EP3740043A1 - Produit textile - Google Patents

Produit textile Download PDF

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Publication number
EP3740043A1
EP3740043A1 EP20000130.3A EP20000130A EP3740043A1 EP 3740043 A1 EP3740043 A1 EP 3740043A1 EP 20000130 A EP20000130 A EP 20000130A EP 3740043 A1 EP3740043 A1 EP 3740043A1
Authority
EP
European Patent Office
Prior art keywords
textile product
control device
luminescent surface
energy source
luminescent
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.)
Withdrawn
Application number
EP20000130.3A
Other languages
German (de)
English (en)
Inventor
Veit Nachtmann
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.)
Veit Nachtmann
Original Assignee
Veit Nachtmann
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 Veit Nachtmann filed Critical Veit Nachtmann
Publication of EP3740043A1 publication Critical patent/EP3740043A1/fr
Withdrawn legal-status Critical Current

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Classifications

    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B45/00Circuit arrangements for operating light-emitting diodes [LED]
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B47/00Circuit arrangements for operating light sources in general, i.e. where the type of light source is not relevant
    • H05B47/10Controlling the light source
    • H05B47/105Controlling the light source in response to determined parameters
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B47/00Circuit arrangements for operating light sources in general, i.e. where the type of light source is not relevant
    • H05B47/10Controlling the light source
    • H05B47/175Controlling the light source by remote control
    • H05B47/19Controlling the light source by remote control via wireless transmission

