IP Library Patent Application 12219431
Patent Application
App. No. 12/219,431

Amplifying circuit and display unit

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Quick Facts
Patent No.
US None
App. No.
12/219,431
Abstract

Provided is an amplifying circuit and display unit (for example, a liquid crystal display) which achieves reductions in an area and power consumption without needing to build up complicated logic, while maintaining properties, as compared with the existing amplifying circuit and display unit. In the amplifying circuit, a voltage follower is divided into components including an input stage amplifying part for high voltage, an input stage amplifying part for low voltage and multiple output stage amplifying parts. Without changing an input relationship between the input stage amplifying parts for high voltage and for low voltage, an output relationship between the multiple output stage amplifying parts is changed depending on a control signal. Additionally, when the input stage amplifying part and the output stage amplifying part form one amplifying part, the amplifying part is switched to form the voltage follower in response to switching operation.

Claims (56)

1 . An amplifying circuit, comprising:

a first input stage amplifying part that receives a first input signal only at a transistor differential pair of a first conductivity type;

a second input stage amplifying part that receives a second input signal different from the first input signal only at a transistor differential pair of a second conductivity type;

first and second output stage amplifying parts; and

a switching circuit that switches connections of the first input stage amplifying part and the second input stage amplifying part, with the first and second output stage amplifying parts, on the basis of external control signals.

2 . An amplifying circuit that applies a voltage in a range from a first supply voltage to a second supply voltage higher than the first supply voltage, comprising:

a first input stage amplifying part consisting of a transistor differential pair of a first conductivity type;

a second input stage amplifying part consisting of a transistor differential pair of a second conductivity type;

first and second output stage amplifying parts; and

a switching circuit that switches a connection of each of the first input stage amplifying part and the second input stage amplifying part, between the first and second output stage amplifying parts, on the basis of external control signals, wherein

the first input stage amplifying part performs amplifying operation on a voltage if the voltage is approximately in a range from the second supply voltage, to a voltage obtained by adding the first supply voltage to a threshold voltage of a transistor that forms the transistor differential pair of the first conductivity type, and does not perform the amplifying operation if the voltage is out of the range,

the second input stage amplifying part performs amplifying operation on a voltage if the voltage is approximately in a range from the first supply voltage, to a voltage obtained by subtracting the second supply voltage by a threshold voltage of a transistor that forms the transistor differential pair of the second conductivity type, and does not perform the amplifying operation if the voltage is out of the range.

3 . The amplifying circuit according to any one of claims 1 wherein

in response to an operation of the switching circuit,

in a first state, an output of the first input stage amplifying part is inputted into the first output stage amplifying part, and an output of the second input stage amplifying part is inputted into the second output stage amplifying part, and

in a second state, an output of the first input stage amplifying part is inputted into the second output stage amplifying part, and an output of the second input stage amplifying part is inputted into the first output stage amplifying part.

4 . The amplifying circuit according to claim 3 , wherein

in response to an operation of the switching circuit, two voltage followers are formed in each of the first and second states, in a way that:

in the first state, the output of the first output stage amplifying part is fed back to a second input terminal of the first input stage amplifying part that is different from an input terminal for receiving the input signal, and the output of the second output stage amplifying part is fed back to a second input terminal of the second input stage amplifying part that is different from an input terminal for receiving the input signal; and

in the second state, the output of the first output stage amplifying part is fed back to the second input terminal of the second input stage amplifying part, and the output of the second output stage amplifying part is fed back to the second input terminal of the first input stage amplifying part.

5 . The amplifying circuit according to any one of claims 1 wherein

the first input stage amplifying part consists of a differential pair of N channel MOS transistors, and the second input stage amplifying part consists of a differential pair of P channel MOS transistors.

6 . The amplifying circuit according to any one of claims 1 wherein

in response to an operation of the switching circuit, the first output stage amplifying part and the second output stage amplifying part switch and output signals with polarities different from each other from the respective output terminals.

7 . The amplifying circuit according to any one of claims 2 wherein

each of the first and second output stage amplifying parts consists of a pair of a transistor of the first conductivity type and a transistor of the second conductivity type connected in series between the first supply voltage and the second supply voltage.

8 . The amplifying circuit according to any one of claims 1 wherein

the external control signals are a polarity inverting signal POL and a strobe signal STB.

