IP Library Patent Application 14667184
Patent Application
App. No. 14/667,184

DRIVE CAPACITY CONTROL FOR DISPLAY PANEL DRIVER AND DISPLAY DEVICE

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Quick Facts
Patent No.
US None
App. No.
14/667,184
Abstract

A display device includes a display panel; and a driver. The display panel includes: first to third interconnections extended in a first direction, each having a first end connected to the driver; subpixels connected to the first interconnection and used for image display; and a bridge interconnection connecting the second and third interconnections at a second end of each of the second and third interconnections, the second end being located away from the driver. The driver includes: a first drive circuit driving the first interconnection; a second drive circuit driving the first end of the second interconnection; and a drive capacity control section receiving a first output signal from the first end of the third interconnection and controlling a drive capacity of the first drive circuit in response to a waveform of the first output signal.

Claims (69)

1 . A display device, comprising:

a display panel; and

a driver,

wherein the display panel includes:

first to third interconnections extended in a first direction, each having a first end connected to the driver;

a plurality of first subpixels connected to the first interconnection and used for image display;

a plurality of second subpixels connected to the second and third interconnections and not used for image display; and

a bridge interconnection connecting the second and third interconnections at a second end of each of the second and third interconnections or in a vicinity of the second end of each of the second and third interconnections, the second end being located away from the driver,

wherein the driver includes:

a first drive circuit configured to drive the first interconnection;

a second drive circuit configured to drive the first end of the second interconnection; and

a drive capacity control section configured to receive a first output signal from the first end of the third interconnection and control a drive capacity of the first drive circuit in response to a waveform of the first output signal.

2 . The display device according to claim 1 , wherein the drive capacity control section is configured to control the drive capacity of the first drive circuit in response to a delay time across the second and third interconnections and the bridge interconnection.

3 . The display device according to claim 2 , wherein the second drive circuit is configured to drive the first end of the second interconnection in response to an assertion of a control signal;

wherein the drive capacity control section includes:

a comparator configured to compare a voltage level of the first output signal with a threshold level;

a counter configured to start a counting operation in response to the assertion of the control signal and configured to the counting operation in response to a second output signal outputted from the comparator; and

a control logic circuit configured to control the drive capacity of the first drive circuit in response to a count value held by the counter at a moment when the counting operation is stopped.

4 . The display device according to claim 2 , wherein the second drive circuit configured to drive the first end of the second interconnection in response to an assertion of a control signal;

wherein the drive capacity control section includes:

an A/D converter configured to perform an analog-digital conversion on the first output signal to generate digital waveform data;

a delay section configured to delay the digital waveform data and configured to output the delayed digital waveform data;

a comparator circuit configured to compare the digital waveform data received from the A/D converter with the digital waveform data received from the delay section;

a counter configured to start a counting operation in response to the assertion of the control signal and configured to stop the counting operation in response to a second output signal outputted from the comparator circuit; and

a control logic circuit configured to control the drive capacity of the first drive circuit in response to a count value held by the counter at a moment when the counting operation is stopped.

5 . The display device according to claim 1 , wherein the drive capacity control section includes:

an A/D converter configured to perform an analog-digital conversion on the first output signal to generate digital waveform data indicating a voltage level of the first output signal at each time; and

a control logic circuit configured to control the drive capacity of the first drive circuit in response to the digital waveform data.

6 . The display device according to claim 5 , further comprising a touch panel,

wherein the A/D converter is operable to perform an analog-digital conversion on an analog signal indicating the electrical state of the touch panel to generate digital data indicating the electrical state of the touch panel.

7 . The display device according to claim 3 , wherein the first and second drive circuit has the same configuration, and

wherein the drive capacity control section configured to determine whether a drive capacity of the second drive circuit is appropriate by comparing the count value held by the counter at the moment when the counting operation is stopped with a reference value, and, when determining that the drive capacity of the second drive circuit is appropriate, set the drive capacity of the first drive circuit on a basis of the drive capacity of the second drive circuit.

8 . The display device according to claim 4 , wherein the first and second drive circuit has the same configuration, and

wherein the drive capacity control section configured to determine whether a drive capacity of the second drive circuit is appropriate by comparing the count value held by the counter at the moment when the counting operation is stopped with a reference value, and, when determining that the drive capacity of the second drive circuit is appropriate, set the drive capacity of the first drive circuit on a basis of the drive capacity of the second drive circuit.

