IP Library Granted Patent US 8,279,003
Granted Patent B2
US 8,279,003 · App. 12/988,094 · Granted Oct 2, 2012

Differential RF amplifier

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Quick Facts
Patent No.
US 8,279,003
App. No.
12/988,094
Granted
Oct 2, 2012
Kind
B2
Abstract

An RF amplifier including first and second branches coupled in parallel between first and second supply voltage terminals, and a differential pair including first and second transistors each having first and second main current terminals, the second main current terminal of the first transistor being coupled by a first capacitor to the first main current terminal of the second transistor, and the second main current terminal of the second transistor being coupled by a second capacitor to the first main current terminal of the first transistor, wherein the first branch includes a first resistor coupled between the first main current terminal of the first transistor and the second capacitor, and the second branch includes a second resistor; coupled between the first main current terminal of the second transistor and the first capacitor.

Claims (21)

1. An RF amplifier comprising:

first and second branches coupled in parallel between a first supply voltage terminal and a second supply voltage terminal, said branches defining a differential pair arranged to be controlled by a differential input signal comprised of first and second input signals, the differential pair comprising a first transistor in said first branch and a second transistor in said second branch, wherein said first and second transistors each comprise first and second main current terminals, said second main current terminal of said first transistor being coupled by a first capacitor to the first main current terminal of said second transistor, and said second main current terminal of said second transistor being coupled by a second capacitor to the first main current terminal of said first transistor, said first or second main current terminals of the first and second transistors being coupled to differential output nodes of said RF amplifier, wherein said first branch comprises a first resistor coupled between said first main current terminal of the first transistor and the second capacitor, and said second branch comprises a second resistor coupled between said first main current terminal of said second transistor and the first capacitor.

2. The RF amplifier of claim 1 , wherein said first and second branches comprise first and second current sources respectively, coupled respectively between said first and second transistors and one of said first and second supply voltage terminals.

3. The RF amplifier of claim 2 , wherein said first and second current sources are variable current sources controlled by a feedback signal from said differential pair.

4. The RF amplifier of claim 1 , wherein said first and second transistors are NPN bipolar transistors.

5. The RF amplifier of claim 1 , wherein the first and second resistors each have a resistance of 30 ohms or more.

6. The RF amplifier of claim 5 , wherein the first and second resistors each have a resistance of between 30 and 100 ohms.

7. The RF amplifier of claim 1 , wherein the first and second branches each comprise a third resistor ( 212 , 222 ) coupled to said first supply voltage terminal.

8. The RF amplifier of claim 7 , wherein the first resistor ( 213 ) is connected between the first main current terminal of the first transistor and a first one of the differential output nodes, and the second resistor is connected between the first main current terminal of the second transistor and a second one of the differential output nodes.

9. The RF amplifier of claim 8 , wherein the first resistor ( 302 ) is connected between the first main current terminal of the first transistor and the first supply voltage terminal, and the second resistor ( 304 ) is connected between the first main current terminal of the second transistor and the first supply voltage terminal, the first nodes of the first and second transistors forming the differential output nodes of the RF amplifier.

10. The RF amplifier of claim 9 , wherein the resistance of said first and second resistors is less than or equal to the resistance of said third resistors.

11. The RF amplifier of claim 9 , wherein the resistance of the first and second resistors equal to a 2 R, the resistance of the third resistors is equal to a 1 R, the current gain of the first and second transistors is β, and the resistances of the first, second and third resistors are chosen such that a 1 is between 20 and 100 percent of βa 2 .

12. A mobile device comprising the RF amplifier of claim 1 .

13. A satellite receiver comprising the RF amplifier of any claim 1 .

14. An RF device comprising:

an input for receiving a differential RF signal;

first and second branches coupled in parallel between a first supply voltage terminal and a second supply voltage terminal, said branches defining a differential pair arranged to be controlled by a differential input signal comprised of first and second input signals, the differential pair comprising a first transistor in said first branch and a second transistor in said second branch, wherein said first and second transistors each comprise first and second main current terminals, said second main current terminal of said first transistor being coupled by a first capacitor to the first main current terminal of said second transistor, and said second main current terminal of said second transistor being coupled by a second capacitor to the first main current terminal of said first transistor, said first or second main current terminals of the first and second transistors being coupled to differential output nodes of said RF amplifier, wherein said first branch comprises a first resistor coupled between said first main current terminal of the first transistor and the second capacitor, and said second branch comprises a second resistor coupled between said first main current terminal of said second transistor and the first capacitor.

15. A system comprising:

receiving circuitry for receiving a differential RF input signal comprised of first and second RF input signals;

an input node coupled to said receiving circuitry; and

an RF amplifier comprising first and second branches coupled in parallel between a first supply voltage terminal and a second supply voltage terminal, said branches defining a differential pair arranged to be controlled by a differential input signal comprised of first and second input signals, the differential pair comprising a first transistor in said first branch and a second transistor in said second branch, wherein said first and second transistors each comprise first and second main current terminals, said second main current terminal of said first transistor being coupled by a first capacitor to the first main current terminal of said second transistor, and said second main current terminal of said second transistor being coupled by a second capacitor to the first main current terminal of said first transistor, said first or second main current terminals of the first and second transistors being coupled to differential output nodes of said RF amplifier, wherein said first branch comprises a first resistor coupled between said first main current terminal of the first transistor and the second capacitor, and said second branch comprises a second resistor coupled between said first main current terminal of said second transistor and the first capacitor.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 8, 2015
From: STMICROELECTRONICS (GRENOBLE) SAS
To: STMICROELECTRONICS (GRENOBLE 2) SAS
Reel/Frame 036082/0929 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 1, 2010
From: TOUZARD, OLIVIER; SORDET, FABIEN
To: STMICROELECTRONICS (GRENOBLE) SAS
Reel/Frame 025404/0299 →