TABLETOP TABLE
A portable tabletop table for gaming and other uses that can be placed on top of a flat surface, such as a table. The portable tabletop table is modular and comprises a plurality of components that can be assembled and dissembled. The tabletop table includes a foldable component comprising an upper surface and a lower surface and a plurality of legs that are removably attachable to the lower surface of the foldable component. The plurality of legs is configured to elevate the foldable component a predetermined height above the flat surface. The portable tabletop table includes an assembled configuration and a storage configuration. In the storage configuration the, the foldable component is configured to fold together and defines a cavity for storing the plurality of legs therein. The plurality of legs defines a plurality of cubbies underneath the foldable component in the assembled configuration.
This application claims the benefit of U.S. Provisional Application No. 63/723,840, filed on Nov. 22, 2024 and U.S. Provisional Application No. 63/781,048, filed on Mar. 31, 2025, the entire disclosures of each are hereby incorporated by reference.
TECHNICAL FIELDThe present disclosure relates generally to the field of elevated tabletop tables. More particularly, some embodiments relate to elevated tabletop gaming tables.
The written disclosure herein describes illustrative embodiments that are non-limiting and non-exhaustive. Reference is made to certain of such illustrative embodiments that are depicted in the figures, in which:
Tables, such as dining tables and kitchen tables may have a variety of different uses. For example, these tables may be used for meals, homework, game nights, puzzles, crafts, art, play time, etc. Tables can become the center of a home and kitchen tables especially may be used multiple times a day for meals. When these tables are used for hobbies, such as crafting and gaming, it becomes difficult to host meals due the hobbies occupying the table. Especially when the hobbies can take multiple hours or days to complete.
The present disclosure is directed to a tabletop table that is portable and modular. The tabletop table may be placed on top of a table, such as a dining table or kitchen table, and enable a user to use the flat surface of the tabletop table for various uses, such as craft and games. When the table needs to be used for another purpose, such as a meal, the tabletop table may be removed from the table in the assembled configuration and placed elsewhere with the game or craft still on the tabletop table. After the meal is completed, the tabletop table may be replaced on the table with the game or craft intact as it was before the meal. Thereby, enabling the user to use the tabletop table for hobbies and not have to a dining table or kitchen table that is exclusive to a hobby.
When a user is finished using the tabletop table for an activity, the tabletop table may be disassembled into a storage configuration for storage or portability. All of the components and accessories for the tabletop table may be stored within a cavity of the tabletop table, making the tabletop table compact.
The components of the embodiments as generally described and illustrated in the figures herein can be arranged and designed in a wide variety of different configurations. Thus, the following more detailed description of various embodiments, as represented in the figures, is not intended to limit the scope of the present disclosure, but is merely representative of various embodiments. While various aspects of the embodiments are presented in drawings, the drawings are not necessarily drawn to scale unless specifically indicated.
The phrase “coupled to” is broad enough to refer to any suitable coupling or other form of interaction between two or more entities, including mechanical interaction. Thus, two components may be coupled to each other even though they are not in direct contact with each other. The phrases “attached to” or “attached directly to” refer to interaction between two or more entities which are in direct contact with each other and/or are separated from each other only by a fastener of any suitable variety (e.g., mounting hardware or an adhesive).
The tabletop table 100 comprises an assembled configuration and a storage configuration that enables the tabletop table 100 to be portable and transportable. In the illustrated embodiment, an upper surface of the tabletop table 100 is only slightly smaller than an upper surface 12 of the table 10. However, the tabletop table 100 may be used on a variety of differently sized tables. The tabletop table 100 is modular with a variety of different components that are storable within a cavity of the tabletop table 100 in the storage configuration.
The tabletop table 100 includes a foldable component 102 that can be disposed a predetermined distance above the flat surface, such as the upper surface 12 of the table 10. The foldable component 102 may be flat. The tabletop table 100 in the assembled configuration may be removed from the table 10 at any time and placed elsewhere if the table 10 needs to be used for another activity, such as a meal. After the activity is over, the tabletop table 100 in the assembled configuration may be placed back on the table 10.
