The present invention relates to a magnetic whiteboard utility holder for the use of storing markers, dry-erase erasers, and other implements related to the application of the utilities of a whiteboard and combinations of ferrous and non-ferrous materials in configurations that embody the function thereof. The function of the device has uses in instances of communication, instruction, demonstration and examination of art, cogitation and conception. This invention helps resolve complications associated with storage and immediate accessibility to function specific utilities and accessories.
Whiteboards have become increasingly more popular, essentially replacing chalkboards. However, there have been issues associated with whiteboards such as storing markers and dry-erase erasers in an accessible place in close proximity to the whiteboard. With larger whiteboards, there is often a ledge attached to the bottom of the whiteboard on which the markers and dry-erase erasers may rest until they are needed. However, these ledges may cause a safety hazard as clothing may snag on their corners. The present invention negates the need for such a ledge.
In the case of smaller whiteboards, which typically do not have a ledge attached to the bottom, the need still persists for an accessible place of storage for dry-erase markers, dry-erase erasers, and other useful implements. This invention helps fulfill that need.
When using a whiteboard, there are often problems of convenience, utility, and with the marker losing its ink largely due to improper storage. This invention aids in convenience such that the magnets allow the utility holder to be placed anywhere there is ferrous material that allows magnetic attraction. The channels and the placement of the planar, proportioned and sized magnets therein are unique to this design and the placement of which allows maximum magnetic attraction by minimizing the attraction distance between the adhering back-facing surface of the invention and the surface of the whiteboard. The structure of the container aids in the ability to use in a multi-use utility fashion. This invention also aids in the preservation of markers by allowing them a proper place of storage in a downward position. The utility holder can hold a plurality of markers, a dry-erase eraser, and implements that may be of similar size and use. The utility holder incorporates the use and functionality of additional implements for use in the spirit of the invention.
A magnetic whiteboard utility holder comprises an open interior defined by a bottom wall joining front, rear, and side walls. The utility holder may be bottomless, in such event the side walls are self supporting. The rear wall comprises one or more magnets for mounting the utility holder onto the whiteboard's magnetic surface. The open interior comprises walls forming at least one cuboid and a plurality of cylinders each suitable for storing a single whiteboard marker, each marker comprising a removable cap. The cylinders comprise at least partially tapered walls at a distal end proximate the bottom wall, wherein when the marker is inserted cap first into the cylinder, the cap is held in place within the distal end when the marker is subsequently withdrawn by a user. The tapered cylinders may be bottomless to allow for removal of the cap by pushing the cap upwards through the mouth of the cylinder.
The cylinders may also be used for storage and containment of a plurality of implements such as pens and pencils. The single open-topped cuboid may be used for storage and containment of a dry-erase eraser, a dry-erase marker or markers, or a plurality of implements.
The utility holder may comprise four vertical cylindrical recesses of equal height and diameter, arranged in two isometric vertical pairs rotated on a vertical axis on opposite sides of the cuboid, whereby an isosceles trapezoidal profile view is created from the top and bottom of the utility holder. The utility holder may further comprise two parallel vertical channel-tracks of equal isometry and T-shaped from top and bottom views, situated on each side of the cuboid recess between the outer-most cylindrical recesses and the cuboid recess, wherein are embedded magnets mounted substantially planar to the back surface. The central cuboid may be equal in width, from front to back, of 1.5 diameters of a single cylindrical recess.
The whiteboard may comprise a glass surface with a white sheet of equal length and width placed directly behind it and a metal sheet of equal length and width placed directly behind the white sheet. This allows the utility holder to adhere to the whiteboard due to a magnetic attraction. The whiteboard may also be impregnated with a ferrous material or ferrous materials.
The cylinders may comprise a resilient metal projection that applies pressure to the dry-erase markers keeping them in place, allowing the invention to be placed in any position without the dry-erase markers falling out. The cuboid may have Velcro adhered to the bottom, allowing the invention to be placed in any position without the dry-erase eraser falling out given the dry-erase eraser comprises the corresponding Velcro piece, allowing it to adhere to the Velcro at the bottom of the cuboid. This may be especially useful when the utility holder is bottomless, or at least partially bottomless.
A buffering material may be firmly affixed on the back surface that covers the entire contact surface of the back of the container. This buffering material may be a sturdy, lightweight material that increases the surface friction between the back magnetic surface of the structure and the adhering ferrous surface. More effectively, this design modification enhances the magnetic properties with minimal interference between the adhering surfaces. The buffering material serves to protect the whiteboard surface and the back surface of the invention. The buffering material may be a rubber material. The buffering material may also be a microfiber, felt or felt-like material that may also serve as a dry-erase eraser or whiteboard cleaner. The buffering material may be placed on any part of the outer surface of the invention.
