IP Library Granted Patent US 8,279,012
Granted Patent B2
US 8,279,012 · App. 12/966,248 · Granted Oct 2, 2012

Amplifier circuit and methods of operation thereof

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Quick Facts
Patent No.
US 8,279,012
App. No.
12/966,248
Granted
Oct 2, 2012
Kind
B2
Abstract

A signal amplifying circuit and associated methods and apparatuses, the circuit comprising: a signal path extending from an input terminal to an output terminal, a gain controller arranged to control the gain applied along the signal path in response to a control signal; an output stage within the signal path for generating the output signal, the output stage having a gain that is substantially independent of its supply voltage, and a variable voltage power supply comprising a charge pump for providing positive and negative output voltages, the charge pump comprising a network of switches that is operable in a number of different states and a controller for operating the switches in a sequence of the states so as to generate positive and negative output voltages together spanning a voltage approximately equal to the input voltage.

Claims (37)

1. A charge pump circuit comprising:

an input node for receiving an input voltage;

a common node;

first and second output nodes for outputting first and second output voltages, respectively;

a plurality of flying capacitor nodes;

a network of switches for interconnecting said input node, said first and second output nodes and said plurality of flying capacitor nodes; and

a controller for operating said switches, said controller being operable, in use with a first reservoir capacitor connected between said first output node and said common node, with a second reservoir capacitor connected between said second output node and said common node, and additionally with only a single flying capacitor connected to said flying capacitor nodes, in a first mode to operate said switches in a sequence of states so as to generate said first and second output voltages at said first and second output nodes, respectively, wherein said first and second output voltages are of opposite polarity to one another and each is substantially equal in magnitude to half of said input voltage.

2. A charge pump circuit as claimed in claim 1 wherein said controller is operable, in use with said first reservoir capacitor connected between said first output node and said common node, with said second reservoir capacitor connected between said second output node and said common node and additionally with said single flying capacitor connected to said flying capacitor nodes, in a second mode to operate said switched in a sequence of states so as to generate said first and second output voltages at said first and second output nodes respectively wherein said first and second output voltages are of opposite polarity to one another and each is substantially equal in magnitude to said input voltage.

3. A charge pump circuit as claimed in claim 1 wherein said plurality of flying capacitor nodes comprises only first and second flying capacitor nodes.

4. A charge pump circuit as claimed in claim 2 wherein said plurality of flying capacitor nodes comprise nodes for separate connections to a plurality of flying capacitors.

5. A charge pump circuit as claimed in claim 4 wherein said controller is operable in a third mode to operate said switches in a sequence of states so as to generate, in use with said plurality of flying capacitors connected to said flying capacitor nodes, first and second output voltages at said first and second output nodes respectively wherein said first and second output voltages are of opposite polarity to one another and each substantially equal in magnitude to a rational fraction of said input voltage and wherein the output voltages in said third mode are different to the output voltages in said first or second modes.

6. A charge pump circuit as claimed in claim 2 wherein said controller comprises a control input and operates in said first mode or said second mode based on a control signal received at said control input.

7. An audio amplifier circuit comprising:

one or more amplification stages; and

a charge pump circuit as claimed in claim 1 wherein said first and second output voltages are provided as power supplies for at least one of said one or more amplification stages.

8. An audio amplifier circuit comprising:

one or more amplification stages; and

a charge pump circuit as claimed in claim 6 wherein said first and second output voltages are provided as power supplies for at least one of said one or more amplification stages;

wherein said control signal is a volume control signal.

9. An audio apparatus comprising an audio amplifier circuit as claimed in claim 7 .

10. An audio apparatus as claimed in claim 9 wherein the audio apparatus comprises at least one: a portable music system, an MP3 player, a mobile telephone handset, a Hi-Fi, an in-car entertainment system and a DVD player.

11. A charge pump circuit comprising:

an input node for receiving an input voltage;

a first reservoir capacitor connected to a first output;

a second reservoir capacitor connected to a second output;

a single flying capacitor;

a switch network for interconnecting said input node, said flying capacitor and said first and second reservoir capacitors; and

a controller for operating said switches, said controller being operable in a first mode to operate said switches in a sequence of states so as to generate first and second output voltages at said first and second outputs, respectively, wherein said first and second output voltages are of opposite polarity to one another and each is substantially equal in magnitude to half of said input voltage.

12. A charge pump circuit as claimed in claim 11 wherein said controller is operable in a second mode to operate said switches in a sequence of states so as to generate first and second output voltages at said first and second outputs respectively wherein said first and second output voltages are of opposite polarity to one another and each substantially equal in magnitude to said input voltage.

13. An audio amplifier circuit comprising:

one or more amplification stages; and

a charge pump circuit as claimed in claim 11 wherein said first and second output voltages are provided as power supplies for at least one of said one or more amplification stages.

14. An audio amplifier circuit comprising:

one or more amplification stages; and

a charge pump circuit as claimed in claim 12 wherein said first and second output voltages are provided as power supplies for at least one of said one or more amplification stages;

and wherein said charge pump operates in said first mode or said second mode based on a control signal.

15. A charge pump circuit as claimed in claim 1 , further comprising a single flying capacitor connected between two of said plurality of flying capacitor nodes.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 15, 2015
From: CIRRUS LOGIC INTERNATIONAL SEMICONDUCTOR LTD.
To: CIRRUS LOGIC INC.
Reel/Frame 035909/0190 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 2, 2015
From: CIRRUS LOGIC INTERNATIONAL (UK) LTD.
To: CIRRUS LOGIC INTERNATIONAL SEMICONDUCTOR LTD.
Reel/Frame 035806/0389 →
CHANGE OF NAME Recorded Apr 1, 2015
From: WOLFSON MICROELECTRONICS LTD
To: CIRRUS LOGIC INTERNATIONAL (UK) LTD.
Reel/Frame 035353/0413 →
CHANGE OF NAME Recorded Apr 1, 2015
From: WOLFSON MICROELECTRONICS PLC
To: WOLFSON MICROELECTRONICS LTD
Reel/Frame 035356/0096 →