The present invention relates to displays and processes of erecting and disassembling displays. More specifically, the present invention relates to displays, processes, and engagement features using flexible supports.
In the performance industry, video displays are used in conjunction with multi-media systems utilized in productions. Video displays can be limited in size due to the complexity of arranging the video displays and/or due to the issues associated with weight distribution.
When being used as part of a touring production, video displays are often consolidated and stored for transportation. Known systems are rigid and require significant time for arranging (for example, consolidating, disassembling, and assembling). The video displays may be assembled by individuals of varying level of skill. The arranging of these video displays may require complex diagrams, may require several tools, and may be difficult to repair or replace.
In addition to limiting methods of arranging the video displays, rigidity may prevent aesthetic benefits associated with flexibility. Known systems do not adequately provide three-dimensional displays of two-dimensional videos and do not adequately permit rotation of displays. Also, known systems do not adequately permit video displays to be flexibly manipulated and/or rotated.
When video displays are partially assembled or fully assembled, inconsistent and/or undesired weight distribution can limit the size of the video displays. If the weight distribution puts stress on connectors in the video display, then the connectors can fail. Failure of connectors may result in failure of the video display.
Therefore, there is an unmet need to provide a display system, a display process and engagement feature capable of consistent simple and/or strong assembly.
In an exemplary embodiment, a display system includes a first display arrangement, a second display arrangement, and a flexible support extending from the first display arrangement to the second display arrangement. The first display arrangement engages the second display arrangement by movement of the flexible support.
In another exemplary embodiment, a display process includes providing a display system having a first display arrangement, a second display arrangement, and a flexible support extending from the first display arrangement to the second display arrangement. The process further includes moving the flexible support, thereby engaging the first display arrangement with the second display arrangement.
In another exemplary embodiment, an engagement feature is configured to selectively connect a first display arrangement to a second display arrangement. The engagement feature includes a positioning feature capable of adjusting the relative position of the first display arrangement in comparison to the second display arrangement, thereby permitting a flexible support extending from the first display arrangement to the second display arrangement to engage the first display arrangement to the second display arrangement.
Wherever possible, the same reference numbers will be used throughout the drawings to represent the same parts.
Provided is a display system, a display process, and an engagement feature capable of consistent simple and/or strong assembly. Embodiments of the present disclosure decrease the number and type of tools required for assembly, permit the ability to have a flexible display component capable of being flexibly manipulated while retaining the desired display characteristics, permit selectable distribution of weight allowing the flexible display to provide an assembled set of display components that is large, permit flexible displays to extend tens or hundreds of feet in multiple dimensions, permit the reduction or elimination of the need for vertical supports within display devices thereby significantly reducing the weight of the overall system, permit a faster and/or more accurate assembly, permit assembly by personnel having little or no technical skill, and combinations thereof.
Referring to
Flexible support 103 can be a cable or cables configured to enable system 100 to be suspended from an architectural member 105. While flexible support 103 is being described as a cable or cables, the disclosure is not so limited. Flexible support 103 may be any elongate, flexible structure capable of bearing significant weight. For example, suitable flexible supports 103 may include, but are not limited to, flexible tapes, ropes, wires, other suitable flexible structures, or combinations thereof. Architectural member 105 may be a steel beam, an existing stage system, another cable, a bridge, a wall, a telephone post, a trestle, a truss, other suitable type of architectural system, or combinations thereof. In one embodiment, flexible support 103 can be two weight-bearing cables suspended from architectural member 105. Weight-bearing cables can be arranged such that display device 101, for example panels or other suitable light emitting devices, may be suspended from architectural member 105. Flexible support 103 may be attached to architectural member 105 in any suitable manner. In an exemplary embodiment, flexible support 103 may be high strength cables capable of supporting the weight of panels and any additional equipment or components below architectural member 105. In one embodiment, although not so limited, the cable is aircraft grade cable having an outer diameter of about ⅛ inch.
In another embodiment, flexible support 103 may include power and/or signal functionality. For example, flexible support 103 may be one or more communication and/or power providing cables, such as fiber-optic or copper-based wires or cables, or Ethernet cables. The use of flexible support 103 can reduce the amount of weight in the system by removing bulky structural support systems like intermediate trusses. In addition, the use of flexible support 103 can permit flexibility for additional display options, such as rotating, bending, rounding, or flapping. For example, a rounded visual display may be formed using flexible support 103. In addition, the ability for flexible support 103 to curve can permit a display of a fixed image in motion, such as a flag appearing to wave in the wind. In another embodiment, system 100 can be moved by the motor or other device thereby creating a three-dimensional effect of the displayed image.
