Embodiments of the present invention relate generally to flexible display screens comprising light emitting elements, such as light emitting diodes (LEDs). In particular, but not exclusively, embodiments of the present invention relate to waterproof, flexible LED display screen modules and systems for accurately connecting such modules.
Light emitting elements in the form of LEDs are widely used in display screens, particularly for large scale applications. Larger scale applications include advertising screens, information screens, such as those in building lobbies, airports, train stations and the like and for entertainment purposes, such as those used at concerts and in television studios.
With reference to
Larger scale LED display screens are producing higher resolution images by reducing the LED pitch size, i.e. by reducing the distance between the centres of adjacent LEDs and hence increasing the number of LEDs per unit area. As the pitch size decreases, it is increasingly important to accurately align adjacent display modules. Misalignment of modules results in distorted images being displayed and thus the image quality is impaired. Improving or even maintaining image quality in the presence of decreasing LED pitch size, but in the absence of an accurate means of joining the modules therefore becomes more difficult.
Many applications require LED display screens to conform to one or more curved surfaces. With reference to
Some display screens are flexible, which is achieved by using suitable materials that enable the individual display modules forming the screen to bend. However, bending the display modules changes the pitch size between adjacent modules resulting in distorted images being displayed. The problem is exacerbated with increasing curvature of the modules.
Some known methods of coupling LED display modules for flexible large scale displays comprise interlocking ridge and lip arrangements. However, these do not maintain the pitch size between adjacent modules. At least some of these also have the drawback that access to the modules from the front of the module, for example for maintenance or test purposes, is not possible. Therefore, access must be via the rear of the module. Since the displays are often mounted to a curved surface, access from the rear can also be difficult, if not impossible. Therefore, in some cases, the displays must be dismantled and/or removed from their mounting to permit access.
Another problem with conventional flexible displays is that the power and logical connections at the rear of the multiple modules can be cluttered, which can be time consuming to disconnect and diagnose problems during maintenance. This problem is exacerbated with the size of the display and the increasing numbers of modules.
Where large scale LED displays are used in external environments, another requirement is that the LED screens and their components need to be waterproof.
It is an object of the present invention to provide a system and/or method and/or apparatus for coupling LED display modules that address(es) or at least ameliorates one or more of the aforementioned problems of the prior art or provides consumers with a useful commercial alternative.
Embodiments of the present invention generally relate to light emitting diode (LED) display modules, display screens comprising a plurality of display modules and methods of forming display screens wherein the display modules comprise a plurality of connectors coupled to a flexible substrate for connecting a plurality of the display modules together such that horizontal and vertical alignment of the display modules and the LED pitch size are maintained during flexing of the display screen to avoid distortion of the displayed image.
According to one aspect, although not necessarily the broadest aspect, embodiments of the present invention reside in a light emitting diode (LED) display module comprising:
a flexible substrate supporting a plurality of LEDs; and
a set of connectors coupled to the flexible substrate for connecting the display module to respective connectors of one or more adjacent display modules;
wherein the connectors comprise at least one male connector and at least one female connector.
According to another aspect, although not necessarily the broadest aspect, embodiments of the present invention reside in a light emitting diode (LED) display screen comprising a plurality of LED display modules, each display module comprising a flexible substrate supporting a plurality of LEDs and a set of connectors coupled to the flexible substrate for connecting one of the display modules to respective connectors of one or more adjacent display modules, wherein the connectors comprise at least one male connector and at least one female connector.
According to a further aspect, although not necessarily the broadest aspect, embodiments of the present invention reside in a method of forming a display screen comprising a plurality of LED display modules, each display module comprising a flexible substrate supporting a plurality of LEDs and a set of connectors coupled to the flexible substrate, the method including:
connecting at least one of the set of connectors of one of the display modules to a respective connector of an adjacent display module such that horizontal and vertical alignment of the display modules is maintained during flexing of the display screen, wherein the connectors comprise at least one male connector and at least one female connector.
Suitably, the set of connectors comprises at least one male connector and at least one female connector.
Preferably, the net of connectors comprises at least one connector at each edge of the display module.
Suitably, at least one of the female connectors and/or at least one of the male connectors protrudes beyond an edge of the display module.
Suitably, at least one male connector and/or at least one female connector does not protrude beyond an edge of the display module.
Preferably, at least one female connector is adjacent an edge of the flexible substrate opposite an edge of the flexible substrate having at least one male connector.
Preferably, each female connector comprises an aperture for receiving a projection of a respective aligned male connector of an adjacent display module.
Suitably, the at least one male connector and the at least one female connector connect adjacent display modules such that an LED pitch size of each display module is maintained between adjacent display modules.
Preferably, at least the connectors are aligned with reference marks on the flexible substrate for horizontal and vertical alignment of adjacent display modules to ±3% of an LED pitch size of the display modules.
