IP Library › Granted Patent US 10,778,149
Granted Patent B2
US 10,778,149 · App. 16/242,382 · Granted Sep 15, 2020

Power amplifiers having reduced loss

Inventor: Philip John Lehtola (Cedar Rapids, IA)
Assignee: Skyworks Solutions, Inc.
H03F1/0205H03F1/0227H03F1/0288H03F1/565H03F3/191H03F3/211H03F3/24H03F3/245H03F3/72H03F2200/102H03F2200/105H03F2200/111H03F2200/171H03F2200/451H03F2203/21109H03F2203/21157H03F2203/7209H04B2001/0408
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Quick Facts
Patent No.
US 10,778,149
App. No.
16/242,382
Granted
Sep 15, 2020
Kind
B2
Abstract

Power amplifiers having reduced loss. In some embodiments, a power amplification system can include a plurality of power amplifiers, with each power amplifier being configured to receive and amplify a signal in a frequency band. The power amplification system can further include an output filter coupled to each of the power amplifiers by a separate output path such that the power amplification system is substantially free of a band selection switch between the plurality of power amplifiers and their corresponding output filters. Each power amplifier can be further configured to operate with a high-voltage supply to provide an impedance similar to an impedance of the corresponding output filter.

Claims (23)

1. An amplification system comprising:

a plurality of amplifiers, each amplifier configured to operate at a high voltage in an average power tracking mode and amplify a signal in a respective frequency band; and

a signal path coupled to an output of each amplifier and configured to route the respective amplified signal to a respective filter without passing through a band selection switch or an impedance transformation circuit to result in a reduction in loss by at least 0.8 dB along the signal path, such that the amplification system has a lower loss than another amplification system having a similar band handling capability but in which amplifiers are operated at low voltage.

2. The amplification system of claim 1 wherein each amplifier is a power amplifier.

3. The amplification system of claim 1 further comprising the filter corresponding to each signal path.

4. The amplification system of claim 1 wherein an impedance of each amplifier has a value greater than approximately 40 Ohms.

5. The amplification system of claim 4 wherein the impedance of each amplifier results in a reduced current drain in the amplifier.

6. The amplification system of claim 1 further comprising a supply system configured to provide the high voltage to each amplifier.

7. The amplification system of claim 6 wherein the supply system includes a boost DC/DC converter configured to generate the high voltage based on a battery voltage Vbatt.

8. The amplification system of claim 6 wherein each amplifier includes a bipolar junction transistor.

9. The amplification system of claim 8 wherein each bipolar junction transistor amplifier is implemented as a gallium arsenide device.

10. The amplification system of claim 1 wherein the other amplification system is an envelope tracking amplification system.

11. A packaged module comprising:

a packaging substrate configured to receive a plurality of components; and

an amplification system implemented on the packaging substrate and including a plurality of amplifiers, each amplifier configured to operate at a high voltage in an average power tracking mode and amplify a signal in a respective frequency band, the amplification system further including a signal path coupled to an output of each amplifier and configured to route the respective amplified signal to a respective filter without passing through a band selection switch or an impedance transformation circuit to result in a reduction in loss by at least 0.8 dB along the signal path, such that the amplification system has a lower loss than another amplification system having a similar band handling capability but in which amplifiers are operated at low voltage.

12. The packaged module of claim 11 further comprising the filter corresponding to each signal path.

13. The packaged module of claim 11 further comprising a supply system configured to provide the high voltage to each amplifier.

14. The packaged module of claim 11 wherein the packaged module is a front-end module or a power amplifier module.

15. A wireless device comprising:

a transceiver; and

an amplification system in communication with the transceiver and including a plurality of amplifiers, each amplifier configured to operate at a high voltage in an average power tracking mode and amplify a signal in a respective frequency band, the amplification system further including a signal path coupled to an output of each amplifier and configured to route the respective amplified signal to a respective filter without passing through a band selection switch or an impedance transformation circuit to result in a reduction in loss by at least 0.8 dB along the signal path, such that the amplification system has a lower loss than another amplification system having a similar band handling capability but in which amplifiers are operated at low voltage.

16. The wireless device of claim 15 wherein the wireless device is a cellular phone.

17. The wireless device of claim 15 further comprising an antenna in communication with the amplification system and configured to support transmission of one or more of the amplified signals.

Continuity (6)
Continuation 14869955 · Sep 29, 2015
Provisional Application 62116448 · Feb 15, 2015
Provisional Application 62116449 · Feb 15, 2015
Provisional Application 62116450 · Feb 15, 2015
Provisional Application 62116451 · Feb 15, 2015
Related Publication 20190214945A1 · Jul 11, 2019
Cited By (2)
US 12,620,947 US 12,627,264