WO2023158129A1 - 디스플레이 설비 - Google Patents
디스플레이 설비 Download PDFInfo
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- WO2023158129A1 WO2023158129A1 PCT/KR2023/001387 KR2023001387W WO2023158129A1 WO 2023158129 A1 WO2023158129 A1 WO 2023158129A1 KR 2023001387 W KR2023001387 W KR 2023001387W WO 2023158129 A1 WO2023158129 A1 WO 2023158129A1
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- Prior art keywords
- cable
- conductive
- conductive lines
- coupled
- pillar
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- G—PHYSICS
- G09—EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
- G09F—DISPLAYING; ADVERTISING; SIGNS; LABELS OR NAME-PLATES; SEALS
- G09F13/00—Illuminated signs; Luminous advertising
- G09F13/04—Signs, boards or panels, illuminated from behind the insignia
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- G—PHYSICS
- G09—EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
- G09F—DISPLAYING; ADVERTISING; SIGNS; LABELS OR NAME-PLATES; SEALS
- G09F9/00—Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements
- G09F9/30—Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements in which the desired character or characters are formed by combining individual elements
- G09F9/302—Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements in which the desired character or characters are formed by combining individual elements characterised by the form or geometrical disposition of the individual elements
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- G—PHYSICS
- G09—EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
- G09F—DISPLAYING; ADVERTISING; SIGNS; LABELS OR NAME-PLATES; SEALS
- G09F9/00—Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements
- G09F9/30—Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements in which the desired character or characters are formed by combining individual elements
- G09F9/33—Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements in which the desired character or characters are formed by combining individual elements being semiconductor devices, e.g. diodes
Definitions
- the present invention relates to a display facility, and more particularly, to a display facility that is less affected by the installation environment by arranging the display device on mesh-type lines through which air can pass to reduce the influence of wind and the like. will be.
- LEDs are widely used these days in lighting and display fields.
- the application of light emitting diodes in display technology is realized through the manufacture of various display screens based on LED matrix modules. These screens can display all kinds of information in dynamically changing text, patterns, animations and graphics, enabling effective communication.
- LED displays are made of a rigid fixed structure. Manufacture of these displays usually necessarily entails first manufacturing a rigid box-style casing, inside which the LED matrix circuit board and control circuitry are installed. LED matrix circuit boards are usually made of rigid materials. Displays made of these components can only be fixed in one place, and are bulky and heavy, making them inconvenient to transport. And field installation and testing of these displays is time consuming and must be performed by skilled professionals. In addition, rigid displays entail high manufacturing and installation costs and their use is limited to fixed locations. Such a normal rigid display has a problem that is not suitable for a place requiring a temporary display for a short time. In addition, there is a problem that there is a risk of being damaged or overturned by an external force caused by wind or the like when installed outside where wind blows.
- An object of the present invention is to provide a display facility that is less affected by the installation environment by arranging the display device on mesh-shaped lines through which air can pass to reduce the influence of wind and the like.
- the present invention is a conductive line support device disposed on top of a first pillar and a second pillar erected apart from each other and installed to connect the first pillar and the second pillar, a space between A plurality of first conductive lines arranged to be spaced apart between the first pillar and the second pillar so that air can flow into the space, one side of each of which is coupled to the conductive line support device and extends downward, a space between A plurality of second conductive lines are arranged spaced apart between the first pillar and the second pillar so that the air can flow to the bottom, and one side of each is coupled to the conductive line support device and extends downward.
- the extending first conductive lines and the second conductive lines extending downward to be adjacent to the first conductive lines form a pair, respectively, and the plurality of first conductive lines and the second conductive lines forming the pair form a pair.
- a display facility including display devices spaced apart from each other along the lines and a control device supplying power to the display devices using the first conductive lines and the second conductive lines.
- the present invention is disposed on the upper portion of the first pillar and the second pillar erected apart from each other, a cable support device installed to connect the first pillar and the second pillar, the first A plurality of first cables that connect the pillar and the second pillar, and are spaced apart from each other along the longitudinal direction of the first pillar and the second pillar, arranged in a direction crossing the first cables, and mutually A plurality of second cables that are spaced apart from each other, have intersections with the first cables, and allow air to flow into a space between the first cables, and a plurality of second cables fixed to some or all of the intersections.
- a display facility including two display devices and a control device supplying power to the display devices and controlling operations of the display devices, respectively.
- the present invention is disposed on top of the first pillar and the second pillar erected spaced apart from each other, a cable support device installed to connect the first pillar and the second pillar, the first A plurality of first cables connected to the first pillar and the second pillar, spaced apart from each other along the longitudinal direction of the first pillar and the second pillar, and arranged in a direction crossing the first cables; A plurality of second cables disposed spaced apart from each other, having intersections with the first cables, and allowing air to flow into a space between the first cables, fixed to some or all of the intersections
- a display facility including a plurality of display devices and a control device supplying power to the display devices and controlling operations of the display devices, respectively.
- the display equipment according to the present invention has the following effects.
- the display device is less affected by the installation environment by arranging the display device on a mesh structure through which air can pass to reduce the influence of wind and the like.
- the display equipment according to the present invention has the advantage that it can be easily installed even by non-professionals.
- the overall weight is reduced.
- FIG. 1 is a schematic diagram showing a display facility according to an embodiment of the present invention.
- FIG. 2 is a schematic diagram showing a display facility according to another embodiment of the present invention.
- FIG. 3 is a schematic diagram showing a display facility according to another embodiment of the present invention.
- FIG. 4 is a schematic diagram showing a display facility according to another embodiment of the present invention.
- FIG. 5 is a schematic diagram showing a separate control device of the display facility according to FIG. 4 .
