IP Library › Granted Patent US 12,464,936
Granted Patent B2
US 12,464,936 · App. 17/730,159 · Granted Nov 4, 2025

Optical stack and organic light emitting diode display including storage modulus of adhesive layers

Inventors: Po-Yu Hsiao (Taoyuan, TW); Sheng-Fa Liu (Taoyuan, TW); Yi-Lung Yang (Taoyuan, TW); Wei-Chou Chen (Taoyuan, TW); Ming-Chung Liu (Miaoli County, TW); Ya-Chin Chang (Taichung, TW); Che-Wei Yen (Taoyuan, TW); Ho-Chien Wu (New Taipei, TW)
Assignee: TPK ADVANCED SOLUTIONS INC.
H10K59/8793G02B5/305H10K59/40H10K59/8722G02F1/133331G09F9/301H10K59/12H10K77/111
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 12,464,936
App. No.
17/730,159
Granted
Nov 4, 2025
Kind
B2
Abstract

The present invention relates to an optical stack and an organic light emitting diode display including the optical stack, wherein the optical stack has an adhesive layer. The adhesive layer is disposed between a cover plate and a circular polarizer component, between the circular polarizer component and a touch component, or between the touch component and a display component. Wherein, a storage modulus at 60° C. of the adhesive layer is between 15 kPa and 30 kPa, and a ratio of a storage modulus at −30° C. to the storage modulus at 60° C. of the adhesive layer is between 6 and 16.

Claims (32)

1 . An optical stack, comprising:

at least one adhesive layer, disposed between a cover plate and a circular polarizer component, between the circular polarizer component and a touch component, or between the touch component and a display component,

wherein a storage modulus at 60° C. of the at least one adhesive layer ranges from 15 kPa to 30 kPa, and a ratio of a storage modulus at −30° C. to the storage modulus at 60° C. of the at least one adhesive layer ranges from 6 to 16, and wherein an interfacial adhesion between the at least one adhesive layer and the circular polarizer component is greater than 500 g/inch within a temperature range from −30° C. to 60° C.

2 . The optical stack according to claim 1 , wherein the storage modulus at 60° C. of the at least one adhesive layer is 27 kPa, and the ratio of the storage modulus at −30° C. to the storage modulus at 60° C. of the at least one adhesive layer is 6.6.

3 . The optical stack according to claim 1 , wherein the storage modulus at 60° C. of the at least one adhesive layer is 17 kPa, and the ratio of the storage modulus at −30° C. to the storage modulus at 60° C. of the at least one adhesive layer is 15.8.

4 . The optical stack according to claim 1 , wherein the storage modulus at 60° C. of the at least one adhesive layer is 28 kPa, and the ratio of the storage modulus at −30° C. to the storage modulus at 60° C. of the at least one adhesive layer is 13.3.

5 . The optical stack according to claim 1 , wherein a glass transition temperature of the at least one adhesive layer is lower than −30° C.

6 . The optical stack according to claim 1 , wherein the at least one adhesive layer is made of a material including a hydroxyl-containing acrylic-based polymer.

7 . An organic light emitting diode display, comprising:

a cover plate;

a circular polarizer component;

a touch component;

a display component;

a first adhesive layer disposed between the cover plate and the circular polarizer component;

a second adhesive layer disposed between the circular polarizer component and the touch component; and

a third adhesive layer disposed between the touch component and the display component,

wherein the cover plate is disposed at an uppermost layer of the organic light emitting diode display,

wherein a storage modulus at 60° C. of at least one of the first, second and third adhesive layers ranges from 15 kPa to 30 kPa,

wherein a ratio of a storage modulus at −30° C. to the storage modulus at 60° C. of at least one of the first, second and third adhesive layers ranges from 6 to 16.

8 . The organic light emitting diode display according to claim 7 , wherein the storage modulus at 60° C. of the at least one of the first, second and third adhesive layers is 27 kPa, and the ratio of the storage modulus at −30° C. to the storage modulus at 60° C. of the at least one of the first, second and third adhesive layers is 6.6.

