US3764800A - Cover plate for a lamp - Google Patents

Cover plate for a lamp Download PDF

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US3764800A
US3764800A US00298199A US3764800DA US3764800A US 3764800 A US3764800 A US 3764800A US 00298199 A US00298199 A US 00298199A US 3764800D A US3764800D A US 3764800DA US 3764800 A US3764800 A US 3764800A
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ribs
square
principal
plate
depressions
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US00298199A
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F Clostermann
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Trilux GmbH and Co KG
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Trilux Lenze GmbH and Co KG
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V5/00Refractors for light sources
    • F21V5/04Refractors for light sources of lens shape

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  • 240/106 R X rise to the formation of prismatic depressions in the 1,7 5/1930 Ralph 1 240/106-1 X form of inverted principal and secondary pyramids in 1,194,294 8/1916 240/106 R the principal and secondary divisions which form their 3,001,062 9/1961 Winkber 240/106 R bases 3,096,032 7/1963 Davis 240/106 R 3,398,274 8/1968 Rex 240/106 R X 5 Claims, 8 Drawing Figures I 1 Q /2/ 1 4r /2/ l I A "1 ii I I l 1 l 1 l M Z0 l T lZ/O. I 1
  • This invention relates to a cover plate for a lamp formed on its surface with centrically symmetrical, light-refractory configurations.
  • a tool for the production of such a cover plate must contain an elevated configuration corresponding with each such depression.
  • the production of these elevated configurations in the tool involves a considerable amount of working time.
  • the tools for the production of the cover plate should be capable of being mechanically economically produced in such a way that the elevated configurations corresponding to the required depressions are all simultaneously formed on the operative side of the tool by grinding, milling or planing.
  • the present invention provides a cover plate for a lamp, formed on its surface with centrically symmetrical light-refractory configurations, wherein the entire surface of the plate is traversed in at least three different angular directions by straight, parallel ribs of simple or modified V-section, of which the their bases.
  • the invention also relates to all the features that are herein claimed, illustrated and described.
  • centrically symmetrical configuration appears in the form of generally regular polygon-based inverted pyramids having an even number of corners with bases in the form of hexagons, octagons, decagons or polygons having even more corners.
  • each inverted pyramid may be broken by one or more discontinuity lines where the pitch of the side changes. More particularly the smaller inverted pyramids in the secondary divisions contribute towards the production I of the cut-diamond effect.
  • the possibilities of controlled refraction of the light are inherent in the variability of the parameters of the hexagon, octagon or decagon based inverted pyramids, i.e. of the refracting configurations in the principal divisions, such as the size, pitch and subdivision by discontinuities in pitch of the inverted pyramid faces.
  • FIG. 1 is a plan view of a proposed cover plate comprising inverted octagon in the principal divisions;
  • FIG. 1A is a cross-sectional view taken along the lines lA-lA of FIG. 1;
  • FIG. 1B is a cross-sectional view taken along the lines lB-1B of FIG. 1; I
  • FIG. 2 is a plan view, on a larger scale, of a principal and a secondary square of FIG. 1;
  • FIG. 3 is a cross-section of a plate according to FIG. 1;
  • FIGS. 4 6 are further embodiments of inverted pyramids.
  • FIG. 1 shows a cover plate for a lamp according to the invention, the entire surface of which is traversed by ribs in four directions, namely, longitudinally, transversely perpendicular to the longitudinal ribs, and diagonally at a 45 angle to both the longitudinal and transverse ribs.
  • FIG. 1A The shape of the crosssection of the longitudinal and transverse ribs can be seen in FIG. 1A.
  • 114 is a discontinuity line parallel to the general plane of the plate dividing the side of each rib into a lower more steeply pitched part 112 and an upper less steeply pitched part 113, 111 being the vertex lines defining the crests of v the ribs. This cross-section holds for the ribs extending in both diagonal directions.
  • the cross-section shown in FIG. 1B is that of the diagonal ribs. Pairs of ribs 120 and 120a are provided which partly overlap. 121 and 121a are vertical lines or ridges defining the crests 111 of the ribs which are spaced a distance 125 apart. 112 and 113 indicate the bottom and upper parts of the sides of the ribs that are separated by a discontinuity line 114 running parallel to the plane of the plate.