In the illustrated embodiment, the foldable component 102 may comprise a rectangular shape. In some embodiments, the foldable component 102 comprises a square shape with four edges 104 of equal length. The four edges include a first edge 104a, a second edge 104b, a third edge 104c, and a fourth edge 104d. However, the shape of the foldable component 102 is not so limited. The foldable component 102 may comprise a variety of different shapes, such as circular, oval, polygonal, triangular, and the like.
The foldable component 102 is a trifold and may comprise three distinct portions, a first portion 102a, a second portion 102b, and a third portion 102c. The second portion 102b may be disposed between the first portion 102a and the third portion 102c. The first portion 102a and the third portion 102c may be of equal size. The second portion 102b may be smaller than the first portion 102a and the third portion 102c.
In some embodiments, the edges 104 of the foldable component 102 may comprises a ferromagnetic metallic edge 106. The ferromagnetic metallic edge 106 may extend along the entire perimeter of the foldable component 102, including all four edges 104a, 104b, 104c, 104d. In some embodiments, the ferromagnetic metallic edge 106 may extend along only a portion of the perimeter. A portion of the ferromagnetic metallic edge 106 is disposed on top of the foldable component 102 and a portion of the ferromagnetic metallic edge 106 may be disposed along a side of the foldable component 102. The ferromagnetic metallic edge 106 enables accessories to couple to the top and side of the ferromagnetic metallic edge 106 via magnets on the accessories.
The tabletop table 100 may be elevated a predetermined height above the upper surface 12 of the table 10 by a plurality of legs 110. The plurality of legs 110 define a plurality of cubbies 108 underneath the tabletop table 100 and the flat surface, e.g., the upper surface 12 of the table 10. The cubbies 108 are configured to allow users to place gaming components or personal items on the upper surface 12 of the table 10 within the cubbies 108 and underneath the tabletop table 100. The cubbies 108 are defined by an underside of the foldable component 102, the plurality of legs 110, and the upper surface 12 of the table 10 with only a single opening directed toward an individual user.
The tabletop table 100 may be disassembled into a storage configuration as illustrated in
To disassemble the tabletop table 100, the legs 110 may be removed from the tabletop table 100 and the foldable component 102 may be folded. As discussed previously, the foldable component 102 comprises a first portion 102a, a second portion 102b, and a third portion 102c. As illustrated in
In the illustrated embodiment, the cavity 109 may comprise a plurality of securement members 111. The securement members 111 are configured to secure the plurality of components within the cavity 109. The securement members 111 may further define where to place the components so that they fit snugly within the cavity 109. By way of example, the securement members 111 may be protruding tabs.
An underside of the edges 104 of the foldable component 102 comprise a plurality of engagement members 150 that are configured to engage with each other to close and lock the tabletop table 100 in the storage configuration. For example, the plurality of engagement members 150 may include a first magnet 152, a second magnet 154, a third magnet 156, and a fourth magnet 158. The first magnet 152 and the second magnet 154 are disposed on the first edge 104a. The third magnet 156 and the fourth magnet 158 are disposed on the third edge 104c. The user may pivotably close the tabletop table 100 along the hinges 122, 124 by bringing the first portion 102a toward the third portion 102c enabling corresponding magnets to engage with each other, such as the first magnet 152 engages with the third magnet 156 and the second magnet 154 engages with the fourth magnet 158, thereby closing and locking the tabletop table 100 in the storage configuration. A predetermined amount of force may be required to disengage the engagement member 150 from each other and open the tabletop table 100 from the storage configuration to the open configuration. In some embodiments, the magnets 152, 154, 156, 158 may be disposed with a body of the edge 104 close to the underside of the edge 104. In other words, the magnets 152, 154, 156, 158 are disposed within the thickness of the foldable component 102.