Referring to
System 100 of the present disclosure can be portable, allowing easy assembly and disassembly. Flexible support 103 can be detachably engaged to display device 101 by the coupling device, such as clipping member 601. Assembly of system 100 can be easily done by manually or automatically mounting or detachably engaging the display device onto the flexible supports. In one embodiment, display device 101 may be attached to flexible support 103 at first location 201, flexible support 103 may be advanced thereby permitting a second display device 101 to be attached at another first location 201. The advancing of flexible support 103 may be incremental or constant. The sequential attaching and/or detaching of first display device 101, second display device 101, and any additional display devices 101 may permit use of fewer tools for stabilizing system 100 while partially arranged. The sequential attaching and/or detaching may permit fewer individuals to arrange system 100, may provide additional protection during arrangement of system 100, and may permit transportation of system 100. The advancing and the attaching can be repeated to arrange a desired number of display devices 101. While partially assembled and while fully assembled, system 100 can provide selective distribution of weight from display device(s) 101 to flexible support 103. The term “selective distribution” as utilized herein means a consolidation of the weight of the individual display devices 101 at one or a few first locations 201. In one embodiment, the selective distribution consolidates the weight of each display device 101 onto locations along flexible support 103 such that the flexible supports 103 bear the weight of all of the display devices 101. The selective distribution of weight permits the display devices to have less support structure within themselves and permits large numbers of display devices 101 to be assembled vertically.
In one embodiment, the advancing of the flexible supports 103 may be performed by a winding mechanism 205. System 100 can be raised by use of a motor and winding mechanism 205 (for example, a chain motor). In another embodiment, architectural member 105 may additionally and/or alternatively be raised. The ability to raise and lower system 100, including raising and lowering of portions of system 100 may permit incremental arrangement of display devices 101, for example, incremental assembly, disassembly, and/or consolidation of display devices 101. That is, display devices 101 may be attached to flexible support 103 at ground level and then lifted to the operational height. In one embodiment, display device 101 may be lifted from a display storage unit 901, such as a cart (see
Controller 207 may be located in architectural member 105, for example, above or below display device 101. In another embodiment, the controller 207 may be remote to the system 100 and/or integrated into the controls of a theatrical performance. Controller 207 may be electrically connected to display device 101 thereby permitting power and/or signals to travel to display device 101. In one embodiment, controller 207 may be housed in any suitable architectural structure inside or outside system 100. Optional support members 203 may provide a desired stiffness to certain portions of panel 101 and may provide additional support horizontally and/or vertically for display device 101. The selective distribution of the weight of the display devices 101 reduces or eliminates the need for support members 203 in a vertical direction (for example, the direction parallel to the flexible supports).
Referring to
In one embodiment, the light emitting devices may be connected to each other in a grid pattern of wires 303. Wires 303 may be connected to the light emitting devices by any suitable technique or connector. Wires 303 can provide support for adjacent light emitting devices within display device 101. Wires 303 can be arranged in conjunction with flexible support 103 to provide selective distribution of weight of display device 101. In another embodiment, the light emitting devices may be connected with wires 303 that are fiber-optic cables permitting the light to be emitted from various sources. In yet another embodiment, wires 303 may be translucent, transparent, semi-transparent, semi-translucent, semi-opaque, opaque, or combinations thereof. In another embodiment, system 100 may utilize wireless control and/or wireless power to provide control and power from a remote location, providing reduced weight and greater portability.
Referring to
In one embodiment, display device 101 may be powered by individual batteries housed with LEDs or other light sources. In another embodiment, LED can have a battery power source and another LED can use the battery as a power source by having wires carrying power from other LEDs.
Another embodiment includes OLEDs as LEDs. OLEDs may reduce power requirements and permit longer operation on the same charge. OLEDs may permit display device 101 to run on the same charge for a long period of time, for example, by providing power to the OLEDs and then disconnecting the power source from the OLEDs, and then displaying the system.
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In one embodiment, interlocking feature 707 may be received by the interlocking receiving opening 705. In other embodiments, clipping member 601 may include other configurations of interlocking features 707 and/or interlocking receiving openings 705. Alternatively, the clipping member 601 may have no interlocking feature 707 and/or no interlocking receiving opening 705. Interlocking receiving opening 705 may be a recess or opening with one or more sides 713 forming a sloping geometry configured to correspond with the geometry of one or more side walls 715 of interlocking feature 707. Clipping member 601 can be configured to interlock or otherwise engage with substantially identical corresponding clipping member 601 or dissimilar clipping members 601 having corresponding interlocking features 707 and/or interlocking receiving openings 705. Magnetic clipping members 601 may be configured to correspond with other magnetic clipping members 601 and/or features of non-magnetic clipping members 601.