- FIG. 6 is a schematic diagram showing a coupling structure of a first conductive line and an auxiliary cable coupling device of the display device according to FIG. 4 .
- FIG. 7 is a schematic diagram showing a display facility according to another embodiment of the present invention.
- FIG. 8 is a schematic diagram showing a separate control device of the display facility according to FIG. 7 .
- FIG. 9 is a schematic diagram showing an arrangement structure of a first cable, a first conductive cable, and an auxiliary cable coupling device of the display facility according to FIG. 7 .
- FIG. 10 is a schematic diagram showing a coupling structure of a first cable and a first conductive cable of a display facility according to another embodiment of the present invention.
- FIG. 11 is a schematic diagram showing a coupling structure of a first cable and a first conductive cable of a display facility according to another embodiment of the present invention.
- FIG. 12 is a schematic diagram showing an arrangement structure of a first cable and an auxiliary cable coupling device of a display facility according to another embodiment of the present invention.
- a display facility 1000 includes a first conductive line 1100, a second conductive line 1200, a display device 1300, a control device 1400, a fixture ( 1500) and a conductive line support device 1600.
- the fixture 1500 includes a first fixture 1510 and a second fixture 1520 .
- the first fixture 1510 and the second fixture 1520 are spaced apart from each other and erected in a vertical direction, respectively.
- the first fixture 1510 is coupled to one end of the conductive line support device 1600 .
- the first fixture 1510 takes a pillar shape as an example.
- the second fixture 1520 is coupled to the other end of the conductive line support device 1600 .
- the second fixture 1520 has a pillar shape similar to that of the first fixture 1510, for example.
- a plurality of first conductive lines 1100 are disposed spaced apart between the first pillar 1510 and the second pillar 1520 so that air can flow into the space between them.
- One side of each of the first conductive lines 1100 is coupled to the conductive line support device 1600 and extends downward. That is, in this embodiment, the first conductive line 1100 has a structure hanging from the conductive line support device 1600 as an example.
- the first conductive line 1100 is an electric wire having conductivity as an example, but the type of the first conductive line 1100 can be changed. And, for example, the first conductive line 1100 is arranged in a vertical direction parallel to the first pillar 1510 and the second pillar 1520 . However, the present invention is not limited thereto and the first conductive line 1100 may be disposed obliquely. For example, the first conductive lines 1100 are arranged at equal intervals along the horizontal direction intersecting the vertical direction between the first pillar 1510 and the second pillar 1520, but the first conductive line 1100 is equally spaced. The spacing between the lines 1100 can be adjusted.
- a plurality of second conductive lines 1200 are spaced apart and disposed between the first pillar 1510 and the second pillar 1520 so that air can flow into the space between them.
- One side of each of the second conductive lines 1200 is coupled to the conductive line support device 1600 and extends downward. That is, in this embodiment, it is exemplified that the second conductive line 1200 has a structure suspended from the conductive line support device 1600 like the first conductive line 1200 .
- the second conductive line 1200 is an electric wire having conductivity as an example, but the type of the second conductive line 1200 can be changed.
- the second conductive line 1200 is the same wire as the first conductive line 1100.
- the second conductive line 1200 is arranged in a vertical direction parallel to the first pillar 1510 and the second pillar 1520 .
- the present invention is not limited thereto and the second conductive line 1200 may be disposed obliquely.
- the second conductive lines 1200 are arranged at equal intervals along the horizontal direction intersecting the vertical direction between the first pillar 1510 and the second pillar 1520, the second conductive line 1200 The spacing between the lines 1200 can be adjusted.
- the second conductive lines 1200 are arranged one by one so as to be adjacent to each of the first conductive lines 1100 to form a pair structure. That is, one second conductive line 1200 and one first conductive line 1100 form a pair.
- the plurality of pairs formed by the first conductive lines 1100 and the second conductive lines 1200 are spaced apart from the first pillar 1510 and the second pillar 1520 by a set distance. .
- the plurality of display devices 1300 are arranged to be spaced apart along the first conductive lines 1100 extending downward and the second conductive lines 1200 paired with the first conductive lines 1100. . That is, a plurality of display devices 1300 are arranged to be spaced apart from each other in a vertical direction (vertical direction). Of course, since the plurality of first conductive lines 1100 and the conductive lines 1200 are disposed in the horizontal direction (left and right directions), the display devices 1300 are spaced apart in the horizontal direction as well. do.
- the display device 1300 is an LED, but the type of the display device 1300 can be changed as much as desired.
- the display device 1300 is electrically connected to the control device 1400 to receive power.
- a first portion which is any part connected to the first conductive lines 1100, is connected to the positive electrode (+) and connected to the second conductive lines 1200.
- the first part and the second part which is another part, are grounded.
- the present invention is not limited thereto and can be changed to any other structure that forms a potential difference so that current can flow through the display device 1300.
- the controller 1400 supplies power to the display devices 1300 .
- the control unit 1400 serves to control the operation of the display devices 1300 respectively.
- the control device 1400 includes a power supply 1410, a control unit 1420, and a signal line 1430.
- the power supply 1410 supplies power to each of the first conductive line 1100 and the second conductive line 1200 .
- the power supply 1410 is connected to the first conductive lines 1100 and the second conductive lines 1200, respectively, so that the first conductive lines 1100 and the second conductive lines 1200 serves to supply power to
- an anode (+) is connected to each of the first conductive lines 1100, and each of the second conductive lines 1200 is grounded.
- the controller 1420 controls the signal line 1430 by generating a control signal to control the operation of the display device 1300 . That is, the controller 1420 supplies power to some or all of the first conductive lines 1100 and the second conductive lines 1200 by transmitting a control signal to each of the signal lines 1430. Controls whether the display device 1300 operates.
- One side of the signal line 1430 is connected to the controller 1420 and the other side is connected to each of the display devices 1300 .