In some embodiments, the plurality of engagement members 150 does not utilize corresponding magnets. For example, the first magnet 152 may be configured to engage with a ferromagnetic material rather than the third magnet 156 and the second magnet 154 may be configured to engage with a ferromagnetic material rather than the fourth magnet 158.
While not illustrated, the tabletop table 100 may further include additional engagement members 150. For example, the second edge 104b and the fourth edge 104d may comprise additional engagement members that are disposed on opposite sides of the second portion 102b. For example, an engagement member may be disposed along the second edge 104b on the first portion 102a and corresponding engagement portion may be disposed along the second edge 104b on the third portion 102c. Similarly, an engagement member may be disposed along the fourth edge 104d on the first portion 102a and corresponding engagement portion may be disposed along the fourth edge 104d on the third portion 102c. These additional engagement members may further help secure the tabletop table 100 in the storage configuration.
While the illustrated embodiment illustrates magnets 152, 154, 156, 158 as engagement members, the present disclosure is not so limited. Additional engagement members may be used to close and lock the tabletop table in the storage configuration. For example, the engagement members 150 may utilize latches, levers, snap fit, push-pull locking, mechanical detents, and the like.
The second leg 110b comprises a rectangular shape with a pair of engagement member 112b coupled to a top surface 114b of the second leg 110b. In some embodiments, the engagement members 112b may be magnets. The second leg 110b further comprises a first slot 116b that extends into the second leg 110b from the top surface 114b.
After the legs 110a, 110b are removed from the cavity 109 of the tabletop table 100, the legs 110a, 110b may couple together to form a support that can elevate the foldable component 102 a predetermined distance above the flat surface, such as the upper surface 12 of the table.
The underside or lower surface of the foldable component 102 may comprise a plurality of engagement members 101 that are configured to engage with the engagement members 112a of the first leg 110a and the engagement members 112b of the second leg 110b. In some embodiments, the engagement members 101 may be magnets.
Alternatively, the first leg 110a may be coupled to the underside of the foldable component 102 by coupling the engagement members 112a to corresponding engagement members 101. After the first leg 110a is coupled to the underside of the tabletop table 100, the first slot 116b of the second leg 110b can be slid into the first slot 116a of the first leg 110a and the engagement members 112b of the second leg 110b couple to corresponding engagement members 101 on the underside of the foldable component 102.
In the illustrated component,
Each locking mechanism 160a, 160b of the illustrated embodiment includes a track 162a, 162b and a slider 164a, 164b. The sliders 164a, 164b are configured to slide along the tracks 162a, 162b. As illustrated, the first track 162a is disposed along the second edge 104b in the first portion 102a and the third portion 102c. The first track 162a has a gap 163a in the second portion 102b. In other words, the first track 162a is foldable along the axis of rotations of the first hinge 122 and the second hinge 124 due to the gap 163a in the second portion 102b of the first track 162a. The second track 162b is disposed is disposed along the fourth edge 104d in the first portion 102a, the second portion 102b, and the third portion 102c. The second track 162b has a gap 163b in the second portion 102b. In other words, the second track 162b is foldable along the axis of rotations of the first hinge 122 and the second hinge 124 due to the gap 163b in the second portion 102b of the second track 162b.
The first track 162a and the first slider 164a may comprise corresponding shapes to enable the first slider 164a to slide along the first track 162a. For example, the first track 162a may comprise a T-slot to receive the first slider 164a that may have a corresponding T-shape to be received in the T-slot of the first track 162a. The second track 162b may comprise a T-slot to receive the second slider 164b that may have a corresponding T-shape to be received in the T-slot of the second track 162b.
The first slider 164a is configured to slide along the first track 162a and the second slider 164b is configured to slide along the second track 162b.
The first slider 164a and the second slider 164b may further comprise a leading edge 165a, 165b. The leading edges 165a, 165b may be chamfered. Accordingly, as the sliders 164a, 164b slide from the first position to the second position, the chamfer of the leading edges 165a, 165b allow the sliders 164a, 164b to align with the track 162a, 162b more easily after passing over the gaps 163a, 163b.
