IP Library › Granted Patent US 12,081,172
Granted Patent B2
US 12,081,172 · App. 17/351,716 · Granted Sep 3, 2024

Systems and methods for providing an envelope tracking supply voltage

Inventor: Nadim Khlat (Cugnaux, FR)
Assignee: Qorvo US, Inc.
H03F1/0233H03F1/0227H03F1/3241H03F1/3258H03F1/56H03F3/195H03F3/21H03F3/245H03F2200/102H03F2200/105H03F2200/451H03F2201/3209
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Quick Facts
Patent No.
US 12,081,172
App. No.
17/351,716
Granted
Sep 3, 2024
Kind
B2
Abstract

Envelope tracking power supply circuitry includes a look up table (LUT) configured to provide a target supply voltage based on a power envelope measurement. The target supply voltage is dynamically adjusted based on a delay between the power envelope of an RF signal and a provided envelope tracking supply voltage. The envelope tracking supply voltage is generated from the adjusted target supply voltage in order to synchronize the envelope tracking supply voltage with the power envelope of the RF signal.

Claims (43)

1. An envelope tracking power supply circuitry comprising:

envelope detector circuitry configured to measure a power envelope of a radio frequency (RF) signal;

a look-up-table (LUT) configured to provide a target supply voltage based on a power envelope measurement from the envelope detector circuitry;

envelope synchronization circuitry configured to adjust the target supply voltage based on a delay measurement to provide an adjusted target supply voltage that is synchronized in time with the power envelope of the RE signal;

envelope tracking modulator circuitry configured to provide an envelope tracking supply voltage based on the adjusted target supply voltage;

communication circuitry;

processing circuitry; and

a memory storing instructions, which, when executed by the processing circuitry cause the envelope tracking power supply circuitry to:

receive network information via the communication circuitry;

adjust the LUT based on the network information.

2. The envelope tracking power supply circuitry of claim 1 wherein the network information comprises a maximum expected power supply voltage for a given period of time.

3. The envelope tracking power supply circuitry of claim 2 wherein the network information comprises information about a current transmission band or sub-band.

4. The envelope tracking power supply circuitry of claim 1 further comprising calibration circuitry configured to generate a calibration signal.

5. The envelope tracking power supply circuitry of claim 4 further comprising coupler circuitry configured to provide the calibration signal into an RF signal path.

6. The envelope tracking power supply circuitry of claim 5 further comprising measurement circuitry configured to measure a response of the RF signal path to the calibration signal, wherein the LUT is generated based on the response of the RF signal path to the calibration signal.

7. The envelope tracking power supply circuitry of claim 1 wherein the memory stores:

a plurality of relationships between the power envelope measurement and the target supply voltage for the LUT, each associated with a different operating mode, and

instructions configured to select one of the relationships between the power envelope measurement and the target supply voltage for the LUT based on a current mode of operation of the envelope tracking power supply circuitry.

8. The envelope tracking power supply circuitry of claim 1 further comprising delay measurement circuitry configured to measure a delay between the envelope tracking supply voltage and the power envelope of the RF signal and provide the delay measurement.

9. The envelope tracking power supply circuitry of claim 1 wherein the communication circuitry is coupled to transceiver circuitry via a communication bus and the network information is received from the transceiver circuitry.

10. A radio frequency (RF) system comprising:

an RF signal path comprising one or more RF path components configured to amplify an RF input signal to provide an RF output signal;

transceiver circuitry comprising:

modulator circuitry configured to receive a baseband input signal and modulate the baseband input signal to provide the RF input signal;

first communication circuitry coupled to each one of the RF path components via a first communication bus;

processing circuitry; and

a memory storing instructions, which, when executed by the processing circuitry cause the transceiver circuitry to receive information related to a network to which the RF system is connected and adjust one or more operating parameters of the one or more RF path components based on the network information via the first communication bus; and

intelligent bridge circuitry comprising:

second communication circuitry coupled to each one of the RF path components via a second communication bus;

processing circuitry; and

a memory storing instructions, which, when executed by the processing circuitry cause the transceiver circuitry to adjust one or more operating parameters of the one or more RF path components based on information that is not related to the network.

11. The RF system of claim 10 wherein the information that is not related to the network includes information about an envelope tracking mode of operation of the RF system.

12. The RF system of claim 10 wherein the one or more RF path components comprise an RF power amplifier.

13. The RF system of claim 12 further comprising envelope tracking power supply circuitry configured to provide an envelope tracking supply voltage to the RF power amplifier.

14. The RF system of claim 13 wherein the envelope tracking power supply circuitry comprises envelope synchronization circuitry configured to synchronize the envelope tracking supply voltage with an RF signal provided to the RF power amplifier.

15. The RF system of claim 13 wherein the information that is not related to the network includes information about the operation of the envelope tracking power supply circuitry.

16. The RF system of claim 15 wherein the envelope tracking power supply circuitry is coupled to the second communication bus and configured to provide operational information to the intelligent bridge circuitry.

17. The RF system of claim 10 wherein the second communication circuitry is also coupled to the first communication bus.

18. The RF system of claim 17 wherein the intelligent bridge circuitry is configured to:

receive the information related to the network from the transceiver circuitry; and

adjust the one or more operating parameters of the one or more RF path components based on the information related to the network and the information that is not related to the network.

19. The RF system of claim 10 wherein the information that is not related to the network includes information about the local operation of the RF system.

20. The RF system of claim 10 wherein the one or more RF path components comprise one or more of splitter circuitry, RF power amplifier circuitry, coupler circuitry, and antenna tuner circuitry.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 18, 2021
From: KHLAT, NADIM
To: QORVO US, INC.
Reel/Frame 056628/0294 →
Continuity (7)
Provisional Application 63112430 · Nov 11, 2020
Provisional Application 63090574 · Oct 12, 2020
Provisional Application 63090566 · Oct 12, 2020
Provisional Application 63090583 · Oct 12, 2020
Provisional Application 63064773 · Aug 12, 2020
Provisional Application 63064784 · Aug 12, 2020
Related Publication 20220052648A1 · Feb 17, 2022