DESK HAVING ONE OR MORE COMPACT CONFIGURATIONS
A desk system comprises a platform and at least two legs are connected to the platform. An elongated foot is connected to each of the at least two legs at a lower end thereof, each foot being moveable between (a) an operational position in which the foot extends outwardly in the fore-aft direction of the desk system to provide stability to the desk system in the fore-aft direction, and (b) a compact position in which the foot extends away from the fore-aft direction. An operational configuration of the desk includes each foot being moved to the operational position thereof such that the feet are engaged with a ground surface and the legs are oriented vertically to support the platform with its working surface facing upwardly. A compact configuration of the desk system includes at least each foot being moved to the compact position thereof.
The present application claims priority to U.S. Provisional Application Ser. No. 63/734,590, filed Dec. 16, 2024, the entirety of which is incorporated herein.
FIELDThe present application relates to desk systems.
BACKGROUNDDesk systems used for office and home office settings and the like are well-known. Examples of known desk systems include U.S. Patent Application Publication Nos. 2017/0000254A1, 2019/0025781A1, and 2019/0082823A1.
Prior art desk systems are typically sold in a fully or partially disassembled state, thus requiring more work for a user setting up a desk system. For example, some desk systems are sold with disconnected have legs that must be assembled to the underside of the upper platform or a frame body. Some desk systems have frames with the legs attached to which the user must attach the upper platform.
Also, prior art desk systems once erected in their operational configuration generally remain in that configuration, and have a profile dictated by that configuration. Some may have a reduced vertical profile as a result of lowering, and some may have the ability to have some parts folded or retracted, like a keyboard tray that slides underneath a main platform or folds up. However, these do not significantly reduce the size profile of the system in terms of horizontal footprint.
SUMMARYIn one aspect, the inventors have developed a desk system that can be transitioned from a compact configuration to an operational configuration with the legs and feet remaining connected with the platform. In this aspect, the desk system comprises a platform with a working surface that faces upwardly in the operational configuration of the desk system. At least two legs are connected to the platform at an upper end thereof for extending vertically to support the platform in the operational configuration of the desk system. An elongated foot is connected to each of the at least two legs at a lower end thereof, each foot being moveable between (a) an operational position in which the foot extends outwardly in a fore-aft direction of the desk system to provide stability to the desk system in the fore-aft direction, and (b) a compact position in which the foot extends away from the fore-aft direction. The operational configuration includes each foot being moved to the operational position thereof such that the feet are engaged with a ground surface and the legs are oriented vertically to support the platform with its working surface facing upwardly. The compact configuration of the desk system includes at least each foot being moved to the compact position thereof.
In another aspect, the inventors have developed a design for a desk system that can be moved to a reduced profile configuration while remaining standing—a standing compact configuration. This enables the desk system to remain standing, but have a lower profile to create more space for the user (such as in a tighter modular office space) or for storage of one or more desk systems while standing upright. The desk system comprises a platform with a working surface that faces upwardly in the operational configuration of the desk system. At least two legs connected are to the platform at an upper end thereof for extending vertically to support the platform in the operational configuration of the desk system. An elongated foot is connected to each of the at least two legs at a lower end thereof, each foot being extendible and retractable in a rectilinear manner in a radial direction with respect its associated leg.
Other objects, aspects and advantages of the present application will become apparent from the following detailed description, the accompanying drawings, and the appended claims.
The present application discloses a desk system having an operational configuration and a compact configuration. One non-limiting embodiment of a desk system 10 having such configurations is illustrated in
The reference to the desk system having an operational configuration and a compact configuration, such as a fully compact configuration and/or a standing compact configuration, and being moveable or transitionable therebetween refers to the ability of the desk system to be manipulable between at least the operational configuration and one or more compact configurations while having at least the legs and feet connected, as discussed below. The term operational configuration refers to the normal use condition of the desk system in which the legs extend vertically, stabilized by the feet, to support the platform facing vertically upwardly, such as for writing, supporting a computer, tablet, display monitor, keyboard, mouse etc. The term standing compact configuration refers to a configuration in which the legs remain in a vertical orientation but some components of the desk system are moved to create a reduced profile, particularly in a fore-aft direction (e.g.,
A desk system need not have both the standing and the fully compact configurations, and can have just one compact configuration (e.g., one of the standing and fully compact configurations, or a different one). For example, in some embodiments a desk system could have legs fixedly attached beneath the platform such that the desk system can only move between the operational and standing compact configurations while remaining assembled (and a more compact configuration, such as for shipping, would require some disassembly with disconnection of the legs). Likewise, a desk system could move between an operational configuration and a fully compact configuration without having a standing compact configuration. An example of such a design is having the feet rotate to fold upward towards the legs, rather than rotating about the vertical axes of the legs, whereby the feet are not useable for engaging the ground surface in their compacted position. Details of the various configurations and the structural features of the desk system's 10 illustrated embodiments are provided below.