9 . The organic light emitting diode display according to claim 7 , wherein the storage modulus at 60° C. of the at least one of the first, second and third adhesive layers is 17 kPa, and the ratio of the storage modulus at −30° C. to the storage modulus at 60° C. of the at least one of the first, second and third adhesive layers is 15.8.

10 . The organic light emitting diode display according to claim 7 , wherein the storage modulus at 60° C. of the at least one of the first, second and third adhesive layers is 28 kPa, and the ratio of the storage modulus at −30° C. to the storage modulus at 60° C. of the at least one of the first, second and third adhesive layers is 13.3.

11 . The organic light emitting diode display according to claim 7 , wherein a glass transition temperature of the at least one of the first, second and third adhesive layers is lower than −30° C.

12 . An optical stack, comprising:

at least one adhesive layer, disposed between a cover plate and an optical component, between the optical component and a touch component, or between the touch component and a display component,

wherein a storage modulus at 60° C. of the at least one adhesive layer ranges from 15 kPa to 30 kPa, and a ratio of a storage modulus at −30° C. to the storage modulus at 60° C. of the at least one adhesive layer ranges from 6 to 16, and wherein an interfacial adhesion between the at least one adhesive layer and the optical component is greater than 500 g/inch within a temperature range from −30° C. to 60° C.

13 . The optical stack according to claim 12 , wherein the storage modulus at 60° C. of the at least one adhesive layer is 27 kPa, and the ratio of the storage modulus at −30° C. to the storage modulus at 60° C. of the at least one adhesive layer is 6.6.

14 . The optical stack according to claim 12 , wherein the storage modulus at 60° C. of the at least one adhesive layer is 17 kPa, and the ratio of the storage modulus at −30° C. to the storage modulus at 60° C. of the at least one adhesive layer is 15.8.

15 . The optical stack according to claim 12 , wherein the storage modulus at 60° C. of the at least one adhesive layer is 28 kPa, and the ratio of the storage modulus at −30° C. to the storage modulus at 60° C. of the at least one adhesive layer is 13.3.

16 . The optical stack according to claim 12 , wherein a glass transition temperature of the at least one adhesive layer is lower than −30° C.

17 . The optical stack according to claim 12 , wherein the at least one adhesive layer is made of a material including a hydroxyl-containing acrylic-based polymer.

18 . The optical stack according to claim 12 , wherein the cover plate is a single layer of an inorganic packaging material, a multi-layer stack of inorganic packaging materials, or a stack of at least one inorganic material and at least one organic packaging material.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 27, 2022
From: HSIAO, PO-YU; LIU, SHENG-FA; YANG, YI-LUNG; CHEN, WEI-CHOU; LIU, MING-CHUNG; CHANG, YA-CHIN; YEN, CHE-WEI; WU, HO-CHIEN
To: TPK ADVANCED SOLUTIONS INC.
Reel/Frame 059805/0343 →
Continuity (1)
Related Publication 20230345761A1 · Oct 26, 2023
References Cited (19)
US 9064826B2 · Nakazawa · 2015 [cited by examiner]
US 20120113361A1 · Huang · 2012 [cited by examiner]
US 20140370316A1 · Mizuta · 2014 [cited by examiner]
US 20190086709A1 · Lee · 2019 [cited by examiner]
US 20200192510A1 · Liu · 2020 [cited by examiner]
US 20200313121A1 · Kuo · 2020 [cited by examiner]
US 20210139747A1 · Du · 2021 [cited by examiner]
CN 111316144B · 2023 [cited by examiner]
JP 2021157146A · 2021 [cited by examiner]
KR 20150143715A · 2015 [cited by examiner]
KR 20160065030A · 2016 [cited by applicant]
KR 20190109272A · 2019 [cited by examiner]
KR 20200086666A · 2020 [cited by examiner]
KR 20200098418A · 2020 [cited by examiner]
TW 201633088A · 2016 [cited by applicant]
TW I590119B · 2017 [cited by applicant]
TW 202030296A · 2020 [cited by applicant]
WO WO2013065587A1 · 2013 [cited by examiner]
Office Action of corresponding Taiwan patent application No. 111113483 mailed on Feb. 8, 2023. [cited by applicant]