IP Library Granted Patent US 8,330,543
Granted Patent B2
US 8,330,543 · App. 12/980,340 · Granted Dec 11, 2012

Differential amplifier

Assignee: Novatek Microelectronics Corp.
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Quick Facts
Patent No.
US 8,330,543
App. No.
12/980,340
Granted
Dec 11, 2012
Kind
B2
Abstract

A differential amplifier includes a pair of input transistors, a pair of load transistors, a pair of impedance devices, a pair of auxiliary input transistors, and a pair of shield transistors is provided. The input transistors provide two input terminals. The load transistors provide two output terminals and two first terminals connected to first voltage. The impedance devices are coupled between the output terminals in series. The auxiliary input transistors have two control terminals respectively connected to the input terminals, two first terminals, and two second terminals. The input transistors and the auxiliary input transistors have reverse conductive type. The shield transistors has a pair of control terminals, a pair of first terminals respectively connected to the second terminals of the auxiliary input transistors and coupled to a second voltage through a pair of current sources, and a pair of second terminals respectively connected to the output terminals.

Claims (37)

1. A differential amplifier, electrically coupled between a first voltage and a second voltage, comprising:

a pair of input transistors, for providing a pair of input terminals;

a pair of load transistors, for providing a pair of output terminals, having a pair of first terminals electrically coupled to the first voltage;

a pair of impedance devices, electrically coupled between the pair of output terminals in series;

a pair of auxiliary input transistors, having a pair of control terminals, a pair of first terminals, and a pair of second terminals, wherein the pair of control terminals are respectively electrically coupled to the pair of input terminals, wherein the pair of input transistors and the pair of auxiliary input transistors have reverse conductive type; and

a pair of shield transistors, having a pair of control terminals, a pair of first terminals, and a pair of second terminals, wherein the pair of first terminals are respectively electrically coupled to the pair of second terminals of the pair of auxiliary input transistors and are coupled to the second voltage through a pair of current sources, wherein the pair of second terminals are respectively electrically coupled to the pair of output terminals,

wherein the pair of impedance devices has a connection node between the pair of output terminals, the connection node is also connected to gate electrodes of the pair of auxiliary input transistors or gate electrodes of the pair of shield transistors.

2. The differential amplifier according to claim 1 , wherein the first voltage and the second voltage are a combination of a system high voltage and a system low voltage, and the pair of input transistors comprises:

a pair of first terminals, connected with each other, and coupled to the second voltage through a current source circuit;

a pair of control terminals, respectively electrically coupled to the pair of input terminals; and

a pair of second terminals, respectively electrically coupled to a pair of second terminals of the pair of load transistors as the pair of output terminals.

3. The differential amplifier according to claim 2 , wherein the pair of first terminals of the pair of auxiliary input transistors is coupled to the first voltage through a current source circuit.

4. The differential amplifier according to claim 1 , wherein the pair of control terminals of the pair of shield transistors is electrically coupled to an external control terminal.

5. The differential amplifier according to claim 1 , wherein the pair of current sources coupled to the pair of second terminals of the pair of auxiliary input transistors is resistors or metal-oxide-semiconductor (MOS) transistors.

6. The differential amplifier according to claim 1 , wherein the pair of impedance devices is constituted by resistors, a MOS transistor, or a plurality of MOS transistors that are coupled together.

7. The differential amplifier according to claim 1 further comprising a differential to single-ended conversion circuit, wherein the differential to single-ended conversion circuit receives a pair of differential voltage signals from the pair of output terminals and converts the pair of differential voltage signals into an output voltage signal.

8. The differential amplifier according to claim 1 , wherein the pair of auxiliary input transistors are P-type MOS (PMOS) transistors, and the pair of input transistors are N-type MOS (NMOS) transistors.

9. The differential amplifier according to claim 1 , wherein the differential amplifier is served as a comparator, and the pair of output terminals of the comparator are subsequently coupled to a pair of input terminals of a differential to single-ended conversion circuit.

10. The differential amplifier according to claim 9 , wherein the differential to single-ended conversion circuit comprises:

a pair of receiving transistors, having a pair of control terminals, a pair of first terminals, and a pair of second terminals, wherein the pair of control terminals are electrically coupled to the pair of output terminals of the comparator, and the pair of first terminals are coupled to a third voltage;

a pair of current mirror transistors, having a pair of control terminals, a pair of second terminals, and a pair of first terminals, wherein the pair of first terminals are electrically coupled to a fourth voltage, the pair of second terminals are respectively electrically coupled to the pair of second terminals of the pair of receiving transistors, and the pair of control terminals are electrically coupled with each other; and

an inverter, having two voltage control terminals, an output terminal, and an input terminal, wherein the voltage control terminals are respectively electrically coupled to the third voltage and the fourth voltage,

wherein one of the pair of second terminals of the pair of receiving transistors is electrically coupled to the pair of control terminals of the pair of current minor transistors, and another one of the pair of second terminals is electrically coupled to the input terminal of the inverter.

11. A differential amplifier, electrically coupled between a first voltage and a second voltage, comprising:

a pair of input transistors, for providing a pair of input terminals;

a pair of load transistors, for providing a pair of output terminals, having a pair of first terminals electrically coupled to the first voltage;

a pair of impedance devices, electrically coupled between the pair of output terminals in series;

a pair of auxiliary input transistors, having a pair of control terminals, a pair of first terminals, and a pair of second terminals, wherein the pair of control terminals are respectively electrically coupled to the pair of input terminals, wherein the pair of input transistors and the pair of auxiliary input transistors have reverse conductive type; and

a pair of shield transistors, having a pair of control terminals, a pair of first terminals, and a pair of second terminals, wherein the pair of first terminals are respectively electrically coupled to the pair of second terminals of the pair of auxiliary input transistors and are coupled to the second voltage through a pair of current sources, wherein the pair of second terminals are respectively electrically coupled to the pair of output terminals,

wherein the pair of impedance devices has a connection node between the pair of output terminals, the connection node is also connected to gate electrodes of the pair of auxiliary input transistors.

12. A differential amplifier, electrically coupled between a first voltage and a second voltage, comprising:

a pair of input transistors, for providing a pair of input terminals;

a pair of load transistors, for providing a pair of output terminals, having a pair of first terminals electrically coupled to the first voltage;

a pair of impedance devices, electrically coupled between the pair of output terminals in series;

a pair of auxiliary input transistors, having a pair of control terminals, a pair of first terminals, and a pair of second terminals, wherein the pair of control terminals are respectively electrically coupled to the pair of input terminals, wherein the pair of input transistors and the pair of auxiliary input transistors have reverse conductive type; and

a pair of shield transistors, having a pair of control terminals, a pair of first terminals, and a pair of second terminals, wherein the pair of first terminals are respectively electrically coupled to the pair of second terminals of the pair of auxiliary input transistors and are coupled to the second voltage through a pair of current sources, wherein the pair of second terminals are respectively electrically coupled to the pair of output terminals,

wherein the pair of impedance devices has a connection node between the pair of output terminals, the connection node is also connected to gate electrodes of the pair of shield transistors.

Assignments (2)
RELEASE Recorded Apr 14, 2015
From: WELLS FARGO BANK, NATIONAL ASSOCIATION
To: YONTOO TECHNOLOGY, INC.
Reel/Frame 035443/0735 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 29, 2010
From: LIN, YUNG-CHENG
To: NOVATEK MICROELECTRONICS CORP.
Reel/Frame 025551/0354 →
Priority Claims (1)
TW 99132639 A · Sep 27, 2010 · national
Continuity (1)
Related Publication 20120075022A1 · Mar 29, 2012