VAPOR DEPOSITION STRUCTURE OF DISPLAY PANEL
20200239998 ยท 2020-07-30
Inventors
Cpc classification
H10K71/00
ELECTRICITY
International classification
Abstract
A vapor deposition structure of a display panel includes a display panel, a plurality of magnets distributed on one side of the display panel, a mask disposed on another side of the display panel, a plurality of support columns supported between the mask and the display panel, and a vapor deposition source having a vapor deposition side facing the mask. Each of the support columns corresponds to one of the magnets. In the vapor deposition structure of the display panel, by adding the support columns in corresponding regions of the mask and the magnets, a deformation issue caused by an uneven distribution of an adsorption force generated by the magnets is effectively prevented. This ensures a uniform thickness of each light emitting layer structure after vapor deposition, which reduces a defect rate displayed on the display panel.
Claims
1. A vapor deposition structure of a display panel, comprising: a display panel; a plurality of magnets distributed on one side of the display panel; a mask disposed on another side of the display panel; a plurality of support columns supported between the mask and the display panel, and each of the support columns corresponding to one of the magnets; and a vapor deposition source having a vapor deposition side facing the mask.
2. The vapor deposition structure of the display panel according to claim 1, further comprising a bottom plate, wherein the magnets are disposed on one side of the bottom plate, and the display panel is disposed on another side of the bottom plate, wherein the display panel comprises a glass substrate disposed on the bottom plate, a thin film transistor structural layer disposed on the glass substrate, a pixel defining layer disposed on the thin film transistor structure layer and provided with a plurality of openings, and a spacer pillar disposed on the pixel defining layer, wherein the mask is disposed on the spacer pillar, and the support columns are disposed in a same layer as the spacer pillar.
3. The vapor deposition structure of the display panel according to claim 2, wherein the mask has a plurality of through-hole regions and a plurality of non-perforated regions, and each of the through-hole regions corresponds to one of the openings.
4. The vapor deposition structure of the display panel according to claim 3, wherein the through-hole regions are arranged in an array to form a plurality of rows and a plurality of columns of the through-hole regions, the support columns are arranged in an array and positioned in the non-perforated regions to form a plurality of rows and a plurality of columns of the support columns, the rows of the support columns are parallel to the rows of the through-hole regions, and the columns of the support columns are parallel to the columns of the through-hole regions.
5. The vapor deposition structure of the display panel according to claim 4, wherein the support columns and the through-hole regions are staggered in a direction in which the rows of the support columns are positioned or in a direction in which the columns of the support columns are positioned.
6. The vapor deposition structure of the display panel according to claim 4, wherein the magnets are elongated, and each row or each column of the support columns corresponds to one magnet.
7. The vapor deposition structure of the display panel according to claim 3, further comprising a light emitting layer structure disposed in each of the openings, wherein the light emitting layer structure is one of a red light emitting layer structure, a green light emitting layer structure, and a blue light emitting layer structure.
8. The vapor deposition structure of the display panel according to claim 7, wherein each of the through-hole regions corresponds to the red light emitting layer structure, and the non-perforated regions correspond to the green light emitting layer structure and the blue light emitting layer structure, or each of the through-hole regions corresponds to the blue light emitting layer structure, and the non-perforated regions correspond to the green light emitting layer structure and the red light emitting layer structure, or each of the through-hole regions corresponds to the green light emitting layer structure, and the non-perforated regions correspond to the red light emitting layer structure and the blue light emitting layer structure.
9. The vapor deposition structure of the display panel according to claim 8, wherein a shape and size of each of the through-hole regions are matched to a shape and size of a corresponding opening.
10. The vapor deposition structure of the display panel according to claim 1, wherein each of the support columns is a prismatic columnar structure.
Description
DESCRIPTION OF DRAWINGS
[0016] In order to more clearly illustrate the technical solutions in the embodiments of the present disclosure, the drawings used in the description of the embodiments will be briefly described below. It is obvious that the drawings in the following description are only some embodiments of the present disclosure. Other drawings can also be obtained from those skilled in the art based on these drawings without paying any creative effort.