9 . The display device according to claim 1 , wherein the display panel further includes:

first and second dummy interconnections extended in the first direction; and

a plurality of third subpixels connected to the first and second dummy interconnections and not used for image display,

wherein the first, second, third interconnections and the first and second dummy interconnections are arrayed in a second direction perpendicular to the first direction, and

wherein the first, second and third interconnections are disposed between the first and second dummy interconnections.

10 . The display device according to claim 9 , wherein the second and the third interconnections are disposed adjacent to the first dummy interconnection.

11 . The display device according to claim 1 , wherein the display panel includes a liquid crystal display panel, and

wherein the first interconnection includes a source line.

12 . The display device according to claim 1 , wherein the display panel includes a liquid crystal display panel, and

wherein the first interconnection includes a gate line.

13 . A display panel driver for driving a display panel including:

first to third interconnections extended in a first direction;

a plurality of first subpixels connected to the first interconnection and used for image display;

a plurality of second subpixels connected to the second and third interconnections and not used for image display; and

a bridge interconnection connecting the second and third interconnections at a first end of each of the second and third interconnections or in a vicinity of the first end of each of the second and third interconnections with the first end allocated away from the display panel driver, the display panel driver comprising:

a first drive circuit configured to drive the first interconnection;

a second drive circuit configured to input a step signal to a second end of the second interconnection, the second end being opposite to the first end across the second interconnection; and

a drive capacity control section configured to receive a first output signal from a third end of the third interconnection and configured to control a drive capacity of the first drive circuit in response to a waveform of the first output signal, the third end being opposite to the first end across the third interconnection.

14 . The display panel driver according to claim 13 , wherein the drive capacity control section is configured to control the drive capacity of the first drive circuit in response to a delay time across the second and third interconnections and the bridge interconnection.

15 . The display panel driver according to claim 14 , wherein the second drive circuit configured to drive the second end of the second interconnection in response to an assertion of a control signal;

wherein the drive capacity control section includes:

a comparator configured to compare a voltage level of the first output signal with a threshold level;

a counter configured to start a counting operation in response to the assertion of the control signal and configured to stop the counting operation in response to a second output signal outputted from the comparator; and

a control logic circuit configured to control the drive capacity of the first drive circuit in response to a count value held by the counter at a moment when the counting operation is stopped.

16 . The display panel driver according to claim 14 , wherein the second drive circuit configured to drive the second end of the second interconnection in response to an assertion of a control signal;

wherein the drive capacity control section includes:

an A/D converter configured to perform an analog-digital conversion on the first output signal to generate digital waveform data;

a delay section configured to delay the digital waveform data and configured to output the delayed digital waveform data;

a comparator circuit configured to compare the digital waveform data received from the A/D converter with the digital waveform data received from the delay section;

a counter configured to start a counting operation in response to the assertion of the control signal and configured to stop the counting operation in response to a second output signal outputted from the comparator circuit; and

a control logic circuit configured to control the drive capacity of the first drive circuit in response to a count value held by the counter at a moment when the counting operation is stopped.

17 . The display panel driver according to claim 13 , wherein the drive capacity control section includes:

an A/D converter configured to perform an analog-digital conversion on the first output signal to generate digital waveform data indicating a voltage level of the first output signal at each time; and

a control logic circuit configured to control the drive capacity of the first drive circuit in response to the digital waveform data.

18 . The display panel driver according to claim 17 , wherein the A/D converter is operable to perform an analog-digital conversion on an analog signal indicating the electrical state of a touch panel disposed adjacent to the display panel to generate digital data indicating the electrical state of the touch panel.

Assignments (5)
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: SYNAPTICS DISPLAY DEVICES KK
To: SYNAPTICS DISPLAY DEVICES GK
Reel/Frame 035797/0036 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 24, 2015
From: NAKANO, TOMOTAKA; HIKICHI, TOSHIYUKI; ENOMOTO, NORIHIRO
To: SYNAPTICS DISPLAY DEVICES KK
Reel/Frame 035244/0264 →