  • the ribs are so drawn that in plan a checkboard configuration comprising squares is formed, namely, principal squares marked 100 and secondary squares marked 200.
  • the distance 125 between neighboring vertex lines is equal to about 2 l) or 0.4142 times the length of the side of a square.
  • FIG. 2 illustrates a principal square 100 and a secondary square 200 side by side.
  • the principal square 100 contains a regular octagon 101 which forms the base of a regular inverted pyramid with its apex at 102.
  • 103 is a discontinuity line parallel to the plane of the plate dividing each side of the inverted pyramid into an upper and a lower face of different pitch.
  • Four triangles on the octagonal circumference complete the square. Corner inverted pyramids 104 are depressed.
  • the secondary square 200 contains a central inverted pyramid 201 on a square base.
  • 202 is the apex of the inverted pyramid
  • 203 is a discontinuity line corresponding to the discontinuity line 103 on the octagonal inverted pyramid.
  • the four sides of the central inverted pyramid 201 are each adjoined by a pentagon 211 having an apex marked 212 and a discontinuity line 213.
  • FIG. 3 is a cross-section of a plate according to FIG. 1.
  • boss-shaped elevations 310 appear on the back of the plate opposite the depressions 101.
  • these elevations by virtue of their lightscattering effect contribute towards solving the problem contemplated by the invention, to the extent this relates to making the interior of the lamp invisible from the outside.
  • F IG. 4 is a cross-section of another embodiment.
  • 401 are depressions of pyramids on octagonal bases.
  • 402 and 403 are discontinuity lines, one forming a salient and the other a reentrant angle.
  • the pyramidal depressions 501 are truncated.
  • the surface formed by the truncation is marked 502.
  • FIG. 6 is a cross-section of a plate according to still another embodiment.
  • the side faces of the inverted pyramids can be arbitrarily increased in number and the cut-diamond effect correspondingly enhanced. Instead of providing flat pyramid faces these may also be slightly curved.
  • the inverted hexagons and octagons are all regular. However, as an alternative, polygons could be divided out in which only opposite sides are equal.
  • inverted pyramids are so contrived that the apices are located in the centers of the hexagons or octagons; these may also be decagons or duodecagons.
  • inverted pyramids that have eccentric apices can also be cut out above these polygonal bases.
  • a cover plate as proposed by the invention may also form part of a differently designed lamp shade, for instance a dish or trough-shaped shade.
  • a cover plate for a lamp having centrically symmetrical light refractory configurations on one surface thereof wherein said one surface of the plate is traversed by parallel ribs of V-section, a first set of a plurality of said ribs running in each of a longitudinal direction and a direction transverse thereto, and a second set of said ribs running in two diagonal directions transverse with respect to each other, said diagonal ribs being equally spaced whereby the vertex lines defined by the crests of said second set of ribs divide the plate, when viewed in plan, into principal and secondary square divisions in a checkerboard pattern, said first set of ribs being formed in pairs of parallel ridges having overlapping cross-sections, the cross-sectional shape of the ribs being extended forming prismatic depressions in the forin of inverted pyramidal depressions between the ribs in both the principal and secondary square divisions, the inverted pyramidal depressions in each principal square division comprising a centrally located octagon with four triangles contiguous
  • a cover plate for a lamp according to claim 1 wherein the side faces of the depressed pyramids are 1 repeatedly broken by pitch discontinuity lines parallel to the plane of the plateto form salient and/or reentrant angles.
  • a cover plate for a lamp according to claim 3 wherein the cross-section of the ribs contains a discontinuity forming a salient angle, the angle at which the vertex defining the crest of the ribs being between and and the lower parts of the sides of the ribs meet at an angle between and 5.
  • a cover plate for a lamp according to claim 1 wherein the centrally located octagon and square inverted pyramids are truncated-r

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Non-Portable Lighting Devices Or Systems Thereof (AREA)

Abstract

A cover plate for a lamp, formed on its surface with centrically symmetrical light-refractory configurations. The entire surface of the plate is traversed in at least three different angular directions by straight, parallel ribs of simple or modified Vsection, of which the vertex lines defining the crests of the ribs divide the plate, when viewed in plan, into principal divisions in the form of hexagon, octagon or decagon depressions with intervening secondary divisions in the form of smaller triangular depressions and possibly polygon depressions, and the cross-sectional shape of the ribs gives rise to the formation of prismatic depressions in the form of inverted principal and secondary pyramids in the principal and secondary divisions which form their bases.

