IP Library › Granted Patent US 7,538,944
Granted Patent B2
US 7,538,944 · App. 11/733,968 · Granted May 26, 2009

Polarizing filter, and method for fabricating same

Assignee: Fujinon Corporation
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Quick Facts
Patent No.
US 7,538,944
App. No.
11/733,968
Granted
May 26, 2009
Kind
B2
Abstract

A polarizing filter with a gapless polarization separating filter layer formed between a plane of incidence and a plate of transmission of the filter, the polarization separating filter layer being formed by connecting first filter layer sections alternately and crosswise with second inclined filter layer sections in an approximately zigzag shape. The filter is free of the problem of light leakage and can perform the functions of a polarizing filter satisfactorily.

Claims (17)

1. A polarizing filter of planar transparent substrate plates with a polarization separating filter layer to transmit or reflect incident light according to direction of polarization, said polarizing filter having a plane of incidence and a plane of transmission in the direction of two orthogonal X- and Y-axes and a thickness in the direction of Z-axis orthogonal to said X- and Y-axes, characterized in that said polarizing filter comprises:

a polarization separating filter layer comprising a first group of inclined filter layer sections each having a plane in the direction of said Z- and Y-axes inclined in the direction of said X-axis through a predetermined angle, alternately with a second group of inclined filter layer sections each having a plane in the direction of said Z- and Y-axes inclined through the same angle as but in a symmetrically inverse direction relative to said inclined filter layer sections of the first group;

the inclined filter layer sections of the first group being connected crosswise with said inclined filter layer sections of the second group in a cross shape or in a T-shape at positions inward of said plane of incidence and the plane of transmission of said polarizing filter; and

each one of said inclined filter layer sections of the first and second groups, which is exposed on said plane of incidence and said plane of transmission of said polarizing filter at opposite ends, being connected crosswise with an adjacent inclined filter layer section of the other group in a cross shape or in a T-shape at least at two positions; each one of said inclined filter layer sections of the first and second groups, which is exposed on said plane of incidence or on said plane of transmission of said polarizing filter at one end alone, being connected crosswise with an inclined filter layer section of the other group in a T-shape at the other end; and each one of said inclined filter layer sections of the first and second groups, which is not exposed on said plane of incidence and said plane of transmission of said polarizing filter at any end, being connected crosswise with inclined filter layer sections of the other group in a T-shape at opposite ends.

2. A polarizing filter as defined in claim 1 , wherein said inclined filter layer sections of the first and second groups are successively connected in a substantially zigzag shape.

3. A method for fabricating a polarizing filter of planar transparent substrate plates with a polarization separating filter layer to transmit or reflect incident light according to direction of polarization, said method comprising the steps of:

polishing surfaces at opposite sides of said planar transparent substrate plates;

forming a polarization separating filter layer on one of polished surfaces on front and rear sides of each transparent substrate plate;

forming a straight stack of said transparent substrate plates by successively stacking and bonding said substrate plates one on another in vertical alignment with each other, joining a filter layer-bearing side of a substrate plate to a blank side of another substrate plate;

cutting with a uniform distance said straight stack crosswise of said polarization separating filter layers formed on said substrate plates to produce crosscut blocks;

polishing cut surfaces of said crosscut blocks;

forming a polarization separating filter layer on one of polished surfaces on front and rear sides of said crosscut blocks;

forming a staggered stack of said crosscut blocks by successively stacking and bonding said crosscut blocks in staggered positions in the fashion of a staircase, joining a filter layer-bearing side of a crosscut block with a blank side of another crosscut block;

cutting said staggered stack along cutting lines with said staggered inclination angle to produce orthorhombic filter blocks of uniform thickness; and

polishing cut surfaces of said orthorhombic filter blocks to produce polarizing filter units;

said cutting lines in cutting said staggered stack being spaced apart from each other by a distance T 2 satisfying an equation T 2 >T 1 /√{square root over (2)} where T 1 is thickness of said crosscut blocks.

4. A method for fabricating a polarizing filter as defined in claim 3 , wherein, in forming said staggered stack in the shape of a staircase, positions of said crosscut blocks are successively shifted from an adjacent block by a distance equivalent to thickness of said crosscut blocks.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 23, 2008
From: FUJINON SANO CORPORATION
To: FUJINON CORPORATION
Reel/Frame 021575/0375 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 1, 2007
From: MATSUBA, TAKAHIKO; KAWAMURA, YOSHIJI; RYU, HOMIN; KURAHASHI, HAJIME
To: FUJINON SANO CORPORATION
Reel/Frame 019369/0681 →
Priority Claims (1)
JP 2006-112928 · Apr 17, 2006 · national
Continuity (1)
Related Publication 20080018996A1 · Jan 24, 2008