- the signal line 1430 controls each of the display devices 1300 by connecting or disconnecting power supplied from the power supply 1410 by a signal generated and transmitted from the control unit 1420 .
- the conductive line support device 1600 is installed to prevent the first conductive lines 1100 and the second conductive lines 1200 from sagging downward due to gravity.
- the conductive line support device 1600 includes an auxiliary cable 1600 disposed above the first pillar 1510 and the second pillar 1520 .
- the auxiliary cable 1600 is installed to connect the first pillar 1510 and the second pillar 1520.
- the auxiliary cable 1600 is installed flat in a horizontal direction.
- the auxiliary cable 1600 is formed of a material having greater rigidity than the first conductive lines 1100 and the second conductive lines 1100 . This is to enable the auxiliary cable 1600 to support the loads of the first conductive lines 1100 and the second conductive lines 1200 .
- a display facility 2000 includes a first conductive line 2100, a second conductive line 2200, a display device 2300, a control device 2400, a fixture ( 2500) and conductive line support devices 2600 and 2700.
- the display facility 2000 according to this embodiment includes the first conductive line 2100 or the second conductive line 2200, the controller 2400, and the conductivity There is a difference in the line support devices 2600 and 2700, and the rest of the configuration is similar. Therefore, the first conductive line 2100, the second conductive line 2200, the control device 2400, and the conductive line support devices 2600 and 2700 will be described in detail, and detailed descriptions of the other components will be omitted. .
- the first conductive line 2100 or the second conductive line 2200 uses power line communication (PLC, Power Line Communication) to transmit the control signal generated by the controller 2400 together with the supplied power.
- PLC Power Line Communication
- the display devices 2300 can be controlled without a separate signal line.
- the control device 2400 includes a power supply unit 2410 and a control unit 2420. As described above, since the first conductive line 2100 or the second conductive line 2200 has a structure capable of power line communication, the control device 2400, unlike the display facility 1000 according to FIG. 1, uses a signal line don't need
- the conductive line support devices 2600 and 2700 include an auxiliary cable 2600 and an auxiliary cable coupling device 2700.
- the auxiliary cable 2600 includes an upper auxiliary cable 2610 and a lower auxiliary cable 2620.
- One side of the upper auxiliary cable 2610 is coupled to the first column 2510 and the other side is coupled to the second column 2520 .
- one side of the lower auxiliary cable 2620 is coupled to the first column 2510 and the other side is coupled to the second column 2620 .
- the lower auxiliary cable 2620 is spaced apart from the lower side of the upper auxiliary cable 2610.
- the auxiliary cable coupling device 2700 has one side, the upper part, coupled to the upper auxiliary cable 2610, and extends downward, and the other side, the lower part, is coupled to the lower auxiliary cable 2620.
- the first conductive lines 2100 and the second conductive lines 2200 are coupled to the lower auxiliary cable 2620.
- the auxiliary cable coupling device 2700 is disposed between the first conductive lines 2100 and the second conductive lines 2200 that form a pair, respectively.
- a display facility 3000 according to another embodiment of the present invention includes a first conductive line 3100, a second conductive line 3200, a display device 3300, a control device 3400, and a fixture. 3500 and conductive line support devices 3600 and 3700.
- the display facility 3000 according to this embodiment has a difference in the control device 3400 and the conductive line support devices 3600 and 3700, and the rest of the configuration is similar. . Therefore, the control device 3400 and the conductive line support devices 3600 and 3700 will be described in detail, and detailed descriptions of other components will be omitted.
- the control device 3400 includes a power supply unit 3410, a control unit 3420 and a wireless receiver 3430.
- the wireless receiver 3430 is installed in the display device 3300.
- the wireless receiving unit 3430 controls the display apparatus 3300 by receiving a signal transmitted from the control unit 3420 through a wireless network and transmitting the signal to the display apparatus 3300 .
- the conductive line support devices 3600 and 3700 include an auxiliary cable 3600 and an auxiliary cable coupling device 3700.
- the auxiliary cable 3600 has one end coupled to the first pole 3510 and the other end coupled to the second pole 3610.
- the auxiliary cable coupling device 3700 has one side coupled to the auxiliary cable 3600 and the other side extending downward and coupled to the first conductive lines 3100 and the second conductive lines 3200 forming a pair, respectively. do. That is, in this embodiment, the first conductive lines 3100 and the second conductive line 3200 are not coupled to the auxiliary cable 3600 but coupled to the auxiliary cable coupling device 3700.
- a display facility 4000 includes a first conductive line 4100, a second conductive line 4200, a display device 4300, and a control device 4400. ), a fixture 4500 and conductive line support devices 4600 and 4700.
- the conductive line support device includes an auxiliary cable 4600 and an auxiliary cable coupling device 4700.
- the first conductive line 4100 is coupled to and fixed to the first pillar 4510 and the second pillar 4520, respectively.
- a plurality of first conductive lines 4100 are spaced apart along the longitudinal direction (vertical direction, Y-axis direction) of the first pillar 4510 and the second pillar 4520 and are arranged in plurality.
- the first conductive line 4100 is disposed in a horizontal direction parallel to the ground. However, the present invention is not limited thereto and the first conductive line 4100 may be disposed obliquely. In addition, although the first conductive lines 4100 are equally spaced along the longitudinal direction between the first pillar 4510 and the second pillar 4520, for example, the first conductive lines 4100 The spacing between the two can be adjusted. The first conductive line 4100 receives tension from the first pillar 4510 and the second pillar 4520 so that the center of the first conductive line 4100 does not droop downward.
- the second conductive line 4200 is arranged in a direction crossing the first conductive line 4100 .