[0017] The present disclosure is further explained below in conjunction with the drawings and embodiments.
[0018]
[0019]
[0020]
[0021]
DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS
[0022] The embodiments of the present disclosure are described in detail below, and the examples of the embodiments are illustrated in the drawings, wherein the same or similar reference numerals indicate the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the drawings are intended to be illustrative of the present disclosure and are not to be construed as limiting.
[0023] The following description of the embodiments is provided to illustrate the specific embodiments of the present disclosure. The directional terms mentioned in the present disclosure, such as upper, lower, front, back, left, right, top, bottom, etc., are only referred to as an orientation of the drawings. Therefore, the directional terms are used to illustrate and understand the present disclosure and are not intended to limit the present disclosure.
[0024] As illustrated in
[0025] The display panel 12 is disposed on one side of the bottom plate 11, and the magnets 13 are distributed on another side of the bottom plate 11. In the embodiment, the magnets 13 are elongated, and the elongated magnets 13 are parallel to each other.
[0026] The display panel 12 includes a glass substrate 121, a thin film transistor structure layer 122, a pixel defining layer 123, and a spacer pillar 124. The thin film transistor structure layer 122 is disposed on the glass substrate 121, and the thin film transistor structure layer 122 has a plurality of thin film transistors (not shown). The pixel defining layer 123 is disposed on the thin film transistor structure layer 122. The pixel defining layer 123 is provided with a plurality of openings 126 corresponding to the thin film transistors, and the spacer pillar 124 is disposed on the pixel defining layer 123.
[0027] The mask 14 is disposed on another side of the display panel 12, that is, a side of the display panel 12 having the spacer pillar 124.
[0028] Referring to
[0029] Referring to
[0030] Because the magnets 13 are elongated, in the embodiment, each row or each column of the support columns 15 corresponds to one magnet 13. If a width of the magnet 13 is large, two rows or two columns of the support columns 15 correspond to one magnet 13.
[0031] Because a light emitting layer structure 125 needs to be formed in the openings 126 during vapor deposition, each of the through-hole regions 141 in the embodiment corresponds to one of the openings 126. The light emitting layer structure 125 is one of a red light emitting layer structure 125a, a green light emitting layer structure 125c, and a blue light emitting layer structure 125b. In one display panel 12, there are a plurality of red light emitting layer structures 125a, a plurality of green light emitting layer structures 125c, and a plurality of blue light emitting layer structures 125b.
[0032] In the embodiment, each of the through-hole regions 141 corresponds to each of the red light emitting layer structures 125a, and the non-perforated regions 142 correspond to the green light emitting layer structures 125c and the blue light emitting layer structures 125b. During an actual vapor deposition process, the red light emitting layer structures 125a are formed in the openings 126 corresponding to the through-hole regions 141, and the openings 126 corresponding to the non-perforated regions 142 are blocked.
[0033] It is understood that, each of the through-hole regions 141 corresponds to each of the blue light emitting layer structures 125b, and the non-perforated regions 142 correspond to the green light emitting layer structures 125c and the red light emitting layer structures 125a. During an actual vapor deposition process, the blue light emitting layer structures 125b are formed in the openings 126 corresponding to the through-hole regions 141, and the openings 126 corresponding to the non-perforated regions 142 are blocked.
[0034] In addition, each of the through-hole regions 141 corresponds to each of the green light emitting layer structures 125c, and the non-perforated regions 142 correspond to the red light emitting layer structures 125a and the blue light emitting layer structures 125b. During an actual vapor deposition process, the green light emitting layer structures 125c are formed in the openings 126 corresponding to the through-hole regions 141, and the openings 126 corresponding to the non-perforated regions 142 are blocked.
[0035] In the embodiment, wherein a shape and size of each of the through-hole regions 141 are matched to a shape and size of a corresponding opening 126, such that the shape and size of the light emitting layer structure 125 meet design requirements.
