Display panel and display device
US-2024423023-A1 · Dec 19, 2024 · US
US2026026197A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2026026197-A1 |
| Application number | US-202418994797-A |
| Country | US |
| Kind code | A1 |
| Filing date | May 17, 2024 |
| Priority date | Jun 16, 2023 |
| Publication date | Jan 22, 2026 |
| Grant date | — |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
A display substrate and a display screen are provided. A trapezoidal reflection structure is arranged on a TFE layer, a low-refractive-index reflection layer is arranged on the trapezoidal reflection structure, a high-refractive-index reflection layer is arranged on the low-refractive-index reflection layer, and a cover plate is attached. In a case that light is reflected by the high-refractive-index reflection layer toward the low-refractive-index reflection layer, due to a difference between refractive indices, a part of the light is totally reflected after an incident angle is greater than a critical angle. The low-refractive-index reflection layer serves as a condensing lens to change large-angle transverse light into active forward light, so as to improve the light transmittance of the display substrate, and increase the brightness at a front viewing angle.
Opening claim text (preview).
1 . A display substrate, comprising a back plate layer, a pixel layer, a cathode layer, a thin film encapsulation layer, a trapezoidal reflection structural layer, a low-refractive-index reflection layer, a high-refractive-index reflection layer, and a cover plate layer, wherein the pixel layer comprises a pixel light-emitting structure and a pixel definition layer; the pixel layer is arranged on the back plate layer, the cathode layer is arranged at a side of the pixel layer distal to the back plate layer, the thin film encapsulation layer is arranged at a side of the cathode layer distal to the back plate layer, the trapezoidal reflection structural layer is arranged at a side of the thin film encapsulation layer distal to the back plate layer, an orthogonal projection of the trapezoidal reflection structural layer onto the back plate layer overlaps with an orthogonal projection of the pixel definition layer onto the back plate layer, the low-refractive-index reflection layer is arranged at a side of the trapezoidal reflection structural layer and a side of the thin film encapsulation layer distal to the back plate layer, and the high-refractive-index reflection layer is arranged at a side of the low-refractive-index reflection layer distal to the back plate layer; and a refractive index of the low-refractive-index reflection layer is smaller than a first refractive index threshold, a refractive index of the high-refractive-index reflection layer is greater than a second refractive index threshold, and the second refractive index threshold is greater than the first refractive index threshold. 2 . The display substrate according to claim 1 , wherein in a plane perpendicular to the back plate layer, the trapezoidal reflection structural layer comprises a plurality of trapezoidal reflection structures, each of the trapezoidal reflection structures comprises a lower base proximate to the back plate layer and an upper base distal to the back plate layer, and a length of the upper base is smaller than a length of the lower base. 3 . The display substrate according to claim 1 , wherein the refractive index of the low-refractive-index reflection layer is within a range of 1.2 to 1.5. 4 . The display substrate according to claim 1 , wherein the refractive index of the high-refractive-index reflection layer is not smaller than 1.7. 5 . The display substrate according to claim 1 , wherein a difference between the refractive index of the high-refractive-index reflection layer and the refractive index of the low-refractive-index reflection layer is not smaller than 0.3. 6 . The display substrate according to claim 5 , wherein the low-refractive-index reflection layer comprises SiO 2 , LiF or MgF 2 . 7 . The display substrate according to claim 1 , wherein the pixel light-emitting structure comprises an R pixel light-emitting structure, a G pixel light-emitting structure and a B pixel light-emitting structure, the R pixel light-emitting structure emits red light, the G pixel light-emitting structure emits green light, the B pixel light-emitting structure emits blue light, and the trapezoidal reflection structural layer comprises a plurality of trapezoidal reflection structures; a length of a lower base of the trapezoidal reflection structure corresponding to the B pixel light-emitting structure is not smaller than a length of a lower base of the trapezoidal reflection structure corresponding to the R pixel light-emitting structure, and the length of the lower base of the trapezoidal reflection structure corresponding to the R pixel light-emitting structure is not smaller than a length of a lower base of the trapezoidal structure corresponding to the G pixel light-emitting structure; and for each of the pixel light-emitting structures, an orthogonal projection of the trapezoidal reflection structure corresponding to the pixel light-emitting structure onto the back plate layer overlaps with an orthogonal projection of the pixel definition layer at a first side of the pixel light-emitting structure onto the back plate layer. 8 . The display substrate according to claim 7 , wherein ½ pitch≤W2≤W1≤W3≤pitch, where W1 represents the length of the lower base of the trapezoidal reflection structure corresponding to the R pixel light-emitting structure, W2 represents the length of the lower base of the trapezoidal reflection structure corresponding to the G pixel light-emitting structure, W3 represents the length of the lower base of the trapezoidal reflection structure corresponding to the B pixel light-emitting structure, and pitch represents a length of a lower base of the pixel definition layer. 9 . The display substrate according to claim 1 , wherein the pixel light-emitting structure comprises an R pixel light-emitting structure, a G pixel light-emitting structure and a B pixel light-emitting structure, the R pixel light-emitting structure emits red light, the G pixel light-emitting structure emits green light, the B pixel light-emitting structure emits blue light, and the trapezoidal reflection structural layer comprises a plurality of trapezoidal reflection structures; a base angle of the trapezoidal reflection structure corresponding to the B pixel light-emitting structure is not greater than a base angle of the trapezoidal reflection structure corresponding to the R pixel light-emitting structure, the base angle of the trapezoidal reflection structure corresponding to the R pixel light-emitting structure is not greater than a base angle of the trapezoidal structure corresponding to the G pixel light-emitting structure, and two base angles of the trapezoidal reflection structure are equal; and for each of the pixel light-emitting structures, an orthogonal projection of the trapezoidal reflection structure corresponding to the pixel light-emitting structure onto the back plate layer overlaps with an orthogonal projection of the pixel definition layer at a first side of the pixel light-emitting structure onto the back plate layer. 10 . The display substrate according to claim 9 , wherein 35°≤θ3≤θ1≤θ2≤80°, where θ1 represents the base angle of the trapezoidal reflection structure corresponding to the R pixel light-emitting structure, θ2 represents the base angle of the trapezoidal reflection structure corresponding to the G pixel light-emitting structure, and θ3 represents the base angle of the trapezoidal reflection structure corresponding to the B pixel light-emitting structure. 11 . The display substrate according to claim 1 , wherein the pixel light-emitting structure comprises an R pixel light-emitting structure, a G pixel light-emitting structure and a B pixel light-emitting structure, the R pixel light-emitting structure emits red light, the G pixel light-emitting structure emits green light, the B pixel light-emitting structure emits blue light, and the trapezoidal reflection structural layer comprises a plurality of trapezoidal reflection structures; a base angle of the B pixel light-emitting structure is not greater than a base angle of the R pixel light-emitting structure, and the base angle of the R pixel light-emitting structure is not greater than a base angle of the G pixel light-emitting structure; and for each of the pixel light-emitting structures, the base angles of the pixel light-emitting structure comprise a second-side base angle of the trapezoidal reflection structure corresponding to the pixel definition layer at a first side of the pixel light-emitting structure in a vertical direction and a first-side base angle of the trapezoidal reflection structure corresponding to the pixel definition layer at a second side of the pixel light-emitting structure in the vertical direction, and for each of th
comprising reflective means · CPC title
Encapsulations · CPC title
comprising refractive means, e.g. lenses · CPC title
characterised by the geometrical arrangement of the RGB subpixels · CPC title
Pixel-defining structures or layers, e.g. banks · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.