MODULAR STORAGE SYSTEM AND WORK STATION
20170029198 ยท 2017-02-02
Assignee
Inventors
- DUSTIN R. PRATT (NO. HOLLYWOOD, CA, US)
- Mustafa Noorzai (Moorpark, CA, US)
- Omar Noorzai (Camarillo, CA, US)
- George J. Huang (Rancho Cucamonga, CA, US)
Cpc classification
G06F1/1633
PHYSICS
B65D81/361
PERFORMING OPERATIONS; TRANSPORTING
A47B21/00
HUMAN NECESSITIES
A45C2200/15
HUMAN NECESSITIES
A45C13/02
HUMAN NECESSITIES
A45C9/00
HUMAN NECESSITIES
International classification
B65D81/36
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A modular storage system and work station comprised of connectable modules that are operative to form portable work spaces that are easily adjustable and provide for an attachment system that allows for various accessories, computers, notebooks and the like to be detachably secured to the work station. In a preferred embodiment, the modules are comprised of a honeycomb-like structure that is operative to allow for the attachable interconnection of male- and female-type parts. The modular storage system and work station of the present invention may further be designed to be operatively transitional from a first carrying case-type configuration to a work station configuration, the latter defining a selectively adjustable work surface to which various accessories can be attached and selectively positioned. The storage system can also be scaled up to support larger equipment or serve as a display system with the help of electrical lighting elements, or scaled down to serve as more personal storage units such as a tool box or lunch box.
Claims
1. A modular storage system and work station comprising: at least one container member having a plurality of apertures formed thereon wherein each respective one of said apertures is operative to receive and interconnect with an anchor member positionable therein, said anchor member being operative to attach an accessory to said container member; and a generally flat surface formed upon a portion of said container member having said apertures formed thereon, said surface being operative to define a work surface upon which said anchor members may be received and to which said accessories can be attached.
2. The system of claim 1 wherein said container member is defined by first and second shell members that are operatively transitional between a first interconnected configuration whereby said first and second shell members define an interior compartment defining a storage area, and transitional to a second operative, expanded configuration whereby said first and second shell members cooperate to define said work surface, said first and second shell members having dedicated flat surfaces formed thereon that cooperates to define said work surface.
3. The system of claim 2 wherein said first and second shell members are operative to detachably engage one another to maintain said first closed configuration.
4. The system of claim 2 wherein said system further comprises a handle mechanism to facilitate the transportation of said first and second shell members when said shell members are interconnected to one another.
5. The system of claim 4 wherein said first and second shell members having said handle formed thereon are operative to define a carrying case when said first and second shell members are maintained in an interconnected condition.
6. The system of claim 1 wherein said apertures comprise hexagonal apertures formed in a honeycomb-type arrangement about each respective shell member, said plurality of hexagonal apertures each being operative to receive hexagonal anchor members positionable therein for attaching said accessories to said shell members.
7. The system of claim 2 wherein such system further comprises at least two modular supports operative to interconnect with said first and second shell members when said shell members assume said second operative, expanded configuration defining said work surface, said modular supports being selectively interconnectable to said shell members such that the height of said work surface defined by said first and second shell members may be selectively adjusted.
8. The system of claim 2 wherein such system further comprises at least two modular supports operative to interconnect with said first and second shell members when said shell members assume said second operative configuration defining said work surface, said modular supports being interconnectable such that the incline of said work surface defined by said first and second shell members may be selectively adjusted.
9. The system of claim 2 wherein such system includes at least four modules or supports, said modules or supports being interconnectable to said first and second shell members and also being interconnectable to like modular supports, said modular supports being interconnectable to said shell members and to other like modules such that said height and incline of said work surface defined by said first and second shell members may be selectively adjusted.
10. The system of claim 2 wherein said system is formed from molded plastic.
11. The system of claim 2 further comprising at least one accessory selected from the group consisting of: flat panels operative to define planar surfaces when said panels are interconnected via at least one anchor to said planar surface of apertures formed upon said work surfaces; holding devices operative to secure user's items such as cups, cables, and writing instruments; and mounting devices operative to hold and selectively position a portable electronic device, said portable electronic device being selected from the group consisting of a portable computer, tablet, writing instruments, or any equipment desired by the user.
