Flexible display device and method of manufacturing the same
A flexible display device includes a substrate, a light emitting layer, a first insulating layer, and a conductive layer. The substrate includes a bent region and a non-bent region. The light emitting layer overlaps the non-bent region. The first insulating layer is disposed on the substrate. The conductive layer is disposed on the first insulating layer. A sidewall of the first insulating layer includes a first tapered surface. The first tapered surface includes at least three curved surface portions continuously arranged with one another.
1. A flexible display device comprising:
a substrate comprising a bent region and a non-bent region;
a light emitting layer overlapping the non-bent region;
a first insulating layer disposed on the substrate; and
a conductive layer disposed on the first insulating layer,
wherein a sidewall of the first insulating layer comprises a first tapered surface, and
wherein the first tapered surface comprises at least three curved surface portions continuously arranged with one another.
2. The flexible display device of claim 1 , further comprising:
a second insulating layer disposed on the first insulating layer; and
a third insulating layer disposed on the second insulating layer,
wherein a sidewall of at least one of the second insulating layer and the third insulating layer comprises a second tapered surface, and
wherein the second tapered surface comprises at least three curved surface portions continuously arranged with one another.
3. The flexible display device of claim 2 , further comprising:
a thin film transistor (TFT) layer overlapping the non-bent region, the TFT layer being disposed between the substrate and the light emitting layer,
wherein the TFT layer comprises:
an active pattern disposed between the first insulating layer and the second insulating layer;
a gate electrode disposed between the second insulating layer and the third insulating layer;
a source electrode disposed on the third insulating layer; and
a drain electrode disposed on the third insulating layer, and
wherein the source electrode and the drain electrode contact the active pattern through contact holes in the second insulating layer and the third insulating layer.
4. The flexible display device of claim 3 , further comprising:
a fourth insulating layer disposed between the third insulating layer and the source electrode,
wherein a sidewall of the fourth insulating layer comprises a third tapered surface, and
wherein the third tapered surface comprises at least three curved surface portions continuously arranged with one another.
5. The flexible display device of claim 4 , wherein the TFT layer further comprises:
a first capacitor electrode disposed at a same layer as the gate electrode; and
a second capacitor electrode disposed between the third insulating layer and the fourth insulating layer.
6. The flexible display device of claim 3 , wherein:
the TFT layer further comprises a passivation layer disposed between the source electrode and the light emitting layer; and
the light emitting layer comprises:
a first electrode disposed on the passivation layer, the first electrode contacting the drain electrode through a contact hole in the passivation layer;
a pixel defining layer disposed on the passivation layer and the first electrode, the pixel defining layer exposing a portion of the first electrode;
an emission layer disposed on the portion of the first electrode exposed by the pixel definition layer; and
a second electrode disposed on the pixel defining layer and the emission layer.