The locking mechanism 160a, 160b may comprise detents to secure the locking mechanism 160a, 160b in the first position and the second position. The detents are configured to maintain the sliders 164a, 164b in its respective position until a predetermined amount of force is applied to advance or retract the slider 164a, 164b out of their current position. Each locking mechanism 160a, 160b are configured to operated independently of each other.
In the illustrated embodiment, the first locking mechanism 160a may comprise detents such as a first magnet 166a, a second magnet 166b, and a third magnet 166c. The second locking mechanism 160b may comprise detents such as a first magnet 167a, a second magnet 167b, and a third magnet 167c. In the first position of the first slider 164a, the first slider 164a engages with the first magnet 166a and the second magnet 166b. In the first position of the second slider 164b, the second slider 164b engages with the first magnet 167a and the second magnet 167b. In the second position of the first slider 164a, the first slider 164a engages with the second magnet 166b and the third magnet 166c. In the second position of the second slider 164b, the second slider 164b engages with the second magnet 167b and the third magnet 167c. Other mechanical detents are within the scope of this disclosure.
Each locking mechanism 160a, 160b may further comprise a stop 168a, 168b. The stops 168a, 168b may disposed at an end of each track 162a, 162b and the stops 168a, 168b are configured to engage with the leading edges 165a, 165b of each corresponding slider 164a, 164, respectively and stop the movement of the slider 164a, 164b along the track 162a, 162b. In the illustrated embodiments, the stops 168a, 168b are disposed in the third portion 102c of the foldable component 102.
In some embodiment, each slider 164a, 164b may comprise a gripping member 169a, 169b to enable the user to easily grip the sliders 164a, 164b to advance or retract the sliders 164a, 164b from the first position to the second position and vice versa. In some embodiments, the gripping members 169a, 169b are protrusions that project from the sliders 164a, 164b. In some embodiments, the gripping members 169a, 169b are a textured surface on the sliders 164a, 164b that help the user grip the sliders 164a, 164b.
As illustrated in
Each of the second pair of accessories 140 includes a body 142 and a projection 144 that extends away from the body 142. Each accessory 140 further includes a plurality of grooves 146 that extend laterally across a top surface of the body 142. The plurality of grooves 146 are configured to hold cards that may be slid into one of the plurality of grooves. Each accessory 140 may further comprise first and second magnets similar to the magnets 138, 139 of the accessory 130 to couple each accessory 140 to the ferromagnetic metallic edge 106.
The tabletop table 100 can be assembled and disassembled. A method of assembling and disassembling a modular tabletop table can include opening the foldable component 102 of the tabletop table 100 exposing the cavity 109 storing the components of the tabletop table 100, such as the legs 110 and the plurality of accessories 130, 140. The method can further include removing the components of the tabletop table 100 from the cavity 109. The method can further include locking the foldable component 102 of the tabletop table 100 in a flat configuration by adjusting the locking mechanism 160 from the first position to the second position. The method can further include assembling the plurality of legs 110a, 110b from the plurality of components together to form an x-shape. The method can further include coupling the plurality of legs 110a, 110b to an underside of the foldable component 102. The method can further include placing the tabletop table 100 in an assembled configuration on the flat surface, such as the upper surface 12 of the table 10. The method can further include dissembling the tabletop table 100 from the assembled configuration to the storage configuration. The method includes decoupling the plurality of legs from the underside of the foldable component 102. The method can further include disassembling the plurality of legs 110a, 110b from the plurality of components from each other. The method can include unlocking the foldable component 102 of the tabletop table 100 to enable the foldable component 102 to fold. The method can further include placing the plurality of components within the cavity 109. The method can further include folding the foldable component 102 to close the tabletop table 100 in the storage configuration.
