CN201560316U - Embroidered fabric with backlighting - Google Patents
Embroidered fabric with backlighting Download PDFInfo
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- CN201560316U CN201560316U CN2009201835648U CN200920183564U CN201560316U CN 201560316 U CN201560316 U CN 201560316U CN 2009201835648 U CN2009201835648 U CN 2009201835648U CN 200920183564 U CN200920183564 U CN 200920183564U CN 201560316 U CN201560316 U CN 201560316U
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- optical fiber
- embroidery
- light
- layer
- fiber braid
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- 239000004744 fabric Substances 0.000 title claims abstract description 47
- 239000013307 optical fiber Substances 0.000 claims abstract description 143
- 238000009954 braiding Methods 0.000 claims abstract description 6
- 239000010410 layer Substances 0.000 claims description 112
- 239000011241 protective layer Substances 0.000 claims description 17
- 238000003306 harvesting Methods 0.000 claims description 7
- 230000015572 biosynthetic process Effects 0.000 claims description 6
- 230000000977 initiatory effect Effects 0.000 claims description 5
- 238000009956 embroidering Methods 0.000 abstract description 25
- 230000000694 effects Effects 0.000 abstract description 22
- 230000005540 biological transmission Effects 0.000 abstract description 11
- 238000009941 weaving Methods 0.000 abstract description 4
- 239000003086 colorant Substances 0.000 abstract description 2
- 239000000835 fiber Substances 0.000 description 19
- 238000002834 transmittance Methods 0.000 description 9
- 239000004033 plastic Substances 0.000 description 8
- 230000004224 protection Effects 0.000 description 8
- 238000005516 engineering process Methods 0.000 description 3
- 238000005286 illumination Methods 0.000 description 2
- 230000008520 organization Effects 0.000 description 2
- 239000002985 plastic film Substances 0.000 description 2
- 229920006255 plastic film Polymers 0.000 description 2
- 239000000126 substance Substances 0.000 description 2
- 201000009310 astigmatism Diseases 0.000 description 1
- 230000007613 environmental effect Effects 0.000 description 1
- 235000021472 generally recognized as safe Nutrition 0.000 description 1
- 238000009940 knitting Methods 0.000 description 1
- 238000004020 luminiscence type Methods 0.000 description 1
- 239000000463 material Substances 0.000 description 1
- 238000000034 method Methods 0.000 description 1
- 230000003287 optical effect Effects 0.000 description 1
- 230000002250 progressing effect Effects 0.000 description 1
- 230000001105 regulatory effect Effects 0.000 description 1
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Abstract
The utility model relates to an embroidery fabric with be shaded, including: an optical fiber braid layer, which is formed by braiding a plurality of optical fibers; a light-emitting element located adjacent to the light-collecting end of the optical fiber braid; a power supply unit electrically connected to the light emitting element; the embroidery layer is attached to the optical fiber braided layer and is formed by embroidering an embroidery thread on the optical fiber braided layer; the optical fiber backlight control device comprises an optical fiber braided layer, a light-emitting element and an embroidery layer attached to the optical fiber braided layer, wherein the optical fiber braided layer is formed by weaving optical fibers, the embroidery layer is attached to the optical fiber braided layer, specific color light emitted by the optical fiber braided layer is irradiated on the embroidery layer through the power supply of a power supply unit and the control of a switch and a control unit, so that the embroidery thread of the embroidery layer is subjected to the light transmission effect, the control of parameters such as the light and light combination change, the duration control, the light and shade gradient mode, the light expression of various colors and the like of the.
Description
Technical field
The relevant a kind of embroidery fabric of the utility model is meant a kind of embroidery fabric backlight that has in conjunction with optical fiber braid, light-emitting component, power supply unit and embroidery layer especially.
Background technology
Commonly use the optical fiber fabric, be the characteristics of luminescence of utilizing optical fiber, to be applied on the various article, only it lacks the fine and smooth expressivity of ability of regulation and control and the abundant colors output and the shade of grey on processing variation backlight, on whole optical fiber output usefulness backlight, seem restricted and present dullness.
