IP Library Granted Patent US 7,782,133
Granted Patent B2
US 7,782,133 · App. 12/203,692 · Granted Aug 24, 2010

Power amplifier with output power control

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Quick Facts
Patent No.
US 7,782,133
App. No.
12/203,692
Granted
Aug 24, 2010
Kind
B2
Abstract

This disclosure relates systems and methods for a power amplifier with output power control. The power amplifier can include multiple stages of amplification. An RF signal is fed to the power amplifier with output control that amplifies the power of the RF signal to meet operational requirements. A first stage of the power amplifier controls the output power via voltage regulation. An isolating device is introduced in the transmission path of the RF signal between the first stage and the following stages of the power amplifier. The isolating device ensures that the load impedance of the first stage remains fixed at a constant value.

Claims (32)

1. A power amplifier comprising:

a first stage that receives a radio frequency (RF) signal, which controls power by voltage regulation, and outputs power based on an operating voltage;

a voltage regulator that regulates the operating voltage and compares the operating voltage with a control voltage and changes the operating voltage, if there is a difference between the operating voltage and the control voltage;

an isolating device that couples power from the first stage, wherein the isolating device isolates the first stage from signals other than the RF signal and is a hybrid coupler; and

a second stage that receives the coupled power from the isolating device.

2. The power amplifier of claim 1 , wherein the first stage provides an output power that varies with a change in load impedance of components in the first stage.

3. The power amplifier of claim 1 , wherein the second stage receives a variable bias current from a variable current source.

4. The power amplifier of claim 1 further comprising a third stage that receives output from the second stage, and further amplifies the output, wherein the third stage receives a variable bias current.

5. The power amplifier of claim 4 , wherein the second and third stage receive variable bias current from a variable current source.

6. The power amplifier of claim 1 further comprising a detector that measures power efficiency of an output of the power amplifier.

7. An apparatus comprising:

a pre-amplifier that receives an input signal and amplifies the input signal;

a radio frequency (RF) modulator that converts the input signal to an RF signal; and

a power amplifier that increases the efficiency of the RF signal, comprised of:

a) multiple stages for signal amplification, wherein power control in a first stage is achieved by voltage regulation, and power control in following stages is performed by current regulation;

b) an isolating device that maintains load impedance of the first stage by preventing return signals in a transmission path to the first stage.

8. The apparatus of claim 7 , wherein the pre-amplifier includes a buffer to receive the input signal.

9. The apparatus of claim 7 , wherein the first stage in the power amplifier includes transistors operating in saturation region, and output power in the first stage is controlled by voltage regulation.

10. The apparatus of claim 7 , wherein the first stage in the power amplifier includes transistors operating in linear region, and output power in the first stage is controlled based on the mode of operation of the first stage.

11. The apparatus of claim 7 , wherein the power amplifier includes a coupling capacitor that blocks DC signals to the first stage.

12. The apparatus of claim 7 , wherein the power amplifier includes a second stage that includes a transistor with load impedance for amplification.

13. The apparatus of claim 7 , wherein stages following the first stage, receive variable bias current from a variable current source.

14. A method for output power control in a power amplifier comprising:

receiving a radio frequency (RF) signal at a first stage;

setting an operating voltage of the power amplifier at the first stage;

maintaining a constant load impedance at the first stage, the maintaining the constant load impedance includes isolating interference to the first stage by preventing return signals in a transmission path to the first stage; and

regulating a bias current at stages following the first stage.

15. The method of claim 14 , wherein the receiving the RF signal includes amplifying the RF signal based on one or more operating requirements.

16. The method of claim 14 , wherein the setting of the operating voltage is dictated by a control voltage in the first stage.

17. The method of claim 14 , wherein the maintaining a constant load impedance includes isolating noise to the first stage.

18. The method of claim 14 , wherein the regulating of the bias current is from a common variable current source.

19. The method of claim 14 further comprising amplifying the RF signal at one or more of the stages.

Assignments (5)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 29, 2022
From: INTEL DEUTSCHLAND GMBH
To: INTEL CORPORATION
Reel/Frame 061356/0001 →
CHANGE OF NAME Recorded Nov 6, 2015
From: INTEL MOBILE COMMUNICATIONS GMBH
To: INTEL DEUTSCHLAND GMBH
Reel/Frame 037057/0061 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 19, 2012
From: INTEL MOBILE COMMUNICATIONS TECHNOLOGY GMBH
To: INTEL MOBILE COMMUNICATIONS GMBH
Reel/Frame 027556/0709 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 18, 2012
From: INFINEON TECHNOLOGIES AG
To: INTEL MOBILE COMMUNICATIONS TECHNOLOGY GMBH
Reel/Frame 027548/0623 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 18, 2008
From: BAKALSKI, WINFRIED; ZANNOTH, MARKUS
To: INFINEON TECHNOLOGIES AG
Reel/Frame 021555/0924 →