The tabletop table 100 may be fabricated in from a number of different materials. For example, in some embodiments the tabletop table 100 may be fabricated from hardwood. The tabletop table 100 may also be fabricated from any suitable material, such as acrylonitrile butadiene styrene (ABS), nylon, high-density polyethylene (HDPE), low-density polyethylene (LDPE), polycarbonate (PC), polyoxymethylene (POM), acrylic poly (methyl methacrylate) (PMMA), thermoplastic polyurethane (TPU), thermoplastic rubber (TPR), polypropylene (PP), and the like. In some embodiments, the tabletop table 100 may be manufactured in a variety of different ways, such as CNC machining, rotational molding, thermoset manufacturing such as thermoset injection molding, 3D printing, or any other suitable method of manufacture.
The foldable component 202 may comprise a rectangular shape. In some embodiments, the foldable component 202 comprises a square shape with four edges 204 of equal length. The four edges include a first edge 204a, a second edge 204b, a third edge 204c, and a fourth edge 204d. However, the shape of the foldable component 202 is not so limited. The foldable component 202 may comprise a variety of different shapes, such as circular, oval, polygonal, triangular, and the like.
The foldable component 202 is a bi-fold and may comprise two distinct portions, a first portion 202a and a second portion 202b. The first portion 202a and the second portion 202b may be of equal size.
In some embodiments, the edges 204 of the foldable component 202 may comprises a ferromagnetic metallic edge 206. The ferromagnetic metallic edge 206 may extend along the entire perimeter of the foldable component 202, including all four edges 204a, 204b, 204c, 204d. In some embodiments, the ferromagnetic metallic edge 206 may extend along only a portion of the perimeter. A portion of the ferromagnetic metallic edge 206 is disposed on top of the foldable component 202 and a portion of the ferromagnetic metallic edge 206 may be disposed along a side of the foldable component 202. The ferromagnetic metallic edge 206 enables accessories to couple to the top and side of the ferromagnetic metallic edge 206 via magnets on the accessories. Similar to the first accessories 130 and the second accessories 140 illustrated in
The tabletop table 200 may be elevated a predetermined height above the upper surface 12 of the table 10 by a plurality of legs 210. The plurality of legs 210 define a plurality of cubbies 208 underneath the tabletop table 200 and the flat surface, e.g., the upper surface 12 of the table 10. The cubbies 208 are configured to allow users to place gaming components or personal items on the upper surface 12 of the table 10 within the cubbies 208 and underneath the tabletop table 200. The cubbies 208 are defined by an underside of the foldable component 202, the plurality of legs 210, and the upper surface 12 of the table 10 with only a single opening directed toward an individual user.
The tabletop table 200 may be disassembled into a storage configuration as illustrated in
To disassemble the tabletop table 200, the legs 210 may be removed from the tabletop table 200 and the foldable component 202 may be folded. As discussed previously, the foldable component 202 comprises a first portion 202a and a second portion 202b. As illustrated in
The foldable component 202 may be folded along both hinges 222, 224 to define a cavity that components (e.g., legs 210) and accessories 230, 240 can be stored within. The depth of the cavity may be defined by the combined heights of the first portion 202a and the second portion 202b of the foldable component 202. In some embodiments, the foldable component 202 may only comprise a single hinge down a center of the foldable component 202.
An underside of the edges 204 of the foldable component 202 comprise a plurality of engagement members 250 that are configured to engage with each other to close and lock the tabletop table 200 in the storage configuration. The plurality of engagement members 250 may comprise a first magnet 252, a second magnet 254, a third magnet 256, and a fourth magnet 258 that are similar to the first magnet 152, the second magnet 154, the third magnet 156, and the fourth magnet 158 illustrated in
In some embodiments, the plurality of engagement members 250 does not utilize corresponding magnets. For example, the first magnet 252 may be configured to engage with a ferromagnetic material rather than the third magnet 256 and the second magnet 254 may be configured to engage with a ferromagnetic material rather than the fourth magnet 258.
While the illustrated embodiment illustrates magnets 252, 254, 256, 258 as engagement members, the present disclosure is not so limited. Additional engagement members may be used to close and lock the tabletop table in the storage configuration. For example, the engagement members 250 may utilize latches, levers, snap fit, push-pull locking, mechanical detents, and the like.
