IP Library Granted Patent US 8,610,496
Granted Patent B2
US 8,610,496 · App. 13/393,161 · Granted Dec 17, 2013

Switched amplifier circuit arrangement and method for switched amplification

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Quick Facts
Patent No.
US 8,610,496
App. No.
13/393,161
Granted
Dec 17, 2013
Kind
B2
Abstract

A switched amplifier circuit arrangement comprises a main amplifier (Amp) having an input terminal (In) and an output terminal (Out) and a regulating amplifier (rAmp) to set an input and an output operating point of the main amplifier (Amp). The regulating amplifier (rAmp) exhibits an auxiliary amplifier (A) having a first input terminal coupled to a reference level (Vref), a second input terminal (Ain) coupled to the output terminal (Out), and an output terminal (Aout) which is connected via a first switch (S 1 ) to the input terminal (In). Moreover, the switched amplifier circuit arrangement comprises a cancellation capacitor (Cc) coupled to the input terminal (In), a second switch (S 2 ) which is coupled between the output terminal (Out) and the cancellation capacitor (Cc) at a first circuit node (n 1 ), and a third switch (S 3 ) connected between the circuit node (n 1 ) and the reference level (Vref).

Claims (59)

1. A switched amplifier circuit arrangement, comprising:

a main amplifier having an input terminal and an output terminal; and

a regulating amplifier comprising:

an auxiliary amplifier having a first input terminal coupled to a reference level, a second input terminal coupled to the output terminal, and an output terminal which is connected via a first switch to the input terminal,

a cancellation capacitor coupled to the input terminal,

a second switch which is coupled between the output terminal of the main amplifier and the cancellation capacitor at first circuit node, and

a third switch connected between the circuit node and the reference level,

wherein during a reset phase, the first and the second switch are electrically closed, while the third switch is electrically open, and

during an amplification phase, the first and the second switch are electrically open, while the third switch is electrically closed.

2. The switched amplifier circuit arrangement according to claim 1 , wherein the main amplifier is an inverting amplifier.

3. The switched amplifier circuit arrangement according to claim 1 , wherein:

a bias voltage terminal is coupled to a second circuit node via a bias switch, and

a bias capacitor is coupled between the second circuit node and the first switch.

4. The switched amplifier circuit arrangement according to claim 3 , wherein the inverting amplifier comprises:

a first transistor having a control terminal connected to the second circuit node, and which on its load side is coupled between a most positive supply voltage of the system and a third circuit node, the third circuit node being coupled between the output terminal and the second input terminal of the auxiliary amplifier, and

a second transistor having a control terminal connected to the input terminal, and which on its load side is coupled to a most negative supply voltage of the system and the third circuit node.

5. The switched amplifier circuit arrangement according to claim 4 , wherein the inverting amplifier comprises a cascode inverting amplifier, comprising:

a third transistor having a control terminal connected to a first bias voltage (Vbp) and which on its load side is coupled between the first transistor and the third circuit node, and

a fourth transistor having a control terminal connected to a second bias voltage (Vbn) and which on its load side is coupled between the second transistor and the third circuit node.

6. The switched amplifier circuit arrangement according to claim 4 , wherein the inverting amplifier comprises bipolar transistors.

7. The switched amplifier circuit arrangement according to claim 4 , wherein the inverting amplifier comprises unipolar transistors.

8. The switched amplifier circuit arrangement according to claim 1 , wherein the auxiliary amplifier comprises a differential amplifier.

9. The switched amplifier circuit arrangement according to claim 1 , wherein the main amplifier comprises an operational amplifier.

10. The switched amplifier circuit arrangement according to claim 1 , wherein the switches each comprise at least one transistor.

11. An integrator, comprising:

the switched amplifier circuit arrangement according to claim 1 , and

an integrating circuit comprising:

a series connection comprising a fourth switch connected to a voltage input terminal, a sampling capacitor, a seventh switch and an integration capacitor which is connected to the second input terminal,

a fourth circuit node coupled between the fourth switch and the sampling capacitor,

a fifth switch coupled to the fourth circuit node and common ground, and

a fifth circuit node coupled between the sampling capacitor and a sixth switch coupled to virtual ground on one side and the third switch and the seventh switch on the other side.

12. The integrator according to claim 11 , comprising:

the switched amplifier circuit arrangement provided as a first switched amplifier circuit arrangement having a first output switch coupled between an output terminal of the first switched amplifier circuit arrangement and a first voltage output terminal,

a second switched amplifier circuit arrangement having a second output switch coupled between an output terminal of the second switched amplifier circuit arrangement and a second voltage output terminal,

the voltage input terminal of the first switched amplifier circuit arrangement which is connected to the fifth switch of the second switched amplifier circuit arrangement,

the voltage input terminal of the second switched amplifier circuit arrangement which is connected to the fifth switch of the first switched amplifier circuit arrangement,

a first common-mode feedback circuit connected to the fifth node of the first switched amplifier circuit arrangement, and

a second common-mode feedback circuit connected to the fifth node of the second switched amplifier circuit arrangement.

13. The integrator according to claim 12 including the first and second common-mode feedback circuit each comprising:

a first common-mode capacitor coupled to a sixth circuit node and to the second voltage output terminal and common ground via a first common-mode switch and a second common-mode switch, and

a second common-mode capacitor coupled to the sixth circuit node and to the first voltage output terminal and common ground via a third switch and a fourth switch, and

wherein the sixth circuit node of the first common-mode feedback circuit is connected to the first switched amplifier circuit arrangement via its fifth circuit node, and

wherein the sixth circuit node of the second common-mode feedback circuit is connected to the second switched amplifier circuit arrangement via its fifth circuit node.

14. A chip assembly comprising:

the switched amplifier circuit arrangement according to claim 1 implemented on a chip, and

all bias and cancellation capacitors and/or integration, sampling and common-mode capacitors externally connected to the chip or integrated on-chip.

15. A chip assembly comprising:

an integrator according to claim 11 implemented on a chip, and

all bias and cancellation capacitors and/or integration, sampling and common-mode capacitors, externally connected to the chip or integrated on-chip.

16. A method for switched amplification, comprising consecutively switching between a reset phase and an amplification phase in which

wherein the reset phase comprises:

charging a charge storage using a bias voltage,

providing a reference level,

regulating an input operating point,

setting an output operating point to the reference level,

comparing the output operating point to the reference level,

regulating the input operating point depending on that comparison, and

repeating regulating the input operating point, setting the output operating point, comparing and regulating, and

wherein the amplification phase comprises amplifying a signal depending on the input operating point, the output operating point and the bias voltage from the charge storage.

Assignments (2)
CHANGE OF NAME Recorded Apr 16, 2013
From: AUSTRIAMICROSYSTEMS AG
To: AMS AG
Reel/Frame 030228/0326 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 22, 2012
From: YAN, WEIXUN
To: AUSTRIAMICROSYSTEMS AG
Reel/Frame 028251/0132 →