" the light-emitting caution vest of tool fiber optic fibers, plastic " that the TaiWan, China patent announcement is number M255662 number, light-emitting caution vest for a kind of tool fiber optic fibers, plastic, mainly be that the vest structure sheaf comprises: the upper strata is that plastic film layer, intermediate layer are formed by netted weaving layer for containing fiber optic fibers, plastic weaving layer and bottom, and the braid in its intermediate layer has following braided structure: (1) warp-wise is that fiber optic fibers, plastic and broadwise are weaved formation by fiber optic fibers, plastic.(2) broadwise is that chemical fibre yarn and warp-wise are weaved formation by fiber optic fibers, plastic.(3) warp-wise is that chemical fibre yarn and broadwise are weaved formation by fiber optic fibers, plastic.Above-mentioned three-decker is distributed in the vest appropriate location, its upper strata plastic film layer by font or pattern as fiber optic fibers, plastic astigmatism position, and connect power supply and make astigmatic position have the effect of light-emitting caution, make product of the present utility model can be used in traffic police's dress ornament, environmental protection dress ornament and save dress ornament from damage or the light-emitting caution vest of general dress ornament.
The above-mentioned shortcoming of commonly using the maximum of optical fiber fabric is:
Its purposes is confined to light-emitting caution vest or Generally Recognized as safe vest, and it is backlight and transmission effects is dull, the parameters such as light on and off combination variation, duration control, light and shade gradual-change mode and coloured light performance that lack optical fiber are regulated and control the effect of enriching that is showed down, the embroidery line printing opacity special effect of more not having embroidery presents, and output performance backlight is obviously not enough.
The luminous fabric device that the TaiWan, China patent announcement is number M271165 number, at least comprise an optical fiber fabric, at least one occulter, at least one light source and a power supply, above-mentioned optical fiber fabric has the periphery that a pattern district and at least one receipts border area are positioned at the pattern district, and occulter envelopes the optical fiber fabric that is positioned at the receipts border area, light source is arranged on the terminal rear side of optical fiber fabric, wherein this occulter places the also end and the light source of clad optical fiber fabric, and in addition, power supply and light source electrically connect.
The shortcoming of the maximum of above-mentioned optical fiber fabric is:
The performance of the light in pattern district shows slightly the special shadow performance that the dull and same embroidery line that lacks embroidery is had, and in the level variation of the regulation and control of coloured light and light and shade, all lacks fresh and alive output performance.
The utility model content
The purpose of this utility model is to provide a kind of embroidery fabric backlight that has, and penetrates in the embroidery layer by the optical fiber braid being sent special color illumination, makes the transmission effect of embroidery layer through the optical fiber braid, produces preferable effect backlight.
For achieving the above object, the technical solution of the utility model is:
A kind of have an embroidery fabric backlight, and it includes: an optical fiber braid is to be formed by several optical fiber braidings, and this optical fiber comprises top together, and this optical fiber braid has at least the initiating terminal of local optical fiber to compile to form a light harvesting Shu Duan; One light-emitting component is positioned at the light harvesting bundle end place that is close to this optical fiber braid; One power supply unit electrically connects this light-emitting component; One embroidery layer is attached to the optical fiber braid, and this embroidery layer is to be embroidered by an embroidery line to be formed in the optical fiber braid.
This optical fiber braid comprises a bottom surface, and a bottom is attached to the bottom surface of this optical fiber braid, and this embroidery line is to embroider in optical fiber braid and bottom.
Further be provided with a reflecting layer between this bottom and the optical fiber braid, this reflecting layer has a reflecting surface, and this reflecting surface is towards this optical fiber braid.
This optical fiber braid comprises a surface, and the surface attachment of this optical fiber braid has one to have the light non-transmittable layers in hollow out zone, and this embroidery line is embroidered in this optical fiber braid and this light non-transmittable layers.
Further include a transparent protective layer between this optical fiber braid and this light non-transmittable layers, this embroidery line is embroidered in this optical fiber braid, this light non-transmittable layers and this protective layer.
The embroidery line of this embroidery layer is a fluorescent line or a dyed wire rod.
This embroidery layer is full real structure or the profile embroidery structure of embroidering of an embroidery.
One switch, this switch are electrically connected at this power supply unit and this light-emitting component.
