The present disclosure relates generally to workstations, exercise apparatus, systems and methods. More specifically, the present disclosure relates to apparatus, systems and methods for reconfigurable exercise workstations.
To avoid health problems associated with excessive sedentariness, many people walk, stand, or otherwise reposition themselves when working at a desk. While standing has been shown to be healthier than sitting for long periods of time, it has also been shown that movement is even more important to avoid health problems associated with excessive sitting. Many standing desk configurations and exercise workstations have been developed to accommodate those who want to stand or walk during work.
However, current exercise workstations lack reconfigurability such that changing positions during work throughout the day is burdensome. For example, a person may not want to stand or walk all day during work, but may wish to alternate between standing, sitting, and walking. Exercise workstations are typically bulky and heavy so that rearranging the orientation and configuration of such equipment is difficult. Also, many of the current systems are configured to only work with a limited set of desks and relative positions thereof.
In addition, many of the exercise workstations of the prior art present safety hazards to those who want to move at a stationary desk during work. For example, when treadmills are used for walking at a desk, there are often obstacles present behind the person or elsewhere that can cause injury in the case of tripping or falling on the treadmill, or simply because of inattentiveness. Also, current exercise workstations lack sufficient user interfaces to enable fitness tracking and reporting.
Accordingly, there are a number of problems with exercise workstations in the prior art that need to be addressed.
Embodiments described herein solve one or more problems in the art with workstation apparatus, systems and methods. More specifically, the present disclosure relates to apparatus, systems and methods for reconfigurable exercise workstations.
In some embodiments, an exercise workstation can include a treadmill, exercise pedals, and a chair. The pedals can be disposed on or next to the treadmill, and the chair can be pivotally secured to the exercise workstation such that the chair can be repositioned relative to the treadmill. The chair and pedals can be selectively locked at a fixed distance when used together to prevent inadvertent separation of the person and pedals.
In some embodiments, an exercise workstation can include a treadmill and a chair that can be selectively positioned relative to the treadmill by a pivot joint and a pivot arm. The pivot joint is connected to the exercise workstation, and the pivot arm is pivotally connected to the pivot joint. The chair is connected to the pivot arm such that the chair can be pivotally repositioned either over the tread mill or to a side of the treadmill by pivoting the pivot arm relative to the pivot joint during use.
In some embodiments, an existing treadmill can be modified to incorporate a chair, pivot arm, and pivot joint to function with a workstation. The treadmill can be modified to incorporate exercise pedals to provide additional exercise functionality.
In some embodiments, the chair that is or can be attached to the treadmill can be configured to be selectively collapsible and expandable when alternating between storage and use. For example, the chair can be configured with a folding seat back that can move between an essentially vertical position when functioning as a seat back during use and an essentially horizontal position to facilitate storage, such as beneath a desk.
Additional features and advantages of exemplary implementations of the invention will be set forth in the description which follows, and in part will be obvious from the description, or may be learned by the practice of such exemplary implementations. The features and advantages of such implementations may be realized and obtained by means of the instruments and combinations particularly pointed out in the appended claims. These and other features will become more fully apparent from the following description and appended claims or may be learned by the practice of such exemplary implementations as set forth hereinafter.
In order to describe the manner in which the above-recited and other advantages and features of the invention can be obtained, a more particular description of the invention briefly described above will be rendered by reference to specific embodiments thereof which are illustrated in the appended drawings. Understanding that these drawings depict only typical embodiments of the invention and should not therefore be considered to be limiting of its scope, the invention will be described and explained with additional specificity and detail through the use of the accompanying drawings in which:
Embodiments described in the present disclosure solve one or more problems in the art with workstation systems and apparatus. More specifically, the present disclosure relates to apparatus, systems, and methods for reconfigurable exercise workstations that provide easy-to-reconfigure setups that permit a person to efficiently switch from walking, to standing, or to sitting while working at a desk, table, or other work surface. In addition, the reconfigurable exercise workstations of the present disclosure minimize physical hazards to ensure a safe transition between the various configurations to prevent or minimize accidental slipping or falling during use.
Reference is now made to the drawings. Although the various embodiments and views may be characterized as separate embodiments, a person skilled in the art will readily appreciate that any feature(s) depicted in one or more drawings and/or described with respect to one or more embodiments, can be incorporated, added, or otherwise included in any other embodiment. Thus, any feature depicted and/or described with respect to any figure can be incorporated into any other figure without detracting from the invention.
In some embodiments, pivot arm 20 and pivot joint 22 can be locked or unlocked as desired by manipulating a pivot lock 24. This permits selective unlocking, moving, and locking of pivot arm 20 in one of several positions relative to treadmill 16. The pivot arm 22 and pivot lock 24 can interact with each other and/or adjacent features (e.g., through one or more of a pin and hole arrangement, clamps, and/or intermeshing teeth).