Clipping members 601 can include through-opening 717 configured to permit a wire, rope, circular metal, or other suitable fastener to be inserted through through-opening 717. Through-opening 717 can correspond to another through-opening 717 in another identical clipping member 601. When clipping members 601 are interlocked or otherwise engaged, through-openings 717 may be used for the purpose of further securing clipping members 601 to each other by metal wires being pushed through the through-opening 717 and attached on each side of through-opening 717. Through-opening 717 in conjunction with suitable fasteners can engage flexible support 103 thereby stabilizing system and/or permitting rotation around flexible support 103.
Clipping member 601 can be magnetically attractive by inclusion of one or more magnets. Magnetic clipping member 601 may include recesses configured to house the magnets. In another embodiment, magnetic clipping member 601 can omit interlocking feature 707 and engage another clipping member 601 almost primarily by the magnets. In one embodiment, the magnets 607 are arranged in an arrangement that attracts and positions the first mating portion 603 and second mating portion 605. For example, a set of magnets arranged in a north-south-north polarity configuration which corresponds to a set of magnets in south-north-south polarity configuration. In other embodiments, multiple sets of magnets 607 may be used.
Interlocking feature 707 may correspond with the interlocking receiving opening 705. Clipping member 601 may be interlocked with a corresponding clipping member 601 by inserting interlocking feature 707 into interlocking receiving opening 705 of the corresponding clipping member 601. Interlocking feature 707 of the corresponding clipping member 601 may be interlocked with the interlocking receiving opening 705 thereby permitting interlocking feature 707 to be visible through interlocking receiving opening 705.
Referring to
In one embodiment where display device 101 is a panel, the display storage unit 901 can be sized for the panel to be suspended from members 903 extending through at least a portion of the interior of display storage unit 901. In this embodiment, a plurality of display devices 101 may be inserted into the cart with each display device detachably engaging members 903 of display storage unit 901 by clipping member 601 and/or flexible support 103. Inserts (not shown) can be inserted between display devices 101 when display devices 101 are being stored in the display storage unit 901. In one embodiment, display storage unit 901 may include a plurality of levels or shelves permitting display devices 101 to be suspended in each of the levels. In one embodiment, the advancing by winding mechanism 205 may selectively permit display devices 101 to be inserted into display storage unit 901. In another embodiment, display devices 101 may be folded compactly into display storage unit 901 for more consolidated storage or transportation while flexible support 103 and/or the coupling device remain attached to display devices 101. In one embodiment, display device 101 may be lifted from the display storage unit 901 while manually or automatically disengaging members 903 of the display storage unit 901.
The first display arrangement 802 and the second display arrangement 804 are capable of being positioned in the storage or transport mode as in
In another embodiment, when erected, the upper portion 806 of the first display arrangement 802 is positioned proximal to the lower portion 808 of the second display arrangement 804 and/or the upper portion 806 of the second display arrangement 804 is positioned proximal to the lower portion 808 of the first display arrangement 802. However, when stored, the first display arrangement 802 and the second display arrangement sequentially collapse in storage or transport mode. For example, in this embodiment, when stored, the upper portion 806 of the first display arrangement 802 is positioned proximal to the lower portion 808 of the second display arrangement 804 and/or the upper portion 806 of the second display arrangement 804 is positioned proximal to the lower portion 808 of the first display arrangement 802. As will be appreciated, a third, fourth, fifth, and any other additional suitable number of display arrangements are likewise erected and/or stored.
Referring again to
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In one embodiment, the display system 800 includes the engagement feature 810, a self-aligning feature 812, a display connector 822, a release mechanism 814, and/or any other suitable connecting features. As shown in enlarged region 809 of
Referring again to
The release mechanism 814 is any suitable mechanism for disengaging the first display arrangement 802 from the second display arrangement 804 and/or additional display arrangements. Referring to
While the invention has been described with reference to a preferred embodiment, it will be understood by those skilled in the art that various changes may be made and equivalents may be substituted for elements thereof without departing from the scope of the invention. In addition, many modifications may be made to adapt a particular situation or material to the teachings of the invention without departing from the essential scope thereof. Therefore, it is intended that the invention not be limited to the particular embodiment disclosed as the best mode contemplated for carrying out this invention, but that the invention will include all embodiments falling within the scope of the appended claims.
Number | Date | Country | Kind |
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2012/0152 | Mar 2012 | BE | national |