Definitions

  • the present invention relates to a textile product with a luminescent surface which can be electrically illuminated with the aid of a control device and / or an energy source.
  • the present invention also relates to a luminescent surface and a control device.
  • articles of clothing which are interwoven with optical waveguides in order to produce a luminous effect.
  • the disadvantage of such a garment is that it only represents one color at a time can. Different controllers are required for different colors. Furthermore, if the fiber is damaged, for example by kinking or mechanical effects, it can fail completely, so that the luminous effect is reduced. Further disadvantages are the short running time of the energy supply, so that several controllers are required, for example to survive a party night with lights.
  • the textile product according to the invention has at least one luminescent surface which is arranged on at least one outside of the textile product. At least one energy source and at least one control device are arranged in the textile product for the electrical illumination of the at least one luminescent surface, the at least one luminescent surface being connectable to the control device and / or the energy source via an internal connection cable, external connection cable or via induction.
  • the invention enables a textile product to be illuminated in a simple manner.
  • the luminescent surface can be made very thin and uniform, so that when viewed the luminescent surface no distortions can disturb the flow of light.
  • the luminescent surface can be woven using different types of fibers.
  • This can be, for example, a substance that is woven with, for example, glass fibers or optical waveguide threads, LEDs or electroluminescent fibers, which are woven in from top to bottom, from right to left and / or diagonally.
  • the glass fibers or optical waveguide threads can be woven into a fabric with a black or white base color, for example.
  • a white material a large part of the light can be passed on locally at the respective exit points of the light on the glass fibers or optical waveguide impurities or roughening. In this way, the fiber optic threads shine better instead of swallowing the light.
  • textile product refers to a product which is largely made from a product made of textile fibers that is woven, knitted or knitted in rolls.
  • the textile fibers can include textile raw materials, for example natural fibers or chemical fibers, and non-textile raw materials.
  • the term energy source any portable energy source. This can be, for example, rechargeable batteries or batteries.
  • a USB power bank can also be used. By using a USB power bank Any battery life can be enabled according to the capacity of the USB power bank. Furthermore, with the help of a power bank, illumination can be made possible through a whole night.
  • control device describes a device with which, for example, the illuminance of the luminescent surface can be controlled. Furthermore, with the aid of the control device, color gradients can also be controlled within the luminescent surface, so that, for example, animations, such as an animation turning when riding a bicycle, can be made possible.
  • An inverter is preferably also arranged in the textile product, the at least one luminescent surface being connectable to the inverter for the electrically operated illumination of the at least one luminescent surface.
  • an inverter it is possible, for example, to convert the direct current of the energy source into alternating current in order to be able to supply different luminescent fibers of the luminescent surface with energy in this way.
  • At least one resealable opening is arranged on an outside of the textile product for guiding the internal connection cable or the external connection cable from the at least one luminescent surface to the energy source, to the inverter and / or to the control device.
  • the textile product without the luminescent surface, in particular the energy source, the inverter and the control device within the textile product can be protected from dust, moisture or other environmental influences will.
  • an unaesthetic opening on the textile product can thereby be covered. Only when the luminescent surface is connected to the textile product can a connection to the energy source, inverter and / or control device be made possible with the help of the resealable surface.
  • the at least one luminescent surface is designed to be exchangeable, with at least one connection option being arranged both on at least one outside of the textile product and on the at least one luminescent surface.
  • at least one connection option being arranged both on at least one outside of the textile product and on the at least one luminescent surface.
  • different types of luminescent surfaces can be arranged on the textile product. This allows the user to adapt the appearance of the textile product to his needs. For example, the user can use different luminescent surfaces for sports and for going out.
  • the at least one connection option is preferably designed as a zip fastener, a push button, as a head, as a Velcro fastener and / or as a magnetic fastener.
  • different connection options can be used, for example.
  • a Velcro fastener can be sufficient for a hand-sized luminescent surface, while a zip fastener can be used if the outside of the textile product is completely covered.
  • a combination of different connection options would also be possible, for example a position of a luminescent surface can be fixed with the aid of push buttons before the luminescent surface, for example secured with buttons from falling down on the textile product.
  • At least one receptacle for the energy source, the control device and / or for the inverter is arranged on the inside of the textile product.
  • a recording can ensure that the energy source, the control device and / or the inverter are not moved back and forth in the textile product during transport, whereby either the energy source, the control device and / or the inverter or other objects within the textile product Product can be damaged.
  • a secure fixation of the energy source, the control device and / or the inverter can thus be made possible.
  • the receptacle is designed as a pocket, loop and / or a Velcro connection. In this way, the energy source, the control device and / or the inverter can be securely fixed.
  • the textile product is preferably designed as at least one product from the group consisting of bags, clothing, underwear, shoes, headgear, umbrellas, masks or patches.
