CN103972027B - Field emission lamp bar - Google Patents

Field emission lamp bar Download PDF

Info

Publication number
CN103972027B
CN103972027B CN201310032143.6A CN201310032143A CN103972027B CN 103972027 B CN103972027 B CN 103972027B CN 201310032143 A CN201310032143 A CN 201310032143A CN 103972027 B CN103972027 B CN 103972027B
Authority
CN
China
Prior art keywords
field emission
illuminant module
lamp bar
stopper section
emission illuminant
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.)
Expired - Fee Related
Application number
CN201310032143.6A
Other languages
Chinese (zh)
Other versions
CN103972027A (en
Inventor
周明杰
梁艳馨
吴康锋
陈贵堂
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.)
Oceans King Lighting Science and Technology Co Ltd
Shenzhen Oceans King Lighting Engineering Co Ltd
Original Assignee
Oceans King Lighting Science and Technology Co Ltd
Shenzhen Oceans King Lighting Engineering Co Ltd
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 Oceans King Lighting Science and Technology Co Ltd, Shenzhen Oceans King Lighting Engineering Co Ltd filed Critical Oceans King Lighting Science and Technology Co Ltd
Priority to CN201310032143.6A priority Critical patent/CN103972027B/en
Publication of CN103972027A publication Critical patent/CN103972027A/en
Application granted granted Critical
Publication of CN103972027B publication Critical patent/CN103972027B/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Abstract

A kind of field emission lamp bar, including multiple field emission illuminant modules being socketed successively, each field emission illuminant module is tube structure, and is formed by winding of webs;Thin slice includes conductive anode stacked together and conductive cathode;Conductive cathode includes first substrate, be located on first substrate surface the first conducting film and the nanoelectronic emitter being formed on the first conducting film;Conductive anode includes second substrate, is located at the second substrate the second conducting film on the surface of conductive cathode, and the surface of the second conducting film is coated with phosphor powder layer;The opening of adjacent two field emission illuminant modules in multiple field emission illuminant modules is respectively equipped with stopper section and lower stopper section, makes adjacent two field emission illuminant modules mutually slidably not fall off.The field emission illuminant module of above-mentioned field emission lamp bar is folded up, and saves transport space and storage difficulty;Further, can freely stretch along horizontal direction, a bigger lamp bar of light-emitting area can be obtained.

