IP Library › Granted Patent US 10,084,422
Granted Patent B1
US 10,084,422 · App. 15/371,687 · Granted Sep 25, 2018

Method and apparatus for providing a variable gain amplifier

Inventor: Mohamed N. Elzeftawi (San Jose, CA)
Assignee: XILINX, INC.
H03G3/30H03F3/45192H03F2203/45018H03F2203/45026
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Quick Facts
Patent No.
US 10,084,422
App. No.
15/371,687
Granted
Sep 25, 2018
Kind
B1
Abstract

An integrated circuit and method for providing a variable gain amplifier are disclosed. One embodiment of the a variable gain amplifier comprises at least one load, a cascode circuit coupled to the load, a folded-gilbert stage, coupled to the cascode circuit, the folded-gilbert stage comprising a main differential pair of transistors and an internal pair of transistors, and a digital to analog converter, coupled to the folded-gilbert stage, for steering currents between the main differential pair of transistors and the internal pair of transistors to change a gain of the variable gain amplifier.

Claims (31)

1. A variable gain amplifier, comprising:

at least one load;

a cascode circuit coupled to the at least one load;

a folded-gilbert stage, coupled to the cascode circuit, the folded-gilbert stage comprising a main differential pair of transistors and an internal pair of transistors; and

a digital to analog converter, coupled to a gate of a first transistor that controls a tail current for the main differential pair of transistors and a gate of a second transistor that controls a tail current for the internal pair of transistors, wherein the digital to analog converter is configured to steer currents between the main differential pair of transistors and the internal pair of transistors to change a gain of the variable gain amplifier by varying respective tail currents for the main differential pair of transistors and the internal pair of transistors.

2. The variable gain amplifier of claim 1 , wherein the at least one load comprises a resistor.

3. A variable gain amplifier, comprising:

at least one load, wherein the at least one load further comprises an inductor and a resistor;

a cascode circuit coupled to the at least one load;

a folded-gilbert stage, coupled to the cascode circuit, the folded-gilbert stage comprising a main differential pair of transistors and an internal pair of transistors; and a digital to analog converter, coupled to the folded-gilbert stage, for steering currents between the main differential pair of transistors and the internal pair of transistors to change a gain of the variable gain amplifier.

4. The variable gain amplifier of claim 3 , wherein the at least one load comprises a first pair of the resistor and the inductor for a first output and a second pair of the resistor and the inductor for a second output.

5. The variable gain amplifier of claim 1 , wherein the cascode circuit comprises a pair of transistors.

6. The variable gain amplifier of claim 1 , wherein a control voltage applied to the pair of transistors contributes to the change of the gain of the variable gain amplifier.

7. The variable gain amplifier of claim 5 , further comprising:

a bleeder circuit, coupled to the folded-gilbert stage, for steering currents to maintain a same amount of DC current flowing through the pair of transistors of the cascode circuit.

8. The variable gain amplifier of claim 1 , wherein the digital to analog converter comprises a voltage digital to analog converter.

9. The variable gain amplifier of claim 1 , wherein the digital to analog converter comprises a current digital to analog converter.

10. The variable gain amplifier of claim 1 , wherein a resolution of the digital to analog converter is within a range of 4-8 bits.

11. The variable gain amplifier of claim 1 , wherein the digital to analog converter enables a dynamic remapping of a range of gain settings of the variable gain amplifier.

12. The variable gain amplifier of claim 1 , wherein the main differential pair of transistors and the internal pair of transistors are n-channel metal-oxide semiconductor field-effect transistors.

13. The variable gain amplifier of claim 1 , wherein the main differential pair of transistors and the internal pair of transistors are p-channel metal-oxide semiconductor field-effect transistors.

14. The variable gain amplifier of claim 1 , wherein the main differential pair of transistors and the internal pair of transistors are scaled relative to each other by a factor of K, where K is an integer greater than or equal to 1.

15. The variable gain amplifier of claim 5 , further comprising:

a biasing circuit, coupled to the folded-gilbert stage, for providing a fixed current.

16. A method of providing a variable gain amplifier, comprising:

applying a voltage to a cascode circuit, to control a gain of the variable gain amplifier comprising a folded-gilbert stage having a main differential pair of transistors and an internal pair of transistors; and

steering currents between the main differential pair of transistors and the internal pair of transistors via a digital to analog converter for contributing to a change of the gain of the variable gain amplifier by varying respective tail currents for the main differential pair of transistors and the internal pair of transistors, wherein the digital to analog converter is coupled to a gate of a first transistor that controls a tail current for the main differential pair of transistors and a gate of a second transistor that controls a tail current for the internal pair of transistors.

17. The method of claim 16 , wherein the digital to analog converter comprises a current digital to analog converter.

18. The method of claim 16 , wherein a resolution of the digital to analog converter is within a range of 4-8 bits.

19. The method of claim 16 , wherein the digital to analog converter enables a dynamic remapping of a range of gain settings of the variable gain amplifier.

20. The method of claim 16 , wherein the main differential pair of transistors and the internal pair of transistors are scaled relative to each other by a factor of K, where K is an integer greater than or equal to 1.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 7, 2016
From: ELZEFTAWI, MOHAMED N.
To: XILINX, INC.
Reel/Frame 040590/0435 →
Cited By (1)
US 12,615,053