Dynamic biasing system for an amplifier
A dynamic biasing system (“DBS”) for dynamically biasing an amplifier with an adjusted bias signal is shown. The DBS may include a first biasing circuit that produces a bias signal and a second biasing circuit in signal communication with both the first biasing circuit and the amplifier, wherein the second biasing circuit compares the bias signal to a predetermined threshold and in response produces the adjusted bias signal.
1. A dynamic biasing system (“DBS”) for dynamically biasing an amplifier with an adjusted bias signal, the DBS comprising:
a first biasing circuit that produces a bias signal independently of an external detection circuit wherein the first biasing circuit correlates the bias signal with an envelope of a radio frequency (“RF”) input signal to the amplifier;
a second biasing circuit in signal communication with both the first biasing circuit and the amplifier, wherein the second biasing circuit compares the bias signal to a predetermined threshold and in response produces the adjusted bias signal, wherein the second biasing circuit includes:
a comparator that compares the bias signal to the predetermined threshold;
circuitry configured to increase the bias signal when the bias signal equals or exceeds the predetermined threshold; and
circuitry configured to disable the adjusted bias signal when the bias signal is less than the predetermined threshold.
2. The DBS of claim 1 , wherein the first biasing circuit correlates the bias signal with an envelope of a RF output signal to the amplifier.
3. The DBS of claim 1 , wherein the second biasing circuit produces a boosting signal in response to comparing the bias signal to the predetermined threshold.
4. The DBS of claim 1 , further including a combiner in signal communication with the first biasing circuit, second biasing circuit and the amplifier, wherein the combiner produces the adjusted bias signal by combining the bias signal with the boosting signal.
5. The DBS of claim 4 , wherein the combiner is a summation circuit.
6. The DBS of claim 1 , wherein the comparator is a threshold detector.
7. The DBS of claim 1 , further including a combiner in signal communication with the first biasing circuit, second biasing circuit and the amplifier, wherein the combiner produces the adjusted bias signal by combining the bias signal with the boosting signal.
8. The DBS of claim 7 , wherein the combiner is a summation circuit.
9. A dynamic biasing system (“DBS”) for dynamically biasing an amplifier with an adjusted bias signal, the DBS comprising:
a first biasing circuit that produces a bias signal independently of an external detection circuit;
a second biasing circuit in signal communication with both the first biasing circuit and the amplifier, wherein the second biasing circuit includes means for comparing the bias signal to a predetermined threshold and in response producing the adjusted bias signal, wherein the second biasing circuit includes:
means for comparing the bias signal to the predetermined threshold; and
means for increasing the bias signal when the bias signal equals or exceeds the predetermined threshold; and
means for disabling the adjusted bias signal when the bias signal is less than the predetermined threshold.
10. The DBS of claim 9 , wherein the second biasing circuit includes means for producing a boosting signal in response to comparing the bias signal to the predetermined threshold.
11. The DBS of claim 9 , further including means for combining the bias signal with the boosting signal to produce the adjusted bias signal.
12. A method for dynamically biasing a power amplifier, comprising:
providing a bias signal that is produced independently of an external detection circuit to a control input of a transistor in the power amplifier, wherein the bias signal is correlated with an envelope of a radio frequency (RF) input signal;
comparing the bias signal to a predetermined threshold;
increasing the bias signal when the bias signal equals or exceeds the predetermined threshold; and
disabling the increased bias signal when the bias signal is less than the predetermined threshold.
13. The method of claim 12 , wherein adjusting the bias signal includes continuing to provide the unadjusted bias signal to the control input so long as the bias signal remains below the predetermined threshold.
14. The method of claim 12 , wherein adjusting the bias signal includes increasing the bias signal when it equals or exceeds the predetermined threshold.
15. The method of claim 12 , wherein the control input is a base current to the base of a bipolar transistor in the power amplifier.
16. The method of claim 12 , wherein the control input is a gate voltage to the base of a field-effect transistor in the power amplifier.