  • the bags group can also include rucksacks, gym bags or bum bags.
  • the clothing group can include jackets, pants, hoodies, sweat shirts, skirts, T-shirts and shirts.
  • the underwear group can include tops and bras, lingerie and shorts.
  • the group of shoes can also include sneakers, boots, sneakers, moccasins or pumps.
  • headgear can cap, hats, pirate scarves, or baseball caps Bobble hats to be included.
  • the masks group can include masks that cover the face completely or only partially.
  • patch describes a product that can be attached to another textile product with the help of a Velcro fastener, a safety pin, a clip or a pin, for example. It is further pointed out that the products named for the respective groups serve only as examples and the groups include any products that are not named that fall under the group designation.
  • the textile product comprises at least one carrying device.
  • the term carrying device can be at least one handle, one or more carrying straps, one or more eyelets, one or more straps or the like.
  • a sensor can be arranged in the carrying device so that, for example, when the arm is raised, a certain action of the luminescent surface, for example a change of the pattern or a turn indicator when riding a bicycle, can be enabled.
  • the at least one carrying device is made from a material made from electroluminescent fibers or from an electroluminescent film or from one that is shaped into a tube.
  • an electroluminescent carrying device can also be made available, so that an illumination effect of the textile product can be enhanced.
  • the carrying device can comprise a sensor in order to check whether the user, for example wants to perform an action when lifting an arm, for example another animation on the luminescent surface or a recognition of an indication of a turn when riding a bicycle.
  • At least one end, preferably both ends, of the at least one carrying device is preferably connected to the inverter, the energy source and / or the control device.
  • the carrying device can be electroluminesced.
  • failure of the electroluminescent illumination of the carrying device due to, for example, strong kinks or other mechanical effects can be counteracted.
  • the carrying device Through a two-sided connection of the carrying device, at least if one side fails, the other side can still be illuminated in an electroluminescent manner.
  • the invention further comprises a luminescent surface for a textile product as described above, a side of the luminescent surface opposite the textile product being formed from optical fiber fabric, for example glass fibers with LEDs, electroluminescent fibers or from glass fibers and other optical fiber threads.
  • the side of the luminescent surface facing the textile product can be configured in one color, in particular black or white. In this way, it can be made possible, for example, that the product is no longer illuminated in an electroluminescent manner by rotating the luminescent surface. Furthermore, it can be ensured in this way that the textile product cannot be recognized as an electroluminescent textile product.
  • a second side of the luminescent surface facing the textile product is formed from luminescent fibers or from optical waveguide threads, for example glass fibers. It would also be possible for the luminescent surface to be formed from an optical waveguide fabric (glass fibers) with continuous LEDs, wherein the individual LEDs can be connected to one another via optical waveguides. In this way, the luminescent surface can, for example, represent two different patterns, or it would also be possible for one side to display a static pattern and the other side to display an animation. For example, when going out and doing sports, the luminescent surface can perform different functions.
  • the electroluminescent fibers or the glass fibers or optical waveguide threads preferably extend in the longitudinal direction and / or in the transverse direction of the first side and / or the second side of the luminescent surface, the electroluminescent fibers or the glass fiber or optical waveguide threads each having an LED at their ends Transmission of light. In this way, light can be introduced through the LEDs from both ends into the ends of the electroluminescent fibers or the glass fibers or optical waveguide threads, for example. This enables color gradients, an appearance with stable viewing angles, especially when dancing, a doubled brightness and a security against failure of an illumination due to damage to the fiber.
  • the electroluminescent fibers can be connected to the common inverter at their ends, and the optical waveguide fibers can be connected to their ends each connected to an LED to transmit light.
  • the LEDs are each connected to at least one control chip.
  • the LEDs can be addressed with the help of a control chip.
  • the LEDs can enable animation with the help of the control chip. This enables, for example, color wheels, color gradients, flashing, flashing or turning animations while cycling.
  • the LEDs each have a radiation angle of less than or equal to 180 °, preferably a radiation angle of less than or equal to 90 °, in particular a radiation angle of less than or equal to 30 °. With the help of such a radiation angle, the LEDs can direct the light into the electroluminescent fibers or into the glass fibers or optical waveguide threads in a more targeted manner.
  • a cavity is preferably formed between the first surface and the second surface for the LEDs and for wiring for the LEDs, with an opening, in particular a resealable opening, being arranged on the first surface and / or the second surface for guiding a connection cable to the energy source , to the inverter and / or to the control device in the textile product.
  • an opening in particular a resealable opening, being arranged on the first surface and / or the second surface for guiding a connection cable to the energy source , to the inverter and / or to the control device in the textile product.
  • the invention relates to a control device for a textile product described above and for controlling at least one luminescent surface described above, or for controlling at least one electroluminescent fiber and / or carrier electroluminescent film, or for controlling an LED strip, characterized in that the control device comprises at least one electronic component.
  • the luminescent surface can be controlled in a variety of ways by the control device.
  • the control device it would be possible for the control device to be connectable to other control devices of other textile products. For example, with the help of several control devices, a manually or automatically selected master could forward an animation to other connected control devices so that all connected textile products can display the same animation on the luminescent surface.