- a plurality of second conductive lines 4200 are spaced apart from each other in a direction (horizontal direction, x-axis direction) crossing the longitudinal direction.
- the second conductive lines 4200 have intersections with the first conductive lines 4100 and have a structure in which air can flow into a space between the first conductive lines 4100 .
- the second conductive line 4200 is an electric wire having conductivity, but the type of the second conductive line 4200 can be changed.
- the second conductive line 4200 is the same wire as the first conductive line 4100.
- the second conductive line 4200 is arranged in a vertical direction intersecting the first conductive line 4100 .
- the present invention is not limited thereto and the second conductive line 4200 may be disposed obliquely.
- the second conductive lines 4200 are arranged at equal intervals along the horizontal direction between the first pillar 4510 and the second pillar 4520 as an example, the second conductive lines 4200 The spacing between the two can be adjusted.
- a plurality of display devices 4300 are disposed at some or all of the intersection points.
- the display device 4300 is an LED, but the type of the display device 4300 can be changed as much as desired.
- the display device 4300 is electrically connected to the control device 4400 to receive power.
- a first part, which is one part, of the display devices 4300 is connected to the positive pole (+), and a second part, which is one part different from the first part, is grounded.
- the present invention is not limited thereto and can be changed to any other structure that forms a potential difference so that current can flow through the display device 4300.
- the controller 4400 supplies power to the display devices 4300 .
- the control device 4400 serves to control the operation of the display devices 4300 respectively.
- the control device 1400 includes a power supply 4410, a control unit 4420 and a signal line 4430.
- the power supply 4410 supplies power to each of the first conductive line 4100 and the second conductive line 4200 .
- the power supply 4410 is connected to the first conductive lines 4100 and the second conductive lines 4200, respectively, so that the first conductive lines 4100 and the second conductive lines 4200 serves to supply power to
- an anode (+) is connected to each of the first conductive lines 4100, and each of the second conductive lines 4200 is grounded.
- the controller 4420 controls the signal line 4430 by generating a control signal to control the operation of the display device 4300 . That is, the controller 4420 supplies power to some or all of the first conductive lines 4100 and the second conductive lines 4200 by transmitting a control signal to each of the signal lines 4430. Controls whether the display device 4300 operates.
- One side of the signal line 4430 is connected to the controller 4420 and the other side is connected to each of the display devices 4300 .
- the signal line 4430 controls each of the display devices 4300 by connecting or disconnecting power supplied from the power supply 4410 by a signal generated and transmitted from the control unit 4420 .
- control unit 4420 may control the display device 4300 by controlling the power supply unit 4410 itself without a separate signal line. That is, the control unit 4420 supplies power to some or all of the first conductive lines 4100 and the second conductive lines 4200 through signal transmission to the power supply unit 4410 so that the display It is also possible to control whether the device 4300 operates.
- the first conductive line 4100 is disposed at the X2 position, and among the second conductive lines 4200, the first conductive line 4100 is disposed at the Y2 position.
- the power supply 4410 is disposed at the X2 position among the first conductive lines 4100. Power is supplied to the line 4100, and the power supply unit 4100 supplies power to the second conductive line 4200 disposed at the Y2 position among the second conductive lines 4200.
- the conductive line support device is installed to prevent at least one of the first conductive lines 4100 and the second conductive lines 4200 from sagging downward due to gravity.
- the auxiliary cable 4600 is spaced apart from the uppermost first conductive line 4100 disposed at the top among the first conductive lines 4100. are placed At this time, one side of the auxiliary cable 4600 is coupled to and fixed to the first pillar 4510, and the other side is coupled to and fixed to the second pillar 4520.
- the auxiliary cable 4600 is formed of a material having greater rigidity than the first conductive lines 4100 . This is to enable the auxiliary cable 4600 to support the loads of the first conductive lines 4100.
- the auxiliary cable coupling device 4700 serves to couple and fix at least one of the first conductive line 4100 and the second conductive line 4200 to the auxiliary cable 4600 .
- one side of the auxiliary cable coupling device 4700 is coupled to the auxiliary cable 4600 and the other side is coupled to the uppermost first conductive line 4100 as an example.
- the present invention is not limited thereto, and one side of the auxiliary cable coupling device 4700 may be coupled to the auxiliary cable 4600 and the other side may be coupled to the second conductive line 4200.
- the other side of the auxiliary cable coupling device 4700 may be coupled to the second conductive line 4200 coupled to the uppermost first conductive line 4100 .
- the auxiliary cable coupling device 4700 is disposed between the second conductive lines 4200 as an example.
- the auxiliary cable coupling device 4700 is coupled so that the other side surrounds the outer circumferential surface of the first conductive line 4100 and supports the lower surface of the first conductive line 4100 .
- the auxiliary cable coupling device 4700 has a structure in which the auxiliary cable 4600 is separated as an example, but the auxiliary cable coupling device 4700 may be integrally formed with the auxiliary cable 4600. may be
- a display facility 5000 includes a first cable 5100, a second cable 5200, a display device 5300, a control device 5400, and a fixture. 5500, an auxiliary cable 5600 and an auxiliary cable coupler 5700.
- the fixture 5500 will be described first.
- the fixture 5500 includes a first fixture 5510 and a second fixture 5520 .
- the first fixture 5510 and the second fixture 5520 are spaced apart from each other and erected in a vertical direction, respectively.
- the first fixture 5510 is coupled to one end of the first cable 5100.
- the first fixture 5510 has a pillar shape as an example.
- the second fixture 5520 is coupled to the other end of the first cable 5100.
- the second fixture 5520 has a pillar shape similar to that of the first fixture 5510.
- the first cable 5100 is coupled to the first pillar 5510 and the second pillar 5520, respectively.