The underside of the foldable component 202 may be covered with a material 203, such a felt. The felt is configured to cover the underside of the foldable component 202, including the hinges 222, 224. As illustrated in
The second leg 210b comprises a rectangular shape with a first slot 212b that extends into the second leg 210b from a top surface 214b. The first slot 212a accommodates the center ridge 226. The second leg 210b further comprises a second slot 216b that extends into the second leg 210b from a bottom surface 218b. The second slot 216a of the first leg 210a and the second slot 216b of the second leg 210b and configured to engage so that the one slot slides into the other slot.
After the legs 210a, 210b are removed from the cavity 209 of the tabletop table 200, the legs 210a, 210b may couple together to form a support that can elevate the foldable component 202 a predetermined distance above the flat surface, such as the upper surface 12 of the table 10. The coupled legs 210a, 210b form a x-shape, a cross shape, or a t-shape. The ends of the legs 210 in the x-shape are directed toward the corners of the foldable component 102.
After the collar 260 is secured onto the center ridge 226, the first slot 212a of the first leg 210a and the first slot 212b of the second leg 210b are configured to fit over the center ridge 226 and the collar 260.
Any methods disclosed herein include one or more steps or actions for performing the described method. The method steps and/or actions may be interchanged with one another. In other words, unless a specific order of steps or actions is required for proper operation of the embodiment, the order and/or use of specific steps and/or actions may be modified. Moreover, sub-routines or only a portion of a method described herein may be a separate method within the scope of this disclosure. Stated otherwise, some methods may include only a portion of the steps described in a more detailed method.
Reference throughout this specification to “an embodiment” or “the embodiment” means that a particular feature, structure, or characteristic described in connection with that embodiment is included in at least one embodiment. Thus, the quoted phrases, or variations thereof, as recited throughout this specification are not necessarily all referring to the same embodiment.
Similarly, it should be appreciated by one of skill in the art with the benefit of this disclosure that in the above description of embodiments, various features are sometimes grouped together in a single embodiment, figure, or description thereof for the purpose of streamlining the disclosure. This method of disclosure, however, is not to be interpreted as reflecting an intention that any claim requires more features than those expressly recited in that claim. Rather, as the following claims reflect, inventive aspects lie in a combination of fewer than all features of any single foregoing disclosed embodiment. Thus, the claims following this Detailed Description are hereby expressly incorporated into this Detailed Description, with each claim standing on its own as a separate embodiment. This disclosure includes all permutations of the independent claims with their dependent claims.
Recitation in the claims of the term “first” with respect to a feature or element does not necessarily imply the existence of a second or additional such feature or element. It will be apparent to those having skill in the art that changes may be made to the details of the above-described embodiments without departing from the underlying principles of the present disclosure.
Claims
1. A portable tabletop table comprising:
- a foldable component comprising an upper surface and a lower surface; and
- a plurality of legs that are removably attachable to the lower surface of the foldable component, wherein the plurality of legs is configured to elevate the foldable component a predetermined height;
- wherein the portable tabletop table comprises an assembled configuration and a storage configuration;
- wherein in the storage configuration, the foldable component is configured to fold together and defines a cavity for storing the plurality of legs therein; and
- wherein the plurality of legs defines a plurality of cubbies underneath the foldable component in the assembled configuration.
2. The portable tabletop table of claim 1, wherein a number of cubbies corresponds to a number of edges of the foldable component in the assembled configuration.
3. The portable tabletop table of claim 1, wherein a number of cubbies defined by the plurality of legs is double a number of legs of the plurality of legs.
4. The portable tabletop table of claim 1, further comprising a locking mechanism and configured to secure the foldable component in a flat configuration.
5. The portable tabletop table of claim 4, wherein the locking mechanism is a collar that couples to an underside of the portable tabletop table across the fold of the foldable component to secure the foldable component in the flat configuration.
6. The portable tabletop table of claim 5, wherein the collar is secured to the underside of the portable tabletop table by magnets.