Description

United States Patent 1 1 1111 3,764,800
Clostermann Oct. 9, 1973 COVER PLATE FOR A LAMP 3,578,967 5/1971 Stahlhut 240/106 R 5] e or: edr ch Clostermann Hagen 3,566,102 2/1971 Choyhe, Jr 240/106 R X Germany FOREIGN PATENTS OR APPLICATIONS 851,867 10/1960 Great Britain 240/106 R [73 Ass'gnee' Nehem Husten 851,217 10/1960 Great Britain 240/106 R Germany [22] Filed: Oct. 17, 1972 Primary Examiner-Joseph F. Peters, Jr. [211 App! No: 298,199 AttorneyNe1l P. Markva et al.
Related US. Application Data 57 ABSTRACT Continuation-impart 0f 338,702, May 19, A cover plate for a lamp, formed on its surface with 1970 abandonedcentrically symmetrical light-refractory configurations. The entire surface of the plate is traversed in at least [52] 240/106 240/78 240/ 1061 three different angular directions by straight, parallel [51] lilt- Cl. F21V 5/04 ribs of simple or modified v section of which the FlCld of Search R, tex lines defining the crests of the ribs divide the p 240/78 78 LD when viewed in plan, into principal divisions in the form of hexagon, octagon or decagon depressions with [56] References and intervening secondary divisions in the form of smaller U TED STATES PATENTS triangular depressions and possibly polygon depres- 1.705,943 3 1929 Ralph 240/106 R ns, and t ross-se ional shape of the ribs gives 2,768,556 10/1956 Boyd.... 240/106 R X rise to the formation of prismatic depressions in the 1,7 5/1930 Ralph 1 240/106-1 X form of inverted principal and secondary pyramids in 1,194,294 8/1916 240/106 R the principal and secondary divisions which form their 3,001,062 9/1961 Winkber 240/106 R bases 3,096,032 7/1963 Davis 240/106 R 3,398,274 8/1968 Rex 240/106 R X 5 Claims, 8 Drawing Figures I 1 Q /2/ 1 4r /2/ l I A "1 ii I I l 1 l 1 l M Z0 l T lZ/O. I 1
100 1 Z 1 Ml 1 i l l 1 t 1f *1 fi/Z p 1:
PATENTED OUT 75 $IHEET 1 [IF 3 F/Gi COVER PLATE FOR A LAMP This is a continuation-in-part of my copending application Ser. No. 38,702 filed May 19, 1970, now abandoned.
BACKGROUNDOF THE INVENTION This invention relates to a cover plate for a lamp formed on its surface with centrically symmetrical, light-refractory configurations.
In illumination technology lamps containing light sources of any kind are frequently covered with transparent plates provided on their surfaces with depressions in the form of lenticular, conical or pyramidal configurations. These configurations are on circular, square or hexagonal bases. Each of these centrically symmetrical configurations is intended radially to distribute light uniformly at theoretically calculable transmission angles.
A tool for the production of such a cover plate must contain an elevated configuration corresponding with each such depression. The production of these elevated configurations in the tool involves a considerable amount of working time.
One problem that arises in the provision of transpar-. ent flat covers or trough-shaped shades for lamps containing fluorescent light sources is how to obscure a clear view of the light source through the shade, more particularly how to prevent the elements including lamps, lamp sockets, and trigger units from being seen. This is not satisfactorily achieved by using conventional cover plates containing cone-shaped or lenticular configurations.
The problems contemplated in the present invention arise from this state of the art.
The tools for the production of the cover plate should be capable of being mechanically economically produced in such a way that the elevated configurations corresponding to the required depressions are all simultaneously formed on the operative side of the tool by grinding, milling or planing.
SUMMARY OF THE INVENTION It is, therefore the object of the invention to combine the centrically symmetrical configurations with other depressions such that the lamp interior cannot be seen. Generally speaking, it is intended that it should be possible to direct and distribute the light flux in vertical planes.