[0036] The vapor deposition source 16 has a vapor deposition side 161 facing the mask 14, and the vapor deposition source 16 provides vapor deposition material for forming the light emitting layer structure 125. The vapor deposition material forms the light emitting layer structure 125 from the vapor deposition side 161 through the through-hole regions 141 in the corresponding opening 126.
[0037] In order to explain the present disclosure more clearly, the vapor deposition structure 1 of the display panel of the present disclosure will be further described below in conjunction with a vapor deposition method of a light emitting layer structure of a display panel.
[0038] The vapor deposition method of the light emitting layer structure of the display panel includes following steps.
[0039] As illustrated in
[0040] A first mask 14a is provided. The first mask 14a has a plurality of first through-hole regions 141a and a plurality of first non-perforated regions 142a. The first through-hole regions 141a are arranged in an array to form a plurality of rows and a plurality of columns of the first through-hole regions 141a. The support columns 15 are disposed in the first non-perforated regions 142a, and the support columns 15 are also arranged in an array to form rows and columns of the support columns 15. The rows of the support columns 15 are parallel to the rows of the first through-hole regions 141a, and the columns of the support columns 15 are parallel to the columns of the first through-hole regions 141a. The support columns 15 are staggered with the first through-hole regions 141a in a direction in which the rows of the support columns 15 are positioned or in a direction in which the columns of the support columns 15 are positioned. Each row or each column of the support columns 15 corresponds to one magnet 13.
[0041] The first mask 14a with the support columns 15 is disposed on the display panel 12, and the support columns 15 are supported between the mask 14 and the display panel 12. The support columns 15 are disposed in the same layer as the spacer pillar 124, that is, the support columns 15 are supported between the first mask 14a and the pixel defining layer 123.
[0042] The vapor deposition source 16 is provided to vaporize the display panel 12, the vapor deposition source 16 has a vapor deposition side 161 facing the first mask 14a, and the vapor deposition source 16 provides vapor deposition material for forming the red light emitting layer structures 125a. The red light emitting layer structures 125a are formed in the openings 126 corresponding to the through-hole regions 141, and the openings 126 corresponding to the non-perforated regions 142 are blocked.
[0043] As illustrated in
[0044] The second mask 14b with the support columns 15 is disposed on the display panel 12, and the support columns 15 are supported between the second mask 14b and the display panel 12. The support columns 15 are disposed in the same layer as the spacer pillar 124, that is, the support columns 15 are supported between the mask 14 and the pixel defining layer 123.
[0045] The vapor deposition source 16 is provided to vaporize the display panel 12, the vapor deposition source 16 has a vapor deposition side 161 facing the second mask 14b, and the vapor deposition source 16 provides vapor deposition material for forming the blue light emitting layer structures 125b. The blue light emitting layer structures 125b are formed in the openings 126 corresponding to the through-hole regions 141, and the openings 126 corresponding to the non-perforated regions 142 are blocked.
[0046] As illustrated in
[0047] The third mask 14c with the support columns 15 is disposed on the display panel 12, and the support columns 15 are supported between the third mask 14c and the display panel 12. The support columns 15 are disposed in the same layer as the spacer pillar 124, that is, the support columns 15 are supported between the mask 14 and the pixel defining layer 123.
[0048] The vapor deposition source 16 is provided to vaporize the display panel 12, the vapor deposition source 16 has a vapor deposition side 161 facing the third mask 14c, and the vapor deposition source 16 provides vapor deposition material for forming the green light emitting layer structures 125c. The green light emitting layer structures 125c are formed in the openings 126 corresponding to the through-hole regions 141, and the openings 126 corresponding to the non-perforated regions 142 are blocked.
[0049] This forms a vapor deposition of the light emitting layer structure 125 of the entire display panel 12.
[0050] The above are only the preferred embodiments of the present disclosure and are not intended to limit the present disclosure. Any modifications, equivalents, and improvements made within the spirit and scope of the present disclosure should be encompassed within the protection scope of the present disclosure.