7. The portable tabletop table of claim 1, wherein the foldable component comprises a first portion and a second portion, wherein a first hinge pivotable couples the first portion to the second portion, and wherein a collar is configured to be disposed over a center ridge on an underside of the foldable component in a flat configuration and the collar is configured to secure the foldable component in the flat configuration.
8. The portable tabletop table of claim 1, wherein the plurality of legs comprises a first leg and a second leg that are configured to be assembled together to form an x-shape.
9. The portable tabletop table of claim 8, wherein the first leg comprises a first slot and the second leg comprises a first slot, wherein the first slot of the first leg is configured to slide into the first slot of the second leg to form the x-shape.
10. The portable tabletop table of claim 9, wherein the first leg further comprises a second slot and the second leg further comprises a second slot, wherein the second slot of the first leg and the second slot of the second leg and configured to slide over a center ridge and fold of the foldable component.
11. The portable tabletop table of claim 8, wherein the first leg and the second leg each comprise magnets that are configured to secure the first leg and the second leg to magnets disposed on an underside of the foldable component.
12. The portable tabletop table of claim 1, further comprises a plurality of magnets disposed along edges of the foldable component,
- wherein corresponding magnets of the plurality of magnets are configured to engage with each other and secure the portable tabletop table in the storage configuration.
13. A modular tabletop table comprising:
- a foldable component comprising a first portion, a second portion, and a third portion,
- a first hinge that pivotable couples the first portion to the second portion;
- a second hinge that pivotable couples the second portion to the first portion;
- a locking mechanism comprising a first position and a second position;
- wherein in the first position of the locking mechanism, the foldable component is foldable to a storage configuration;
- wherein in the second position of the locking mechanism, the foldable component is secured in a flat configuration; and
- a plurality of legs that are removably attachable to the foldable component in the flat configuration.
14. The modular tabletop table of claim 13, wherein the plurality of legs is storable within a cavity defined by the foldable component in the storage configuration.
15. The modular tabletop table of claim 13, wherein the locking mechanism further comprises:
- a track that extends along the first portion and the third portion on an underside of the foldable component;
- a slider that slides along the track;
- wherein in the first position, the slider is disposed in the track in the first portion of the foldable component; and
- wherein in the second position, the slider is disposed in the track in the first portion, the second portion, and the third portion of the foldable component.
16. The modular tabletop table of claim 15, wherein the locking mechanism comprises a first detent that secures the slider in the first position and a second detent that secures the slider in the second position.
17. The modular tabletop table of claim 15, wherein the locking mechanism comprises a pair of tracks and a pair of sliders, a first track and a first slider are disposed on a first side of the foldable component and a second track and a second slider are disposed on an opposing side of the foldable component.
18. A portable tabletop table comprising:
- a foldable component comprising an upper surface and a lower surface;
- a plurality of legs that are removably attachable to the lower surface of the foldable component, wherein the plurality of legs is configured to elevate the foldable component a predetermined height; a ferromagnetic metallic edge that extends along a portion of a perimeter of the foldable component; and
- a plurality of accessories is configured to couple to the ferromagnetic metallic edge;
- wherein the portable tabletop table comprises an assembled configuration and a storage configuration; and
- wherein in the storage configuration, the foldable component is configured to fold together and defines a cavity for storing the plurality of legs and the plurality of accessories therein.
19. The portable tabletop table of claim 18, wherein the plurality of legs defines a plurality of cubbies underneath the foldable component in the assembled configuration.
20. The portable tabletop table of claim 19, wherein each accessory comprises a projection that extends from a body of the accessory;
- wherein the projection of the accessory comprises a first magnet configured to engage with an upper surface of the ferromagnetic metallic edge; and
- wherein the body of the accessory comprises a second magnet configured to engage with a side surface of the ferromagnetic metallic edge.
Type: Application
Filed: Nov 21, 2025
Publication Date: May 28, 2026
Inventors: Connor COLLINS (Tustin, CA), Henry HILTNER (Seattle, WA)
Application Number: 19/397,228