- a plurality of first cables 5100 are spaced apart along the longitudinal direction (vertical direction, Y-axis direction) of the first pillar 5510 and the second pillar 5520 and are arranged in plurality.
- the first cable 5100 is non-conductive and is disposed in a horizontal direction parallel to the ground.
- the present invention is not limited thereto and the first cable 5100 may be arranged obliquely.
- the first cables 5100 are arranged at equal intervals between the first pillar 5510 and the second pillar 5520, but the distance between the first cables 5100 can be adjusted. .
- the first cable 5100 receives tension from the first fixture 5510 and the second fixture 5520 so that the center of the first cable 5100 does not droop downward.
- the first cable 5100 is made of non-conductive synthetic resin. Specifically, the first cable 5100 is formed by twisting fibers.
- the first cable 5100 includes a first fiber yarn 5100a and a second fiber yarn 5100b.
- the first fiber yarn 5100a and the second fiber yarn 5100b have a structure similar to a long yarn strand.
- the first cable 5100 is formed by twisting the first fiber yarn 5100a and the second fiber yarn 5100b.
- the present invention is not limited thereto, and the first cable 5100 may be formed by twisting together additional fiber yarns other than the first fiber yarn 5100a and the second fiber yarn 5100b.
- the middle portion thereof is made of a rigid material that does not sag downward due to gravity. Therefore, the display device 5300 disposed at the intersection of the first cable 5100 and the second cable 5200 can be arranged neatly rather than dislocated irregularly up and down.
- the second cable 5200 is arranged in a direction crossing the first cable 5100.
- a plurality of second cables 5200 are spaced apart from each other in a direction (horizontal direction, X-axis direction) crossing the longitudinal direction.
- the second cables 5200 have intersections with the first cables 5100, and have a structure in which air can flow into a space between the first cables 5100.
- the second cable 5200 is non-conductive and disposed in a vertical direction crossing the first cable 5100.
- the present invention is not limited thereto and the second cable 5200 may be disposed obliquely.
- the second cables 5200 are arranged at equal intervals between the first pillar 5510 and the second pillar 5520 as an example, but the distance between the second cables 5200 can be adjusted. .
- a plurality of display devices 5300 are disposed at some or all of the intersection points.
- the display device 5300 is an LED as an example, but the type of the display device 5300 can be changed as much as desired.
- the display device 5300 is electrically connected to the control device 5400 to receive power.
- the controller 5400 supplies power to the display devices 5300 .
- the controller 5400 serves to control the operation of the display devices 5300 respectively.
- the control device 5400 includes a first conductive cable 5410, a second conductive cable 5420, a power supply unit 5430, and a control unit 5440.
- a plurality of first conductive cables 5410 are coupled to each of the first cables 5100 and extend along each of the first cables 5100.
- a plurality of second conductive cables 5420 are coupled to each of the second cables 5200 and are disposed extending along each of the second cables 5200 .
- the first conductive cable 5410 is disposed parallel to the first cable 5100. Specifically, the first conductive cable 5410 is disposed so as to come into close contact with the first cable 5100. However, the present invention is not limited thereto, and the first conductive cable 5410 may be placed in close contact with the lower side of the first cable 5100. At this time, a fixing member (not shown) for coupling the first cable 5100 and the first conductive cable 5410 may be installed. Also, the second conductive cable 5420 is disposed to be in close contact with the right side or the left side of the second cable 5200. Also in this case, a fixing member (not shown) may be installed to couple the second cable 5200 and the second conductive cable 5420 together.
- the power supply 5430 supplies power to each of the first conductive cables 5410 and the second conductive cables 5420 .
- the power supply unit 5430 includes a first power supply unit 5431 and a second power supply unit 5432.
- the first power supply 5431 is connected to each of the first conductive cables 5410 and serves to supply power to the first conductive cables 5410 .
- the second power supply 5432 is connected to each of the second conductive cables 5420 and serves to supply power to the second conductive cables 5420 .
- the second power supply unit 5432 is disposed below the first cable 5100 disposed at the bottom among the first cables 5100, but the second power supply unit 5432 It may be disposed on the first pillar 5510 or the second pillar 5520.
- the controller 5440 controls the power supply 5430 to control the operation of the display device 5300. That is, the control unit 5440 transmits signals to the first power supply unit 5431 and the second power supply unit 5432, respectively, to connect the first conductive cables 5410 and the second conductive cables 5420. Controls whether the display device 5300 operates by supplying power to some or all of them.
- the first power supply unit 5431 when trying to operate the display device 5300 disposed at the intersection, the first power supply unit 5431 is connected to the first cable 5100 disposed at the X2 position among the first cables 5100. and the second power supply unit 5432 supplies power to the second cable 5200 disposed at the position Y2 among the second cables 5200.
- the auxiliary cable 5600 is spaced apart from the uppermost first cable 5100 disposed at the top among the first cables 5100. At this time, one side of the auxiliary cable 5600 is coupled to the first column 5510 and the other side is coupled to the second column 5520.
- the auxiliary cable 5600 is made of a material with greater rigidity than the first cables 5100. This is to enable the auxiliary cable 5600 to support the load of the first cables 5100.
- the auxiliary cable coupler 5700 serves to hang the first cable 5100 on the auxiliary cable 5600.
- One end of the auxiliary cable coupling device 5700 is coupled to the auxiliary cable 5600 and the other end is coupled to the top first cable 5100.
- the auxiliary cable coupling device 5700 is disposed between the second cables 5200, respectively.
- the auxiliary cable coupling device 5700 is coupled so that the other side surrounds the outer circumferential surface of the first cable 5100 and supports the lower surface of the first cable 5100.
