to a phase of a signal from the envelope generator from which the envelope tracking modulator generates the power amplifier supply voltage.

20. The method of claim 19 further comprising adjusting a magnitude of the envelope signal applied to the radio frequency switch relative to a magnitude of the signal from the envelope generator from which the envelope tracking modulator generates the power amplifier supply voltage.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 4, 2018
From: ZHU, YU; KLIMASHOV, OLEKSIY; WANG, HAILING; BARTLE, DYLAN CHARLES; DICARLO, PAUL T.
To: SKYWORKS SOLUTIONS, INC.
Reel/Frame 047066/0326 →
Continuity (2)
Provisional Application 62372198 · Aug 8, 2016
Related Publication 20180041170A1 · Feb 8, 2018