The present invention generally relates to a desk assembly with a treadmill that is integrated and ergonomic. The desk assembly contains a plurality of accessories that are commonly used to increase the functionality of the desk as well as allow a user to interact with the integrated treadmill exercise machine. The treadmill is collapsible which allows it to be stored underneath the desk in an efficient manner.
A treadmill is an exercise machine orientated about letting a person walk or run in place at a certain pace. Initially introduced as means for harnessing power from animals or humans, these highly popular machines are now utilized as exercise machines in gyms and households. The majority of treadmills provide the user with a moving platform, a belt driven by a motor, which requires the user to move at an equivalent rate the opposite direction and thus simulating walking and running. Treadmills provide a means for a person to get a quick run in without ever leaving the house. Additionally, treadmills are also extremely useful in facilities such as hospitals, rehabilitation centers, medical clinics, biomechanics institutes, test facilities and training facilities.
In recent years, a popular trend has arisen characterized by executing multiple tasks simultaneously in order to save time and increase productivity. A common trend running parallel to this is the incorporation of desk like modules into treadmills to allow users to simultaneously walking/running and performing a secondary task such as reading, watch televisions, working on a computer, and similar tasks. The problem with these new treadmill systems is that they are bulky, aesthetically challenged, and lack in versatility. The present invention provides an ergonomic and aesthetic desk with an integrated treadmill which incorporates wireless communication technology, a plurality of electronic accessories, and a convenient means for storage. Additionally, the present invention utilizes a significantly thicker and wider belt to increase the comfort level and the lateral contact surface for the user, ideal characteristics for prolonged activities. Furthermore, the treadmill may be folded upwards underneath the desk when not in use.
All illustrations of the drawings are for the purpose of describing selected versions of the present invention and are not intended to limit the scope of the present invention.
The present invention is a system and method for a combination desk and treadmill work station. Through the incorporation of a low speed treadmill into a desk assembly, the functionality of the present invention is only limited by a user's ability to multitask. The present invention is predominantly designed to allow the user to casually walk on the treadmill while also performing mental activities such as work, homework, browsing the Internet, or playing video games. In general, the present invention provides is a versatile apparatus which allows the user to sit, stand, walk, work, and play. Additionally, the design of the present invention allows the user to easily store the treadmill underneath the desk in a discreet manner such that the user may utilize the desk assembly with a chair or while standing up.
In general, referring to
The treadmill 7 comprises a first guiding member 8, a second guiding member 9, a front housing 10, a belt 11, a front roller 12, and a rear roller 13. The front housing 10 is preferably a rectangular extrusion spanning the distance of the treadmill-receiving cavity 5. The first guiding member 8 and the second guiding member 9 are adjacently connected to the front housing 10, oriented perpendicular to the front housing 10. More specifically, the first guiding member 8 and the second guiding member 9 are oriented parallel to each other; and offset from each other, across the front housing 10 as seen in
The treadmill 7 is preferably designed to be more of a square-based design rather than traditional elongated rectangles to ensure that the user does not accidentally walk off the belt 11 while concentrating on their work or performing other secondary tasks on the work panel 3. The design of the treadmill 7 allows the user to walk for an extended period of time with confidence that he or she will not fall off or step on either the first guiding member 8 or the second guiding member 9. This design is achieved through the sizing and manipulation of a length 29 of the front roller 12, a length 30 of the rear roller 13, and an offset distance 31 between the front roller 12 and the rear roller 13. More specifically, a ratio between the offset distance 31 and the length 29 of the front roller 12 is a range from 0.75:1 to 1:1. Similarly, a ratio between the offset distance 31 and the length 30 of the rear roller 13 is a range from 0.75:1 to 1:1. Furthermore, the preferred length 29 of the front roller 12 is equal to the length 30 of the rear roller 13. This design results in a substantially wider design for the belt 11 when compared to traditional treadmills; although, alternative proportions and dimensions may be used as well to suit the preferences of the user. The length 29 of the front roller 12 and the length 30 of the rear roller 13 are preferably 30 inches and the offset distance 31 between the front roller 12 and the rear roller 13 is preferably 38 inches. Additionally, a wider belt 11 creates a more compact treadmill 7, thus requiring less space for storage. The belt 11 is also preferably designed for prolonged and continuous use. One of the main ways this is achieved is by increasing a thickness 32 of belt 11 as seen in