One control module, this control module are electrically connected at this power supply unit and this light-emitting component, and this control module includes an on-off circuit, a shade control circuit and a light-emitting mode control circuit at least.
Adopt such scheme, the utlity model has following characteristics:
1. through the parameters such as light on and off combination variation, duration control, light and shade gradual-change mode and coloured light performance of regulation and control optical fiber, can show abundant effect backlight.
By the knitting compactedness of the embroidery line of control embroidery to change light transmission, make embroidery under the collocation of optical fiber, present special effect backlight.
3. the special shadow performance of unique embroidery can be filled part and be represented fresh and alive output performance, has the sense of traditional art aesthetic feeling and modern trend science and technology concurrently.
4. range of application of the present utility model is extremely wide, the commercial value height, and development technique level and production cost are all low, and the benefit of economic aspect is quite big.
Description of drawings
Fig. 1 is a structural representation of the present utility model;
Fig. 2 is the real structure cutaway view of embroidering the embroidery layer of optical fiber braid of the present utility model;
Fig. 3 is an optical fiber braid profile embroidery layer structure outside drawing of the present utility model;
Fig. 4 is the structure cutaway view of optical fiber braid profile embroidery layer of the present utility model;
Fig. 5 is a back light electric-control system Organization Chart of the present utility model;
Fig. 6 is the superimposed relative position sequential schematic of each structure sheaf of the present utility model;
Fig. 7 adheres to the structure cutaway view of bottom for optical fiber braid of the present utility model;
Fig. 8 adheres to light non-transmittable layers structure cutaway view for optical fiber braid of the present utility model;
Fig. 9 adheres to light non-transmittable layers and protective layer structure cutaway view for optical fiber braid of the present utility model;
Figure 10 is the first example structure schematic appearance of the present utility model;
Figure 11 is the second example structure schematic appearance of the present utility model;
Figure 12 is the 3rd an example structure schematic appearance of the present utility model;
Figure 13 is the 4th an example structure schematic appearance of the present utility model;
Figure 14 is the 5th an example structure schematic appearance of the present utility model;
Figure 15 is the 6th an example structure schematic appearance of the present utility model;
Figure 16 is the 7th an example structure schematic appearance of the present utility model;
Figure 17 is the 8th an example structure schematic appearance of the present utility model;
Figure 18 is the 9th an example structure schematic appearance of the present utility model.
The main element symbol description
1 optical fiber braid, 11 surperficial 12 bottom surfaces
13 optical fiber, 131 light harvesting bundle ends, 2 light-emitting components
3 power supply units, 4 embroidery layers 41 are embroidered line
5 bottoms, 6 reflecting layer, 61 reflectings surface
7 light non-transmittable layers, 71 hollow outs zone, 8 protective layers
9 switches, 10 control modules, 101 on-off circuits
102 coloured light control circuits, 103 light-emitting mode control circuits
Practical embodiment
As shown in Figure 1, be a kind of embroidery fabric backlight that has of the present utility model, include:
One optical fiber braid 1, form by most bar optical fiber 13 braidings, this optical fiber braid 1 includes 11 and one bottom surface 12 (seeing also Fig. 2 in addition), a surface, and optical fiber 13 comprises that an initiating terminal is (because this optical fiber 13 is thinner, the initiating terminal of optical fiber 13 does not give sign), this optical fiber braid 1 has at least the initiating terminal of the optical fiber 13 of part (being non-whole) to compile formation one light harvesting bundle end 131.
One light-emitting component 2 is positioned at the light harvesting bundle end 131 of above-mentioned optical fiber 13.
One power supply unit 3 electrically connects this light-emitting component 2.
One embroidery layer 4 is attached to optical fiber braid 1, and this embroidery layer 4 is to be embroidered by the embroidery line 41 of tool color to be formed one in optical fiber braid 1 and embroider full real embroidery structure, as shown in Figure 1 or profile embroidery structure (seeing also Fig. 3 in addition).
The embroidery line of above-mentioned embroidery layer is a fluorescent line or a dyed wire rod.
Above-mentioned have an embroidery fabric backlight, and it further includes a switch 9, and this switch 9 is electrically connected at power supply unit 3 and light-emitting component 2.