To attain this object the present invention provides a cover plate for a lamp, formed on its surface with centrically symmetrical light-refractory configurations, wherein the entire surface of the plate is traversed in at least three different angular directions by straight, parallel ribs of simple or modified V-section, of which the their bases.
The invention also relates to all the features that are herein claimed, illustrated and described.
When the invention is applied the centrically symmetrical configuration appears in the form of generally regular polygon-based inverted pyramids having an even number of corners with bases in the form of hexagons, octagons, decagons or polygons having even more corners. The greater the number of corners, the more will the base in character approach a circle and the more will the inverted pyramids in the principal divisions assume the optical properties of inverted cones (conical pyramids).
Nevertheless, it is not necessary to work an elevation separately for each light refracting configuration into the tools for the production of the proposed cover plates. The desired configurations result from the directions and cross-sectional shapes of the ribs which traverse the entire plate surface, and which can therefore be produced by grinding, milling or planing. The tools can thus be economically produced by mechanical means.
The interior of the lamp cannot be seen through the multiplicity of faceted surfaces (cut-diamond effect). On the one hand the several inverted pyramidal faces are relatively inclined. In addition, each side of each inverted pyramid may be broken by one or more discontinuity lines where the pitch of the side changes. More particularly the smaller inverted pyramids in the secondary divisions contribute towards the production I of the cut-diamond effect. v
The possibilities of controlled refraction of the light are inherent in the variability of the parameters of the hexagon, octagon or decagon based inverted pyramids, i.e. of the refracting configurations in the principal divisions, such as the size, pitch and subdivision by discontinuities in pitch of the inverted pyramid faces.
BRIEF DESCRIPTION OF THE DRAWINGS Several embodiments of the invention will now be described by way of example and with reference to the accompanying drawings, in which:
FIG. 1 is a plan view of a proposed cover plate comprising inverted octagon in the principal divisions;
FIG. 1A is a cross-sectional view taken along the lines lA-lA of FIG. 1;
FIG. 1B is a cross-sectional view taken along the lines lB-1B of FIG. 1; I
- FIG. 2 is a plan view, on a larger scale, of a principal and a secondary square of FIG. 1;
FIG. 3 is a cross-section of a plate according to FIG. 1; and
FIGS. 4 6 are further embodiments of inverted pyramids.
DESCRIPTION OF THE PREFERRED EMBODIMENTS FIG. 1 shows a cover plate for a lamp according to the invention, the entire surface of which is traversed by ribs in four directions, namely, longitudinally, transversely perpendicular to the longitudinal ribs, and diagonally at a 45 angle to both the longitudinal and transverse ribs.
The shape of the crosssection of the longitudinal and transverse ribs can be seen in FIG. 1A. 114 is a discontinuity line parallel to the general plane of the plate dividing the side of each rib into a lower more steeply pitched part 112 and an upper less steeply pitched part 113, 111 being the vertex lines defining the crests of v the ribs. This cross-section holds for the ribs extending in both diagonal directions.
The cross-section shown in FIG. 1B is that of the diagonal ribs. Pairs of ribs 120 and 120a are provided which partly overlap. 121 and 121a are vertical lines or ridges defining the crests 111 of the ribs which are spaced a distance 125 apart. 112 and 113 indicate the bottom and upper parts of the sides of the ribs that are separated by a discontinuity line 114 running parallel to the plane of the plate.
The ribs are so drawn that in plan a checkboard configuration comprising squares is formed, namely, principal squares marked 100 and secondary squares marked 200. The distance 125 between neighboring vertex lines is equal to about 2 l) or 0.4142 times the length of the side of a square.
FIG. 2 illustrates a principal square 100 and a secondary square 200 side by side.
The principal square 100 contains a regular octagon 101 which forms the base of a regular inverted pyramid with its apex at 102. 103 is a discontinuity line parallel to the plane of the plate dividing each side of the inverted pyramid into an upper and a lower face of different pitch. Four triangles on the octagonal circumference complete the square. Corner inverted pyramids 104 are depressed.
The secondary square 200 contains a central inverted pyramid 201 on a square base. 202 is the apex of the inverted pyramid, 203 is a discontinuity line corresponding to the discontinuity line 103 on the octagonal inverted pyramid.