  • the control device could enable a private group chat so that the users of the interconnected textile products can chat with one another.
  • control device has at least one electronic component from a group comprising lighting, acceleration sensor, in particular a sensor for recognizing braking or acceleration, gyroscope, mode recognition sensor, in particular for dancing, moving, or sport, noise detector, in particular a microphone, loudspeaker, wireless connection, in particular Bluetooth, Sub-1GHz, Wifi, 3G, 4G or 5G, memory and / or at least one connection, in particular a 3.5mm jack connection or JTAG socket, can be selected.
  • the lighting of the control device itself can have at least one LED in order to illuminate the interior of the textile product when the textile product is opened. It would be advantageous here if an inner lining of the textile product were designed in white.
  • the control device can detect whether the user is dancing or riding a bicycle. Furthermore, the sensor can detect whether the user is turning and when the turning process is completed. Furthermore, the sensor could be used to detect the bicycle's brakes or the theft of the textile product. With the help of the noise detector, the rhythm of the music could be recognized so that the luminescent surface can, for example, flicker to match the rhythm of the music. Furthermore, the user could transmit verbal commands to the control unit via the noise detector.
  • the loudspeaker can be an alarm system, for example, which can play a siren at a volume greater than 85 dB if the textile product has been stolen without permission.
  • the loudspeaker can give acoustic feedback when a command is input.
  • the control unit can communicate with other control units or with application software, a so-called APP, in order to carry out certain actions.
  • the control device can issue commands for certain actions to the luminescent surface of the textile product.
  • the control device can preferably be controlled wirelessly via at least one external communication unit.
  • setting options via app such as exterior lighting, for example color, brightness, interior lighting, or anti-theft settings such as knocking patterns for activation / deactivation, volume, threshold value, or for a bike setting, for example animation, pairing with remote, auto-on if remotely connected or not, or in the case of beat detection, for example a reactivity to music, such as intensity or type of reaction, such as turning color further, brightness sawtooth etc., or in the case of dance detection, for example a reactivity to dance, such as threshold value, intensity or Type of reaction, such as color continuing to rotate, brightness Sawtooth etc., or an auto-off / auto-on function or with group synchronization, for example, an automatically selected master can transmit his animation and his animation progress to his group of friends, or in concert mode if it has not been switched off, for example , the set animation can be overwritten by a central point, protected with signed commands, or enabled for firmware updates.
  • the connection could also be a USB connection.
  • the control device can preferably be controlled wirelessly via at least one external communication unit.
  • the external communication device can be a mobile phone, an external remote control that can be attached to the bicycle handlebar, for example, or a bracelet.
  • a bracelet can be used on each of the right and left arms to enable a certain action on the luminescent surface via the control device by lifting the right or left arm, for example displaying the turning direction when cycling or changing the pattern.
  • the inverter and the exchangeable textile product can each be supplied with energy and / or controlled via a connection with the control device.
  • the energy source can only be connected to the control device and the other loads, such as the inverter or the luminescent surface, can each be supplied with both energy and commands via a single connection on the control device.
  • the control device preferably comprises at least one load resistor and / or comprises an emergency power source for increasing a frequency and / or a load of the resistor in order to prevent the at least one energy source from being switched off. In this way it can be ensured that in spite of the connection of the energy source to the control device and in the event of a possible too low utilization of the control device, the energy source does not undesirably switch into a sleep mode.
  • the frequency is greater than 0 to less than or equal to 1 Hz, preferably greater than 0 to less than or equal to 0.5 Hz, in particular greater than 0 to less than or equal to 0.1 Hz. In this way it can be ensured that in spite of the connection of the energy source to the control device and in the event of a possible too low utilization of the control device, the energy source does not undesirably switch into a sleep mode.
  • the control device loads the at least one energy source after a predetermined time for a predetermined period of time with a predetermined current intensity. In this way it can be ensured that in spite of the connection of the energy source to the control device and in the event of a possible too low utilization of the control device, the energy source does not undesirably switch into a sleep mode.
  • Fig. 1 is a plan view of a rear side of an exemplary embodiment of a textile product 10.
  • the textile product 10 is designed as a gym bag in this exemplary embodiment. However, it is also possible that the textile product 10 is designed as a product from the group of bags, clothing, underwear, shoes, headgear, umbrellas, masks or patches. The back side of the gym bag was removed around the inside of the textile product.
  • the textile product 10 has a carrying device 12 which, in this exemplary embodiment, is made from electroluminescent fibers. On the inside, the textile product 10 has two pockets 14 in which smaller objects can be stowed.
  • a resealable opening 16 is arranged on the textile product 10 for guiding an external connection cable, not shown, to the luminescent surface, not shown.
  • the textile product 10 also has a receptacle, which in this exemplary embodiment is shown as a transparent bag.
  • An energy source 20 is arranged in the receptacle 18.
  • the energy source 20 is designed as a USB power bank.