Description

Field emission lamp bar
[technical field]
The present invention relates to a kind of lamp bar, particularly relate to a kind of can the field emission lamp bar that shrinks of level.
[background technology]
Field emission light source (Fieldemissionlightsource) is a kind of emerging light source, its principle of luminosity is to import high voltage to produce electric field in emission electrode with the vacuum belt received in the middle of electrode, make the electron emitter such as metal tip, CNT at low potential launch electronics, bombard the luminescent material at high potential and send visible ray.Field emission light source energy-saving and environmental protection, the potentiality of substituted fluorescent tube.Again because of advantages such as its apparatus structure is simple, brightness is high, visual angle width, light efficiency height, power saving, easy planarization and maximizations, the most gradually it is widely used in decoration, illuminates or indicate in the light-source systems such as use.
Feds, in order to reach certain brightness, needs have certain light-emitting area.The biggest light-emitting area is the highest for the requirement of technology of preparing, and at present, the uniformity of luminance of large-area field emission light source still has much room for improvement, and the problem of performance degradation also has to be solved.It addition, large-area feds solidity architectural feature limits not readily portable and transport.
[summary of the invention]
In view of above-mentioned condition, it is necessary to provide a kind of can the field emission lamp bar of horizontal extension, this field emission lamp bar has bigger light-emitting area after launching, and can save cost of transportation, reduces transport difficulty.
A kind of field emission lamp bar, including multiple field emission illuminant modules being socketed successively, each described field emission illuminant module is tube structure, and is formed by winding of webs, and the thickness of described thin film is less than or equal to 1 millimeter, and described thin slice is field emission structure;
Described thin slice includes conductive anode stacked together and conductive cathode;Described conductive cathode and described conductive anode interval are oppositely arranged, and the mating shapes of shape and described conductive anode;
Described conductive cathode includes first substrate, the first conducting film being located on described first substrate surface and is formed at the nanoelectronic emitter on described first conducting film;
Described conductive anode includes second substrate, is located at the described second substrate the second conducting film on the surface of described conductive cathode, it is coated with phosphor powder layer on the surface of described second conducting film, described nanoelectronic emitter electric field action between described conductive anode and described conductive cathode issues radio, makes phosphor powder layer described in electron bombardment produce visible ray;
Wherein, the opening of adjacent two field emission illuminant modules in the plurality of field emission illuminant module is respectively equipped with stopper section and lower stopper section, described upper stopper section can mutually be hooked together with described lower stopper section, makes described adjacent two field emission illuminant modules mutually slidably not fall off.
Above-mentioned field emission lamp bar is by the most nested up for the field emission illuminant module of the tubular of multiple size increments; each field emission illuminant module freely can stretch along horizontal direction; field emission illuminant module is respectively arranged with upper and lower stopper, protects each field emission illuminant module to be unlikely to come off the when of stretching respectively.When field emission lamp bar is closed, field emission illuminant module is folded up, and saves transport space and storage difficulty;When field emission lamp bar is opened, field emission illuminant module freely can stretch along horizontal direction, after each field emission illuminant module is sufficiently spread out, can obtain a bigger field emission lamp bar of light-emitting area.
Wherein in an embodiment, the field emission illuminant module at the two ends being positioned at described field emission lamp bar is one end open, the tube structure of one end closing, it is provided with described upper stopper section outside the opening of the field emission illuminant module that one of them opening size is less, outside the opening of the field emission illuminant module that another one opening size is bigger, is provided with described lower stopper section;Being positioned at the field emission illuminant module in the middle part of described field emission lamp bar to be outside the tube structure of both ends open, and one of them opening of each described field emission illuminant module and be provided with described upper stopper section, the inner side of another opening is provided with lower stopper section.
Wherein in an embodiment, the plurality of field emission illuminant module is the tube structure of both ends open, and being provided with described upper stopper section outside one of them opening of each described field emission illuminant module, the inner side of another opening is provided with described lower stopper section.
Wherein in an embodiment, described field emission illuminant module is rectangular cylinder, and to form the cross section field emission lamp bar as rectangle, or described field emission illuminant module is circular cylinder body, to form cross section for circular field emission lamp bar.
Wherein in an embodiment, described first substrate and second substrate are transparency glass plate, and described first conducting film and the second conducting film are ito film, and described nanoelectronic emitter is zinc oxide nano rod.
Wherein in an embodiment, described first substrate and second substrate are transparency glass plate, and described first conducting film is aluminium film, and described second conducting film is ito film, and described nanoelectronic emitter is CNT.
Wherein in an embodiment, described upper stopper section is the opening inner side baffle plate of a week around described field emission illuminant module;Described lower stopper section is the open outer side baffle plate of a week around described field emission illuminant module.
Wherein in an embodiment, described upper stopper section is the opening inner side baffle plate of a week being located at described field emission illuminant module;Described lower stopper section is the stopper posts of the open outer side being located at described field emission illuminant module.
Wherein in an embodiment, the phosphor powder layer of the plurality of field emission illuminant module is Red phosphor layer, blue phosphor layer or green phosphor layer, after making the plurality of field emission illuminant module launch, forms monochromatic field emission lamp bar.
Wherein in an embodiment, the color of the phosphor powder layer of the plurality of field emission illuminant module differs, and after making the plurality of field emission illuminant module launch, forms the field emission lamp bar of polychrome.
[accompanying drawing explanation]
Fig. 1 (a) and 1 (b) are the exploded view of the field emission lamp bar of embodiment of the present invention one;