In the secondary square 200 the four sides of the central inverted pyramid 201 are each adjoined by a pentagon 211 having an apex marked 212 and a discontinuity line 213.
Four triangles 221 which also form the bases of inverted pyramids complete thesecondary square 200.
FIG. 3 is a cross-section of a plate according to FIG. 1. When such a plate is produced by the blowing or vacuum process boss-shaped elevations 310 appear on the back of the plate opposite the depressions 101. In their totality these elevations by virtue of their lightscattering effect contribute towards solving the problem contemplated by the invention, to the extent this relates to making the interior of the lamp invisible from the outside.
F IG. 4 is a cross-section of another embodiment. 401 are depressions of pyramids on octagonal bases. 402 and 403 are discontinuity lines, one forming a salient and the other a reentrant angle.
In the embodiment according to FIG. 5 the pyramidal depressions 501 are truncated. The surface formed by the truncation is marked 502.
FIG. 6 is a cross-section of a plate according to still another embodiment.
The embodiments according to the invention can be modified inter alia as follows:
By the provision of additional discontinuity lines, forming salient or reentrant angles in the rib crosssections, the side faces of the inverted pyramids can be arbitrarily increased in number and the cut-diamond effect correspondingly enhanced. Instead of providing flat pyramid faces these may also be slightly curved.
In the illustrated embodiments, the inverted hexagons and octagons are all regular. However, as an alternative, polygons could be divided out in which only opposite sides are equal.
The inverted pyramids are so contrived that the apices are located in the centers of the hexagons or octagons; these may also be decagons or duodecagons. By suitably varying the cross-sections of the ribs, inverted pyramids that have eccentric apices can also be cut out above these polygonal bases.
A cover plate as proposed by the invention may also form part of a differently designed lamp shade, for instance a dish or trough-shaped shade.
The invention may be embodied in other specific forms without departing from the spirit or essential characteristics thereof. The embodiments are therefore to be considered in all respects as illustrative and not restrictive.
I claim:
1. A cover plate for a lamp having centrically symmetrical light refractory configurations on one surface thereof wherein said one surface of the plate is traversed by parallel ribs of V-section, a first set of a plurality of said ribs running in each of a longitudinal direction and a direction transverse thereto, and a second set of said ribs running in two diagonal directions transverse with respect to each other, said diagonal ribs being equally spaced whereby the vertex lines defined by the crests of said second set of ribs divide the plate, when viewed in plan, into principal and secondary square divisions in a checkerboard pattern, said first set of ribs being formed in pairs of parallel ridges having overlapping cross-sections, the cross-sectional shape of the ribs being extended forming prismatic depressions in the forin of inverted pyramidal depressions between the ribs in both the principal and secondary square divisions, the inverted pyramidal depressions in each principal square division comprising a centrally located octagon with four triangles contiguous to four sides of the octagon forming a complete principal square, and the inverted pyramidal depressions in each secondary square comprising a centrally located square with four pentagons and four triangles alternately positioned contiguous to the perimeter of the square forming a complete secondary square; and the opposite surface of said plate has a boss-like elevation opposite each of said inverted pyramidal depressions whereby an improved light-scattering effect is obtained and a lamp located adjacent said opposite surface of said plate is not visible from the one surface thereof.
2. A cover plate for a lamp according to claim 1 wherein the distance between the crests of each pair of parallel ridges is about 0.4142 times the length of a side of a principal square.
3. A cover plate for a lamp according to claim 1 :wherein the side faces of the depressed pyramids are 1 repeatedly broken by pitch discontinuity lines parallel to the plane of the plateto form salient and/or reentrant angles.