The desk system 10 comprises a platform 12 with a working surface 14 that faces upwardly in the operational configuration of the desk system. The platform 12 is the part of the desk system 10 that is used for normal functional desk purposes, such as placing a computer, laptop, display monitor or the like on surface 14, writing on papers on surface 14, or any other activity for which a desk is used. The platform 12 may have any construction or configuration, and may be made from any suitable materials, such as metal, plastic, wood or a combination thereof. The platform 12 may have a keyboard tray that slides from a stored position beneath the platform 12 and an extended position extending outward from the platform 12; however, the tray would be considered a component of or addition to platform 12 and is not considered a platform itself.
In the illustrated embodiment, the platform 12 optionally includes a movable part 16 that is moveable between (a) an operational position extending outwardly in the fore-aft direction (e.g.,
That is, the moveable part 16 has its own operational position, which is used when the desk 10 is in its operational configuration, and a compact position used for each of the two compact configurations of the non-limiting illustrated embodiment, which are the fully compact configuration and the standing compact configuration.
The movable part 16 can have different orientations in the compact position other than perpendicular to the stationary part 18, such as being folded or pivoted to overlie the stationary part 18 or any other position of reduced profile, including positions between perpendicular downward and overlying the stationary part 18. Thus, the perpendicular orientation illustrated is not intended to be limiting.
When referring to directions of the desk system or components thereof, such as horizontal, vertical, fore-aft, lateral, etc., for the sake of convenience those terms will refer to the desk system 10 in its operational configuration. In a compacted configuration, and particularly a fully compacted configuration such as for shipping or longer term storage (e.g.,
In the illustrated embodiment, the platform 12 also includes at least one retainer for holding the movable part 16 in the operational position thereof. In the operational position of the movable part 16, the retainer can be moved to a retaining position to retain the movable part 16 in the operational position. To allow the movable part 16 to move to the compact position thereof, the retainer can be moved to a releasing position to release the movable part 16 for movement to the compact position thereof. The retainer in the illustrated embodiment may include, as a non-limiting example, a lock in the form of an elongated rigid member 22, such as a rod, bar or the like, that is attached to an optional handle 24. The handle 24 may be located at or near the forward edge of the movable part 16 of the platform 12, and the rigid member 22 is slidably mounted underneath the movable part 16. When the movable part 16 is in its operational position, the rigid member 22 can be slid inwardly to extend underneath the stationary part 18, thus providing the retaining position of the retainer and supporting the movable part 16 against downward pivoting from its operational position. For additional or alternative retention, the inner end of the rigid member 22 can be received in a corresponding receiver structure mounted underneath the stationary part 18. By way of non-limiting example, the mounting bracket or frame 30, discussed below for pivotally connecting the legs 26, 28, may have a receiving opening for the inner end of the rigid member 22. To release the retainer from its retaining position and move it to its releasing position, the user can move the rigid member 22 outwardly from extension underneath the stationary part 18, such as by pulling on the handle 24, thus enabling the movable part 16 of the platform 12 to pivot downwardly relative to the stationary part 18 to its compact position.