In one embodiment, the belt 11 is composed of an Astroturf material which simulates a grass like texture. In another embodiment of the present invention, the treadmill 7 comprises a plurality of soft protrusions 33 for reflexology purposes. The plurality of soft protrusions 33 is externally distributed across the belt 11 and is externally connected to the belt 11 as seen in
The present invention also includes a motor 19, a control panel 14, a first wireless communication device 20, and a second wireless communication device 21. The motor 19 drives the rotational motion for the treadmill 7. Specifically, the motor 19 is mounted within the first guiding member 8, adjacent to the front roller 12. To rotate the belt 11, the motor 19 is torsionally coupled to the front roller 12, thus allowing to rotate the belt 11 through the application of a torque onto the front roller 12. Alternatively, the motor 19 may be axially coupled to the rear roller 13 and mounted within the second guiding member 9. The motor 19 is regulated and set by the control panel 14. The control panel 14 is integrated into a top surface 6 of the work panel 3 and may contain an ON/Off button, a speed adjuster buttons, level adjuster buttons, volume controls, sound adjusters and configuration buttons, an emergency shut off button, wireless communication pairing lights and configurations, and other similar buttons associated with traditional treadmills. The control panel 14 may also contain a digital screen which conveys information about the status of the present invention; including, but not limited to, current speed, calories burned, current time, time run, power produced, and other similar characteristics that may be utilized in the present invention. The control panel 14 is preferably situated closer to the user; this is in no way meant to limit the scope of the present invention and, as such, the control panel 14 may be incorporated into other regions of the work panel 3. The electronics associated with the control panel 14 are housed either inside or underneath the work panel 3, out of sight from the user.
The control panel 14 and the motor 19 are communicably coupled by the first wireless communication device 20 and the second wireless communication device 21 as seen in
The present invention incorporates a height adjustment feature for the work panel 3 that allows the user to raise and lower the work panel 3 to his or her preference. This is accomplished by the at least one adjustable leg 2. The preferred design for the at least one adjustable leg 2 is a telescoping shaft with an integrated height adjustment mechanism; mechanisms include, but are not limited to, a crankshaft, hydraulics, springs, electric motors, pneumatic based mechanisms, pin-slot mechanisms, and other comparable means.
Referring to
Referring to
In one embodiment, the present invention further comprises a chair 40 which allows the user to quickly switch between walking and sitting. The chair 40 is integrated through the use of a support bar 39. The support bar 39 is swivelably attached to the at least one adjustable leg 2 and is preferably U-shaped such that when rotated in front of the desk 1 the user will have adequate leg room for sitting or standing. The chair 40 is swivelably attached to the support bar 39, opposite the at least one adjustable leg 2 as seen in
The treadmill 7 may also comprise a pair of first legs, a pair of second legs, a first wheel, and a second wheel. The pair of first legs and the pair of the second legs elevate the treadmill 7 and provide the necessary clearance for the belt 11 to able to rotate without any obstructions. The pair of first legs is connected perpendicular to the first guiding member 8, positioned opposite to each other along the bottom surface of the first guiding member 8. Similarly, the pair of second legs is connected perpendicular to the second guiding member 9, positioned opposite to each other along the bottom surface of the second guiding member 9. The pair of first legs and the pair of second legs are identical in shaped and height to ensure the treadmill 7 sits level. The first wheel and the second wheel are integrated into the front housing 10 and allow for the transportation of the treadmill 7. In particular, the first wheel is rotatably mounted to the front housing 10, adjacent to the pair of first legs; the second wheel is rotatably mounted to the front housing 10, adjacent to the pair of second legs. Additionally, in order to prevent the treadmill 7 from moving during operations a diameter of the first wheel and the second wheel is less than a length of the pair of first legs and a length of the pair of second legs. This ensures that the first wheel and the second wheel can only engage the floor when the treadmill 7 is raised on one side, the side opposite the front housing 10. To transport the treadmill 7, the user simply raises the side opposite the front housing 10 and pushes or pulls the treadmill 7 around.
In one embodiment, the treadmill 7 assembly also utilizes a dead man breaking feature. The feature utilizes a plurality of integrated pressure sensors to determine whether a person is on the treadmill 7 and act accordingly; when the user steps off the treadmill 7, the sensors will identify a change in weight an automatically shut off the motor 19. In this embodiment, the pressure sensors are integrated into the pair of first legs and or pair of second legs.
