Display device with ion trapping electrodes
A display device includes an array substrate, a first region in which a plurality of scan lines extending in a first direction, a plurality of signal lines extending in a second direction, and a plurality of pixels are provided on the array substrate and that has a first side, a second side, a third side, a fourth side, and a plurality of curved line parts, a second region positioned between an end part of the array substrate and the first region, a signal-line coupling circuit disposed in the second region and coupled to the signal lines, a shield layer disposed in the second region and covering at least part of the signal-line coupling circuit near at least one of the curved line parts, and a gate driver circuit disposed in the second region outside the signal-line coupling circuit and coupled to the scan lines.
1 . A display device comprising:
an array substrate;
a first region in which a plurality of scan lines extending in a first direction, a plurality of signal lines extending in a second direction, and a plurality of pixels are provided on the array substrate and that has a first side, a second side, a third side, a fourth side, and a plurality of curved line parts;
a second region positioned between an end part of the array substrate and the first region;
a signal-line coupling circuit disposed in the second region and coupled to the signal lines;
a shield layer disposed in the second region and covering at least part of the signal-line coupling circuit near at least one of the curved line parts;
a gate driver circuit disposed in the second region outside the signal-line coupling circuit and coupled to the scan lines;
a first ion trapping electrode disposed between the shield layer and the gate driver circuit, provided in a linear shape along the gate driver circuit, and supplied with constant potential;
a second ion trapping electrode disposed between the shield layer and the first ion trapping electrode, provided in a linear shape along an edge of the shield layer, and supplied with the same potential as the first ion trapping electrode; and
a bifurcating electrode through which the second ion trapping electrode bifurcates from halfway through the first ion trapping electrode in the linear shape.
2 . The display device according to claim 1 , wherein a distance between the first and the second ion trapping electrodes increases as a distance between the gate driver circuit and the shield layer increases.
3 . The display device according to claim 1 , wherein
each of the pixels includes a first electrode, an insulating film on the first electrode, and a second electrode on the insulating film,
the display device includes a counter substrate placed over the array substrate,
a conductive layer covers a surface of the counter substrate, the surface being on a side opposite the array substrate,
a pad electrode is provided at a protrusion part of the array substrate, the protrusion part being exposed from the counter substrate, and
a conductive pillar provided on the pad electrode is electrically coupled to the conductive layer.
4 . The display device according to claim 3 , wherein the first and the second ion trapping electrodes are not provided at a distance of 1.4 mm from a side of the counter substrate, the side being adjacent to the protrusion part of the array substrate.
5 . The display device according to claim 1 , wherein the shield layer is supplied with potential different from the potential applied to the first and the second ion trapping electrodes.
6 . The display device according to claim 1 , wherein the first and the second ion trapping electrodes are provided in a same layer as at least part of the shield layer and do not overlap the shield layer in a plan view.
7 . The display device according to claim 1 , further comprising a coupling wire that supplies potential to the shield layer, wherein the coupling wire intersects neither the second ion trapping electrode nor the bifurcating electrode.