As mentioned, the desk system 10 also comprises at least two legs 26, 28 connected to the platform 12 at an upper end thereof for extending vertically to support the platform 12 in the operational configuration of the desk system 10. In the illustrated embodiment, as an option, the legs 26, 28 are extendible and retractable legs. As can be seen, the legs 26, 28 in the illustrated embodiment have a non-limiting telescoping design in which the lower leg part of narrower diameter slides within the upper leg part of wider diameter to extend/retract the overall length of each leg 26, 28. The extension/retraction of the legs 26, 28 may be performed using one or more motors under operation of a controller to adjust the height of the platform 12 and its work surface 14 in the operational configuration. For example, the user may set the platform 12 to a sitting height for use when seated on a chair or to a standing height for use when standing. The exact setting for each of these heights may be customized to the specific user. Some designs may include a motor for each leg 26, 28 for controlling the extension of each leg individually, typically under a central or common control, or one motor linked to driven mechanisms for each leg 26, 28. In other embodiments, the legs 26, 28 can be manually adjusted, and in some embodiments the legs 26, 28 may be non-adjustable and simply have a static or fixed length. In other designs the legs may not extend/retract and the platform may move up and down with respect to a base frame. Examples of such designs are included in U.S. Patent Publication Nos. U.S. Patent Application Publication Nos. 2017/0000254A1, which is U.S. Pat. No. 10,114,352B2, 2019/0025781A1, which is U.S. Pat. No. 10,649,422B2, and 2019/0082823A1, which is U.S. Pat. No. 10,568,418B2, the entirety of which are incorporated herein by reference. Also, the extension/retraction may be in small periodic or cyclical amounts designed to encourage small changes or movements in user posture/positioning, as discussed in above-incorporated U.S. Patent Publication No. U.S. Patent Application Publication No. 2019/0025781A1.
The legs 26, 28 in the illustrated embodiment are pivotally connected underneath the platform 12. A mounting frame or bracket 30 may optionally be mounted beneath the platform 12 to serve as the mounting point for the legs 26, 28. The manner in which the legs 26, 28 are pivotally mounted is not intended to be limiting, and any form of such mounting may be used.
The legs 26, 28 may be moved to a compact position extending laterally along a lower surface of the stationary part 18 of the platform 12. This is shown in
The desk system 10 also comprises an elongated foot 32, 34 connected to each of the at least two legs 26, 28, respectively, at a lower end thereof. Each foot 32, 34 is moveable between (a) an operational position in which the foot 32, 34 extends outwardly in the fore-aft direction of the desk system to provide stability to the desk system in the fore-aft direction, and (b) a compact position in which the foot 32, 34 extends away from the fore-aft direction. The operational configuration of the desk system 10 includes each foot 32, 34 moved to the operational position thereof and the movable platform part 16 being moved to the operational position thereof, such that the feet 32, 34 are engaged with a ground surface and the legs 26, 28 are oriented vertically to support the platform 12 with its working surface 14 facing upwardly. Conversely, the compact configuration of the desk system 10 (for any type of compact configuration) includes at least each foot 32, 34 being moved to the compact position thereof and the movable part 16 of the platform 12 being moved to the compact position thereof.
In particular, each foot 32, 34 extends forwardly from their legs 26, 28 in the fore-aft direction of the desk system 10, which is the same direction the movable part 16 of the platform 12 extends. The elongated shape of the feet 32, 34 provides enhanced stability, and the forward extension from legs 26, 28 that are set rearward of the laterally extending centerline of the desk system 10 is designed to increase the desk stability. Typically, the bulk of the weight supported by a desk system 10 like that depicted is towards the rear, which is typically where a computer or display will most likely be positioned, with lighter components like a mouse, keyboard, etc. towards the front. Hence, having the legs set slightly back from centerline advantageously locates the support under the most likely location of the weight to be supported. However, because users may lean on the desk system 10 at the forward edge of the platform 12, which tends to tilt the system 10 forwardly (to the right in
For purposes of the compact configuration, the illustrated embodiment has two different compact positions for the feet 32, 34, each for the two different compact configurations. Again, the broader aspects of the present application do not require more than one compact configuration, and hence the inclusion of two in the illustrated embodiment is not limiting. In the illustrated embodiment, each foot 32, 34 is rotatably attached to the lower end of its associated leg 26, 28 to rotate about a vertical axis. The system's 10 standing compact configuration includes at least each foot 32, 34 being moved to the compact position thereof and the movable platform part 16 being moved to the compact position thereof with the legs in a vertical orientation, whereby the standing compact configuration has a lower profile in the fore-aft direction. In an embodiment, each foot 32, 34 in the compact position for the standing compact configuration is rotated to extend in a lateral direction of the desk system 10, as shown in
The desk system's 10 fully compact configuration includes at least each foot 32, 34 being moved to the compact position thereof, the movable platform part 16 being moved to the compact position thereof, and the legs 26, 28 being moved to a compact position extending laterally along a lower surface of the stationary part 18 of the platform 12. Thus, the desk system 10 has a reduced profile in both the fore-aft and vertical directions more amenable for shipping or long-term storage. As mentioned, each leg 26, 28 is pivotally connected for movement between (a) the operational position extending vertically to support the platform in the operational configuration of the desk system (e.g.,
In the illustrated embodiment, having the feet 32, 34 oriented vertically downward in their compact position for the desk system's 10 fully compact configuration allows them to be longer in the forward direction to provide more stability in the desk system's 10 fully operational configuration, while also allowing the movable part 16 to be oriented downward for a smaller fully compact configuration. Specifically, the orientation of the feet 32/34 in the fully compact configuration may allow them to be longer in the forward direction without interfering with the folding down of the movable part 16.