Fig. 2 is the state diagram after the field emission lamp bar shown in Fig. 1 shrinks;
Fig. 3 is the sectional view after the field emission lamp bar shown in Fig. 2 shrinks;
Fig. 4 is the sectional view after the field emission lamp bar shown in Fig. 1 launches;
Fig. 5 is the axonometric chart after the field emission lamp bar shown in Fig. 1 launches;
Fig. 6 is the state diagram after the field emission lamp bar expansion of embodiment of the present invention two.
[detailed description of the invention]
For the ease of understanding the present invention, below with reference to relevant drawings, the present invention is described more fully.Accompanying drawing gives the preferred embodiment of the present invention.But, the present invention can realize in many different forms, however it is not limited to embodiment described herein.On the contrary, providing the purpose of these embodiments is to make the understanding to the disclosure more thorough comprehensively.
It should be noted that be referred to as " being fixed on " another element when element, it can be directly on another element or can also there is element placed in the middle.When an element is considered as " connection " another element, and it can be directly to another element or may be simultaneously present centering elements.Term as used herein " vertical ", " level ", "left", "right" and similar statement are for illustrative purposes only.
Unless otherwise defined, all of technology used herein is identical with the implication that the those skilled in the art belonging to the present invention are generally understood that with scientific terminology.The term used the most in the description of the invention is intended merely to describe the purpose of specific embodiment, it is not intended that in limiting the present invention.Term as used herein " and/or " include the arbitrary and all of combination of one or more relevant Listed Items.
The field emission lamp bar of embodiment of the present invention, including multiple field emission illuminant modules being socketed successively.Each field emission illuminant module is tube structure, and is formed by winding of webs, and the thickness of thin film is less than or equal to 1 millimeter, and thin slice is field emission structure.Such as, field emission illuminant module is rectangular cylinder, and to form the cross section field emission lamp bar as rectangle, or field emission illuminant module is circular cylinder body, to form cross section for circular field emission lamp bar.
Thin slice includes conductive anode stacked together and conductive cathode.Conductive cathode and conductive anode interval are oppositely arranged, and the mating shapes of shape and conductive anode.
Conductive cathode includes first substrate, be located on first substrate surface the first conducting film and the nanoelectronic emitter being formed on the first conducting film.Conductive anode includes second substrate, is located at the second substrate the second conducting film on the surface of conductive cathode, it is coated with phosphor powder layer on the surface of the second conducting film, nanoelectronic emitter electric field action between conductive anode and conductive cathode issues radio, makes electron bombardment phosphor powder layer produce visible ray.
Such as, first substrate and second substrate can be all that transparency glass plate, the first conducting film and the second conducting film are ito film, and nanoelectronic emitter is zinc oxide nano rod.Or, first substrate and second substrate can be all transparency glass plate, and the first conducting film can be aluminium film, and the second conducting film can be ito film, and nanoelectronic emitter is CNT.
Wherein, the opening of adjacent two field emission illuminant modules in multiple field emission illuminant modules is respectively equipped with stopper section and lower stopper section, upper stopper section can mutually be hooked together with lower stopper section, makes adjacent two field emission illuminant modules mutually slidably not fall off.Such as, the field emission illuminant module at the two ends being positioned at field emission lamp bar is one end open, the tube structure of one end closing, it is provided with stopper section outside the opening of the field emission illuminant module that one of them opening size is less, outside the opening of the field emission illuminant module that another one opening size is bigger, is provided with lower stopper section;Being positioned at the field emission illuminant module in the middle part of field emission lamp bar to be outside the tube structure of both ends open, and one of them opening of each field emission illuminant module and be provided with stopper section, the inner side of another opening is provided with lower stopper section.
Or, multiple field emission illuminant modules are outside the tube structure of both ends open, and one of them opening of each field emission illuminant module and are provided with stopper section, and the inner side of another opening is provided with lower stopper section.
It should be noted that the structure of upper stopper section and lower stopper section in the present invention can be unrestricted, it can be arranged as the case may be, and such as, upper stopper section can be the opening inner side baffle plate of a week around field emission illuminant module;Lower stopper section can be the open outer side baffle plate of a week around field emission illuminant module.
Or, upper stopper section can be the opening inner side baffle plate of a week being located at field emission illuminant module;Lower stopper section can be the stopper posts of the open outer side being located at field emission illuminant module.
It addition, the phosphor powder layer of multiple field emission illuminant modules is Red phosphor layer, blue phosphor layer or green phosphor layer, after making multiple field emission illuminant module launch, form monochromatic field emission lamp bar.
Or, the color of the phosphor powder layer of multiple field emission illuminant modules differs, and after making multiple field emission illuminant module launch, forms the field emission lamp bar of polychrome.
Above-mentioned field emission lamp bar is by the most nested up for the field emission illuminant module of the tubular of multiple size increments; each field emission illuminant module freely can stretch along horizontal direction; field emission illuminant module is respectively arranged with upper and lower stopper, protects each field emission illuminant module to be unlikely to come off the when of stretching respectively.When field emission lamp bar is closed, field emission illuminant module is folded up, and saves transport space and storage difficulty;When field emission lamp bar is opened, field emission illuminant module freely can stretch along horizontal direction, after each field emission illuminant module is sufficiently spread out, can obtain a bigger field emission lamp bar of light-emitting area.
The concrete structure of above-mentioned field emission lamp is described below in conjunction with different embodiments.
Embodiment 1
Refer to Fig. 1 to Fig. 5, the present embodiment provide a kind of cross section be rectangle, can the field emission lamp bar 100 of horizontal extension, this field emission lamp bar 100 includes multiple field emission illuminant module 101 being socketed successively.