Preferably, a flexible housing can be mounted to a first side of the flexible substrate.
Preferably, a flexible cover can be mounted to a second side of the flexible substrate.
Suitably, at least one magnet can be coupled to the flexible housing for attaching the display module to a surface.
Preferably, a data plug and a data socket can be coupled to the flexible substrate.
Preferably, a power connector is coupled to the flexible substrate.
Preferably, at least one channel is provided in the flexible housing for accommodating one or more cables.
Suitably, at least one cable restraint is adjustably coupled to the flexible housing.
Preferably, the display module is waterproof.
Suitably, the display module further comprises one or more elongate strengthening members, preferably in the flexible housing, to prevent over bending of the display module.
Further features and aspects of the present invention will become apparent from the following detailed description.
The patent or application file contains at least one drawing executed in color. Copies of this patent or patent application publication with color drawing(s) will be provided by the Office upon request and payment of the necessary fee.
In order that the invention may be readily understood and put into practical effect, reference will now be made to embodiments of the present invention with reference to the accompanying drawings, wherein like reference numbers refer to identical elements. The drawings are provided by way of example only, wherein:
Skilled addressees will appreciate that elements in the drawings are illustrated for simplicity and clarity and have not necessarily been drawn to scale. For example, the relative dimensions of some of the elements in the drawings may be distorted to help improve understanding of embodiments of the present invention.
In this specification, adjectives such as first and second, left and right, and the like may be used solely to distinguish one element or action from another element or action without necessarily requiring or implying any actual such relationship or order. The terms “comprises”, “comprising” or similar terms are intended to mean a non-exclusive inclusion, such that a method, system or apparatus that comprises a list of elements does not include those elements solely, but may well include other elements not listed.
Referring to
As will be described in more detail hereinafter, two or more display modules 10 can be connected together along the longer first edge 18 and/or along the shorter second edge 20 to form a flexible display screen of the desired size and shape for any application.
The display module 10 comprises a flexible housing 22 mounted to a first side 24 of the flexible substrate 12 and a flexible cover 26 mounted to a second side 28 of the flexible substrate 12 (shown more clearly in
According to some embodiments, at least one magnet 32 can be coupled to the flexible housing 22 for attaching the display module 10 to a magnetic surface. As shown in
A power connector 36 is coupled to the flexible substrate 12 via a wire 38 passing through an aperture 40 in the flexible housing 22. Power connector 36 enables power to be supplied to the LED display module 10 and allows adjacent display modules 10 forming the display screen to be coupled together and power to be provided thereto. Channel 130 in housing 22 accommodates respective DC power cables 128, which are held in place with cable restraints 132 adjustably coupled to the housing 22.
Display module 10 also comprises a data plug 42 and a data socket 44 coupled to the flexible substrate 10 via ribbons 46 passing through apertures 48 in the flexible housing 22. Data plug 42, data socket 44 and ribbons 46 communicate data signals to and from flexible substrate 10 in the form of a PCB and enable data to be communicated between adjacent display modules 10 coupled together. Ribbons 46 are held in place by one or more cable restraints 49 adjustably coupled to the flexible housing 22.
According to the embodiment shown in
Display module 10 also comprises two spaced apart male connectors 50 coupled to the flexible substrate 12 adjacent the opposite longer first edge 18 for connecting the display module 10 to at least two respective female connectors of another adjacent display module along the opposite longer first edge 18.
Display module 10 further comprises two spaced apart female connectors 52 coupled to the flexible substrate 12 adjacent one of the shorter second edges 20 for connecting the display module 10 to at least two respective male connectors of a further adjacent display module along the shorter second edge 20.
Display module 10 also comprises two spaced apart male connectors 54 coupled to the flexible substrate 12 adjacent the opposite shorter second edge 20 for connecting the display module 10 to at least two respective female connectors of another adjacent display module along the opposite shorter second edge 20.
Flexible housing 22 comprises suitably located, sized and shaped apertures or cut-outs to enable the connectors 16, 50, 52, 54 to be coupled to the flexible substrate 12 beneath the housing 22.
With reference to
According to some embodiments, reference marks can also be used for the accurate positioning of other components of the display module 10 including electronic components, such as LEDs, capacitors etc. and structural components, such as magnets 32.
The partially exploded view in
Female connector 16 shown in
Referring to
Referring to
Referring to
In this embodiment, spaced apart female connectors 52 protrude beyond the second shorter edge 20 of the display module 10 such that both connectors 52 overlap with an adjacent display module. Spaced apart male connectors 50 adjacent second longer edge 18 and spaced apart male connectors 54 adjacent second shorter edge 20 do not protrude beyond edges 18, 20 respectively of the display module 10. However, in alternative embodiments one or more male connectors can protrude beyond one or more edges of the display module 10 and one or more of the female connectors may not protrude beyond edges of the display module 10.