Additionally, when the foot 32, 34 is in the compact position (to the left in
The feet 32, 34 in the fully compacted configuration need not necessarily be designed for rotation about the vertical axis of the legs 26, 28. For example, the feet could be designed to pivot upwardly to extend vertically alongside the legs 32, 34. Such a configuration would enable the legs 26, 28 to fold down to their compact position in the fully compact configuration of the desk system 10 and also avoids interference with the folding of movable part 16. In such a design, the desk system 10 could also have a standing compact configuration provided by a design where a bottom of each leg 26, 28 engages the ground surface to provide some amount of stability when the feet are pivoted upwardly to reduce the fore-aft profile. The standing configuration may be used for leaning the desk system against a wall, another desk system, or any other object, so the stability need not achieve complete free standing ability in that configuration.
For embodiments where the feet 32, 34 rotate about the vertical axis of the legs 32, 34, each foot 32, 34 may have a restraint for inhibiting rotation of the foot about the vertical axis from the operational position, and a release actuator operable by the user for de-activating the restraint. The term restraint means a feature that inhibits movement of a foot from its position, such as its operational position. Examples of restraints include mechanical interlocks, frictional resistance, camming relations, magnetic securement, etc.
The restraint 48 of each foot 32/34 is also an anti-slip friction pad 54, which is located at a distal end of the foot 32/34 for engaging the ground in the operational position of the foot 32/34 and operational configuration of the desk system 10. The same materials mentioned above for pad 52 (or any other friction pad material) may also be used for pad 54.
The actuator 50 is operable by the user to de-activate the restraint by raising the friction pad 54 out of contact with the ground surface, as shown in
In some embodiments, it is possible that the foot 32/34 and mounting thereof to the leg 26/28 may be sufficiently rigid such that the foot 32/34 remains cantilevered with the distal end remaining out of contact with the floor when the lever 58 is depressed and the lifter element 62 and pad 54 is raised. That may obviate the need for the low friction pad(s) or slider(s) 56 in some designs. However, because a user may press downwardly with more weight than anticipated, the friction pad(s) or slider(s) 56 may still be used in a design where the foot 32/34 is expected to remain cantilevered in the event sufficient weight is put on the foot 32/34 to bend it down to floor contact.
In some embodiments, the top surface of the lever 58 may also be provided with an anti-slip frictional material to prevent the user's foot from slipping. This frictional material may also assist the user in rotating the foot 32/34 about the vertical axis of the leg by the user using only his/her foot, with the frictional engagement enabling the user to drag the foot 32/34 around about the vertical axis while depressing it downwardly.
In the embodiment of
The design in
These restraint/actuator examples are not intended to be limiting, and are simply examples to show how some embodiments may work. Any other suitable design may be used as well, including other forms of latches, interlocks, frictional locking, detents, etc.
The feet 32, 34 may optionally have locks, e.g., latches, pins, etc., like that described in reference to
In other embodiments, electronics can be used to coordinate release of the foot locks with the release or movement of the platform 12. For example, the foot locks could be operated by solenoids, and a sensor could detect when a user starts moving the platform 12 from the operational position (or a certain amount away from the operational position, including to the compact position), and in response trigger the solenoids to release the foot locks. Similarly, a sensor could be associated with a platform retainer that secures the platform 12 in the operational position, and movement of that platform retainer to its releasing position could also be detected by the sensor to trigger the solenoids for release of the foot locks. Similarly, the platform retainer could be operated electronically (such as by a solenoid) and a single operator input (such as button on a panel or any other user interface) could trigger release of both the foot locks and the platform retainer at the same time, or separate inputs could be used to release them separately. Motors, particularly small ones, or other electronically responsive devices, such as piezoelectric materials, electrically responsive alloys, etc. could also be used to operate the foot locks or a platform retainer.