Field emission illuminant module 101 is rectangular cylinder structure, and it is formed by winding of webs, and the thickness of this thin slice is 0.5 millimeter.Field emission illuminant module 101 includes a conductive cathode and a conductive anode.Conductive cathode includes first substrate, is coated with the first conducting film on the first substrate and the nanoelectronic emitter being grown on the first conducting film.First substrate is transparency glass plate, and the first conducting film is ito film, and nanoelectronic emitter is zinc oxide nano rod.Conductive anode and conductive cathode relative spacing are arranged, and the mating shapes of shape and conductive cathode.Conductive anode includes a second substrate and is located at the second substrate the second conducting film on the surface of conductive cathode.Second substrate is transparent glass substrate, and the second conducting film is ito film.Being coated with phosphor powder layer on second conducting film, phosphor powder layer can be Red phosphor layer, blue phosphor layer or green-emitting fluorescent bisque.When applying high pressure on conductive anode and conductive cathode, electronics launched under the effect of highfield by nanoelectronic emitter, and bombardment is in the photoluminescent phosphor layer at high potential.
The length of side of each field emission illuminant module 101 is increasing trend, i.e. the length of side of a field emission illuminant module 101 in outside need to make multiple field emission illuminant module 101 can be the most nested up more than the length of side of one field emission illuminant module 101 in inner side.Be in one end of field emission lamp bar 100, the field emission illuminant module 101 of length of side minimum has an opening, and upper stopper section 101a is to be located at outside opening and around four limits baffle plate of a week, and remaining surface all can be luminous.Be in field emission lamp bar 100 other end, the field emission illuminant module 101 of length of side maximum has an opening.Lower stopper section 101b is for being located at inside opening, and around four limits overhead gage of a week, remaining surface all can be luminous.Being in the field emission illuminant module 101 in the middle part of field emission lamp bar 100 and have several, each field emission illuminant module 101 has two openings, and upper and lower opening end is respectively equipped with stopper section 101a, lower stop portion 101b, and remaining surface all can be luminous.Field emission illuminant module 101 is the most nested up according to size.Each field emission illuminant module 101 can the most freely stretch, and the stopper section 101a of each field emission illuminant module 101, lower stop portion 101b can protect each field emission illuminant module 101 to be unlikely to come off the when of stretching respectively, plays the fixing and effect of protection.
When field emission lamp bar 100 is closed, multiple field emission illuminant modules 101 can be folded up successively, saves transport space and storage difficulty;When field emission lamp bar 100 is opened, multiple field emission illuminant modules 101 can the most freely stretch, and after each field emission illuminant module 101 is sufficiently spread out, can obtain a bigger field emission lamp bar of light-emitting area.
Embodiment 2
Refer to Fig. 6, present embodiments provide a kind of cross section be circular, can the field emission lamp bar 200 of horizontal extension, this field emission lamp bar 200 includes multiple field emission illuminant module 201.
Field emission illuminant module 201 is circular tube structure, and is formed by winding of webs, and the thickness of this thin slice is 1 millimeter.Field emission illuminant module 201 includes a conductive cathode and a conductive anode.Conductive cathode includes first substrate, is coated with the first conducting film on the first substrate and the nanoelectronic emitter being grown on the first conducting film.First substrate is transparency glass plate, and the first conducting film is aluminium film, and nanoelectronic emitter is CNT.Conductive anode and conductive cathode interval are oppositely arranged, and the form fit of shape and conductive cathode.Conductive anode includes a second substrate and is located on the second substrate the second conducting film on the surface of conductive cathode, and the second conducting film is coated with phosphor powder layer.Second substrate is transparency glass plate, and the second conducting film is ito film.When applying high pressure on conductive anode and conductive cathode, nanoelectronic emitter launches electronics under the effect of highfield, and electron bombardment is in the phosphor powder layer at high potential and luminous.
The radius of each field emission illuminant module 201 is increasing trend, i.e. the radius of a field emission illuminant module 201 in outside need to make multiple field emission illuminant module 201 can be the most nested up more than the radius of one field emission illuminant module 201 in inner side.The field emission illuminant module 201 being in one end of field emission lamp bar 200, radius minimum has an opening, and upper stopper section is to be located at the outside of opening and around the baffle plate of a week, and remaining surface all can be luminous.The field emission illuminant module 201 being in the other end of field emission lamp bar 200, radius maximum has an opening, and lower stopper section is to be located at inside opening and around the baffle plate of a week, remaining surface all can be luminous.Being in the field emission illuminant module 201 in the middle part of field emission lamp bar 200 and have several, each field emission illuminant module 201 has two openings, and upper and lower opening end is respectively provided with stopper section and lower stop portion, and remaining surface all can be luminous.Field emission illuminant module 201 is the most nested up according to radius size.Each field emission illuminant module 201 can the most freely stretch, and the upper stopper section of each field emission illuminant module 201 and lower stopper section can protect each field emission illuminant module 201 to be unlikely to come off the when of stretching respectively, plays the fixing and effect of protection.
When field emission lamp bar 200 is closed, field emission illuminant module 201 is folded up, and saves transport space and storage difficulty;When field emission lamp bar 200 is opened, field emission illuminant module 201 can the most freely stretch, if the fluorescent material color of coating is inconsistent on each field emission illuminant module 201, then after each field emission illuminant module 201 is sufficiently spread out, can obtain one photochromic abundant, light-emitting area is bigger field emission lamp bar.
Embodiment described above only have expressed the several embodiments of the present invention, and it describes more concrete and detailed, but therefore can not be interpreted as the restriction to the scope of the claims of the present invention.It should be pointed out that, for the person of ordinary skill of the art, without departing from the inventive concept of the premise, it is also possible to make some deformation and improvement, these broadly fall into protection scope of the present invention.Therefore, the protection domain of patent of the present invention should be as the criterion with claims.