In one or more other embodiments, pivot joint 22 may be disposed at locations other than at a side of treadmill 16. For example, in at least one embodiment, pivot joint 22 may be disposed on a lower surface of work surface 18 or a stand 19 supporting work surface 18, such that chair 12 is connected to work surface 18 or stand 19 via a pivot arm 20 (not shown). Also, for example, pivot joint 22 may be disposed to one side of treadmill 16 but not formed integrally with treadmill 16. Also, in at least one embodiment, workstation 10 may include more than one pivot joint 22, including an opposing pivot joint (not shown) disposed on an opposing side of treadmill 16. In such embodiment, a user has the option to reconfigure pivot arm 20 to extend from any number of pivot joints 22, whether disposed on or around treadmill 16 or on work surface 18 or stand, as discussed above.
In addition, in at least one embodiment, pivot joint 22, or multiple pivot joints as noted above, can be connected, either permanently or removably, to treadmill 16 via a track (not shown). In such an embodiment, the position of pivot joint 22, and thus chair 12, along the edge of treadmill 16 can be adjusted to adjust the position of chair 12 either above or to the side of treadmill 16 at various longitudinal positions. For example, the track may allow repositioning of chair 12 and pivot joint 22 at intervals and/or anywhere in between the front and back end of treadmill 16.
Pivot arm 20 extends from pivot joint 22 and can rotate about pivot joint 22 to reposition chair 12. For example, in at least one embodiment, a user can rotate pivot arm 20 to reposition chair 12 to the side of treadmill 16, or above treadmill 16 but closer or further away from work surface 18. In addition, in at least one embodiment, pivot arm 20 is rotationally connected to chair 12 such that chair 12 can rotate about pivot arm 20 to point in different directions. Chair 12 is illustrated as a typical office chair; however, one or more other embodiments may include other sitting devices in addition to or in place of chair 12, including, but not limited to, stools, cushions, exercise balls, and the like. Exercise workstation 10 also includes pedal exercise device 14, which may be utilized by a user when sitting in chair 12 (e.g., above treadmill 16).
In addition, in at least one embodiment, work surface 18 is capable of moving up and down depending on the needs of the user. During use, and as configured in
In addition, as noted above, work surface 18 can be designed to be selectively moveable up or down to accommodate the user's standing height when the user stands and/or walks on treadmill 16 during use. In at least one embodiment, work surface 18 includes a number of control buttons or other control interfaces (not shown) for controlling the height of work surface 18 and/or the activation of treadmill 16 and pedal exercise device 14. Additionally, or alternatively, control interfaces can be located on chair 12, pedal exercise device 14, and/or treadmill 16. The exercise workstation 10 can also include a wire and an outlet that can provide electrical power to the exercise workstation 10, allowing a user to plug in electronic devices, such as, for example, a computer.
In the illustrated embodiment of
In at least one embodiment, pedal exercise device 14 includes an electric generator (internal or not shown) that produces electric power when a user moves the pedals pedal exercise device 14. In such an embodiment, exercise workstation 10 conserves energy by operating, at least in part, off of power generated by the electric generator. Alternatively, or additionally, computers or other devices used by user on work surface 18 or elsewhere can also be powered, at least in part, by electrical power generated by the electric generator associated with pedal exercise device 14.
Power generated by the pedal exercise device 14 may be stored in a battery (not shown). The battery may be incorporated into the electrical system of the pedal exercise device 14 or integrated into another element of workstation 10. In some embodiments, the battery may be an external battery which can be selectively removed from the workstation 10. A removable battery may be advantageous to allow the user to easily replace the battery. This may allow a user to charge multiple batteries, thereby providing the user with charged batteries which can be added to the workstation 10 to provide power at times when the user does not want to pedal to generate power.
To further illustrate the ergonomic adaptability and reconfigurability of exercise workstation 10,
The various chair positions 12a, 12b, and 12c illustrated in
The positions of chair 12, treadmill 16, and work surfaces 18a-18f schematically illustrated in
In at least one embodiment, plate 26 extends underneath treadmill 16 and is connected to pivot arm 20 via pivot joint 22. In this way, when chair 12 is pivoted to the side of treadmill 16, plate 26 and vertical support 28 prevent exercise workstation 10 from tipping over. By connecting chair 12 to the other side of treadmill 16, plate 26 and vertical support 28 attach to treadmill 16 so that the center of gravity is further away from the center of chair 12. Thus, when the user sits in chair 12 to one side of treadmill 16, the weight of treadmill 16 counteracts the weight of the user and chair 12. Plate 26 and/or vertical support may provide sufficient weight to at least partially offset the weight of a user sitting in chair 12. Additional stabilizing weights (not shown) can be attached to plate 26 and/or vertical support 28 as needed depending on the weight of the user and/or treadmill.
