Display device
US-2023055222-A1 · Feb 23, 2023 · US
US11973166B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11973166-B2 |
| Application number | US-202117340672-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 7, 2021 |
| Priority date | Aug 19, 2020 |
| Publication date | Apr 30, 2024 |
| Grant date | Apr 30, 2024 |
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A displaying base plate and a fabricating method thereof. The displaying base plate includes a substrate, and a first flat layer on one side of the substrate; a first metal layer on one side of the first flat layer that is further away from the substrate; a second flat layer on sides of the first metal layer and the first flat layer that are further away from the substrate; and a second metal layer on one side of the second flat layer that is further away from the substrate; wherein the first metal layer includes a first metal trace, an orthographic projection of the second metal layer on the substrate and an orthographic projection of the first metal trace on the substrate have an overlapping part, and an orthographic projection of the second flat layer on the substrate covers the orthographic projection of the first metal trace on the substrate.
Opening claim text (preview).
The invention claimed is: 1. A displaying base plate, wherein the displaying base plate comprises: a substrate, and a first flat layer on one side of the substrate; a first metal layer, wherein the first metal layer is provided on one side of the first flat layer that is further away from the substrate; a second flat layer, wherein the second flat layer is provided on sides of the first metal layer and the first flat layer that are further away from the substrate; and a second metal layer, wherein the second metal layer is provided on one side of the second flat layer that is further away from the substrate; wherein the first metal layer comprises a first metal trace, an orthographic projection of the second metal layer on the substrate and an orthographic projection of the first metal trace on the substrate have an overlapping part, and an orthographic projection of the second flat layer on the substrate covers the orthographic projection of the first metal trace on the substrate; wherein the displaying base plate further comprises a passivation layer, the passivation layer is located between the second flat layer and the second metal layer, and an orthographic projection of the passivation layer on the substrate covers the orthographic projection of the second flat layer on the substrate; wherein the first metal layer further comprises a bonding block, and the bonding block and the first metal trace are insulated and separate; and the second metal layer comprises a trace region and a binding region that is connected to the trace region, and the bonding block is located between the substrate and the second metal layer; wherein the binding region of the second metal layer contacts the bonding block. 2. The displaying base plate according to claim 1 , wherein the orthographic projection of the bonding block on the substrate and the orthographic projection of the second flat layer on the substrate have an overlapping part. 3. The displaying base plate according to claim 1 , wherein the orthographic projection of the bonding block on the substrate and the orthographic projection of the passivation layer on the substrate have an overlapping part. 4. The displaying base plate according to claim 1 , wherein the orthographic projection of the bonding block on the substrate and the orthographic projection of the binding region on the substrate totally overlap. 5. A displaying base plate, wherein the displaying base plate comprises: a substrate, and a first flat layer on one side of the substrate; a first metal layer, wherein the first metal layer is provided on one side of the first flat layer that is further away from the substrate; a second flat layer, wherein the second flat layer is provided on sides of the first metal layer and the first flat layer that are further away from the substrate; and a second metal layer, wherein the second metal layer is provided on one side of the second flat layer that is further away from the substrate; wherein the first metal layer comprises a first metal trace, an orthographic projection of the second metal layer on the substrate and an orthographic projection of the first metal trace on the substrate have an overlapping part, and an orthographic projection of the second flat layer on the substrate covers the orthographic projection of the first metal trace on the substrate; wherein the displaying base plate further comprises a passivation layer, the passivation layer is located between the second flat layer and the second metal layer, and an orthographic projection of the passivation layer on the substrate covers the orthographic projection of the second flat layer on the substrate; wherein the first metal layer further comprises a bonding block, and the bonding block and the first metal trace are insulated and separate; and the second metal layer comprises a trace region and a binding region that is connected to the trace region, and the bonding block is located between the substrate and the second metal layer; wherein a slot is provided on the one side of the first flat layer that is further away from the substrate, the slot is located within a region of the first flat layer that is not covered by the first metal trace and the bonding block, and a depth of the slot is greater than a thickness of the first metal layer, and less than a sum between the thickness of the first metal layer and a thickness of the first flat layer. 6. The displaying base plate according to claim 1 , wherein a material of the passivation layer is one or more of silicon nitride and silicon oxide; and a thickness of the passivation layer is greater than or equal to 2000 angstroms, and less than or equal to 4000 angstroms. 7. The displaying base plate according to claim 1 , wherein the displaying base plate further comprises a light emitting device; and the first metal trace is connected to an operating-voltage output terminal of the light emitting device, and the second metal layer is connected to a common-ground-voltage terminal. 8. The displaying base plate according to claim 1 , wherein the first metal layer and the second metal layer are of a single-layer structure, and a material of the single-layer structure is one or more of Mo and Cu. 9. The displaying base plate according to claim 1 , wherein the first metal layer and the second metal layer are of a stacked-layer structure, and a material of the stacked-layer structure is Ti/Al/Ti. 10. A displaying device, wherein the displaying device comprises the displaying base plate according to claim 1 . 11. A method for fabricating a displaying base plate, wherein the fabricating method comprises: providing a substrate; forming a first flat layer on one side of the substrate; patterning one side of the first flat layer that is further away from the substrate to form a first metal layer; forming a second flat layer on sides of the first metal layer and the first flat layer that are further away from the substrate; and forming a second metal layer on one side of the second flat layer that is further away from the substrate; wherein the first metal layer comprises a first metal trace, an orthographic projection of the second metal layer on the substrate and an orthographic projection of the first metal trace on the substrate have an overlapping part, and an orthographic projection of the second flat layer on the substrate covers the orthographic projection of the first metal trace on the substrate; wherein the displaying base plate further comprises a passivation layer, the passivation layer is located between the second flat layer and the second metal layer, and an orthographic projection of the passivation layer on the substrate covers the orthographic projection of the second flat layer on the substrate; wherein the first metal layer further comprises a bonding block, and the bonding block and the first metal trace are insulated and separate; and the bonding block is located between the substrate and the second metal layer; wherein the binding region of the second metal layer contacts the bonding block. 12. The method for fabricating a displaying base plate according to claim 11 , wherein after the step of patterning the one side of the first flat layer that is further away from the substrate to form the first metal trace and the bonding block, the method further comprises: forming the second flat layer on sides of the first metal trace, the first flat layer and the bonding block that are further away from the substrate; forming a passivation layer on the sides of the second flat layer and the bonding block that are further away from the substrate, wherein an orthographic projection of the
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