It will also be noted that in this embodiment, male connectors 50, 54 having the projections 100, 120 are coupled to the flexible substrate 12 adjacent edges 18, respectively opposite edges 18, 20 of the display module 10 having female connectors 16, 52 comprising apertures 82, 92.
However, it should be appreciated that in other embodiments the locations of at least some of the connectors 16, 50, 52, 54 can be changed. For example, the locations of either or both female connectors 16 can be swapped with the locations of either or both male connectors 50 since both types of connectors 16, 50 have elongate bases 76, 102 and stepped undersides 84, 108. Similarly, the locations of either or both female connectors 52 can be swapped with the locations of either or both male connectors 54 since both types of connectors 52, 54 have L-shaped bases 86, 112 and are located adjacent the respective shorter edges 20 of the display module 10. Such swapping of connectors would yield a more complicated connection configuration and such swapping would need to be uniform across all display modules 10 to ensure the connectivity of all modules.
In the embodiment shown, two connectors are provided at each edge 18, 20 of the display module 10. The set of connectors comprises at least one connector at each edge 18, 20 of the display module 10 to enable attachment of another display module to any side of the display module. It will be appreciated that more than two connectors could be provided at each edge of the display module 10.
It should also be appreciated that other shapes of display module are envisaged other than rectangular and with a number of sides other than four. However, it will be appreciated that the shape of the display module should be such that the display modules will tessellate leaving no spaces between the display modules. Hence, other possible shapes of display module include, but are not limited to, triangles, trapezoids, diamonds, other quadrilaterals, hexagons.
Referring to
Hence, according to another aspect, embodiments of the present invention reside in a light emitting diode (LED) display screen 126 comprising a plurality of LED display modules 10A, 10B, 100, 10D, each display module comprising a flexible substrate 12 supporting a plurality of LEDs and a set of connectors 16, 50, 52, 54 coupled to the flexible substrate 12 for connecting the display modules to respective connectors 50, 16, 54, 52, of adjacent display modules along at least one edge 18, of the display module 10. Whilst
With reference to
With reference to the general flow diagram in
The method 150 can include at 154 coupling the data plug 42 of one display module 10 to the data socket 44 of the adjacent display module.
The method 150 can include at 156 coupling the power connector 36 of one display module 10 to the power connector 36 of the adjacent display module.
The method 150 can include at 158 connecting at least two connectors, e.g. female connectors 52, of one of the display modules, e.g. the first display module, to at least two respective connectors, e.g. male connectors 54, of another adjacent display module. This can be repeated until the desired size and shape of display screen is achieved.
According to some embodiments, the display module 10 has the following specifications: brightness=5000 nits (cd/m2); RGB 3 in 1 SMD LEDs; resolution=32(W)×16(V); viewing angle 50% brightness=140(H/V) (+70/−70); pixel pitch=10 mm; color temperature=6500K; refresh rate>300 Hz; color=RGB 256×256×256; bending radius along long axis<160 mm; magnet height=10 mm; gray scale level=16 bits; brightness level=256; no. modules/m2=19. It will be appreciated that these specifications are exemplary only and do not limit the scope of the present invention. The display module 10 is also waterproof and can therefore be used for both indoor and outdoor applications.
Hence, the aspects of the present invention as described herein address or at least ameliorate the aforementioned problems associated with known LED display modules and display screens formed therefrom. Female connectors 16, 50 and male connectors 52, 54 are accurately located on flexible substrate 12 and enable accurate coupling of adjacent display modules 10. Accurate vertical and horizontal alignment of the LED display modules 10 is maintained to ±3% of an LED pitch size of the display modules, particularly during flexing of the display modules and the display screen 126 formed therefrom. Misalignment of display modules during flexing is therefore prevented or at least very much ameliorated. The LED pitch size is also maintained between adjacent modules particularly during flexing and hence the image quality of the display screens is preserved. Another advantage is that access to the rear of the display modules is straightforward, for example for maintenance purposes. The power and data cables are neatly routed through the flexible housing 22 at the rear of the display module 10, for example through channels 130, creating an uncluttered environment, thus simplifying maintenance and trouble-shooting. No cabling is visible from the front of the display module and no gap occurs between adjacent display modules during flexing, thus creating an aesthetically pleasing display module and display screen. Cover 26 reflects ambient light and improves the contrast ratio, which can often be problematic with conventional LED display screens particularly in outdoor applications. Furthermore, the display modules are waterproof enabling use in outdoor applications as well as indoor applications.
Throughout the specification the aim has been to describe the invention without limiting the invention to any one embodiment or specific collection of features. Persons skilled in the relevant art may realize variations from the specific embodiments that will nonetheless fall within the scope of the invention.