12. The system of claim 2 wherein said system is operative to interconnect with at least one lighting source.
13. The system of claim 12 wherein said lighting source is an LED light.
14. The system of claim 2 further comprising a decorative item of artwork detachably interconnectable to said container member. The system of claim 9 wherein any of the modular supports can be expanded in length, width, and height through built-in interlocking.
15. The system of claim 9 wherein any of the modular supports can be attached to other modular supports at any angle through built-in interlocking designs.
16. The system of claim 2 wherein said work surface is operative to receive at least one member operative to define a podium upon which a portable electronic device may be positioned.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0014] These as well as other features of the present invention will become more apparent upon reference to the drawings, wherein:
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DETAILED DESCRIPTION
[0029] The detailed description set forth below is intended as a description of the presently preferred embodiment of the invention, and is not intended to represent the only form in which the present invention may be implemented or performed. The description sets forth the functions and sequences of steps for practicing the invention. It is to be understood, however, that the same or equivalent functions and sequences may be accomplished by different embodiments and that they are also intended to be encompassed within the scope of the invention.
[0030] Referring now to the figures, and initially to
[0031] Formed about the exterior of the system 10 is a grid or series of equidistantly-spaced apertures 24 that are operative to facilitate interconnection with peg-type anchor members per a male-female type connection, as is well understood in the art. Such male-female interconnection, which serves as the basis for interconnecting various modules of the present invention, is discussed more fully below.
[0032] Referring now to
[0033] Referring now to
[0034] Although a variety of apertures 24 may be provided in spaced arrangement per a number of designs and layouts as will be readily understood by those skilled in the art, it is believed that the hexagon/honeycomb structure as depicted in the figures provide several advantageous capabilities. Those capabilities include the fact that attachments can be put in at six different angles without additional mechanical means of angle adjustment insofar as the angles are in 60 degree increments. The hexagon is also a very strong shape in terms of resisting deformation from pressure exerted on its sides. A three-dimensional structure with hexagonal columns is also very strong in resisting pressure exerted on the hexagonal planes. This makes a column-based hexagonal system an attractive option for surfaces that has to endure pressure. The hexagon is also a very material-efficient design, which allows a honeycomb structure to achieve the highest specific strength (strength-to-weight ratio) among identical materials. While other types of aperture grids are believed to be suited for use with the present invention, any other such design using similar materials will likely be more costly and heavier than the hexagonal, honeycomb-inspired design. In this regard, the system 10 of the present invention may be fabricated from any of a wide variety of materials such as metal or molded plastic.
[0035] To maximize the versatility of the honeycomb arrangement of apertures, there is shown in
[0036] To further facilitate the interconnection between shell members 12,14 while in a closed state, shell members 12,14 will further be provided with interlocking members 12e,14e that are receivable into respective receiving apertures 12f,14f. As will be readily appreciated by those skilled in the art, such locking members and apertures 12e,14e,12f,14f will be readily understood and easily deployed by those skilled in the art and operative to maintain the shell members 12,14 in interconnected condition when assuming the carrying case/attach case configuration. To the extent not already interconnected to the exterior of a respective shell member 12,14, panel members 18a,18b may further be stored within the interior of interconnected shell members 12,14 or may be attached to the exterior of either respective shell portion 12,14 to assume the configuration set forth in
[0037] In order to provide for an extremely versatile and variable work station that can be readily created per the system 10 of the present invention, the system 10 further expressly incorporates the use of modular supports 30 that are operative to interconnect with shell members 12,14 as well as to other like supports 30, as shown in
[0038] With respect to how such modules 30 are operative to facilitate the transformation of the modular storage system and work station 10 of the present invention from its compact, carrying case configuration into a work station area, there is shown in
[0039] As illustrated, the work surface 16 is operative to receive and interconnect with planar member 40 via hexagonal anchors 34 formed on the underside thereof and shown in phantom. Such panel member 40 may be operative to define a surface area to be used for a wireless mouse, support a coffee cup or any of a number of desk space functions. Similarly, a portable computer 36 may be secured to the work surface via hexagonal anchor members 34 that are selectively positioned about the underneath portion of computer 36 and operative to be received within respective ones of apertures 24 formed upon work surface 16.