The design illustrated in
As mentioned previously, any desk system according to the present application can be put in a container, like desk system 10 inside container 20, and thus the present application provides a packaged desk system for shipping as a separate aspect of the present application. The packaged system comprises the container for shipping the desk system, which may be any type of container, and a desk system like those discussed above with a fully compact configuration in which at least each foot 32, 34 is moved to the compact position thereof, the movable platform part 16 is moved to the compact position thereof, and the legs 26, 28 are moved to a compact position extending laterally along a lower surface of the stationary part 18 of the platform 12. The packaged system enables the desk system 10 to be removable from the container 20 and movable to the operational configuration by moving each of the legs 26, 28, feet 32, 34, and movable part 16 of the platform 12 to the respective operational positions thereof.
The design of
As another option, the design of
The foregoing embodiments have been provided solely for understanding the structural and functional principles of the present application by way of example, and are not intended to be limiting. To the contrary, the present application encompasses all modifications, alterations, substitutions, and equivalents within the spirt and scope of the appended claims.
Claims
1. A desk system having an operational configuration and a compact configuration, the desk system comprising:
- a platform with a working surface that faces upwardly in the operational configuration of the desk system;
- at least two legs connected to the platform at an upper end thereof for extending vertically to support the platform in the operational configuration of the desk system; and
- an elongated foot connected to each of the at least two legs at a lower end thereof, each foot being moveable between (a) an operational position in which the foot extends outwardly in a fore-aft direction of the desk system to provide stability to the desk system in the fore-aft direction, and (b) a compact position in which the foot extends away from the fore-aft direction;
- wherein the operational configuration includes each foot being moved to the operational position thereof such that the feet are engaged with a ground surface and the legs are oriented vertically to support the platform with its working surface facing upwardly, and
- wherein the compact configuration of the desk system includes at least each foot being moved to the compact position thereof.
2. The desk system of claim 1, wherein the platform includes a movable part moveable between (a) an operational position extending outwardly in the fore-aft direction and facing upwardly to provide at least part of the working surface in the operational configuration of the desk system, and (b) a compact position moved inwardly from the operational position,
- wherein the operational configuration also includes the movable platform part being moved to the operational position thereof, and
- wherein the compact configuration also includes the movable part of the platform being moved to the compact position thereof.
3. The desk system of claim 2, wherein the platform includes a stationary platform part and the movable platform part, the moveable platform part being moveable between (a) the operational position extending forwardly in the fore-aft direction from the stationary platform part and facing upwardly to provide part of the working surface in the operational configuration of the desk system, and (b) the compact position moved inwardly from the operational position, and wherein each foot in the operational position thereof extends forwardly from its respective leg.
4. The desk system of claim 3, wherein the compact configuration is a standing compact configuration, the standing compact configuration including at least each foot being moved to the compact position thereof and the movable platform part being moved to the compact position thereof with the legs in a vertical orientation, whereby the standing compact configuration has a lower profile in the fore-aft direction.
5. The desk system of claim 4, wherein each foot is rotatably attached to the lower end of its associated leg to rotate about a vertical axis, the foot in the compact position being rotated to extend in a lateral direction of the desk system.
6. The desk system of claim 3, wherein the compact configuration is a fully compact configuration, the fully compact configuration including at least each foot being moved to the compact position thereof, the movable platform part being moved to the compact position thereof, and the legs being moved to a compact position extending laterally along a lower surface of the stationary part of the platform.
7. The desk system of claim 6, wherein each leg is pivotally connected for movement between (a) an operational position extending vertically to support the platform in the operational configuration of the desk system and (b) the compact position thereof.
8. The desk system of claim 6, wherein in the fully compact configuration of the desk system the feet in the compact position thereof are oriented to extend from the legs in the compact position thereof in a generally vertically downward direction away from the stationary part of the platform.
9. The desk system of claim 6, wherein in the fully compact configuration of the desk system the movable part of the platform in the compact position thereof extends in a generally vertically downward direction away from the stationary part of the platform.