4. A cover plate for a lamp according to claim 3 wherein the cross-section of the ribs contains a discontinuity forming a salient angle, the angle at which the vertex defining the crest of the ribs being between and and the lower parts of the sides of the ribs meet at an angle between and 5. A cover plate for a lamp according to claim 1 wherein the centrally located octagon and square inverted pyramids are truncated-r

Claims (5)

1. A cover plate for a lamp having centrically symmetrical light refractory configurations on one surface thereof wherein said one surface of the plate is traversed by parallel ribs of V-section, a first set of a plurality of said ribs running in each of a longitudinal direction and a direction transverse thereto, and a second set of said ribs running in two diagonal directions transverse with respect to each other, said diagonal ribs being equally spaced whereby the vertex lines defined by the crests of said second set of ribs divide the plate, when viewed in plan, into principal and secondary square divisions in a checkerboard pattern, said first set of ribs being formed in pairs of parallel ridges having overlapping cross-sections, the cross-sectional shape of the ribs being extended forming prismatic depressions in the form of inverted pyramidal depressions between the ribs in both the principal and secondary square divisions, the inverted pyramidal depressions in each principal square division comprising a centrally located octagon with four triangles contiguous to four sides of the octagon forming a complete principal square, and the inverted pyramidal depressions in each secondary square comprising a centrally located square with four pentagons and four triangles alternately positioned contiguous to the perimeter of the square forming a complete secondary square; and the opposite surface of said plate has a boss-like elevation opposite each of said inverted pyramidal depressions whereby an improved light-scattering effect is obtained and a lamp located adjacent said opposite surface of said plate is not visible from the one surface thereof.
2. A cover plate for a lamp according to claim 1 wherein the distance between the crests of each pair of parallel ridges is about 0.4142 times the length of a side of a principal square.
3. A cover plate for a lamp according to claim 1 wherein the side faces of the depressed pyramids are repeatedly broken by pitch discontinuity lines parallel to the plane of the plate to form salient and/or reentrant angles.
4. A cover plate for a lamp according to claim 3 wherein the cross-section of the ribs contains a discontinuity forming a salient angle, the angle at which the vertex defining the crest of the ribs being between 80* and 100* and the lower parts of the sides of the ribs meet at an angle between 110* and 130*.
5. A cover plate for a lamp according to claim 1 wherein the centrally located octagon and square inverted pyramids are truncated.
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US4074126A (en) * 1974-06-18 1978-02-14 Bausch & Lomb Incorporated Lighting panel
US4984144A (en) * 1987-05-08 1991-01-08 Minnesota Mining And Manufacturing Company High aspect ratio light fixture and film for use therein
US5190370A (en) * 1991-08-21 1993-03-02 Minnesota Mining And Manufacturing Company High aspect ratio lighting element
US5274536A (en) * 1991-07-02 1993-12-28 Kabushiki Kaisha Mochiro Kikaku Illumination cover for fluorescent lamp
US5949346A (en) * 1995-06-07 1999-09-07 Toyoda Gosei Co., Ltd. Light-driven display device
US5964525A (en) * 1996-01-10 1999-10-12 Valeo Vision Side lamp display or indicating light having an intermediate screen, and a method of making such a screen
US6033094A (en) * 1997-10-02 2000-03-07 Fresnel Technologies, Inc. Microlens array for improved illumination patterns
US6523980B2 (en) * 1999-05-20 2003-02-25 Zumtobel Staff Gmbh Optical element for deflecting light beams and method of production
US20040141241A1 (en) * 2002-10-07 2004-07-22 Fresnel Technologies Inc. Imaging lens for infrared cameras
US20090073565A1 (en) * 2007-09-17 2009-03-19 Hon Hai Precision Industry Co., Ltd. Prism sheet and backlight module using the same