Claims (10)

1. a field emission lamp bar, it is characterised in that include multiple field emission illuminant module being socketed successively, each described field emission illuminant module is tube structure, and being formed by winding of webs, the thickness of described thin slice is less than or equal to 1 millimeter, and described thin slice is field emission structure;
Described thin slice includes conductive anode stacked together and conductive cathode;Described conductive cathode and described conductive anode interval are oppositely arranged, and the mating shapes of shape and described conductive anode;
Described conductive cathode includes first substrate, the first conducting film being located on described first substrate surface and is formed at the nanoelectronic emitter on described first conducting film;
Described conductive anode includes second substrate, is located at the described second substrate the second conducting film on the surface of described conductive cathode, it is coated with phosphor powder layer on the surface of described second conducting film, described nanoelectronic emitter electric field action between described conductive anode and described conductive cathode issues radio, makes phosphor powder layer described in electron bombardment produce visible ray;
Wherein, the opening of adjacent two field emission illuminant modules in the plurality of field emission illuminant module is respectively equipped with stopper section and lower stopper section, described upper stopper section can mutually be hooked together with described lower stopper section, makes described adjacent two field emission illuminant modules mutually slidably not fall off.
2. field emission lamp bar as claimed in claim 1, it is characterized in that, the field emission illuminant module at the two ends being positioned at described field emission lamp bar is one end open, the tube structure of one end closing, it is provided with described upper stopper section outside the opening of the field emission illuminant module that one of them opening size is less, outside the opening of the field emission illuminant module that another one opening size is bigger, is provided with described lower stopper section;Being positioned at the field emission illuminant module in the middle part of described field emission lamp bar to be outside the tube structure of both ends open, and one of them opening of each described field emission illuminant module and be provided with described upper stopper section, the inner side of another opening is provided with lower stopper section.
3. field emission lamp bar as claimed in claim 1, it is characterized in that, the plurality of field emission illuminant module is the tube structure of both ends open, and being provided with described upper stopper section outside one of them opening of each described field emission illuminant module, the inner side of another opening is provided with described lower stopper section.
4. field emission lamp bar as claimed in claim 1, it is characterized in that, described field emission illuminant module is rectangular cylinder, to form the cross section field emission lamp bar as rectangle, or described field emission illuminant module is circular cylinder body, to form cross section for circular field emission lamp bar.
5. field emission lamp bar as claimed in claim 1, it is characterised in that described first substrate and second substrate are transparency glass plate, and described first conducting film and the second conducting film are ito film, and described nanoelectronic emitter is zinc oxide nano rod.
6. field emission lamp bar as claimed in claim 1, it is characterised in that described first substrate and second substrate are transparency glass plate, and described first conducting film is aluminium film, and described second conducting film is ito film, and described nanoelectronic emitter is CNT.
7. field emission lamp bar as claimed in claim 1, it is characterised in that described upper stopper section is the opening inner side baffle plate of a week around described field emission illuminant module;Described lower stopper section is the open outer side baffle plate of a week around described field emission illuminant module.
8. field emission lamp bar as claimed in claim 1, it is characterised in that described upper stopper section is the opening inner side baffle plate of a week being located at described field emission illuminant module;Described lower stopper section is the stopper posts of the open outer side being located at described field emission illuminant module.
9. field emission lamp bar as claimed in claim 1, it is characterized in that, the phosphor powder layer of the plurality of field emission illuminant module is Red phosphor layer, blue phosphor layer or green phosphor layer, after making the plurality of field emission illuminant module launch, forms monochromatic field emission lamp bar.
10. field emission lamp bar as claimed in claim 1, it is characterised in that the color of the phosphor powder layer of the plurality of field emission illuminant module differs, after making the plurality of field emission illuminant module launch, forms the field emission lamp bar of polychrome.
CN201310032143.6A 2013-01-28 2013-01-28 Field emission lamp bar Expired - Fee Related CN103972027B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201310032143.6A CN103972027B (en) 2013-01-28 2013-01-28 Field emission lamp bar