10. The desk system of claim 8, wherein in the fully compact configuration of the desk system the movable part of the platform in the compact position thereof extends in a generally vertically downward direction away from the stationary part of the platform.
11. A packaged desk system for shipping, comprising:
- a container for shipping the desk system; and
- the desk system of claim 6 contained in the container,
- the desk system being removable from the container and movable to the operational configuration by moving each of the legs, feet, and movable part of the platform to the respective operational positions thereof.
12. The packaged desk system of claim 11, wherein each leg of the desk system is pivotally connected for movement from the compact position thereof to an operational position extending vertically to support the platform in the operational configuration of the desk system after removal of the desk system from the container.
13. The packaged desk system of claim 12, wherein in the fully compact configuration of the desk system the feet in the compact position thereof are oriented to extend from the legs in the compact position thereof in a generally vertically downward direction away from the stationary part of the platform, the feet being moveable to the operational position thereof after the removal of the desk system from the container.
14. The packaged desk system of claim 12, wherein in the fully compact configuration of the desk system the movable part of the platform in the compact position thereof extends in a generally vertically downward direction away from the stationary part of the platform, the movable part being moveable to the operational position thereof after the removal of the desk system from the container.
15. The packaged desk system of claim 13, wherein in the fully compact configuration of the desk system the movable part of the platform in the compact position thereof extends in a generally vertically downward direction away from the stationary part of the platform, the movable part being moveable to the operational position thereof after the removal of the desk system from the container.
16. The desk system of claim 5, wherein each foot in the operational position thereof has a restraint for inhibiting rotation of the foot about the vertical axis from the operational position, and each has a release actuator operable by a user for de-activating the restraint.
17. The desk system of claim 16, wherein the restraint of each foot is an anti-slip friction pad at a distal end of the foot for engaging the ground in the operational position of the foot and operational configuration of the desk system, each actuator being operable by the user to de-activate the restraint by raising the friction pad out of contact with the ground surface.
18. The desk system of claim 17, wherein the anti-slip friction pad of each foot is movable vertically relative to the foot, and each actuator includes a lever operable by the user to raise the friction pad relative to the foot.
19. The desk system of claim 18, wherein the anti-slip friction pad of each foot is fixed on the foot, and each actuator includes a lever and a vertical lifter wherein the lever is operable by the user to force the lifter against the ground to raise the distal end of the foot and the friction pad thereon out of contact with the ground surface.
20. The desk system of claim 16, wherein the restraint of each foot is a mechanical interlock that engages a corresponding interlock on the leg to rotationally fix the foot with respect to the leg, the actuator being connected to the mechanical interlock and operable the user to de-activate the restraint by disengagement of the mechanical interlock from the corresponding interlock to enable rotation of the foot.
21. The desk system of claim 1, wherein each foot is rotatably attached to the lower end of its associated leg to rotate about a vertical axis, the foot in the compact position being rotated to extend in a lateral direction of the desk system.
22. The desk system of claim 21, wherein each foot in the operational position thereof has a restraint for inhibiting rotation of the foot about the vertical axis from the operational position, and each has a release actuator operable by a user for de-activating the restraint.
23. The desk system of claim 22, wherein the restraint of each foot is an anti-slip friction pad at a distal end of the foot for engaging the ground in the operational position of the foot and operational configuration of the desk system, each actuator being operable by the user to de-activate the restraint by raising the friction pad out of contact with the ground surface.
24. The desk system of claim 22, wherein the restraint of each foot is a mechanical interlock that engages a corresponding interlock on the leg to rotationally fix the foot with respect to the leg, the actuator being connected to the mechanical interlock and operable the user to de-activate the restraint by disengagement of the mechanical interlock from the corresponding interlock to enable rotation of the foot.
25. A desk system comprising:
- a platform with a working surface that faces upwardly in an operational configuration of the desk system;
- at least two legs connected to the platform at an upper end thereof for extending vertically to support the platform in the operational configuration of the desk system; and
- an elongated foot connected to each of the at least two legs at a lower end thereof, each foot being extendible and retractable in a rectilinear manner in a radial direction with respect its associated leg.
Type: Application
Filed: Dec 15, 2025
Publication Date: Jun 18, 2026
Inventors: Tai Hoon K. MATLIN (Round Lake Beach, IL), Patrick M. BODKIN (Lisle, IL)
Application Number: 19/420,515