- the auxiliary cable coupling device 5700 has a structure separated from the auxiliary cable 5600, but the auxiliary cable coupling device 5700 may be integrally formed with the auxiliary cable 5600. may be
- a display facility 6000 includes a first cable 6100, a second cable (not shown), a display device (not shown), a control device 6410, a fixture ( (not shown), an auxiliary cable (not shown), and an auxiliary cable coupling device (not shown).
- the controller 6410 includes a first conductive cable 6410, a second conductive cable (not shown), a power supply unit (not shown), and a control unit (not shown).
- the display facility 6000 according to this embodiment has a difference in the coupling structure of the first cable 6100 and the first conductive cable 6410 compared to the display facility 5000 according to FIG. 7 .
- Other configurations are similar to the configurations of the display facility 5000 shown in FIG. 7, so detailed descriptions thereof are omitted.
- the first cable 6100 includes a first fiber yarn 6100a and a second fiber yarn 6100b.
- the first cable 6100 is formed by twisting the first fiber yarn 6100a and the second fiber yarn 6100b.
- the first conductive cable 6410 is also disposed in a twisted structure with the first fiber yarn 6100a and the second fiber yarn 6100b.
- the first conductive cable 6410 has a twisted structure along the outer circumferential surface of the first cable 6100. Specifically, when the first fiber yarn 6100a and the second fiber yarn 6100b are twisted, the first conductive cable 6410 is twisted together between the protruding first part and the protruding second part.
- the first conductive cable 6410 is not simply laid on the first cable 6100, but is interposed between the protruding first part and the protruding second part. Since it is arranged in an inserted structure, it has the advantage of being more firmly coupled to the first cable 6100 than the first conductive cable 5410 of FIG. 7 .
- the second conductive cable may also be coupled to the second cable in a structure in which the first conductive cable 6410 is coupled to the first cable 6100.
- a display facility 7000 includes a first cable 7100, a second cable (not shown), a display device (not shown), a control device 7410, and a fixture. (not shown), an auxiliary cable (not shown) and an auxiliary cable coupling device (not shown).
- the control device 7410 includes a first conductive cable 7410, a second conductive cable (not shown), a power supply unit (not shown), and a control unit (not shown).
- the display facility 7000 according to this embodiment has a difference in the coupling structure of the first cable 7100 and the first conductive cable 7410 compared to the display facility 5000 according to FIG. 7 .
- Other configurations are similar to the configurations of the display facility 5000 shown in FIG. 7, so detailed descriptions thereof are omitted.
- the first cable 7100 includes a first fiber yarn 7100a and a second fiber yarn 7100b.
- the first cable 7100 is formed by twisting the first fiber yarn 7100a and the second fiber yarn 7100b.
- the first conductive cable 7410 is also disposed in a twisted structure with the first fiber yarn 7100a and the second fiber yarn 7100b.
- the first conductive cable 7410 has a twisted structure along the outer circumferential surface of the first cable 7100.
- the first conductive cable 7410 is formed between the first fiber yarn 7100a and the second fiber yarn 7100b when the first fiber yarn 7100a and the second fiber yarn 7100b are twisted. It is arranged to twist through.
- the first conductive cable 7410 is not simply laid on the first cable 7100, but the first fiber yarn 7100a and the second fiber yarn 7100b ), it has the advantage of being more firmly coupled to the first cable 7100 than the first conductive cable 5410 of FIG. 7 .
- the first conductive cable 7410 according to the present embodiment is disposed along the outer circumferential surfaces of the first fiber yarn 6100a and the second fiber yarn 6100b. Since the first fiber yarn 7100a and the second fiber yarn 7100b are coupled through the interior, there is an advantage in that the bonding force is further improved.
- the second conductive cable may also be coupled to the second cable in a structure in which the first conductive cable 7410 is coupled to the first cable 7100.
- a display facility 8000 includes a first cable 8100, a second cable (not shown), a display device (not shown), a control device (not shown), It includes a fixture (not shown), an auxiliary cable (not shown), and an auxiliary cable coupler 8700.
- the display facility 8000 according to this embodiment has a difference in the coupling structure of the first cable 8100 and the auxiliary cable coupling device 8700 compared to the display facility 5000 according to FIG. 7 .
- Other configurations are similar to the configurations of the display facility 5000 shown in FIG. 7, so detailed descriptions thereof are omitted.
- the first cable 8100 includes a first fiber yarn 8100a and a second fiber yarn 8100b.
- the first cable 8100 is formed by twisting the first fiber yarn 8100a and the second fiber yarn 8100b.
- the auxiliary cable coupling device 8700 is a first interspace formed when the first fiber yarn 8100a and the second fiber yarn 8100b are twisted and adhered to each other, and the twisted and adhered portion is separated. penetrates from top to bottom.
- the auxiliary cable coupling device 8700 is formed when the first fiber yarn 8100a and the second fiber yarn 8100b are twisted to separate the closely attached parts, and the second space between the first and adjacent spaces is formed. penetrates from bottom to top.
- the auxiliary cable coupling device 8700 penetrates the first cable 8100 from top to bottom, and then, at another portion adjacent to the penetrating portion, connects the first cable 8100 from bottom to top. It penetrates upward and is combined with the first cable 8100. Therefore, in the display facility 8000 according to the present embodiment, compared to the case of FIG. 7 having a structure in which the auxiliary cable coupling device 5700 is simply coupled to surround the outer circumferential surface of the first cable 5100, the auxiliary cable coupling device 5700 is more firmly attached to the auxiliary cable 5100. The cable coupling device 8700 is combined with the first cable 8100 to improve bearing capacity.
- the present invention it is possible to provide a display facility that is less affected by the installation environment by arranging the display device in a mesh structure through which air can pass to reduce the influence of wind and the like.