Above-mentioned have an embroidery fabric backlight, it further includes a control module 10, this control module 10 is electrically connected at power supply unit 3 and light-emitting component 2, and this control module 10 includes on-off circuit 101, coloured light control circuit 102 and light-emitting mode control circuit 103 at least.
Detailed electric-control system Organization Chart, (consult Fig. 1 simultaneously) as shown in Figure 5, light-emitting component 2 is according to the optical fiber braid 1 orthogonal trend of weaving, be divided into arrangement of warp-wise and broadwise and staggered continuous optical fiber 13, so light-emitting component 2 also is divided into warp-wise and broadwise two directions, the switch 9 that electrically connects with this two directions light-emitting component 2 respectively via the power supply of power supply unit 3, can be switching to respectively:
1. the optical fiber 13 of warp-wise has light, and the optical fiber 13 of broadwise is unglazed.
2. the optical fiber 13 of broadwise has light, and the optical fiber 13 of warp-wise is unglazed.
3. the optical fiber 13 of warp, broadwise all has light.
Change Deng the combination of three kinds of light beams, so that embroidery layer 4 produces different light transmission effects, and can produce different regulation and control parameters simultaneously and change, as coloured light and shading value etc. through, broadwise.
Can control the control parameters such as light on and off combination variation, duration control, light and shade gradual-change mode and coloured light performance of optical fiber simultaneously by on-off circuit 101, coloured light control circuit 102 and the light-emitting mode control circuit 103 etc. of control module 10, to change optical fiber 13 outputs backlight of optical fiber braid 1.
As shown in Figure 2, the real structure cutaway view of embroidering of optical fiber braid of the present utility model, wherein as the embroidery layer 4 of Fig. 1 on optical fiber braid 1, directly embroider by the embroidery line 41 of tool color and to be formed in optical fiber braid 1, that is the embroidery line 41 of embroidery layer 4 passes through the surface 11 and 12 of bottom surfaces of optical fiber braid 1, forms the real structure of embroidering, and this has the embroidery layer 4 of real embroidery structure, can be according to the different and different light transmission of each tool of the dense degree of embroidering 41 on line, show and have variability and three-dimensional effect backlight.
Shown in Fig. 3,4, be optical fiber braid profile embroidery layer structure outside drawing of the present utility model and cutaway view, wherein as the embroidery layer 4 of Fig. 1 on optical fiber braid 1, be directly to embroider by the embroidery line 41 of tool color to be formed in optical fiber braid 1, that is the embroidery line 41 of embroidery layer 4 passes through 12 of the surface 11 of optical fiber braid 1 and bottom surfaces, as Fig. 4, form profile and embroider structure, this has the embroidery layer 4 that profile is embroidered structure, can be according to the different and different light transmission of each tool of the dense degree of embroidering 41 on line, show and have variability and three-dimensional effect backlight; Embroider simultaneously line 41 (relatively dark portion) with respect to the hollow out position (relative highlights) of not embroidering, the brightness contrast effect in the output backlight of formation optical fiber 13 (seeing also Fig. 1 in addition).
As shown in Figure 6, be the superimposed relative position sequential schematic of each structure sheaf, except the optical fiber braid 1 and embroidery layer 4 of basic comprising, can add other each structure sheaf according to purposes in addition, wherein:
Have embroidery fabric backlight, it further includes a bottom 5, and this bottom 5 is the bottom surfaces 12 (seeing also Fig. 2,4 in addition) that are attached to this optical fiber braid 1; And further be provided with a reflecting layer 6 between this bottom 5 and the optical fiber braid 1, and this reflecting layer 6 has a reflecting surface 61, and this reflecting surface 61 is the bottom surfaces 12 (seeing also Fig. 2,4 in addition) towards this optical fiber braid 1.
The surface 11 of optical fiber braid 1 is attached with one and has the light non-transmittable layers 7 in hollow out zone 71; And further include a transparent protective layer 8 between this optical fiber braid 1 and the light non-transmittable layers 7.
The effect of each structure sheaf conclude and be summarized as follows (from top to bottom or by outer and in):
1. the embroidery layer 4: utilize the dense degree of embroidery line 41 embroidery or the difference of embroidery structure (the real structure/profile embroidery structure of embroidering), produce different transmissions and effect backlight.
