IP Library Granted Patent US 7,567,244
Granted Patent B2
US 7,567,244 · App. 11/395,177 · Granted Jul 28, 2009

Semiconductor integrated circuit for driving a liquid crystal display

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Quick Facts
Patent No.
US 7,567,244
App. No.
11/395,177
Granted
Jul 28, 2009
Kind
B2
Abstract

A semiconductor integrated circuit for driving a liquid crystal display, capable of improving the quality of an image displayed by preventing an imbalance between the outputs of a pair of amplifiers for positive voltage and negative voltage for AC driving of the liquid crystal panel and transmission of noise from one amplifier to the other amplifier is realized. A driver circuit that generates and outputs dive signals to be applied to signal lines of the liquid crystal panel includes decoder circuits, each of which selects a gray-scale voltage corresponding to image data. It also includes amplifiers for positive voltage which perform impedance conversion of positive voltages selected by the decoder circuits and amplifiers for negative voltage which perform impedance conversion of negative voltages selected by the decoder circuits. Furthermore, it includes an AC output section consisting of switch circuits, each of which alternately conducts an output of each amplifier for positive voltage to one of two adjacent output terminals and an output of each amplifier for negative voltage to the other one of the two adjacent terminals and vice versa. Two pairs of supply voltages having the same potential difference are generated as supply voltages to the amplifiers for positive voltage and the amplifiers for negative voltage and supplied through separate power supply lines.

Claims (24)

1. A semiconductor integrated circuit for driving a liquid crystal display including a driver circuit which generates and outputs drive signals which have gray-scale voltages corresponding to image data to be displayed and should be applied to signal lines of an active matrix type liquid crystal panel,

said driver circuit comprising:

decoder circuits, each of which selects a gray-scale voltage corresponding to the image data;

first differential amplifier circuits which perform impedance conversion of positive voltages selected by said decoder circuits;

second differential amplifier circuits which perform impedance conversion of negative voltages selected by said decoder circuits; and

switch circuits, each of which alternately conducts an output of said each first differential amplifier circuit to one of two adjacent output terminals and an output of said each second differential amplifier circuit to the other one of the two adjacent terminals and vice versa;

wherein said first differential amplifier circuits operate on a first supply voltage and a second supply voltage which is lower than the first supply voltage, and

wherein said second differential amplifier circuits operate on a third supply voltage which is lower than said first supply voltage and a fourth supply voltage which is lower than the third supply voltage.

2. The semiconductor integrated circuit for driving a liquid crystal display according to claim 1 , wherein elements constituting said first differential amplifier circuits and said second differential amplifier circuits and elements constituting said decoder circuits are designed to withstand a voltage lower than a voltage that elements constituting said switch circuits are designed to withstand.

3. The semiconductor integrated circuit for driving a liquid crystal display according to claim 1 , wherein second switch circuits, each of which exchanges image data routed to two adjacent output terminals, are provided at preceding stages of said decoder circuits and the second switch circuits are controlled in relation to said switch circuits.

4. A semiconductor integrated circuit for driving a liquid crystal display including a driver circuit which generates and outputs drive signals which have gray-scale voltages corresponding to image data to be displayed and should be applied to signal lines of an active matrix type liquid crystal panel,

said driver circuit comprising:

decoder circuits, each of which selects a gray-scale voltage corresponding to the image data;

first differential amplifier circuits which perform impedance conversion of positive voltages selected by said decoder circuits;

second differential amplifier circuits which perform impedance conversion of negative voltages selected by said decoder circuits; and

switch circuits, each of which alternately conducts an output of said each first differential amplifier circuit to one of two adjacent output terminals and an output of said each second differential amplifier circuit to the other one of the two adjacent terminals and vice versa;

wherein said first differential amplifier circuits operate on a first supply voltage and a second supply voltage which is lower than the first supply voltage and said second differential amplifier circuits operate on a third supply voltage which is lower than said first supply voltage and a fourth supply voltage which is lower than the third supply voltage, and

wherein a first power supply line which supplies said second supply voltage to said first differential amplifier circuits and a second power supply line which supplies said third supply voltage to said second differential amplifier circuits are connected via a resistor.

5. The semiconductor integrated circuit for driving a liquid crystal display according to claim 4 , wherein said resistor is a variable resistor element or a variable resistor circuit whose resistance value is variable.

6. The semiconductor integrated circuit for driving a liquid crystal display according to claim 4 , wherein said resistor is a fixed resistor having a constant resistance value.

7. The semiconductor integrated circuit for driving a liquid crystal display according to claim 4 , further including a first power supply circuit which generates said second supply voltage and a second power supply circuit which generates said third supply voltage.

8. The semiconductor integrated circuit for driving a liquid crystal display according to claim 7 , wherein said first power supply circuit and said second power supply circuit operate on said first supply voltage and said fourth supply voltage.

9. The semiconductor integrated circuit for driving a liquid crystal display according to claim 4 , wherein elements constituting said first differential amplifier circuits and said second differential amplifier circuits and elements constituting said decoder circuits are designed to withstand a voltage lower than a voltage that elements constituting said switch circuits are designed to withstand.

10. The semiconductor integrated circuit for driving a liquid crystal display according to claim 9 , wherein level shifter circuits, each of which level-shifts the potential of an image data signal to be decoded, are provided at preceding stages of said decoder circuits, and the level shifter circuits at the preceding stages of decoder circuits that select a positive gray-scale voltage among said decoder circuits are configured, comprising elements which are designed to withstand a voltage higher than a voltage that elements constituting decoder circuits which select a negative gray-scale voltage are designed to withstand.

Assignments (9)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 20, 2024
From: SYNAPTICS JAPAN GK
To: SYNAPTICS INCORPORATED
Reel/Frame 067793/0211 →
SECURITY INTEREST Recorded Sep 27, 2017
From: SYNAPTICS INCORPORATED
To: WELLS FARGO BANK, NATIONAL ASSOCIATION
Reel/Frame 044037/0896 →
CHANGE OF NAME Recorded Aug 8, 2016
From: SYNAPTICS DISPLAY DEVICES GK
To: SYNAPTICS JAPAN GK
Reel/Frame 039711/0862 →
CHANGE OF NAME Recorded May 29, 2015
From: RENESAS SP DRIVERS INC.
To: SYNAPTICS DISPLAY DEVICES KK
Reel/Frame 035796/0947 →
CHANGE OF NAME Recorded May 29, 2015
From: SYNAPTICS DISPLAY DEVICES KK
To: SYNAPTICS DISPLAY DEVICES GK
Reel/Frame 035797/0036 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 19, 2014
From: RENESAS ELECTRONICS CORPORATION
To: RENESAS SP DRIVERS INC.
Reel/Frame 033778/0137 →
MERGER Recorded Aug 13, 2010
From: RENESAS TECHNOLOGY CORP.
To: NEC ELECTRONICS CORPORATION
Reel/Frame 024879/0190 →
CHANGE OF NAME Recorded Aug 13, 2010
From: NEC ELECTRONICS CORPORATION
To: RENESAS ELECTRONICS CORPORATION
Reel/Frame 024864/0635 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 3, 2006
From: NOHTOMI, SHINOBU; TACHIBANA, TOSHIKAZU; SUZUKI, SHINYA; OKADO, KAZUO
To: RENESAS TECHNOLOGY CORP.
Reel/Frame 017756/0466 →