Embodiments of the invention are defined by the claims below, not this summary. A high-level overview of various aspects of the invention are provided here for that reason, to provide an overview of the disclosure, and to introduce a selection of concepts that are further described below in the detailed-description section below. This summary is not intended to identify key features or essential features of the claimed subject matter, nor is it intended to be used as an aid in isolation to determine the scope of the claimed subject matter.
In brief and at a high level, this disclosure describes, among other things, a device, system, and kit for creating a pixel artwork on a substrate, which may include pixelated components that visually contrast to collectively form a pixelated image. Embodiments of the invention include a stencil for generating a pixelated grid on a surface of a substrate. The stencil may be repositionable, include a plurality of apertures, and may guide application of a marking device to a surface of a substrate. The stencil may be used with the marking device to generate a pixelated grid on the substrate's surface by repositioning the stencil atop the substrate and marking the surface of the substrate through the plurality of apertures. The pixelated grid may include multiple pixel components that may be filled-in or colored to create a pixel artwork.
Embodiments of the invention include a stencil for sidewalk chalk that includes a planar body and a plurality of apertures that extend through the planar body. The plurality of apertures may have an orientation that includes a shape, which may be arranged to form a cube, hexagon, or staggered brick orientation. Moreover, the stencil may be configured to guide application of markings on a surface of a substrate to generate a pixelated grid on the surface.
Embodiments of a system for creating pixel artwork may include a sidewalk chalk stencil, an instruction, and a plurality of marking devices. The sidewalk chalk stencil may be configured for generating a pixelated grid formed of a plurality of pixel components on a surface of a substrate. Moreover, the instruction may be configured to designate a position value to each pixel component of the plurality of pixel components based on a location of the each pixel component within the pixelated grid, which may be utilized to fill-in or apply multiple, associated colored markings to the surface of the substrate to create a pixel artwork. Additionally, the plurality of marking devices may be configured to transfer one or more markings to the surface, may include a color element, and may be associated with one or more position values.
Embodiments of the invention also include providing a pixel art kit that includes a sidewalk chalk stencil and a plurality of marking devices. The sidewalk chalk stencil may include a plurality of apertures that have an orientation and may be repositionable on a surface of a substrate. The plurality of marking devices may be configured to transfer a marking device onto the surface of the substrate and thus, may be used to generate a pixelated grid and pixel artwork thereon. In additional aspects, the pixel art kit may include an instruction that may be configured to direct application of one or more marking devices to designated areas of the pixelated grid to create pixel artwork.
Illustrative embodiments of the invention are described in detail below with reference to the attached drawing figures, and wherein:
The subject matter of embodiments of the invention is described with specificity herein to meet statutory requirements. But the description itself is not intended to necessarily limit the scope of claims. Rather, the claimed subject matter might be embodied in other ways to include different steps or combinations of steps similar to the ones described in this document, in conjunction with other present or future technologies. Terms should not be interpreted as implying any particular order among or between various steps herein disclosed unless and except when the order of individual steps is explicitly described.
Embodiments of the invention include, among other things, a device, system, and kit for creating a pixel artwork on a substrate, which may include a pixelated grid formed by multiple, individual pixel components that may be filled-in or colored. In an exemplary embodiment, a stencil for sidewalk chalk may include a planar body presenting a first surface and an opposite second surface and a plurality of apertures that extend through the planar body. The plurality of apertures may comprise an orientation including a cube arrangement, hexagon arrangement, staggered brick arrangement, and the like.
Embodiments of a system for creating pixel artwork may include a sidewalk chalk stencil, an instruction, and a plurality of marking devices. The sidewalk chalk stencil may be configured for generating a pixelated grid formed of a plurality of pixel components on a surface of a substrate. In some aspects, it is contemplated that the stencil for sidewalk chalk may be included in the system. Moreover, the instruction may be configured to designate a position value to each pixel component of the plurality of pixel components based on a location of the each pixel component within the pixelated grid, which may be utilized to fill-in or apply multiple, associated colored markings to the surface of the substrate to create a pixel artwork. Additionally, the plurality of marking devices may be configured to transfer one or more markings to the surface, may include one or more color elements, and may be associated with one or more position values.
Embodiments of the invention also include providing a pixel art kit that includes a sidewalk chalk stencil and a plurality of marking devices. The sidewalk chalk stencil may include a plurality of apertures that have an orientation and may be repositionable on a surface of a substrate. It is also contemplated that the stencil for sidewalk chalk may be included in the pixel art kit. The plurality of marking devices may be configured to transfer a marking device onto the surface of the substrate and thus, may be used to generate a pixelated grid and pixel artwork thereon. In additional aspects, the pixel art kit may include an instruction that may be configured to direct application of one or more marking devices to designated areas of the pixelated grid to create pixel artwork.
Exemplary aspects herein contemplate that the stencil may be configured to generate a pixelated grid on a surface of a substrate. At a high level, the stencil may be utilized with a marking device to create markings on the surface of the substrate, and these markings may correspond to an orientation of the plurality apertures and define individual pixel components that form the pixelated grid. Generally, these aspects contemplate that the stencil may be positioned atop the substrate, and a marking device may create markings on areas of the surface of the substrate that are contactable through the stencil via the plurality of apertures. The stencil may then be repositioned atop a different location of the substrate, and the marking device may create additional markings on different areas of the surface that are contactable through the stencil via the plurality of apertures. The markings created on the surface of the substrate may define borders of multiple, individual pixel components that collectively form the pixelated grid.