9 . The amplifying circuit according to any one of claims 1 further comprising

a second switching circuit that switches configurations of the first output stage amplifying part and the second output stage amplifying part, on the basis of the external control signals.

10 . The amplifying circuit according to any one of claims 1 wherein

each of the first and second output stage amplifying parts is capable of outputting both a voltage in an output voltage range of the first input stage amplifying part, and a voltage in an output voltage range of the second input stage amplifying part.

11 . An amplifying circuit, comprising:

a plurality of first input stage amplifying parts each of which receives a first input signal only at a transistor differential pair of a first conductivity type;

a plurality of second input stage amplifying parts each of which receives a second input signal different from the first input signal only at a transistor differential pair of a second conductivity type;

a plurality of first and second output stage amplifying parts; and

a switching circuit that switches connection of each of the plurality of first input stage amplifying parts and the plurality of second input stage amplifying parts, with the plurality of first and second output stage amplifying parts, on the basis of external control signals.

12 . An amplifying circuit that applies a voltage in a range from a first supply voltage to a second supply voltage higher than the first supply voltage, comprising:

a plurality of first input stage amplifying parts each consisting of a transistor differential pair of a first conductivity type;

a plurality of second input stage amplifying parts each consisting of a transistor differential pair of a second conductivity type;

a plurality of first and second output stage amplifying parts; and

a switching circuit that switches a connection of each of the plurality of first input stage amplifying parts and the plurality of second input stage amplifying parts, between the plurality of first and second output stage amplifying parts, on the basis of external control signals, wherein

the plurality of first input stage amplifying parts each perform amplifying operation on a voltage if the voltage is approximately in a range from the second supply voltage, to a voltage obtained by adding the first supply voltage to a threshold voltage of a transistor that forms the transistor differential pair of the first conductivity type, and does not perform the amplifying operation if the voltage is out of the range,

the plurality of second input stage amplifying parts each perform amplifying operation on a voltage if the voltage is approximately in a range from the first supply voltage, to a voltage obtained by subtracting the second supply voltage by a threshold voltage of a transistor that forms the transistor differential pair of the second conductivity type, and does not perform the amplifying operation if the voltage is out of the range.

13 . A display unit on which an amplifying circuit is mounted, the amplifying circuit comprising:

a first input stage amplifying part that receives a first input signal only at a transistor differential pair of a first conductivity type;

a second input stage amplifying part that receives a second input signal different from the first input signal only at a transistor differential pair of a second conductivity type;

first and second output stage amplifying parts; and

a switching circuit that switches connections of the first input stage amplifying part and the second input stage amplifying part, with the first and second output stage amplifying parts, on the basis of external control signals.

14 . A display unit on which an amplifying circuit is mounted, the amplifying circuit applying a voltage in a range from a first supply voltage to a second supply voltage higher than the first supply voltage, the amplifying circuit comprising:

a first input stage amplifying part consisting of a transistor differential pair of a first conductivity type;

a second input stage amplifying part consisting of a transistor differential pair of a second conductivity type;

first and second output stage amplifying parts; and

a switching circuit that switches a connection of each of the first input stage amplifying part and the second input stage amplifying part, between the first and second output stage amplifying parts, on the basis of external control signals, wherein

the first input stage amplifying part performs amplifying operation on a voltage if the voltage is approximately in a range from the second supply voltage, to a voltage obtained by adding the first supply voltage to a threshold voltage of a transistor that forms the transistor differential pair of the first conductivity type, and does not perform the amplifying operation if the voltage is out of the range,

the second input stage amplifying part performs amplifying operation on a voltage if the voltage is approximately in a range from the first supply voltage, to a voltage obtained by subtracting the second supply voltage by a threshold voltage of a transistor that forms the transistor differential pair of the second conductivity type, and does not perform the amplifying operation if the voltage is out of the range.

Assignments (2)
CHANGE OF NAME Recorded Oct 28, 2010
From: NEC ELECTRONICS CORPORATION
To: RENESAS ELECTRONICS CORPORATION
Reel/Frame 025214/0687 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 22, 2008
From: SHIMATANI, ATSUSHI
To: NEC ELECTRONICS CORPORATION
Reel/Frame 021326/0461 →