IP Library › Granted Patent US 10,534,463
Granted Patent B2
US 10,534,463 · App. 15/707,455 · Granted Jan 14, 2020

Touch input device

Inventors: Seyeob Kim (Gyeonggi-do, KR); Bonkee Kim (Gyeonggi-do, KR)
Assignee: HIDEEP INC.
G06F3/0412G01L1/146G06F3/044G06F3/0414G02F2001/133331G06F2203/04112
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 10,534,463
App. No.
15/707,455
Granted
Jan 14, 2020
Kind
B2
Abstract

A touch input device may be provided that includes: a cover; a display module disposed under the cover; and a pressure sensing unit disposed under the display module. The pressure sensing unit includes a first elastic foam, a pressure sensor disposed on the first elastic foam, and a first adhesive layer disposed between the first elastic foam and the pressure sensor. A change amount of a stress of the first elastic foam required for the first elastic foam to be compressed to half of the thickness thereof from its original state is less than the change amount of the stress of the first elastic foam required for the first elastic foam to be compressed from half of the thickness thereof to the thickness to which the first elastic foam is able to be maximally compressed.

Claims (42)

1. A touch input device comprising:

a cover;

a display module disposed under the cover; and

a pressure sensing unit disposed under the display module,

wherein the pressure sensing unit comprises a first elastic foam, a pressure sensor disposed on the first elastic foam, and a first adhesive layer disposed between the first elastic foam and the pressure sensor,

wherein a change amount of a stress of the first elastic foam required for the first elastic foam to be compressed to half of the thickness thereof from its original state is less than the change amount of the stress of the first elastic foam required for the first elastic foam to be compressed from half of the thickness thereof to the thickness to which the first elastic foam is able to be maximally compressed,

wherein the pressure sensing unit comprises a second elastic foam disposed on the pressure sensor, a second adhesive layer disposed between the second elastic foam and the pressure sensor, and a third adhesive layer disposed between the second elastic foam and the display module, and

wherein the third adhesive layer is bonded to the display module.

2. The touch input device of claim 1 , wherein the second elastic foam has a thickness less than that of the first elastic foam.

3. The touch input device of claim 1 , wherein a dielectric constant of the second elastic foam is less than that of the first elastic foam.

4. The touch input device of claim 1 , wherein a change amount of a stress of the second elastic foam required for the second elastic foam to be compressed to half of the thickness thereof from its original state is greater than the change amount of the stress of the first elastic foam required for the first elastic foam to be compressed to half of the thickness thereof from its original state.

5. The touch input device of claim 1 , wherein a change amount of a compression ratio of the second elastic foam when a stress of the second elastic foam is greater than 0 and equal to or less than 0.05 Mpa is less than the change amount of the compression ratio of the first elastic foam when the stress of the first elastic foam is greater than 0 Mpa and equal to or less than 0.05 Mpa.

6. A touch input device comprising:

a cover;

a display module disposed under the cover; and

a pressure sensing trait disposed under the display module,

wherein the pressure sensing unit comprises a first elastic foam, a pressure sensor disposed on the first elastic foam, and a first adhesive layer disposed between the first elastic foam and the pressure sensor, and

wherein a change amount of a compression ratio of the first elastic foam when a stress of the first elastic foam is greater than 0 and equal to or less than 0.05 Mpa is greater than the change amount of the compression ratio of the first elastic foam when the stress of the first elastic foam is greater than 0.05 Mpa and equal to or less than 1.0 Mpa,

wherein the pressure sensing unit comprises a second elastic foam disposed on the pressure sensor, a second adhesive layer disposed between the second elastic foam and the pressure sensor, and a third adhesive layer disposed between the second elastic foam and the display module, and

wherein the third adhesive layer is bonded to the display module.

7. A touch input device comprising:

a cover;

a display module disposed under the cover; and

a pressure sensing unit disposed under the display module,

wherein the pressure sensing unit comprises a first elastic foam, a pressure sensor disposed on the first elastic foam, and a first adhesive layer disposed between the first elastic foam and the pressure sensor, and

wherein a stress of the first elastic foam in a compression ratio interval of 0% to 70% of the first elastic foam is linear with respect to the compression ratio of the first elastic foam,

wherein the pressure sensing unit comprises a second elastic foam disposed on the pressure sensor, a second adhesive layer disposed between the second elastic foam and the pressure sensor, and a third adhesive layer disposed between the second elastic foam and the display module, and

wherein the third adhesive layer is bonded to the display module.

8. The touch input device of claim 7 , wherein a coefficient of determination between the compression ratio of the first elastic foam and the stress of the first elastic foam in the compression ratio interval of 0% to 70% of the first elastic foam is equal to or greater than 0.9.

9. The touch input device of claim 7 ,

wherein the second adhesive layer is disposed on the pressure sensor.

10. The touch input device of claim 7 , wherein the pressure sensor of the pressure sensing unit is directly formed on a bottom surface of the display module.

11. The touch input device of claim 7 , further comprising a substrate disposed under the pressure sensing unit, wherein the pressure sensing unit is disposed on the substrate.

12. The touch input device of claim 11 , wherein the second adhesive layer is disposed under the pressure sensor.

13. The touch input device of claim 11 ,

wherein the second elastic foam is disposed under the pressure sensor and the third adhesive layer is disposed between the second elastic foam and the substrate, and

wherein the third adhesive layer is bonded to the substrate.

14. The touch input device of claim 13 , wherein the second elastic foam has a thickness less than that of the first elastic foam.

15. The touch input device of claim 13 , wherein a dielectric constant of the second elastic foam is less than that of the first elastic foam.

16. The touch input device of claim 13 , wherein a change amount of a stress of the second elastic foam required for the second elastic foam to be compressed to half of the thickness thereof from its original state is greater than the change amount of the stress of the first elastic foam required for the first elastic foam to be compressed to half of the thickness thereof from its original state.

17. The touch input device of claim 13 , wherein a change amount of a compression ratio of the second elastic foam when a stress of the second elastic foam is greater than 0 and equal to or less than 0.05 Mpa is less than the change amount of the compression ratio of the first elastic foam when the stress of the first elastic foam is greater than 0 Mpa and equal to or less than 0.05 Mpa.

18. The touch input device of claim 11 , wherein the pressure sensor of the pressure sensing unit is directly formed on a top surface of the substrate.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 18, 2017
From: KIM, SEYEOB; KIM, BONKEE
To: HIDEEP INC.
Reel/Frame 043615/0888 →
Priority Claims (1)
KR 10-2016-0157284 · Nov 24, 2016 · national
Continuity (1)
Related Publication 20180143718A1 · May 24, 2018
Cited By (2)
US 12,339,179 US 12,680,891