Display apparatus
A display apparatus that consumes less power and has a small size bezel is provided, including a substrate, a plurality of subpixel groups arranged on the substrate and including a first subpixel group including first subpixels and a second subpixel group including second subpixels, a first data line configured to transmit a first data signal to the first subpixel group, a second data line configured to transmit the first data signal to the second subpixel group, and a first switch electrically connected to the first data line and configured to selectively transmit the first data signal to the first data line.
1 . A display apparatus comprising:
a substrate including a display area and a peripheral area around the display area;
a plurality of subpixel groups arranged on the substrate and including a first subpixel group including first subpixels, a second subpixel group including second subpixels, a third subpixel group including third subpixels and a fourth subpixel group including fourth subpixels;
a first data line configured to transmit a first data signal to the first subpixel group;
a second data line configured to transmit the first data signal to the second subpixel group;
a third data line configured to transmit a second data signal to the third subpixel group;
a fourth data line configured to transmit the second data signal to the fourth subpixel group;
a first switch electrically connected to the first data line and configured to selectively transmit the first data signal to the first data line;
a second switch electrically connected to the third data line;
a data driver configured to generate the second data signal;
a second output line configured to receive the second data signal from the data driver and transmit the second data signal to the third data line and the fourth data line, wherein,
the peripheral area includes an area where the second data line and the third data line intersect each other in a plan view; and
a first shielding layer located in the area, overlapping the second data line and the third data line when viewed vertically from the substrate, and arranged between the second data line and the third data line in a cross-sectional view.
2 . The display apparatus of claim 1 , wherein
the data driver is configured to generate the first data signal,
the display apparatus further comprising a first output line configured to receive the first data signal from the data driver and transmit the first data signal to the first data line and the second data line, wherein,
the first output line and the second data line are directly connected to each other.
3 . The display apparatus of claim 2 , wherein the first switch electrically connects the first output line to the first data line.
4 . The display apparatus of claim 3 , wherein,
the first switch is turned on or off according to a first control signal, and
the first switch is turned on and the first data signal is transmitted to the first data line.
5 . The display apparatus of claim 4 , wherein the first data signal includes data signal A of a first section and data signal B of a second section following the first section.
6 . The display apparatus of claim 5 , wherein, the first switch is turned on, and the data signal A of the first section is transmitted to the first data line.
7 . The display apparatus of claim 5 , wherein, the first switch is turned off, and the first data signal is not transmitted to the first data line.
8 . The display apparatus of claim 5 , wherein,
the first data signal is completely transmitted from the first output line to the second data line.
9 . The display apparatus of claim 8 , wherein,
each of the second subpixels is electrically connected to a storage capacitor, and
the first data signal is written to the storage capacitor.
10 . The display apparatus of claim 9 , wherein the data signal B is written to the storage capacitor after the data signal A is written to the storage capacitor.
11 . The display apparatus of claim 9 , wherein the first data signal is measured from the storage capacitor.
12 . The display apparatus of claim 9 , wherein a signal measured from the storage capacitor in the first section is the data signal A and a signal measured from the storage capacitor in the second section following the first section is the data signal B.
13 . The display apparatus of claim 1 , wherein the second switch electrically connects the second output line to the third data line.
14 . The display apparatus of claim 13 , wherein,
the second switch is turned on or off according to a first control signal, and
the second switch is turned on and the second data signal is transmitted to the third data line.
15 . The display apparatus of claim 14 , wherein the second data signal is completely transmitted to the fourth data line.
16 . An electronic apparatus comprising:
a memory which stores data information;
a processor which generates data signals and/or control signals based on the data information; and
a display apparatus which operates based on the data signals and/or the control signals, wherein the display apparatus comprising:
a substrate including a display area and a peripheral area around the display area;
a plurality of subpixel groups arranged on the substrate and including a first subpixel group including first subpixels, a second subpixel group including second subpixels, a third subpixel group including third subpixels and a fourth subpixel group including fourth subpixels;
a first data line configured to transmit a first data signal to the first subpixel group;
a second data line configured to transmit the first data signal to the second subpixel group;
a third data line configured to transmit a second data signal to the third subpixel group;
a fourth data line configured to transmit the second data signal to the fourth subpixel group;
a first switch electrically connected to the first data line and configured to selectively transmit the first data signal to the first data line;
a second switch electrically connected to the third data line;
a data driver configured to generate the first data signal and the second data signal; and
a first output line configured to receive the first data signal from the data driver and transmit the first data signal to the first data line and the second data line;
a second output line configured to receive the second data signal from the data driver and transmit the second data signal to the third data line and the fourth data line, wherein,
the peripheral area includes an area where the second data line and the third data line intersect each other in a plan view; and
a first shielding layer located in the area, overlapping the second data line and the third data line when viewed vertically from the substrate, and arranged between the second data line and the third data line in a cross-sectional view,
wherein,
the first output line and the second data line are directly connected to each other.