IP Library Granted Patent US 7,538,604
Granted Patent B2
US 7,538,604 · App. 11/655,774 · Granted May 26, 2009

Amplifier feedback switch configuration with improved PSRR

Assignees: STMicroelectronics S.A.; STMicroelectronics Design and Application s.r.o.
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Quick Facts
Patent No.
US 7,538,604
App. No.
11/655,774
Granted
May 26, 2009
Kind
B2
Abstract

A circuit including a first sensitive node, a first component connected between the first sensitive node and a first terminal of a first switch, said first switch controlled by a first control signal variable between a supply voltage level and a second voltage level, and a second switch including a first terminal connected to the first terminal of said first switch, and a second terminal connected to a clean voltage supply, said second switch controlled to connect the first node of said first switch to said clean voltage supply when said first switch is in a non-conducting state.

Claims (21)

1. A circuit comprising:

a first sensitive node;

a first component connected between the first sensitive node and a first terminal of a first switch, said first switch controlled by a first control signal variable between a supply voltage level and a second voltage level; and

a second switch comprising a first terminal connected to the first terminal of said first switch, and a second terminal connected to a clean voltage supply, said second switch controlled to connect the first node of said first switch to said clean voltage supply when said first switch is in a non-conducting state, wherein the first component comprises a resistor or a switch, and wherein a second terminal of the first switch is connected to an output node of an amplifier, and the first sensitive node is connected to an input node of the amplifier.

2. The circuit of claim 1 further comprising a resistor connected between said first sensitive node and said output node of said amplifier.

3. The circuit of claim 1 wherein said second switch comprises a first transistor comprising a first main terminal connected to the first terminal of said first switch, and a second main terminal connected to said clean voltage supply, and a control terminal for receiving a second control signal.

4. The circuit of claim 3 further comprising control means for providing said second control signal, said control means arranged to connect said control terminal to one of said clean voltage supply and said second voltage level.

5. The circuit of claim 3 wherein said first transistor further comprises a well terminal connected to switching means arranged to connect said well terminal to one of said supply voltage and said clean voltage supply.

6. The circuit of claim 3 wherein said second switch comprises a pair of transistors connected in series and each comprising a control terminal for receiving said second control signal.

7. The circuit of claim 1 further comprising:

a second resistor connected between said first sensitive node and the first terminal of a third switch, said third switch controlled by a third control signal variable between a supply voltage level and a second voltage level; and

a fourth switch comprising a first terminal connected to the first terminal of said third switch, and a second terminal connected to said clean voltage supply, said fourth switch arranged to connect the first node of said third switch to said clean voltage supply when said third switch is in a non-conducting state.

8. The circuit of claim 1 wherein said first switch comprises a complementary pair of MOS transistors.

9. An audio device comprising:

a first sensitive node;

a first component connected between the first sensitive node and a first terminal of a first switch, said first switch controlled by a first control signal variable between a supply voltage level and a second voltage level; and

and a second switch comprising a first terminal connected to the first terminal of said first switch, and a second terminal connected to a clean voltage supply, said second switch controlled to connect the first node of said first switch to said clean voltage supply when said first switch is in a non-conducting state, wherein the first component comprises a resistor or a switch, and wherein a second terminal of the first switch is connected to an output node of an amplifier, and the first sensitive node is connected to an input node of the amplifier.

10. The circuit of claim 9 further comprising a resistor connected between said first sensitive node and said output node of said amplifier.

11. A method of reducing noise at an output of a circuit, the circuit comprising a sensitive node and a first component connected between the sensitive node and a first terminal of a first switch, said first switch controlled by a first control signal variable between a supply voltage level and a second voltage level, the method comprising:

when said first switch is in a non-conducting state, controlling a second switch to connect the first terminal of said first switch to a clean voltage supply, wherein the first component comprises a resistor or a switch, and wherein said second switch comprises a first transistor comprising a well; and

connecting the well to one of the supply voltage level and the clean voltage supply.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 7, 2007
From: SAMAN, HYNEK; MURIN, PETER; BOKSA, MARTIN; PANUS, PAVEL
To: STMICROELECTRONICS S.A.; STMICROELECTRONICS DESIGN AND APPLICATION S.R.O.
Reel/Frame 018970/0374 →
Priority Claims (1)
EP 06100667 · Jan 20, 2006 · regional
Continuity (1)
Related Publication 20070170974A1 · Jul 26, 2007