In more detailed aspects, the stencil may be configured to be positionable on a substrate such that the second surface may be adjacent and proximate the surface of the substrate, and it is contemplated that such positioning may cause the second surface to be contiguous with the surface of the substrate. At this position, the plurality of apertures present openings that expose the surface of the substrate, which may permit an object, such as a marking device, to traverse through the stencil to contact the surface of the substrate. Further, the planar body may be solid and may be configured to form a barrier over the surface of the substrate, and therefore, the surface of the substrate may only be contacted at areas corresponding to the plurality of apertures.
In addition, it is contemplated that the stencil may be configured to guide application of a marking device on the surface of the substrate, and it is also contemplated that the marking device may be configured to create multiple markings on the surface of the substrate. The stencil may be positioned on the substrate and may be configured to maintain this position while the marking device is being used with the stencil. The marking device may be applied by extending the marking device through the plurality of apertures to contact the substrate in a manner that creates a marking on the first surface of the substrate. Moreover, the marking device may be repeatedly applied such that markings are created at areas of the surface that are exposed by the plurality of apertures and are not created at areas of the surface that are covered by the planar body of the stencil. As a result and upon removal of the stencil, the surface of the substrate may include multiple markings that correspond to the plurality of apertures and may be unmarked at an area corresponding to the planar body. Further, it is contemplated that the stencil may be repositioned to a different location on the substrate, and the marking device may be applied in a same manner to create more markings at different areas of the surface.
In additional aspects, it is contemplated that the stencil may be utilized in connection with the marking device to generate a pixelated grid formed by multiple, individual pixel components that have an orientation corresponding to the plurality of apertures. Generally, the plurality of apertures may have an orientation that may be included in the stencil to form an arrangement, such as a cube arrangement, a hexagon arrangement, a staggered brick arrangement, or the like. As discussed, the marking device may create markings on the surface of the substrate that correspond to the plurality of apertures, and thus, these markings may also have a same arrangement as the plurality of apertures. Consequently, the markings on the surface of the substrate may define borders of the individual pixel components, and the stencil may be repositioned on the substrate such that the marking device may create more markings on the surface that define borders of additional, individual pixel components. Collectively, the individual pixel components form the pixelated grid. Further, the stencil may be repositioned such that the multiple, individual pixel components may be linearly aligned in rows and columns, and the stencil may be continually repositioned until a sufficient amount of individual pixel components have been generated to form a pixelated grid of a desired size. These aspects, as well as other related aspects, are further illustrated and discussed below.
Aspects described herein contemplate that the stencil may be configured such that a variety of marking devices may be implemented to generate a pixelated grid on multiple surfaces, and it is further contemplated that a marking device may include any marking device known to those having ordinary skill in the art so long as the marking device is capable of creating a marking on the substrate. Similarly, the substrate may include any suitable substrate that is capable of receiving a marking from the marking device.
In some aspects, a stencil may be configured for generating a pixelated grid by implementing a chalk marking device such as sidewalk chalk, chalk stick, chalk bag, and/or chalk powder. These aspects contemplate that the pixelated grid may be formed on a substrate capable of receiving a marking from the chalk marking device including, but not limited to, a sidewalk, driveway, chalk board surface, chalk wall, chalk board, and the like. As such, the stencil and components thereof may be configured such that the chalk marking device may create a marking on the surface of the substrate positioned below the stencil at areas exposed by the plurality of apertures. Additional marking devices, other than chalk-type marking devices, may be utilized to generating the pixelated grids described herein.
Further aspects herein contemplate that a stencil may be constructed from a plastic-type material capable of providing a stencil with the functionality described herein.
Accordingly, exemplary embodiments of a stencil for pixel art are shown in
Continuing with
Turning now to
With reference now to
In
In exemplary aspects and with reference to
Other embodiments include a system for creating pixel artwork. The system for creating pixel artwork may include a sidewalk chalk stencil, an instruction, and a plurality of marking devices. Embodiments of the system may include any combination of these components and their respective aspects and features. The sidewalk chalk stencil may be configured for generating a pixelated grid formed by a plurality of pixel components on a surface of a substrate, and the sidewalk chalk stencil may include any of the stencils 100, 200, 300 or any of their respective features. The instruction may be configured to designate a position value to each pixel component of the plurality of pixel components based on a location of the each pixel component within the pixelated grid. The plurality of marking devices may be configured to transfer one or more markings to the surface of the substrate and may be associated with one or more the position values.
In even other embodiments, a pixel art kit may include a sidewalk chalk stencil and a plurality of marking devices. The sidewalk chalk stencil may include a plurality of apertures that have an orientation, and the sidewalk chalk stencil may be repositionable on a surface of a substrate. It is contemplated that the sidewalk chalk stencil may include any of the stencils 100, 200, 300 or any of their respective features. The plurality of marking devices may be configured to transfer a marking onto the surface of the substrate. In some aspects, the pixel art kit may include an instruction as previously discussed herein. The instruction may include a plurality of pixel color indicators associated with each of the multiple pixel components and may be configured to direct application of a marking device to a set of one or more position values on the surface of the substrate (e.g., a color by number concept). Further, the instruction may be further configured to direct application of an additional marking to an additional set of one or more position values on the surface of the substrate to create a pixel artwork according to a pattern of the instruction.
Many different arrangements of the various components depicted, as well as components not shown, are possible without departing from the scope of the claims below. Embodiments of the technology have been described with the intent to be illustrative rather than restrictive. Alternative embodiments will become apparent to readers of this disclosure after and because of reading it. Alternative means of implementing the aforementioned can be completed without departing from the scope of the claims below. Certain features and subcombinations are of utility and may be employed without reference to other features and subcombinations and are contemplated within the scope of the claims.
This application is a nonprovisional of and claims priority to U.S. Provisional Patent Application No. 62/509,829 entitled “Pixel Chalk Art,” filed May 23, 2017, the entirety of which is incorporated by reference herein.
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