EP0456656A1 - Strahlungsaussendende paneele und anzeigeanordnungen. - Google Patents

Strahlungsaussendende paneele und anzeigeanordnungen.

Info

Publication number
EP0456656A1
EP0456656A1 EP90901861A EP90901861A EP0456656A1 EP 0456656 A1 EP0456656 A1 EP 0456656A1 EP 90901861 A EP90901861 A EP 90901861A EP 90901861 A EP90901861 A EP 90901861A EP 0456656 A1 EP0456656 A1 EP 0456656A1
Authority
EP
European Patent Office
Prior art keywords
pillars
plates
panel
radiation
panel according
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
EP90901861A
Other languages
English (en)
French (fr)
Other versions
EP0456656B1 (de
Inventor
Neil Anthony Fox
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Smiths Group PLC
Original Assignee
Smiths Group PLC
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Smiths Group PLC filed Critical Smiths Group PLC
Publication of EP0456656A1 publication Critical patent/EP0456656A1/de
Application granted granted Critical
Publication of EP0456656B1 publication Critical patent/EP0456656B1/de
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01JELECTRIC DISCHARGE TUBES OR DISCHARGE LAMPS
    • H01J61/00Gas-discharge or vapour-discharge lamps
    • H01J61/02Details
    • H01J61/30Vessels; Containers
    • H01J61/32Special longitudinal shape, e.g. for advertising purposes
    • 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
    • F21V5/02Refractors for light sources of prismatic shape
    • 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
    • F21V5/10Refractors for light sources comprising photoluminescent material