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Abstract
Description
Claims (20)
- 서로 이격되어 세워지는 제1기둥 및 제2기둥의 상부에 배치되고, 상기 제1기둥과 상기 제2기둥을 연결하도록 설치되는 도전성 라인 지지장치;사이 공간으로 공기가 유동될 수 있도록 상기 제1기둥과 상기 제2기둥 사이에 복수 개가 이격되도록 배치되고, 각각의 일측이 상기 도전성 라인 지지장치에 결합되어 아래쪽으로 연장되어 있는 제1도전성 라인들;사이 공간으로 공기가 유동될 수 있도록 상기 제1기둥과 상기 제2기둥 사이에 복수 개가 이격되어 배치되고, 각각의 일측이 상기 도전성 라인 지지장치에 결합되어 아래쪽으로 연장되어 있는 제2도전성 라인들;아래쪽으로 연장되는 상기 제1도전성 라인들 및 상기 제1도전성 라인들과 인접하도록 아래쪽으로 연장되어 배치되는 제2도전성 라인들이 각각 쌍을 이루고, 상기 쌍을 이루는 복수 개의 상기 제1도전성 라인들 및 제2도전성 라인들을 따라서 이격되도록 배치되는 디스플레이 장치들; 및상기 제1도전성 라인들과 상기 제2도전성 라인들을 이용해서 상기 디스플레이 장치들에 전원을 공급하는 제어장치를 포함하는,디스플레이 설비.
- 청구항 1에 있어서,상기 도전성 라인 지지장치는,일측은 상기 제1기둥에 결합되고, 타측은 상기 제2기둥에 결합되는 보조 케이블인,디스플레이 설비.
- 청구항 1에 있어서,상기 도전성 라인 지지장치는,일측은 상기 제1기둥에 결합되고, 타측은 상기 제2기둥에 결합되는 보조 케이블; 및일측은 상기 보조 케이블에 결합되고, 아래쪽으로 연장되어서 타측은 쌍을 이루는 상기 제1도전성 라인들 및 제2도전성 라인들에 각각 결합되는 보조 케이블 결합 장치를 포함하는,디스플레이 설비.
- 청구항 1에 있어서,상기 도전성 라인 지지장치는,일측은 상기 제1기둥에 결합되고, 타측은 상기 제2기둥에 결합되는 상부 보조 케이블;일측은 상기 상부 보조 케이블에 결합되고, 아래쪽으로 연장되어 있는 보조 케이블 결합 장치; 및일측은 상기 제1기둥에 결합되고, 타측은 상기 제2기둥에 결합되며, 상기 상부 보조 케이블에서 아래쪽으로 이격되어 배치되며 상기 보조 케이블 결합 장치의 타측에 결합되는 하부 보조 케이블을 포함하고,상기 제1도전성 라인들 및 상기 제2도전성 라인들은,상기 하부 보조 케이블에 결합되는,디스플레이 설비.
- 청구항 1에 있어서,상기 제어장치는,상기 디스플레이 장치들에 대한 제어신호를 발생시키는 제어부; 및일측은 상기 제어부에 연결되고, 타측은 상기 디스플레이 장치들에 연결되어서 상기 제어부에서 발생한 제어신호를 상기 디스플레이 장치에 전달하여 상기 디스플레이 장치의 작동을 제어하는 신호선을 포함하는,디스플레이 설비.
- 청구항 1에 있어서,상기 제어장치는,상기 디스플레이 장치들에 대한 제어신호를 발생시키는 제어부를 포함하고,상기 쌍을 이루는 제1도전성 라인과 제2도전성 라인 중 적어도 하나는,전력선 통신(PLC)을 이용하여 상기 제어부에서 발생한 제어신호를 상기 디스플레이 장치들에 전송하여 상기 디스플레이 장치들의 작동을 제어하는,디스플레이 설비.
- 청구항 1에 있어서,상기 제어장치는,상기 디스플레이 장치들에 대한 제어신호를 발생시키는 제어부; 및상기 디스플레이 장치에 설치되고, 무선 네트워크를 통해서 상기 제어부에서 송신하는 신호를 수신하여 상기 디스플레이 장치의 작동을 제어하는 무선 수신부를 포함하는,디스플레이 설비.
- 청구항 1에 있어서,상기 제1도전성 라인들에는 상기 제어장치로부터 전원이 공급되고,상기 제2도전성 라인들은 접지되어 있는,디스플레이 설비.
- 서로 이격되어 세워지는 제1기둥과 제2기둥에 고정되고, 각각 상기 제1기둥과 상기 제2기둥의 길이 방향을 따라 이격되어 배열되어 있는 복수 개의 제1도전성 라인들;상기 제1도전성 라인들과 교차하는 방향으로 배열되고, 상기 길이 방향과 교차하는 폭 방향으로 서로 이격되어 배치되며, 상기 제1도전성 리인들과 교차점들을 가지며, 상기 제1도전성 라인들과의 사이 공간으로 공기가 유동될 수 있는 복수 개의 제2도전성 라인들;상기 교차점들 중의 일부 또는 전부에 각각 고정되고, 상기 교차점을 이루는 한 쌍의 상기 제1도전성 라인과 상기 제2도전성 라인에 의하여 전원이 공급되는 복수 개의 디스플레이 장치들; 및상기 디스플레이 장치들의 작동을 제어하는 제어장치를 포함하는,디스플레이 설비.
- 서로 이격되어 세워지는 제1기둥 및 제2기둥의 상부에 배치되고, 상기 제1기둥과 상기 제2기둥을 연결하도록 설치되는 케이블 지지장치;상기 제1기둥과 상기 제2기둥을 연결하되, 각각 상기 제1기둥과 상기 제2기둥의 길이 방향을 따라 이격되어 배열되어 있는 복수 개의 제1케이블들;상기 제1케이블들을 교차하는 방향으로 배열되고, 서로 이격되어 배치되며, 상기 제1케이블들과의 교차점들을 가지며, 상기 제1케이블들과의 사이 공간으로 공기가 유동될 수 있는 복수 개의 제2케이블들;상기 교차점들 중의 일부 또는 전부에 고정되는 복수 개의 디스플레이 장치들; 및상기 디스플레이 장치들에 전원을 공급하되, 상기 디스플레이 장치들의 작동을 각각 제어하는 제어장치를 포함하는,디스플레이 설비.