US20090244907A1 (en) * 2008-03-28 2009-10-01 Hon Hai Precision Industry Co., Ltd. Prism sheet
US20090323326A1 (en) * 2008-06-30 2009-12-31 Hon Hai Precision Industry Co., Ltd. Light diffusion plate and backlight module using the same
US20100002416A1 (en) * 2008-07-04 2010-01-07 Hon Hai Precision Industry Co., Ltd. Optical plate and backlight module using the same
US20100053954A1 (en) * 2008-08-28 2010-03-04 Industrial Technology Research Institute Illuminant module with optical film of multiple curvatures
WO2011124294A1 (en) * 2010-02-24 2011-10-13 Bwf Kunststoffe Gmbh & Co. Kg Device for coupling out light in a reduced-glare manner
US20130070478A1 (en) * 2011-09-20 2013-03-21 Minebea Co., Ltd. Light distribution control member and illuminating device using the same
EP3146261A4 (en) * 2014-06-18 2018-03-07 Bright View Technologies Corporation Microstructure-based diffusers for creating batwing lighting patterns
US10072816B2 (en) 2013-06-19 2018-09-11 Bright View Technologies Corporation Microstructure-based optical diffusers for creating batwing and other lighting patterns
US10302275B2 (en) 2013-06-19 2019-05-28 Bright View Technologies Corporation Microstructure-based diffusers for creating batwing lighting patterns
US10302276B2 (en) * 2013-10-03 2019-05-28 Lutron Ketra, Llc Color mixing optics having an exit lens comprising an array of lenslets on an interior and exterior side thereof
CN111624816A (en) * 2020-06-30 2020-09-04 京东方科技集团股份有限公司 Even light membrane, backlight unit and display device

Citations (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1194294A (en) * 1916-08-08 Emil gottfried johastsobt
US1705943A (en) * 1925-12-24 1929-03-19 Holophane Co Inc Luminair
US1758977A (en) * 1926-04-21 1930-05-20 Holophane Co Inc Reflecting prism
US2768556A (en) * 1951-05-14 1956-10-30 Owens Illinois Glass Co Control of daylighting
GB851217A (en) * 1957-05-21 1960-10-12 Gen Electric Co Ltd Improvements in or relating to the manufacture of bodies, especially transparent panels, having a figured surface
GB851867A (en) * 1957-09-23 1960-10-19 Gen Electric Co Ltd Improvements in or relating to methods of figuring surfaces
US3001062A (en) * 1955-09-15 1961-09-19 Westinghouse Electric Corp Light refractor
US3096032A (en) * 1959-09-23 1963-07-02 Lighting Products Inc Lighting diffuser
US3398274A (en) * 1965-07-26 1968-08-20 Gen Electric Optically round, mechanically ovate reflector with radially stepped sections
US3566102A (en) * 1967-09-13 1971-02-23 Artcrest Products Co Inc Light panel
US3578967A (en) * 1969-08-27 1971-05-18 Ksh Inc Prismatic lighting panel

Patent Citations (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1194294A (en) * 1916-08-08 Emil gottfried johastsobt
US1705943A (en) * 1925-12-24 1929-03-19 Holophane Co Inc Luminair
US1758977A (en) * 1926-04-21 1930-05-20 Holophane Co Inc Reflecting prism
US2768556A (en) * 1951-05-14 1956-10-30 Owens Illinois Glass Co Control of daylighting
US3001062A (en) * 1955-09-15 1961-09-19 Westinghouse Electric Corp Light refractor
GB851217A (en) * 1957-05-21 1960-10-12 Gen Electric Co Ltd Improvements in or relating to the manufacture of bodies, especially transparent panels, having a figured surface
GB851867A (en) * 1957-09-23 1960-10-19 Gen Electric Co Ltd Improvements in or relating to methods of figuring surfaces
US3096032A (en) * 1959-09-23 1963-07-02 Lighting Products Inc Lighting diffuser
US3398274A (en) * 1965-07-26 1968-08-20 Gen Electric Optically round, mechanically ovate reflector with radially stepped sections
US3566102A (en) * 1967-09-13 1971-02-23 Artcrest Products Co Inc Light panel
US3578967A (en) * 1969-08-27 1971-05-18 Ksh Inc Prismatic lighting panel

Cited By (35)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4074126A (en) * 1974-06-18 1978-02-14 Bausch & Lomb Incorporated Lighting panel
US4984144A (en) * 1987-05-08 1991-01-08 Minnesota Mining And Manufacturing Company High aspect ratio light fixture and film for use therein
US5274536A (en) * 1991-07-02 1993-12-28 Kabushiki Kaisha Mochiro Kikaku Illumination cover for fluorescent lamp