Definitions

  • This invention relates to radiation-emitting panels of the kind having two parallel plates sealed with one another around their edges and enclosing a gas-discharge volume at reduced pressure, at least one of the plates being transparent to the radiation.
  • the illumination is of high intensity with a low power and heat dissipation whilst being compact and of light weight.
  • Fluorescent lighting in which light is generated * by photo-ionisation of a phosphor layer in a gas-discharge tube, is ideally suited to this, as far as ⁇ i the level of illumination and power dissipation is concerned.
  • ⁇ i the level of illumination and power dissipation is concerned.
  • WO 87/04562 there is described a display in which an arrangement of parallel tubes is reproduced in a flat panel by means of walls that divide the panel into separate discharge paths, each having their own electrode.
  • a bent tube arrangement is similarly reproduced by walls defining a circuitous path between two electrodes. It is usually also necessary to use some form of diffuser in front of such arrangements to produce a more even illumination. This does still not produce illumination which is distributed sufficiently evenly for some applications because of the presence of the walls.
  • WO 87/04562 also describes a flat panel fluorescent device formed by two glass plates coated with phosphor on their facing surfaces. The plates are spaced from one another and sealed around their edges, the space between the plates being evacuated to a low pressure. Electrodes extend along opposite edges inside the space between the plates, so that discharge can be produced between them.
  • the problem with this construction is that, because of the reduced pressure within the device the plates must be relatively thick to be able to withstand the pressure differential across them. This leads to a device which is relatively heavy and bulky.
  • a radiation-emitting panel which can be used to avoid these disadvantages.
  • a radiation-emitting panel of the above specified kind characterised in that at least one of the plates has a phosphor coating on an inner surface which generates the radiation on discharge within the panel, and that the plates are supported within their edges by a plurality of radiation-transmitting pillars.
  • the pillars preferably have a phosphor coating thereon and may have angled surfaces that reflect radiation through at least the transsparent plate.
  • One of the plates preferably has a reflective outer surface which reflects radiation through the transparent plate.
  • the pillars may be located in a plurality of rows, the diameter of the pillars along each row being substantially equal to the separation between adjacent pillars along the row. Pillars in one row are preferably staggered from pillars in an adjacent row by a distance equal to the
  • I diameter of the pillars and the edges of adjacent rows may be contiguous.
  • the pillars are preferably of frusto-pyra id shape.
  • At least one of the plates may have pillars formed integrally therewith.
  • a display assembly including a display and a radiation emitting panel located behind the display such that radiation emitted by the panel backlights the display, characterised in that the panel is according to the above one aspect of the present invention.
  • Figure 1 is a plan view of the panel
  • Figure 2 is a cross-sectional side elevation view of the panel to an enlarged scale
  • Figure 3 is a sectional view of a display assembly including the panel and illustrating ray paths within the panel;
  • Figure 4 is a cross-sectional side elevation of an alternative panel.
  • the light-emitting panel comprises two rectangular glass ,,, plates 1 and 2 which are both transparent to light.
  • An electrically-insulative spacer 3 which may be formed by glass bars, is interposed between the two plates around their edges to separate them from each other and to-form a gas-tight seal between them.
  • the outer surface 4 and 5 of both plates 1 and 2 is flat and plane, the surface 5 of the lower plate 2 abutting a plane relector 6 which may be a specularly reflecting metal coating or a diffusely reflecting coloured coating.
  • the inner surface 7 and 8 of both plates 1 and.2 is interrupted by an array of pillars 10.
  • the pillars 10 are of square section and frusto-pyramidal shape being . typically of width 0.707mm giving a diagonal diameter of lmm at their base, with a wall angle of 60 degrees to the horizontal and a height of 0.433mm.
  • the pillars are arranged in straight row, horizontal in Figure 1, with * spacings between adjacent pillars in a row equal to the base diameter of the pillars. Pillars 10 in adjacent rows «. are staggered from one another by a distance equal toyfche diameter of the pillars, so that the pillars 10 of one ⁇ o are aligned midway between pillars of an adjacent row. The.
  • edges of adjacent rows are contiguous so that there _no space between adjacent rows. .. A f
  • the array of pillars on the two plates 1 and 2 are identical, so that the top of each pillar 10 on one plate is aligned with, and contacts, the top of a corresponding pillar on the opposite plate.
  • the abutting top surfaces of the pillars 10 on the two plates are joined by an adhesive of refractive index matched to that of the glass forming the plates.
  • the spacing between the two plates is, therefore, equal to the sum of the height of the pillars on the two plates.
  • each electrode 21 and 22 extends along substantially the entire length of one side of the panel, at right angles to, and across the ends of all the rows of pillars.
  • the electrodes 21 and 22 are preferably unheated so that the panel forms a gas-discharge device of the cold-cathode kind.
  • a hot-cathode electrode configuration could be used.
  • the electrodes could be formed by a thick, conductive coating on the spacers 3. The arrangement of the invention only requires one set of electrodes in contrast with some previous arrangements, thereby avoiding previous problems of interference between different sets of electrodes and their respective discharges.
  • the space inside the panel contains a mixture of argon gas and mercury vapour or other gases and gas mixtures at low pressure.
  • the exposed surfaces inside the panel that is, the flat, inner surface of the two plates 1 and 2, between the pillars 10, and the walls of the pillars, are coated with one or more layers 30 of phosphor which emit the desired radiation spectrum when caused to fluoresce by a gas-discharge.
  • a high voltage is applied between the two electrodes 21 and 22 sufficient to cause discharge within the panel which in turn causes fluorescence of the phosphor layer 30.
  • Discharge between the two electrodes 21 and 22 results in production of a plasma that is unconfined by any internal barriers within the panel and that is therefore uniformly distributed within the panel around the pillars 10.
  • Light emitted hail. from the phosphor layer 30 travels both into the gas space between the plates 1 and 2 and into the glass material supporting the phosphor layer, as illustrated in Figure 3.
  • the sloping walls of the pillars 10 causes any light entering the pillar to be eventually reflected towards the outer surface 4 or 5 of the plate 1 or 2.
  • the angle of the walls of the pillars where they meet the surface of the plate is preferably for the angle of the walls of the pillars where they meet the surface of the plate, to be less than 90 degrees.
  • Light incident on the lower surface 5 will be reflected by the reflector 6 towards the upper plate 1.
  • the pillars 10 act as light guides which enable a significant proportion of this light reflected by the reflector 6 to pass directly out of the outer surface 4 of the panel without suffering attenuation by absorption in the phosphor layer 30.
  • the light emitted in the region of the base of the pillars 10 is substantially the same as that from the regions around the pillars. Any slight difference in levels of illumination of these regions has very little effect on the overall even appearance of illumination because of the even distribution of the pillars, their small width and the fact that they are surrounded by the flat surface of the plate.
  • the pillars 10 reduce by about 20% the flat area of the inner surface 7 and 8 of the plates.
  • the exposed walls of the pillars 10, however, have a surface area of about 38% of the flat area giving an increase of about 18% in the area of the phosphor layer 30 over that which would be provided by two flat plates.
  • the pillars also lead to a more efficient utilization of light emitted into the lower plate because of their light-guiding ability.
  • the pillars also give structural support to the panel against forces normal to the panel. This enables the plates 1 and 2 to be relatively thin since the pillars t ensure that they maintain their correct separation.
  • the panel can, therefore, be considerably lighter and thinner than equivalent panels which do not employ pillars. For example a panel that is 100mm square can be made from ' plates only 2mm thick giving an overall thickness of about 5mm.
  • the present invention enables a panel to be provided of high uniformity of illumination and with highly unidirectional emission. It will be appreciated, however, that bi-directional panels could be provided by omitting the reflector so that light emerges from both sides.
  • the pillars 10 on the plate 1 and 2 could be
  • I made by any conventional technique such as by chemical etching, mechanical or ion machining or by laser ablation techniques.
  • pillars 10' slope in the same sense along their length. It can be seen, with this arrangement, that light will be preferentially directed., into the lower plate 2' and that any reflector is preferably supported by the upper plate 1'.
  • the pillars could be formed as components separate from both plates and subsequently joined to one or both plates.
  • the pillars need not be frusto-pyramid in shape but could be of other shapes such as frusto-conical.
  • a four-sided pyramid shape may, however, be easier to make by machining than conical shapes.
  • the outer surface of the plates need not be flat but could be profiled, such as to provide focussing or dispersion of light.
  • Light-emitting panels of this kind could be used for many different purposes. They may, for example, be included in display assemblies to rear-light an advertisement or instrument display, such as incorporating a liquid crystal matrix display 40 ( Figure 3). They could also be used in other applications where even illumination is required such as in photographic applications, or for room lighting with reduced shadowing.