Plate 26 is indicated in dotted lines to illustrate that in at least one embodiment, plate 26 is disposed beneath treadmill 16. Plate 26 may be comprised of any material durable and strong enough to provide the counterbalance functions described above. In addition, the size and shape of plate 26 may vary in one or more other embodiments without diminishing the function thereof. In addition to or alternatively to plate 26 shown in
Workstation attachment system 29 may also include at least one securing slat 34 (e.g., two securing slats 34). The at least one securing slat 34 may be positioned on the interior side of opposing sidewalls 31b so that one side of securing slat 34 comes into contact with a side of a treadmill and the other side of securing slat 34 faces an interior side of an opposing sidewall 31b. In some embodiments, the middle bottom section of the base 31a may include one or more sliding grooves 37, which may correspond to ridges on a bottom end of a securing slat 34. The one or more sliding grooves 37 may allow a securing slat 34 to remain in a specific position on base 31 by fitting the ridges on the bottom end of a securing slat 34 into sliding grooves 37.
Once base 31 is placed at a desired location underneath a treadmill, the at least one securing slat 34 may be placed on the interior side of an opposing sidewall 31b. Fasteners 36 may then be inserted from an exterior side of an opposing sidewall 31b through holes 32 in order to create force between securing slat 34 and the side of the treadmill, thereby securing workstation attachment system 29 to the treadmill.
In some embodiments, the workstation attachment system may be configured on a track, trolley, or the like to allow the user to easily adjust the position of the workstation attachment system along the length of the treadmill without having to pick up or raise the treadmill off the floor.
Workstation attachment system 29 may include one or more housing elements 35. Housing elements 35 may be placed over securing slats 34 and opposing sidewalls 31b once securing slats 34 have been secured in place against one or both sides of a treadmill by a plurality of fasteners 36. Housing elements 35 may provide an aesthetic benefit by covering the underlying mechanics of the base 31, plurality of fasteners 36, and securing slats 34, and may protect users from inadvertent injury caused by coming into contact with the exposed materials.
One or both housing elements 35 may include an opening 43 through which a pivot arm 20 may be connected to a pivot joint receiving member 33. A proximal end 44 of pivot arm 20 can be inserted through opening 43 and into pivot joint receiving member 33. At least one of opposing sidewalls 31b of base 31 may include a pivot joint receiving member 33. In some embodiments, multiple pivot joints may be included. In such an embodiment, the position of pivot joint receiving member 33 may be adjusted in order to adjust the position of a chair 12 attached to workstation attachment system 29.
Pivot arm 20 may extend from pivot joint receiving member 33 and may rotate about pivot joint receiving member 33 to reposition chair 12. For example, in at least one embodiment, a user may rotate pivot arm 20 to reposition chair 12 to the side of the treadmill, or above the treadmill but closer or further away from work surface 18. In addition, in at least one embodiment, pivot arm 20 is rotationally connected to chair 12 such that chair 12 can rotate relative to pivot arm 20 to face in different directions. Chair 12 may comprise an office chair or, in other embodiments, chair 12 may comprise other sitting devices in addition to or in place the illustrated chair. In some embodiments, pivot arm 20 may be compatible with an upper portion 45 of any chair preferred by the user, for example, any office chair comprising a lift 46, a backrest 39, and a seat 40 (see
In addition to the embodiments and features shown in the figures and described above, at least one embodiment of an exercise workstation according to the present disclosure includes a number of other features. For example, in at least one embodiment, an exercise workstation includes one or more processors and computer readable memory which communicates with a software application for tracking and reporting fitness objectives. A wireless transmitter may also be employed in conjunction with a wearable device or one or more fitness tracking devices used in conjunction with the treadmills and pedals described herein. Such a software application may be in the form of a mobile phone application, computer software application, or website. Such an application may also utilize cloud-based computing and storage.
In at least one embodiment, one or more software applications can track and report time spent exercising, either using the treadmill or pedals, how many calories are burned by the user, and/or heart-rate information during and after use. The software application may also allow a user to set fitness goals and communicate progress towards an achievement of such goals. In at least one embodiment, a software application may track time used, number of steps, number of pedals, distance travelled, speed, calories burned, pedal resistance, and the like during use. Also, at least one embodiment includes alerts that inform a user when treadmill 16 or pedals 14 have been stationary for a certain amount of time to remind users to continue walking or pedaling.
Such a software app may also sync with popular fitness apps, watches, phones and other devices currently on the market. In at least one embodiment, the information gathered by the software app can be used in conjunction with corporate wellness programs to track individual, group, or company results. In at least one embodiment, a user interface may be included on or in the various work surfaces, chairs, treadmills, or other components of exercise workstations described herein.
The present invention may be embodied in other specific forms without departing from its spirit or essential characteristics. The described embodiments are to be considered in all respects only as illustrative and not restrictive. The scope of the invention is, therefore, indicated by the appended claims rather than by the foregoing description. All changes that come within the meaning and range of equivalency of the claims are to be embraced within their scope.
This application claims the benefit of U.S. Prov App No. 62/887,103, filed Aug. 15, 2019, and U.S. Prov App No. 62/897,194, filed Sep. 6, 2019, which are incorporated by reference in their entirety.
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