2. light non-transmittable layers 7: different transmissions and effects backlight under the dense degree of the different embroidery of performance line 41 embroidery or the structure of embroidering (the real structure/profile embroidery structure of embroidering) are provided as embroidery layer 4 base material of directly embroidering or with the hollow out zone 71 that it was had.
3. protective layer 8: protection and the hollow out of light non-transmittable layers 7 regional 71 are corresponding and may produce the local optical fiber braid 1 that contacts with the outside, avoid the damage that causes because of external force factor.
4. the optical fiber braid 1: provide optical fiber 13 braidings of plural tool effect backlight to become stratiform, as light source basis backlight.
5. the reflecting layer 6: the purpose that reflecting layer 6 is provided with is to utilize backlight that its reflecting surface 61 mirror based fiber optica braids 1 are sent, and the brightness of optical fiber braid 1 is improved.
6. bottom 5: as the bottom protective layer of optical fiber braid 1, with protection optical fiber 13, or provide partly reflection to use the effect that improves brightness when not being provided with reflecting layer 6.
As shown in Figure 7; for optical fiber braid of the present utility model adheres to the fabric cutaway view; wherein; the embroidery line 41 of this embroidery layer 4 is to embroider on optical fiber braid 1 and bottom 5; form a real structure of embroidering; and bottom 5 is attached to the bottom surface 12 of optical fiber braid 1, forms the double-decker of a tool optical fiber braid 1 protection effect.
As shown in Figure 8, for optical fiber braid of the present utility model adheres to light non-transmittable layers structure cutaway view, wherein, the embroidery line 41 of this embroidery layer 4 be embroider in optical fiber braid 1 with have on the light non-transmittable layers 7 in hollow out zone 71, embroider line 41 along the 71 edges embroidery of hollow out zone, form a profile and embroider structure (seeing also Fig. 3,6 in addition), and light non-transmittable layers 7 is the surfaces 11 that are attached to optical fiber braid 1, form the double-decker of a tool light non-transmittable layers 7 transmissions and effect backlight.
As shown in Figure 9; for optical fiber braid of the present utility model adheres to light non-transmittable layers and protective layer structure cutaway view; wherein this three-decker is based on the double-decker of Fig. 8; between optical fiber braid 1 and hollow out zone 71 and on the corresponding position, set up a transparent protective layer 8; may produce the local optical fiber braid 1 that contacts with protection with outside, avoid the damage that causes because of external force factor.
Below each figure do combination with each structure sheaf shown in Figure 6 according to purposes to change, with the various different embodiment that derive.
As shown in figure 10, be the real bilayer embroidery fabric of embroidering structure of a tool, embroider on light non-transmittable layers 7 and optical fiber braid 1 to embroider line 41, and on light non-transmittable layers 7, form embroidery layer 4; The transmittance section of this bilayer embroidery fabric is for embroidering line 41 itself and gap each other.
As shown in figure 11, be the bilayer embroidery fabric that a tool profile is embroidered structure, embroider on light non-transmittable layers 7 and optical fiber braid 1 to embroider line 41, and on light non-transmittable layers 7, form the embroidery layer 4 that hollow out zone 71 edge contours are embroidered; The transmittance section of this bilayer embroidery fabric is for embroidering line 41 itself and gap and hollow out zone 71 each other.
As shown in figure 12, be the real three layers of embroidery fabric embroidering structure of a tool, embroider on light non-transmittable layers 7, reflecting layer 6 and optical fiber braid 1 to embroider line 41, and on light non-transmittable layers 7, form embroidery layer 4; The transmittance section of these three layers embroidery fabric is for embroidering line 41 itself and gap each other.
As shown in figure 13, be three layers of embroidery fabric that a tool profile is embroidered structure, embroider on light non-transmittable layers 7, optical fiber braid 1 and reflecting layer 6 to embroider line 41, and on light non-transmittable layers 7, form the embroidery layer 4 that hollow out zone 71 edge contours are embroidered; The transmittance section of these three layers embroidery fabric is for embroidering line 41 itself and gap and hollow out zone 71 each other.