The whiteboard utility holder is designed to functionally have the lowest profile possible while maintaining maximum magnetic attraction. The design specifically allows stored markers and other items an extended life of working effectiveness. The magnets are placed in an efficient and convenient configuration that reduces weight and maximizes overall magnetic attraction due to proximity to the adhering surface. The shape and design of the invention is easily manufactured from several materials.
In order that the advantages of the invention will be readily understood, a more particular description of the invention briefly described above will be rendered by reference to specific embodiments illustrated in the appended drawings. Understanding that these drawings depict only typical embodiments of the invention and are not therefore to be considered limiting of its scope, the invention will be described and explained with additional specificity and detail through use of the accompanying drawings, in which:
It will be readily understood that the components of the present invention, as generally described and illustrated in the Figures herein, could be arranged and designed in a wide variety of different configurations. Thus, the following more detailed description of the embodiments of the invention, as represented in the Figures, is not intended to limit the scope of the invention, as claimed, but is merely representative of certain examples of presently contemplated embodiments in accordance with the invention. The presently described embodiments will be best understood by reference to the drawings.
The utility holder comprises two parallel vertical channel-tracks of equal isometry and T-shaped, wherein are embedded two isometric magnets 108 of equal dimension. The T-shaped magnets 108 are mounted substantially planar to the top surface 102 and substantially planar to a back surface covered by a buffering material 109. The T-shaped magnets 108 are situated in the utility holder on each side of the central cuboid recess 107 between the outer-most cylindrical recesses 104 and 105 and the central cuboid recess 107. The T-shaped magnets 108 allow the utility holder to adhere to any ferrous surface such as a whiteboard designed with a ferrous surface.
The two bean-shaped recesses 110 serve to make the magnetic whiteboard utility holder lighter in weight. They are situated on each side of the central cuboid recess 107 from front to back between the cylindrical recesses 103 and 106 and the T-shaped magnets 108, and from side to side between the central cuboid recess 107 and the outer-most cylindrical recesses 104 and 105.
The buffering material 109 may be made of a rubber material. The buffering material 109 may also be made of a felt or felt-like material such as a microfiber material, in which the buffering material 109 may act as a dry-erase eraser. The buffering material 109 is designed to protect the back surface of the utility holder from damage due to contact with the intended adhering surface. The buffering material 109 is also designed to increase surface friction between the utility holder and the intended adhering surface.
The magnetic whiteboard utility holder comprises two parallel vertical channel-tracks of equal isometry and T-shaped, wherein are embedded two isometric magnets 208 of equal dimension. The T-shaped magnets 208 are mounted substantially planar to the top surface 202 and substantially planar to the back surface 211. The T-shaped magnets 208 allow the utility holder to adhere to any ferrous surfaces such as a whiteboard designed with a ferrous surface.
The utility holder comprises two parallel vertical channel-tracks of equal isometry and T-shaped, wherein are embedded two isometric magnets 308 of equal dimension. The T-shaped magnets 308 are mounted substantially planar to the top surface 302 and substantially planar to the back surface. The T-shaped magnets 308 allow the utility holder to adhere to any ferrous surface such as a whiteboard designed with a ferrous surface. The buffering material 309 is thin enough to allow the T-shaped magnets 308 to adhere to a ferrous surface. The buffering material 309 protects the surface of the invention and the intended adhering surface.
The utility holder comprises two parallel vertical channel-tracks of equal isometry and T-shaped, wherein are embedded two isometric magnets 608 of equal dimension. The T-shaped magnets 608 are mounted substantially planar to the top surface 602 and substantially planar to a back surface covered by a buffering material 609. The T-shaped magnets 608 are situated in the utility holder on each side of the central cuboid recess 607 between the outer-most cylindrical recesses 604 and 605 and the central cuboid recess 607. The T-shaped magnets 608 allow the utility holder to adhere to any ferrous surface such as a whiteboard designed with a ferrous surface.
The invention disclosed herein may be embodied in other specific forms without departing from their spirit or essential characteristics. The described embodiments are to be considered in all respects only as illustrative and not restrictive. The scope of the invention is, therefore, indicated by the appended claims rather than by the foregoing description. All changes which come within the meaning and range of equivalency of the claims are to be embraced within their scope.
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