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201310032143.6A CN103972027B (en) 2013-01-28 2013-01-28 Field emission lamp bar

Publications (2)

Publication Number Publication Date
CN103972027A CN103972027A (en) 2014-08-06
CN103972027B true CN103972027B (en) 2016-08-03

Family

ID=51241396

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201310032143.6A Expired - Fee Related CN103972027B (en) 2013-01-28 2013-01-28 Field emission lamp bar

Country Status (1)

Country Link
CN (1) CN103972027B (en)

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101101847A (en) * 2006-07-05 2008-01-09 清华大学 Double surface luminous field emission pixel tube
CN101383264A (en) * 2007-09-07 2009-03-11 清华大学 Field emission light source
CN102403188A (en) * 2010-09-08 2012-04-04 海洋王照明科技股份有限公司 Field emission plane light source and preparation method thereof
EP2535919A1 (en) * 2011-06-17 2012-12-19 Samsung Electronics Co., Ltd. Field emission panel, liquid crystal display and field emission display having the same

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR100981996B1 (en) * 2004-02-05 2010-09-13 삼성에스디아이 주식회사 Field emission backlight device
JP2006244859A (en) * 2005-03-03 2006-09-14 Toyota Motor Corp Field electron emission type lamp
JP4750576B2 (en) * 2006-02-22 2011-08-17 株式会社ピュアロンジャパン Field emission light source
JP2012084475A (en) * 2010-10-14 2012-04-26 Kochi Fel Kk Field emission type light source

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101101847A (en) * 2006-07-05 2008-01-09 清华大学 Double surface luminous field emission pixel tube
CN101383264A (en) * 2007-09-07 2009-03-11 清华大学 Field emission light source
CN102403188A (en) * 2010-09-08 2012-04-04 海洋王照明科技股份有限公司 Field emission plane light source and preparation method thereof
EP2535919A1 (en) * 2011-06-17 2012-12-19 Samsung Electronics Co., Ltd. Field emission panel, liquid crystal display and field emission display having the same

Also Published As

Publication number Publication date
CN103972027A (en) 2014-08-06

Similar Documents

Publication Publication Date Title
CN103885227B (en) For fixing device and the display of the quantum bar of display
EP2175505A3 (en) Organic electroluminescent display apparatus
CN106158914A (en) OLED array and preparation method thereof, OLED display panel
CN101034232A (en) Back lighting module and lighting device thereof
US8952407B2 (en) Lighting device
CN103972027B (en) Field emission lamp bar
CN103972029B (en) Field emission lamp bar
US8110979B2 (en) Inorganic electroluminescence device, display apparatus having the same and method thereof
US8692450B2 (en) Surface light source apparatus with dual-side emitting light
CN205609531U (en) Organic light emitting diode display
TWM540397U (en) Cathode of transparent organic light emitting diode
CN104075147B (en) Oled lamp
CN103591480B (en) Light emitting diode illuminating apparatus
CN101819915A (en) Split joint type large-area field emission planar light source
US8247960B2 (en) 3-dimension facet light-emitting source device and stereoscopic light-emitting source device
CN104712922B (en) Organic light-emitting diode illuminator
CN103972028A (en) Field emission lamp
CN103972023A (en) Field emission lamp
CN103811273A (en) Field-emission underground lamp
KR100773152B1 (en) Field-emission lamp using CN-based material
CN103972038A (en) Field emission lamp
CN103972026B (en) Light source assembly and comprise the light fixture of this light source assembly
CN104078306A (en) Field emission lamp
TW200710910A (en) Anode device and field emission display
CN104078317A (en) Field emission folding lamp

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20160803

Termination date: 20190128