Landscapes

  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Vessels And Coating Films For Discharge Lamps (AREA)
  • Gas-Filled Discharge Tubes (AREA)
  • Liquid Crystal (AREA)
  • Securing Globes, Refractors, Reflectors Or The Like (AREA)
  • Non-Portable Lighting Devices Or Systems Thereof (AREA)
  • Planar Illumination Modules (AREA)
EP90901861A 1989-02-11 1990-01-18 Strahlungsaussendende paneele und anzeigeanordnungen Expired - Lifetime EP0456656B1 (de)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
GB898903118A GB8903118D0 (en) 1989-02-11 1989-02-11 Radiation emissive devices
GB8903118 1989-02-11
PCT/GB1990/000075 WO1990009676A1 (en) 1989-02-11 1990-01-18 Radiation-emitting panels and display assemblies

Publications (2)

Publication Number Publication Date
EP0456656A1 true EP0456656A1 (de) 1991-11-21
EP0456656B1 EP0456656B1 (de) 1994-11-09

Family

ID=10651541

Family Applications (1)

Application Number Title Priority Date Filing Date
EP90901861A Expired - Lifetime EP0456656B1 (de) 1989-02-11 1990-01-18 Strahlungsaussendende paneele und anzeigeanordnungen

Country Status (7)

Country Link
EP (1) EP0456656B1 (de)
JP (1) JPH04503281A (de)
AU (1) AU4947490A (de)
DE (1) DE69014098T2 (de)
GB (1) GB8903118D0 (de)
RU (1) RU2070755C1 (de)
WO (1) WO1990009676A1 (de)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1256972A3 (de) * 2001-05-08 2005-11-09 Patent-Treuhand-Gesellschaft für elektrische Glühlampen mbH Flache Beleuchtungsvorrichtung mit Spiegelfläche