- 청구항 10에 있어서,상기 제1케이블들은,비도전성이고, 수평 방향으로 배치되며, 서로 등간격으로 배치되고,상기 제2케이블은,비도전성이고, 수직 방향으로 배치되며, 서로 등간격으로 배치되는,디스플레이 설비.
- 청구항 10에 있어서,상기 제1케이블은,섬유들을 꼬아서 형성되는,디스플레이 설비.
- 청구항 10에 있어서,상기 제어장치는,상기 제1케이블들 각각에 결합되고, 상기 제1케이블들 각각을 따라 연장되어 배치되는 복수 개의 제1도전성 케이블들;상기 제2케이블들 각각에 결합되고, 상기 제2케이블들 각각을 따라 연장되어 배치되는 복수 개의 제2도전성 케이블들;상기 제1도전성 케이블들 및 상기 제2도전성 케이블들에 전원을 공급하는 전원 공급부; 및상기 디스플레이 장치의 작동을 제어하기 위해서 상기 전원 공급부를 제어하는 제어부를 포함하는,디스플레이 설비.
- 청구항 13에 있어서,상기 제1케이블은 섬유들을 꼬아서 형성되고,상기 제1도전성 케이블은,상기 꼬아서 형성된 섬유들에 함께 꼬이도록 배치되는,디스플레이 설비.
- 청구항 14에 있어서,상기 제1도전성 케이블은,상기 꼬아서 형성된 섬유들 외측면을 따라서 꼬이도록 배치되는,디스플레이 설비.
- 청구항 14에 있어서,상기 제1도전성 케이블은,상기 꼬아서 형성된 섬유들 사이를 관통하여 꼬이도록 배치되는,디스플레이 설비.
- 청구항 13에 있어서,상기 제1도전성 케이블은,상기 제1케이블과 평행하게 배치되는,디스플레이 설비.
- 청구항 10에 있어서,상기 제1케이블들을 지지하기 위해서, 상기 제1케이블들 중에서 가장 위쪽에 배치되는 최상단 제1케이블의 위쪽에 이격되어 배치되고, 일측은 상기 제1기둥에 결합되고, 타측은 상기 제2기둥에 결합되는 보조 케이블; 및일측은 상기 보조 케이블에 결합되고, 타측은 상기 최상단 제1케이블에 결합되며, 상기 제2케이블들의 사이 사이에 각각 배치되는 보조 케이블 결합 장치를 포함하는,디스플레이 설비.
- 청구항 18에 있어서,상기 보조 케이블 결합 장치는,타측이 상기 제1케이블의 외주면을 감싸면서, 상기 제1케이블의 하면을 지지하도록 결합되는,디스플레이 설비.
- 청구항 14에 있어서,상기 제1케이블은 제1섬유사 및 제2섬유사를 꼬아서 형성하고,상기 보조 케이블 결합 장치는,상기 제1섬유사 및 제2섬유사가 꼬아져서 밀착될 때, 상기 꼬아져서 밀착된 부분을 분리시킬 때 형성되는 제1사이 공간을 위쪽에서 아래쪽 방향으로 관통한 후,상기 제1사이 공간과 인접하고, 상기 제1섬유사 및 제2섬유사가 꼬아져서 밀착된 부분을 분리시킬 때 형성되되, 상기 제1사이 공간과 인접한 제2사이 공간을 아래쪽에서 위쪽 방향으로 관통하여 상기 제1케이블에 결합되는,디스플레이 설비.
Applications Claiming Priority (4)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| KR10-2022-0020317 | 2022-02-16 | ||
| KR1020220020317A KR102479752B1 (ko) | 2022-02-16 | 2022-02-16 | 케이블 메쉬로 형성된 디스플레이 설비 |
| KR1020220175567A KR20240092823A (ko) | 2022-12-15 | 2022-12-15 | 디스플레이 설비 |
| KR10-2022-0175567 | 2022-12-15 |
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| WO2023158129A1 true WO2023158129A1 (ko) | 2023-08-24 |
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| Application Number | Title | Priority Date | Filing Date |
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| PCT/KR2023/001387 Ceased WO2023158129A1 (ko) | 2022-02-16 | 2023-01-31 | 디스플레이 설비 |
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| KR20030032932A (ko) * | 2000-04-03 | 2003-04-26 | 브루넬 유니버시티 | 전도성의 감압성 직물 |
| US20050254231A1 (en) * | 2004-05-12 | 2005-11-17 | Jeng-Shyong Wu | Composite serial lamp set |
| JP2009141766A (ja) * | 2007-12-07 | 2009-06-25 | Nakagawa Kenkyusho:Kk | 通信機能を有する照明器具 |
| JP2012508404A (ja) * | 2009-02-09 | 2012-04-05 | ホエジョウ・ライト・エンジン・リミテッド | メッシュプラットフォーム上の発光ダイオード光アレイ |
| KR20140002429U (ko) * | 2011-08-12 | 2014-04-25 | 광저우 나이트-레인보우 포토일렉트릭 테크놀로지 디벨로프먼트 (유) | Led 플렉서블 행잉 디스플레이 스크린 |
| KR102479752B1 (ko) * | 2022-02-16 | 2022-12-21 | 한국에이치엠아이(주) | 케이블 메쉬로 형성된 디스플레이 설비 |
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