  • a connection cable 22 in the form of a USB cable is arranged on the energy source 20 in order to supply a control device (not shown) with energy.
  • the connecting cable 22 is shown interrupted, since the control unit is not in Fig. 1 is shown.
  • a connection option 24 shown in the form of a zipper.
  • connection option 24 it is also possible, but not shown, to configure the connection option 24 as a push button, as a head, as a Velcro fastener and / or as a magnetic fastener, the respective counterpart to the connection option 24 being arranged on the luminescent surface, not shown.
  • Fig. 2 shows a plan view of a front side of the textile product 10.
  • the textile product 10 has a second receptacle 26.
  • the second receptacle 26 is designed as a Velcro fastener.
  • a control device 28 is arranged on the second receptacle 26.
  • the connection option 24 is arranged.
  • the control unit 28 is connected to the in Fig. 1 energy source 20 shown connected.
  • the connecting cable 22 is shown interrupted.
  • the carrying device 12 is connected to an inverter 32 via a connector 30 at both ends. With the aid of the inverter 32, the direct current of the energy source is converted into an alternating current for illuminating the carrying device 12.
  • a sensor can be arranged in each of the connection pieces 30 in order, for example, to detect an arm movement in order to carry out a certain action, such as lifting an arm to turn.
  • a resealable opening 16 below the inverter 32 for guiding an external connection cable 34 for the luminescent surface (not shown).
  • the external connection cable 34 is shown interrupted, since the external connection cable 34 is connected to the luminescent surface, not shown.
  • the external connection cable 34 is connected to the control device 28 via a jack plug 36b. In this way it is possible for the control device 26 to control the luminescent surface (not shown) and to supply it with energy.
  • Fig. 1 there is a resealable opening 16 below the inverter 32 for guiding an external connection cable 34 for the luminescent surface (not shown).
  • the external connection cable 34 is shown interrupted, since the external connection cable 34 is connected to the luminescent surface, not shown.
  • the external connection cable 34 is connected to the control device 28 via a jack plug 36b.
  • the inverter 32 is also connected to the control device 28 via a jack plug 36a.
  • the inverter 32 is largely supplied with energy via the jack plug 36a, the control device 28 can receive signals from the sensors in the connecting pieces 30 in order to carry out an action on the luminescent surface, not shown.
  • the ends of the carrying device 12 each have a node 38 in the form of an eight.
  • Fig. 3 shows an exploded view of the textile product 10.
  • a luminescent surface 40 is attached to the textile product 10 with the aid of the connection option 24.
  • the textile product 10 has, on its side facing the luminescent surface 40, a further connection option 24a in order to arrange a further luminescent surface.
  • the luminescent surface 40 On its side facing the textile product 10, the luminescent surface 40 has a resealable opening 16a through which an external connection cable 34 is passed.
  • the external connection cable 34 is led into the interior of the textile product 10 via a resealable opening 16b.
  • the external connection cable 34 is connected to the control device 28 (not shown).
  • a pocket 14 is arranged on the side of the textile product 10 facing away from the luminescent surface 40.
  • the pocket 14 can be designed as an unlit pocket or as an electroluminescent pocket.
  • the textile product 10 has a carrying device 12.
  • an electroluminescent carrying device it is also possible to use a non-electroluminescent material for the carrying device, for example made of cotton.
  • Fig. 4 shows a view of a rear side of a luminescent surface 40.
  • connection options 24 are arranged for connection to a textile product (not shown).
  • the ends of the glass fibers or optical waveguide threads 42 of the luminescent surface 40 are each connected to an LED connected to a control chip 44.
  • the LEDs are 5mm RGB LEDs with a beam angle of 30 °.
  • the control chip 44 is in this embodiment a WS2811 chip.
  • the luminescent surface 40 has a resealable opening 16 through which the external connection cable 34 is passed in order to be connected to the control device 28 in the textile product (not shown) via the jack plug 36b.
  • Fig. 5 shows a first perspective view of the textile product 10 to which a luminescent surface 40 is attached.
  • Fig. 6 shows a second perspective view of the textile product 10. In this perspective view, no luminescent surface is attached.
  • FIG. 10 shows a rear view of the textile product 10.
  • Fig. 8 shows an exemplary embodiment for an external communication device 46.
  • the external communication device 46 is a bracelet.
  • the user can wear a bracelet on each wrist and trigger different actions on the luminescent surface (not shown) by lifting the left or right arm.
  • the luminescent one can represent an arrow to the left when the left arm is raised and an arrow to the right when the right arm is raised.
  • the external communication device 46 is connected wirelessly to the control device (not shown), for example via Bluetooth. With the aid of the external communication device 46, the control device is programmed according to the wishes of the user.
  • the luminescent surface is one Glass fiber or optical waveguide fabric with a continuous LED strip 48. Furthermore, the edge of the luminescent surface 40 has a connection option 24. With the aid of the LED strip 40, the luminescent surface 40 can, for example, represent a flickering light or a parking light. Furthermore, the LEDs in the LED strip 48 can be controlled individually or one after the other, so that, for example, a direction of travel (direction indicator / flashing function) can be displayed with the aid of the control device (not shown).
  • Fig. 10 an embodiment of a circuit board 50 for a control unit.
  • the housing of the control device which protects the circuit board 50 from environmental influences, is not shown.
  • the circuit board 50 has five jack sockets 52a, 52b, 52c, 52d and 52e, all of which have a different color so that the connected consumers can be differentiated, a USB port for connecting a power source, a loudspeaker 56 and a battery 58.
  • an alarm tone can sound in the event of a theft. There is also a warning when the energy source is removed or used up.
EP20000130.3A 2019-05-15 2020-03-19 Produit textile Withdrawn EP3740043A1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102019112676 2019-05-15