As shown in figure 14, be three layers of embroidery fabric that a tool profile is embroidered structure, embroider on light non-transmittable layers 7, optical fiber braid 1 and bottom 5 to embroider line 41, and on light non-transmittable layers 7, form the embroidery layer 4 that hollow out zone 71 edge contours are embroidered; The transmittance section of these three layers embroidery fabric is for embroidering line 41 itself and gap and hollow out zone 71 each other.
As shown in figure 15, wherein this four-layer structure is the three-decker based on Figure 13, on the position in 7 of optical fiber braid 1 and light non-transmittable layers and corresponding hollow out zone 71, set up a transparent protective layer 8, and embroider to form embroidery layer 4 along 71 edges, hollow out zone to embroider line 41, may produce the local optical fiber braid 1 that contacts with protective layer 8 protections with outside, avoid the damage that causes because of external force factor; The transmittance section of these four layers embroidery fabric is for embroidering line 41 itself and gap and hollow out zone 71 each other.
As shown in figure 16, wherein this four-layer structure is the three-decker based on Figure 14, on the position in 7 of optical fiber braid 1 and light non-transmittable layers and corresponding hollow out zone 71, set up a transparent protective layer 8, and embroider to form embroidery layer 4 along 71 edges, hollow out zone to embroider line 41, may produce the local optical fiber braid 1 that contacts with protective layer 8 protections with outside, avoid the damage that causes because of external force factor; The transmittance section of these four layers embroidery fabric is for embroidering line 41 itself and gap and hollow out zone 71 each other.
As shown in figure 17, be the real four layers of embroidery fabric embroidering structure of a tool, embroider on light non-transmittable layers 7, optical fiber braid 1, reflecting layer 6 and bottom 5 to embroider line 41, and on light non-transmittable layers 7, form embroidery layer 4; The transmittance section of these four layers embroidery fabric is for embroidering line 41 itself and gap each other.
As shown in figure 18, wherein this five-layer structure is the four-layer structure based on Figure 17, on the position in 7 of optical fiber braid 1 and light non-transmittable layers and corresponding hollow out zone 71, set up a transparent protective layer 8, and embroider to form embroidery layer 4 along 71 edges, hollow out zone to embroider line 41, may produce the local optical fiber braid 1 that contacts with protective layer 8 protections with outside, avoid the damage that causes because of external force factor; The transmittance section of these five layers embroidery fabric is for embroidering line 41 itself and gap and hollow out zone 71 each other.
Comprehensively above-mentioned, the utility model system is at the application technology with embroidery fabric backlight, refer in particular to a kind of optical fiber braid 1 that forms by optical fiber 13 braiding, light-emitting component 2 and be attached to the embroidery layer 4 of optical fiber braid 1, power supply and switch 9 through power supply unit 3, the control of control module 10, the optical fiber braid 1 special color illumination of sending is penetrated in embroidery layer 4, the embroidery line 41 that makes embroidery layer 4 is through the optical transmission effect, the light on and off combination of reaching optical fiber 13 changes, duration control, light and shade gradual-change mode and coloured light show isoparametric control, effect with optical fiber 13 outputs backlight that change optical fiber braid 1, do the improvement and the design of a best, for the utility model for having embroidery the most concrete progressing greatly that fabric is done backlight.
Claims (9)
1. one kind has embroidery fabric backlight, it is characterized in that: include,
One optical fiber braid is to be formed by several optical fiber braidings, and this optical fiber comprises top together, and this optical fiber braid has at least the initiating terminal of local optical fiber to compile formation one light harvesting Shu Duan;
One light-emitting component is positioned at the light harvesting bundle end place that is close to this optical fiber braid;
One power supply unit electrically connects this light-emitting component;
One embroidery layer is attached to the optical fiber braid, and this embroidery layer is to be embroidered by an embroidery line to be formed in the optical fiber braid.
2. as claimed in claim 1 have an embroidery fabric backlight, and it is characterized in that: this optical fiber braid comprises a bottom surface, and a bottom is attached to the bottom surface of this optical fiber braid, and this embroidery line is to embroider in optical fiber braid and bottom.
3. as claimed in claim 2 have an embroidery fabric backlight, and it is characterized in that: further be provided with a reflecting layer between this bottom and the optical fiber braid, this reflecting layer has a reflecting surface, and this reflecting surface is towards this optical fiber braid.