Families Citing this family (20)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB9007327D0 (en) * 1990-03-31 1990-05-30 Smiths Industries Plc Gas discharge electrodes
US5327045A (en) * 1990-03-31 1994-07-05 Smiths Industries Public Limited Company Gas discharge electrodes and lamps
US5438343A (en) * 1992-07-28 1995-08-01 Philips Electronics North America Corporation Gas discharge displays and methodology for fabricating same by micromachining technology
US5598052A (en) * 1992-07-28 1997-01-28 Philips Electronics North America Vacuum microelectronic device and methodology for fabricating same
US5955838A (en) * 1992-07-28 1999-09-21 Philips Electronics North America Corp. Gas discharge lamps and lasers fabricated by micromachining methodology
EP0581376A1 (de) * 1992-07-28 1994-02-02 Koninklijke Philips Electronics N.V. Gastentladungslampe und Verfahren zur Herstellung derselben mittels Mikro-Bearbeitungstechnologie
GB2284703A (en) * 1993-12-11 1995-06-14 Smiths Industries Plc Discharge lamp
RU2134906C1 (ru) * 1997-12-29 1999-08-20 Степунин Андрей Сергеевич Осветительное устройство скрытой подсветки (варианты)
KR20050113460A (ko) * 2004-05-29 2005-12-02 삼성전자주식회사 면광원 장치 및 이를 갖는 액정표시장치
WO2006067882A1 (ja) * 2004-12-20 2006-06-29 Masanobu Aizawa キセノン放電型の二層式平面蛍光ランプ
EP2030191B1 (de) * 2006-05-24 2014-03-05 Koninklijke Philips N.V. Vorrichtung und verfahren zur bestimmung der optimalen rückbeleuchtung
RU2463517C2 (ru) * 2008-03-05 2012-10-10 Шарп Кабусики Кайся Устройство освещения, дисплейное устройство и телевизионный приемник
US8371738B2 (en) 2008-09-30 2013-02-12 Sharp Kabushiki Kaisha Lighting device, display device and television receiver
RU2487294C2 (ru) * 2008-11-04 2013-07-10 Шарп Кабушики Каиша Плоский источник света и жидкокристаллический дисплей
CN102326020B (zh) * 2009-03-06 2013-12-25 夏普株式会社 面状照明装置和具备该装置的显示装置
RU2491473C1 (ru) * 2009-06-15 2013-08-27 Шарп Кабусики Кайся Осветительное устройство, устройство отображения и телевизионный приемник
US8845120B2 (en) * 2009-07-03 2014-09-30 Sharp Kabushiki Kaisha Light source unit, lighting device, display device and television receiver
WO2011074366A1 (ja) * 2009-12-18 2011-06-23 シャープ株式会社 照明装置、表示装置、及びテレビ受信装置
US20130038799A1 (en) * 2010-05-25 2013-02-14 Yuuki Namekata Lighting device, display device and television receiver
RU2463635C1 (ru) * 2011-06-17 2012-10-10 Закрытое акционерное общество Промышленная группа "Метран" Схема соединения квадратных знакосинтезирующих элементов на ромбовидном экране

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5846568A (ja) * 1981-09-12 1983-03-18 Michiharu Nakayama 内部に支柱をもつた電球
JPH0650621B2 (ja) * 1987-03-20 1994-06-29 三洋電機株式会社 平面型蛍光灯
GB2217905A (en) * 1988-04-13 1989-11-01 Ac Dc Holdings Limited Discharge lamps

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
See references of WO9009676A1 *

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1256972A3 (de) * 2001-05-08 2005-11-09 Patent-Treuhand-Gesellschaft für elektrische Glühlampen mbH Flache Beleuchtungsvorrichtung mit Spiegelfläche

Also Published As

Publication number Publication date
RU2070755C1 (ru) 1996-12-20
DE69014098D1 (de) 1994-12-15
AU4947490A (en) 1990-09-05
WO1990009676A1 (en) 1990-08-23
GB8903118D0 (en) 1989-03-30
EP0456656B1 (de) 1994-11-09
DE69014098T2 (de) 1995-03-16
JPH04503281A (ja) 1992-06-11

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