IP Library Granted Patent US 9,804,437
Granted Patent B2
US 9,804,437 · App. 14/982,409 · Granted Oct 31, 2017

Liquid crystal display comprising an optical member having a chamfered portion and method for manufacturing the same

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Quick Facts
Patent No.
US 9,804,437
App. No.
14/982,409
Granted
Oct 31, 2017
Kind
B2
Abstract

A polarizing plate has a corner portion subjected to chamfering so as to form a chamfered portion. A rotation angle of the polarizing plate is adjusted, and the polarizing plate is then bonded to a liquid crystal panel. Chamfering of the polarizing plate is, for example, C chamfering in which a chamfered shape is linear, the chamfered shape satisfying a specific expression and having a predetermined angle α. The chamfering may be R chamfering in which a chamfered shape is curved.

Claims (27)

1. A liquid crystal display, comprising:

a liquid crystal panel having a rectangular shape when seen from one side in a thickness direction; and

an optical member that has a rectangular shape, has an optical axis, and is bonded to a surface on the one side or the other side in the thickness direction of said liquid crystal panel, wherein

said optical member has a chamfered portion subjected to chamfering,

said chamfering is C chamfering in which a chamfered shape of said chamfered portion is linear, and

said chamfered shape is defined by x and y that satisfy relationships

z=a ·cos θ1+ b ·sin θ1− A 0>0  (1)

x=z /sin θ1=( a ·cos θ1+ b ·sin θ1− A 0)/sin θ1  (2)

y=z /cos θ1=( a ·cos θ1+ b ·sin θ1− A 0)/cos θ1  (3)

where z represents an amount of protrusion of the optical member that is not chamfered from a bonded object, a represents half (½) a length of a short side of an outer shape of the optical member, b represents half (½) a length of a long side of the outer shape of the optical member, θ 1 represents a rotation angle of the optical member, A 0 represents half (½) a length of a short side of an outer shape of the bonded object, x represents a chamfer length of the long side of the outer shape of the optical member, and y represents a chamfer length of the short side of the outer shape of the optical member.

2. The liquid crystal display according to claim 1 , wherein said liquid panel includes:

a display region that has a rectangular shape and is used for display; and

a frame region that surrounds said display region and is defined by Δ satisfying a relationship

Δ= A 1·cos θ2+ B 1·sin θ2− A 1  (4)

where θ 2 represents a rotatable angle being a maximum value of an angle allowing for a rotation of the optical member, A 1 represents half (½) a length of a short side of an outer shape of the display region, B 1 represents half (½) a length of a long side of the outer shape of the display region, and Δ represents a distance between an edge of the outer shape of the optical member and the outer shape of the display region.

3. The liquid crystal display according to claim 2 , wherein the rotation angle θ 1 of the optical member is greater than 0 and less than or equal to said rotatable angle θ 2 (0<θ 1 ≦θ 2 ).

4. The liquid crystal display according to claim 2 , wherein the rotation angle θ 1 of the optical member is equal to said rotatable angle θ 2 (θ 1 =θ 2 ).

5. The liquid crystal display according to claim 1 , wherein said chamfered portion is formed in four corner portions of said optical member.

6. The liquid crystal display according to claim 1 , wherein said chamfered portion is formed in two corner portions of said optical member.

7. The liquid crystal display according to claim 1 , wherein said chamfered portion is formed in three corner portions of said optical member.

8. The liquid crystal display according to claim 1 , wherein said chamfered portion is formed in one corner portion of said optical member.

9. The liquid crystal display according to claim 1 , wherein said chamfered portion is formed on two surfaces of each of four corner portions of said optical member.

10. A method for manufacturing the liquid crystal display according to claim 1 , comprising the steps of:

preparing said optical member;

assessing or measuring the optical axis of said optical member; and

adjusting said rotation angle θ 1 of said optical member based on information about said optical axis after said assessing or said measuring, and bonding said optical member to said liquid crystal panel.

11. The method for manufacturing the liquid crystal display according to claim 10 , further comprising the step of peeling a separator laminated on said optical member between the step of preparing said optical member and the step of assessing or measuring the optical axis of said optical member.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 7, 2023
From: MITSUBISHI ELECTRIC CORPORATION
To: TRIVALE TECHNOLOGIES, LLC
Reel/Frame 062668/0461 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 29, 2015
From: MATSUEDA, HIRONORI
To: MITSUBISHI ELECTRIC CORPORATION
Reel/Frame 037375/0501 →