4. as claimed in claim 1 have an embroidery fabric backlight, it is characterized in that: this optical fiber braid comprises a surface, and the surface attachment of this optical fiber braid has one to have the light non-transmittable layers in hollow out zone, and this embroidery line is embroidered in this optical fiber braid and this light non-transmittable layers.
5. as claimed in claim 4 have an embroidery fabric backlight, and it is characterized in that: further include a transparent protective layer between this optical fiber braid and this light non-transmittable layers, this embroidery line is embroidered in this optical fiber braid, this light non-transmittable layers and this protective layer.
6. as claimed in claim 1 have an embroidery fabric backlight, it is characterized in that: the embroidery line of this embroidery layer is a fluorescent line or a dyed wire rod.
7. as claimed in claim 1 have an embroidery fabric backlight, it is characterized in that: this embroidery layer is one to embroider and full embroider structure or a profile is embroidered structure in fact.
8. as claimed in claim 1 have an embroidery fabric backlight, and it is characterized in that: a switch, this switch are electrically connected at this power supply unit and this light-emitting component.
9. as claimed in claim 1 have an embroidery fabric backlight, it is characterized in that: a control module, this control module is electrically connected at this power supply unit and this light-emitting component, and this control module includes an on-off circuit, a shade control circuit and a light-emitting mode control circuit at least.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN2009201835648U CN201560316U (en) | 2009-10-26 | 2009-10-26 | Embroidered fabric with backlighting |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN2009201835648U CN201560316U (en) | 2009-10-26 | 2009-10-26 | Embroidered fabric with backlighting |
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| Publication Number | Publication Date |
|---|---|
| CN201560316U true CN201560316U (en) | 2010-08-25 |
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| Application Number | Title | Priority Date | Filing Date |
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| CN2009201835648U Expired - Fee Related CN201560316U (en) | 2009-10-26 | 2009-10-26 | Embroidered fabric with backlighting |
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Cited By (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN102704218A (en) * | 2012-05-03 | 2012-10-03 | 浙江理工大学 | LED cross stitch and using method thereof |
| CN103792617A (en) * | 2014-01-24 | 2014-05-14 | 苏州创佳电子材料有限公司 | Light guide fiber board, and manufacturing method and application thereof |
| CN107642753A (en) * | 2016-07-22 | 2018-01-30 | 法雷奥北美有限公司 | There is the optical fiber optic panel of aesthetic appearance under OFF state |
| CN111373084A (en) * | 2018-12-19 | 2020-07-03 | 石狮市森科智能科技有限公司 | A kind of processing technology of luminous heating fabric |
| WO2025020443A1 (en) * | 2023-07-24 | 2025-01-30 | 东南大学 | Flexible electronic fabric of interdigital electrode structure for degrading volatile organic pollutants on basis of photoelectrocatalysis, preparation method therefor and use thereof |
-
2009
- 2009-10-26 CN CN2009201835648U patent/CN201560316U/en not_active Expired - Fee Related
Cited By (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN102704218A (en) * | 2012-05-03 | 2012-10-03 | 浙江理工大学 | LED cross stitch and using method thereof |
| CN103792617A (en) * | 2014-01-24 | 2014-05-14 | 苏州创佳电子材料有限公司 | Light guide fiber board, and manufacturing method and application thereof |
| CN103792617B (en) * | 2014-01-24 | 2016-05-25 | 苏州创佳电子材料有限公司 | Optical fibers plate and manufacture method thereof and application |
| CN107642753A (en) * | 2016-07-22 | 2018-01-30 | 法雷奥北美有限公司 | There is the optical fiber optic panel of aesthetic appearance under OFF state |
| CN111373084A (en) * | 2018-12-19 | 2020-07-03 | 石狮市森科智能科技有限公司 | A kind of processing technology of luminous heating fabric |
| CN111373084B (en) * | 2018-12-19 | 2022-04-22 | 石狮市森科智能科技有限公司 | Processing technology of luminous heating fabric |
| WO2025020443A1 (en) * | 2023-07-24 | 2025-01-30 | 东南大学 | Flexible electronic fabric of interdigital electrode structure for degrading volatile organic pollutants on basis of photoelectrocatalysis, preparation method therefor and use thereof |
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