US5190370A (en) * 1991-08-21 1993-03-02 Minnesota Mining And Manufacturing Company High aspect ratio lighting element
US5949346A (en) * 1995-06-07 1999-09-07 Toyoda Gosei Co., Ltd. Light-driven display device
US5964525A (en) * 1996-01-10 1999-10-12 Valeo Vision Side lamp display or indicating light having an intermediate screen, and a method of making such a screen
US6033094A (en) * 1997-10-02 2000-03-07 Fresnel Technologies, Inc. Microlens array for improved illumination patterns
US6523980B2 (en) * 1999-05-20 2003-02-25 Zumtobel Staff Gmbh Optical element for deflecting light beams and method of production
US20040141241A1 (en) * 2002-10-07 2004-07-22 Fresnel Technologies Inc. Imaging lens for infrared cameras
US20070002467A1 (en) * 2002-10-07 2007-01-04 Fresnel Technologies Inc. Imaging lens for infrared cameras
US7187505B2 (en) 2002-10-07 2007-03-06 Fresnel Technologies, Inc. Imaging lens for infrared cameras
US7474477B2 (en) 2002-10-07 2009-01-06 Fresnel Technologies, Inc. Imaging lens for infrared cameras
US7656597B2 (en) * 2007-09-17 2010-02-02 Hon Hai Precision Industry Co., Ltd. Prism sheet and backlight module using the same
US20090073565A1 (en) * 2007-09-17 2009-03-19 Hon Hai Precision Industry Co., Ltd. Prism sheet and backlight module using the same
US20090244907A1 (en) * 2008-03-28 2009-10-01 Hon Hai Precision Industry Co., Ltd. Prism sheet
US8061877B2 (en) * 2008-03-28 2011-11-22 Hon Hai Precision Industry Co., Ltd. Prism sheet having parallelogram microstructures
US20090323326A1 (en) * 2008-06-30 2009-12-31 Hon Hai Precision Industry Co., Ltd. Light diffusion plate and backlight module using the same
US8256932B2 (en) * 2008-06-30 2012-09-04 Hon Hai Precision Industry Co., Ltd. Light diffusion plate and backlight module using the same
US20100002416A1 (en) * 2008-07-04 2010-01-07 Hon Hai Precision Industry Co., Ltd. Optical plate and backlight module using the same
US7993020B2 (en) * 2008-07-04 2011-08-09 Hon Hai Precision Industry Co., Ltd. Optical plate having triangular pyramidal depressions and backlight module using the same
US20100053954A1 (en) * 2008-08-28 2010-03-04 Industrial Technology Research Institute Illuminant module with optical film of multiple curvatures
US8210714B2 (en) * 2008-08-28 2012-07-03 Industrial Technology Research Institute Illuminant module with optical film of multiple curvatures
WO2011124294A1 (en) * 2010-02-24 2011-10-13 Bwf Kunststoffe Gmbh & Co. Kg Device for coupling out light in a reduced-glare manner
US20130070478A1 (en) * 2011-09-20 2013-03-21 Minebea Co., Ltd. Light distribution control member and illuminating device using the same
US10072816B2 (en) 2013-06-19 2018-09-11 Bright View Technologies Corporation Microstructure-based optical diffusers for creating batwing and other lighting patterns
US10302275B2 (en) 2013-06-19 2019-05-28 Bright View Technologies Corporation Microstructure-based diffusers for creating batwing lighting patterns
US10302276B2 (en) * 2013-10-03 2019-05-28 Lutron Ketra, Llc Color mixing optics having an exit lens comprising an array of lenslets on an interior and exterior side thereof
US10767835B2 (en) 2013-10-03 2020-09-08 Lutron Ketra, Llc Color mixing optics for LED illumination device
US11326761B2 (en) 2013-10-03 2022-05-10 Lutron Technology Company Llc Color mixing optics for LED illumination device
US11662077B2 (en) 2013-10-03 2023-05-30 Lutron Technology Company Llc Color mixing optics for LED illumination device
US12072091B2 (en) 2013-10-03 2024-08-27 Lutron Technology Company Llc Color mixing optics for LED illumination device
EP3146261A4 (en) * 2014-06-18 2018-03-07 Bright View Technologies Corporation Microstructure-based diffusers for creating batwing lighting patterns
CN111624816A (en) * 2020-06-30 2020-09-04 京东方科技集团股份有限公司 Even light membrane, backlight unit and display device
CN111624816B (en) * 2020-06-30 2022-07-05 京东方科技集团股份有限公司 Even light membrane, backlight unit and display device
US11536435B2 (en) 2020-06-30 2022-12-27 Boe Technology Group Co., Ltd. Light homogenizing film, backlight module and display device

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