Publications (1)

Publication Number Publication Date
EP3740043A1 true EP3740043A1 (fr) 2020-11-18

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Family Applications (1)

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EP20000130.3A Withdrawn EP3740043A1 (fr) 2019-05-15 2020-03-19 Produit textile

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EP (1) EP3740043A1 (fr)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102021001208A1 (de) 2021-03-11 2022-09-15 Comlogo GmbH Flexibles Flächengebilde mit beleuchteten Flächenbereichen als Anzeigevorrichtung

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE10107578A1 (de) * 2001-02-17 2002-08-29 Hella Kg Hueck & Co Lichtanlage für Kraftfahrzeuge
DE202018001315U1 (de) 2018-03-13 2018-03-22 Veit Nachtmann Modularer Turnbeutel
US20180149346A1 (en) * 2014-05-12 2018-05-31 Carmen Rapisarda Enclosed Lighting Module with Switch
CN109619726A (zh) * 2019-01-18 2019-04-16 深圳市时尚发光科技有限公司 一种双层发光纤维编纺发光衣

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE10107578A1 (de) * 2001-02-17 2002-08-29 Hella Kg Hueck & Co Lichtanlage für Kraftfahrzeuge
US20180149346A1 (en) * 2014-05-12 2018-05-31 Carmen Rapisarda Enclosed Lighting Module with Switch
DE202018001315U1 (de) 2018-03-13 2018-03-22 Veit Nachtmann Modularer Turnbeutel
CN109619726A (zh) * 2019-01-18 2019-04-16 深圳市时尚发光科技有限公司 一种双层发光纤维编纺发光衣

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
VLADAN KONCAR: "Optical Fiber Fabric Displays", OPTICS & PHOTONICS NEWS, 1 April 2005 (2005-04-01), pages 40 - 44, XP055236529, Retrieved from the Internet <URL:https://www.osapublishing.org/DirectPDFAccess/7CC4916C-B97F-11FC-86B8E6EBA23427D4_83263/opn-16-4-40.pdf?da=1&id=83263&seq=0&mobile=no> [retrieved on 20151215], DOI: 10.1364/OPN.16.4.000040 *

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102021001208A1 (de) 2021-03-11 2022-09-15 Comlogo GmbH Flexibles Flächengebilde mit beleuchteten Flächenbereichen als Anzeigevorrichtung
DE102021001208B4 (de) 2021-03-11 2023-07-27 Comlogo GmbH Flexibles Flächengebilde mit beleuchteten Flächenbereichen als Anzeigevorrichtung

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