Liquid crystal display
Abstract
To prevent or inhibit, even if an array substrate and an opposite substrate shift from each other, a spacer section from coming close to the array substrate inside each of pixels, a liquid crystal display includes an auxiliary wiring provided to project toward the side of the opposite substrate from a surface of the array substrate, and the spacer section provided to project toward the side of the array substrate from a surface of the opposite substrate. The auxiliary wiring is arranged within a region provided with an extension portion in a liquid shielding section, and extends in an X-axis direction in a plan view, and a length in a Y-axis direction of the spacer section is larger than a width in the X-axis direction of the spacer section. The spacer section crosses the auxiliary wiring in a crossing region where the extension portion and an extension portion cross each other in a plan view.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A liquid crystal display comprising:
a first substrate; a second substrate; a liquid crystal between the first substrate and the second substrate; a first wiring and a first layer between the first substrate and the liquid crystal; and a spacer which is between the second substrate and the liquid crystal, and includes a first length in a first direction and a second length in a second direction which is crossing the first direction, wherein the first length is larger than the second length, and wherein the first wiring is projected from the first layer and extends the second direction, and the spacer overlaps the first wiring.
2 . The liquid crystal display device according to claim 1 , further comprising a light shielding member which is between the second substrate and the liquid crystal, and includes a potion extending in the second direction,
wherein the portion overlaps the first wiring.
3 . The liquid crystal display device according to claim 2 , further comprising a gate wiring and a source wirings crossing the gate wiring,
wherein the gate wiring extend the first wiring.
4 . The liquid crystal display device according to claim 3 ,
wherein the first wiring and the source wiring are parallel, and extend the second direction.
5 . The liquid crystal display device according to claim 2 ,
wherein the first layer is an insulation layer.
6 . The liquid crystal display device according to claim 5 ,
wherein the insulation layer is a transparent resin film
7 . The liquid crystal display device according to claim 6 , further comprising a transparent conductive layer,
wherein the first wiring is disposed between the first layer and the transparent conductive layer, and the first wiring contacts the transparent conductive layer.
8 . The liquid crystal display device according to claim 7 , further comprising a transparent pixel electrode between the transparent conductive layer and the liquid crystal,
wherein the transparent conducive layer is a common electrode, and the liquid crystal is driven by an electric field generated between the pixel electrode and the common electrode.
9 . The liquid crystal display device according to claim 2 ,
wherein the first layer is a transparent conductive layer, and the first wiring contacts the transparent conductive layer.
10 . The liquid crystal display device according to claim 9 , further comprising a transparent pixel electrode between the transparent conductive layer and the liquid crystal,
wherein the transparent conducive layer is a common electrode, and the liquid crystal is driven by an electric field generated between the pixel electrode and the common electrode.
11 . The liquid crystal display device according to claim 1 , further comprising a second wiring projected from the first layer and extends the second direction,
wherein the second wiring is separated from the first wiring.
12 . The liquid crystal display device according to claim 11 , further comprising a light shielding member which is between the second substrate and the liquid crystal, and includes a potion extending in the second direction,
wherein the portion overlaps the first wiring and the second wiring.
13 . The liquid crystal display device according to claim 12 , further comprising a gate wiring and a source wirings crossing the gate wiring,
wherein the gate wiring extend the first wiring.
14 . The liquid crystal display device according to claim 13 ,
wherein the first layer is an insulation layer.
15 . The liquid crystal display device according to claim 14 ,
wherein the insulation layer is a transparent resin film
16 . The liquid crystal display device according to claim 6 , further comprising a transparent conductive layer,
wherein the first wiring is disposed between the first layer and the transparent conductive layer, and the first wiring and the second wiring contact the transparent conductive layer.
17 . The liquid crystal display device according to claim 16 , further comprising a transparent pixel electrode between the transparent conductive layer and the liquid crystal,
wherein the transparent conducive layer is a common electrode, and the liquid crystal is driven by an electric field generated between the pixel electrode and the common electrode.
18 . The liquid crystal display device according to claim 13 ,
wherein the first layer is a transparent conductive layer, and the first wiring and the second wiring contact the transparent conductive layer.
19 . The liquid crystal display device according to claim 18 , further comprising a transparent pixel electrode between the transparent conductive layer and the liquid crystal,
wherein the transparent conducive layer is a common electrode, and the liquid crystal is driven by an electric field generated between the pixel electrode and the common electrode.Join the waitlist — get patent alerts
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