Organic light-emitting diode display with pixel definition layers
An organic light-emitting diode (OLED) display may have an array of organic light-emitting diode pixels that each have OLED layers interposed between a cathode and an anode. Voltage may be applied to the anode of each pixel to control the magnitude of emitted light. The conductivity of the OLED layers may allow leakage current to pass between neighboring anodes in the display. To reduce leakage current and the accompanying cross-talk in a display, a cutting structure may disrupt continuity of the OLED layers. The cutting structure may have two undercuts to disrupt continuity of at least some of the OLED layers. The cutting structure may include a conductive portion that provides a cathode voltage to a cathode layer for the OLED pixels.
1 . A display comprising:
a substrate;
an array of pixels that includes first and second organic light-emitting diode pixels, wherein the first organic light-emitting diode pixel includes a first patterned electrode on the substrate and wherein the second organic light-emitting diode pixel includes a second patterned electrode on the substrate;
a cutting structure on the substrate that is interposed between the first and second patterned electrodes, wherein the cutting structure has first and second opposing sides, wherein the first side of the cutting structure comprises first and second undercuts, and wherein the cutting structure comprises:
a first layer;
a second layer between the first layer and the substrate;
a third layer between the second layer and the substrate; and
a fourth layer between the third layer and the substrate, wherein the first undercut has a first height defined by a first distance between a lower surface of the third layer and an upper surface of the substrate; and
a conductive layer formed over the cutting structure that has a first portion that forms part of the first organic light-emitting diode pixel and a second portion, wherein the first and second undercuts cause at least one discontinuity between the first portion and the second portion.
2 . The display defined in claim 1 , wherein the fourth layer is in direct contact with the substrate.
3 . The display defined in claim 1 , wherein the first undercut is formed below the third layer and wherein the second undercut is formed above the third layer.
4 . The display defined in claim 1 , wherein the second undercut has a first width defined by a second distance between a first edge of the first layer and a second edge of the second layer and wherein the second undercut has a second height defined by a third distance between a lower surface of the first layer and an upper surface of the third layer.
5 . The display defined in claim 1 , wherein the first undercut has a first width defined by a second distance between a first edge of the third layer and a second edge of the fourth layer.
6 . The display defined in claim 1 , further comprising:
an additional conductive layer that is in direct contact with the conductive layer.
7 . The display defined in claim 6 , wherein the additional conductive layer is in direct contact with a conductive portion of the second layer of the cutting structure.
8 . The display defined in claim 1 , wherein the second layer is a first conductive layer.
9 . The display defined in claim 8 , further comprising:
a conductive contact in the substrate that is configured to provide a cathode voltage, wherein a portion of the conductive contact extends through an opening in the third and fourth layers to directly contact the first conductive layer.
10 . The display defined in claim 8 , further comprising:
a conductive contact in the substrate that is configured to provide a cathode voltage, wherein a portion of the first conductive layer extends through an opening in the third and fourth layers to directly contact the conductive contact.
11 . The display defined in claim 8 , wherein the third layer is a second conductive layer.
12 . The display defined in claim 11 , further comprising:
a conductive contact in the substrate that is configured to provide a cathode voltage, wherein a portion of the conductive contact extends through an opening in the fourth layer to directly contact the second conductive layer.
13 . The display defined in claim 11 , further comprising:
a conductive contact in the substrate that is configured to provide a cathode voltage, wherein a portion of the second conductive layer extends through an opening in the fourth layer to directly contact the conductive contact.
14 . The display defined in claim 1 , wherein the cutting structure is a conductive cutting structure with at least one conductive portion.
15 . The display defined in claim 14 , wherein the at least one conductive portion of the conductive cutting structure is electrically connected to the conductive layer and wherein the conductive layer forms a cathode layer for the array of pixels.
16 . A display comprising:
a substrate;
an array of pixels that includes first and second organic light-emitting diode pixels, wherein the first organic light-emitting diode pixel includes a first anode on the substrate and wherein the second organic light-emitting diode pixel includes a second anode on the substrate;
a conductive cutting structure on the substrate that is interposed between the first and second anodes, wherein the conductive cutting structure comprises:
a first layer;
a second layer between the first layer and the substrate;
a third layer between the second layer and the substrate;
a fourth layer between the third layer and the substrate;
a fifth layer between the fourth layer and the substrate, wherein the conductive cutting structure has an undercut with a height defined by a distance between a lower surface of the third layer and an upper surface of the fifth layer; and
a cathode layer for the first and second organic light-emitting diode pixels that is formed over the conductive cutting structure, wherein the cathode layer comprises a first portion that forms part of the first organic light-emitting diode pixel and a second portion and wherein the undercut causes at least one discontinuity between the first portion and the second portion.
17 . The display defined in claim 16 , further comprising:
an additional conductive layer that is in direct contact with both the first portion of the cathode layer and a conductive portion of the conductive cutting structure.
18 . The display defined in claim 17 , wherein the additional conductive layer comprises transparent conductive oxide or indium zinc oxide.
19 . A display comprising:
a substrate;
an array of pixels that includes first and second organic light-emitting diode pixels, wherein the first organic light-emitting diode pixel includes a first anode on the substrate and wherein the second organic light-emitting diode pixel includes a second anode on the substrate;
a conductive cutting structure on the substrate that is interposed between the first and second anodes;
a cathode contact that is configured to provide a cathode voltage, wherein a conductive portion of the conductive cutting structure is electrically connected to the cathode contact through an opening in an insulating portion of the conductive cutting structure; and
a conductive layer formed over the conductive cutting structure that has a first portion that forms part of the first organic light-emitting diode pixel and a second portion, wherein the conductive cutting structure causes at least one discontinuity between the first portion and the second portion.
20 . The display defined in claim 19 , wherein the conductive layer comprises a hole transport layer.