[0040] As further illustrated, a mount 38, shown in phantom, which may be operative to hold a portable electronic device in any of a variety of configurations, may likewise be interconnected to the work surface 16 by connection of anchor 34 into respective one of apertures 24. As will be readily appreciated by those skilled in the art, the interconnection between anchor members 34 and any of the variety of apertures 24 may be selectively chosen, with the anchors readily detached and selectively repositioned as desired, so that any of a variety of accessories can be attached to the work surface 16 in any configuration as desired.
[0041] To facilitate the ability of the work surface 16 to attain a desired height, there is shown in
[0042] Referring now to
[0043] To the extent a lower profile height, such as B shown in
[0044] To the extent it is desired to have a work surface 16 that has an angled configuration, such as that shown in
[0045] To the extent a greater height is desired, such as C shown in
[0046] With respect to such myriad of options, there is shown in
[0047] As will be readily appreciated by those skilled in the art, the system 10 of the present invention can be used to create strong yet light weight portable or non-portable structures. As mentioned above, the honeycomb inspired male/female design allows for strong yet easily removable attachments at both coplanar and perpendicular angles.
[0048] The system also envisions attachments that can achieve non-perpendicular angles through intentional non-planar design or mechanical means, such as a ball-in-socket joint. These designs allow attachments to achieve optimal and user-adjustable angles within their own physical limitations. Moreover, due to the plurality of apertures formed throughout the honeycomb network, wires can run through a variety of hexagonal apertures 24 to attach circuits or splice signals or to power sources and the like.
[0049] The system 10 is further operative to receive and interconnect with decorative surfaces whereby decorative elements can be attached to the male or female attachments provided throughout the system 10. Such decorative elements can have different colors and graphics, sayings, slogans, various brands, sports team logos, and the like. Along these lines, a wide range of arrangements can be made to further enhance such decorative features and can include, for example, decorative LED units. Other variations can include types of light displays or infrared sensors may be used such that once a sensor detects an infrared signal, it can cause an LED to flash or indicate the reception of such signal.
[0050] It is further expressly contemplated that the modular storage system and work station 10 of the present invention may be incorporated as part of an active work station system whereby not only is the modular storage system portable and operatively transitional to a functional work station, such work station will be active in nature and can be incorporated as part of a physically active system that enables a user to work on a portable electronic device, such as a laptop or notepad, but to do so while in a standing configuration, or in a manner that enables the individual to move and not remain stationary and simply perform repetitious typing activity while staring at a monitor while in a sitting position. To that end, it is believed that the modular storage system and work station 10 of the present invention may be readily utilized with and incorporate inventions conceived by Applicant that relates to an active work station environment. Such inventions are set forth in pending U.S. patent application Ser. No. ______, entitled COMBINATION THERAPEUTIC AND EXERCISE SYSTEM and Ser. No. ______ filed ______ entitled SPLIT ROTATING KEYBOARD SYSTEM, the teachings of which are expressly incorporated herein by reference.
[0051] Additional add-on components not mentioned in this description can be developed to provide functions commonly requested by users, including but not limited to USB plugs for charging electronic devices, tablet or phone holders, clips to attach multiple components and units to form larger working surfaces or other structures such as a column, box, or a small wall for purposes such as trade show displays, etc.
[0052] The hexagonal panels can be extended in length, width, and height by locking with compatible panels that have interlocking features built-in, or through special clips that securely attach two or more panels to form a larger surface.
[0053] The hexagonal panels can also form three dimensional structures with the use of locking elements designed to connect two panels perpendicularly or at any angle of choice.
[0054] Through the choice of materials or supplemental ingredients or components, the present invention will be able to provide additional beneficial capabilities as well, including but not limited to the increase in fiction, ability to help clean the air, ability to resist dust accumulation, provide limited lighting through fluorescence, etc.
[0055] Additional modifications and improvements of the present invention may also be apparent to those of ordinary skill in the art. Thus, the particular combination of parts and steps described and illustrated herein is intended to represent only certain embodiments of the present invention, and is not intended to serve as limitations of alternative devices and methods within the spirit and scope of the invention.