A variety of accessories and additional features are integrated into the work panel 3 in order to create a more convenient environment for the user. One of these features is a set of handle bars 22. The set of handle bars 22 provides the user with a grip and a means of balancing themselves while utilizing the treadmill 7. The set of handle bars 22 is laterally connected to the work panel 3 and is positioned adjacent to the treadmill 7, directly in front of the user. The preferred design comprises two longitudinal extrusion cuts into the work panel 3 to yield two cylindrical shapes such that the user may grab them in a similar fashion as bicycle handlebars; to further facilitate a more ergonomic design, the set of handle bars 22 and the regions directly surrounding the set of handle bars 22 are covered in a “soft to the touch” rubber-like material. This material selection creates engagement features that are easier to grab and hold onto; such material is also water and sweat resistant, an essential characteristic for exercise equipment. The material composition is subject to change. In alternative embodiment of the present invention, the set of handle bars 22 may comprise two elongated prongs extruded from the sides of the work panel 3 such that when the user stands on the treadmill 7, a prong/handle is located on either side of him or her. Said prongs may extend upwards, downwards, or any degree between the two.
Additionally, an at least one Universal Serial Bus (USB) port 26 and an at least one speaker 25 is incorporated into the work panel 3 through a retractable housing 23 and a receiving cavity 24 as seen in
In alternative embodiments, the retractable housing 23 may contain power outlets, auxiliary ports, iPhone coupling mechanisms, and may raise straight up and lower straight down instead of rotating upwards to face the user. Additional accessories that may be integrated into the work panel 3 also include cable ports, holes, cable ties, as well as an iPod deck; some alternative embodiments of the present invention allow the user to utilize various gaming consoles with the present invention and as such may contain the required electrical ports, or wireless communication capabilities.
In one embodiment, the present invention is incorporated into health/exercise incentive programs, loyalty programs, and or electronic games. Referring to
In another embodiment, the present invention also incorporates grounding and Earthing technology to promote stable internal bioelectrical environments for all body systems. Earthing technology allows the user to physically connect to the vast supply of free electrons located at the surface of the planet, this connection is correlated with a variety of health benefits; one such benefit is the reduction of acute and chronic inflammation. Grounding technology is integrated into the present invention through a conductive material located at the contact surface of the work panel 3. More specifically, the present invention further comprises an at least one grounding mat 36 that is integrated into the top surface 6 of the work panel 3 as seen in
In an alternative embodiment, various components may be modular and allow the user to customize to his/her liking. Components include, but are not limited to, walking belt, handles, side skirts, table top. The components would contain an outer surface that is easily replaceable or the component itself would be easily removable as to allow the user to buy different colored and or patterned components/surfaces to replace on their machine, thus increasing customizability.
The present invention also lends itself to compatibility with various audio, video, and gaming devices. The present invention may be configured to be able to work with 3D based immersion technology where the physical rotation of the belt 11 is transformed into a specific input of a game being executed on the computing device 35. For example, when incorporated into a first person shooter the rotation of the belt 11 is used to translate the character within the environment of the game. Additionally, the present invention may be compatible with external projection devices which project the video onto a wall while the user interacts with it through a controller. These compatible technologies may come pre-installed onto the machine or may come in the form of a retrofit kit. In an alternative embodiment, the treadmill 7 of the present invention may convert the rotational motion into electric energy and store it in an auxiliary battery. When enough energy is stored, the present invention may then be used to power the treadmill 7 and/or the associated accessories of the present.
Although the invention has been explained in relation to its preferred embodiment, it is to be understood that many other possible modifications and variations can be made without departing from the spirit and scope of the invention as hereinafter claimed.
The current application claims a priority to the U.S. Provisional Patent application Ser. No. 62/035,260 filed on Aug. 8, 2014. The current application is filed on Aug. 10, 2015 while Aug. 8, 2015 was on a weekend.
Number | Name | Date | Kind |
---|---|---|---|
7780578 | Packham | Aug 2010 | B2 |
20060247109 | Powell | Nov 2006 | A1 |
20080255794 | Levine | Oct 2008 | A1 |
20120088633 | Crafton | Apr 2012 | A1 |
20120174833 | Early | Jul 2012 | A1 |
20140360413 | Schenk | Dec 2014 | A1 |
20150120377 | Marvit | Apr 2015 | A1 |
20150251047 | Maaniitty | Sep 2015 | A1 |
20150351553 | Herring | Dec 2015 | A1 |
Number | Date | Country | |
---|---|---|---|
20160038785 A1 | Feb 2016 | US |
Number | Date | Country | |
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62035260 | Aug 2014 | US |