Automated assembly for storing/revealing a multi-segment treadmill
11285361 · 2022-03-29
Assignee
Inventors
Cpc classification
A63B2210/50
HUMAN NECESSITIES
International classification
Abstract
Automated Assembly allows storage of a multi-segment treadmill inside of an existing office/computer desk. At the push of a button, a multi-segment treadmill is automatically stored under/inside the office/computer desk and in reverse, at the push of a button the same multi-segment treadmill is placed in the working position in front of the office desk.
Claims
1. An automated assembly comprising: a frame comprising two panels, wherein said frame occupies available leg space beneath an office desk on a right side and on a left side of an existing leg opening; a multi-segment treadmill, said multi-segment treadmill comprising an inner segment and an outer segment; at least one linear actuator, said at least one linear actuator is connected to the frame and to the multi-segment treadmill; wherein the said multi-segment treadmill is configured to be movable by the at least one linear actuator, relative to the frame; and the said multi-segment treadmill is configured to be movable from a revealing position in front of the office desk where the inner segment and the outer segment are flat on the floor, and a space-sharing storing position wherein the inner segment and the outer segment are inside of the existing leg opening of the office desk, and is further configured to be movable from the space-sharing storing position to the revealing position; wherein the inner segment of said multi-segment treadmill is the closest to the office desk and the outer segment is the farthest from the office desk while the multi-segment treadmill is in the revealing position; wherein a transition of the multi-segment treadmill between the revealing position and the space-sharing storing position consists of a combination of three movements, the three movements comprising movement A, movement B, and movement C; and said movement A is a pulling of the entire multi-segment treadmill toward the office desk; and said movement B is a rotation of the inner segment and the outer segment of the multi-segment treadmill toward each other; said rotation stops prior to the inner segment occupying an acute angle toward the outer segment; wherein the automated assembly prevents additional rotation of the inner segment and the outer segment toward each other and prevents the inner segment and the outer segment from folding together or coming within an acute angle of each other; and said movement C is a rotation of the inner segment and the outer segment of the multi-segment treadmill around an inner edge of the inner segment until the multi-segment treadmill occupies the space-sharing storing position inside of the existing leg opening of the office desk; and wherein a transition of the multi-segment treadmill from the space-sharing position to the revealing position is the combination of the three movements in the order of movement C, movement B, and movement A with respect to an opposite direction of the movements; wherein said space-sharing storing position allows the inner segment and the outer segment of the multi-segment treadmill to occupy different storage areas within the office desk; wherein the automated assembly allows a person to work at the office desk by sharing the available leg space with the frame and the multi-segment treadmill while the multi-segment treadmill is in the space-sharing storing position; and in the said space-sharing storing position, the inner segment is positioned at substantially vertical alignment with the floor and the outer segment is positioned at a substantially parallel position with the floor; and in the said space-sharing storing position, the outer segment occupies a space under the flat upper part of the office desk; and in the said space-sharing storing position, the outer segment occupies the available extra space above a sitting person's legs; and in the said space-sharing storing position, the inner segment occupies the available extra space in front of the sitting person's legs.
2. The automated assembly of claim 1, wherein the at least one linear actuator includes two linear actuators.
3. The automated assembly of claim 1, wherein the automated assembly can be a standalone unit.
4. The automated assembly of claim 3, wherein the at least one linear actuator includes two linear actuators.
5. The automated assembly of claim 1, wherein a part of the office desk which shapes the leg opening also serves as a part of the frame such that the at least one linear actuator is coupled to the said multi-segment treadmill and to the part of the office desk.
6. The automated assembly of claim 5, wherein the at least one linear actuator includes two linear actuators.
7. An automated assembly comprising: a frame comprising two panels, wherein said frame occupies available leg space beneath an office desk on a right side and on a left side of an existing leg opening; a multi-segment treadmill, said multi-segment treadmill comprising an inner segment and an outer segment; at least one motor, said at least one motor is connected to the frame and to the multi-segment treadmill; wherein the said multi-segment treadmill is configured to be movable by the at least one motor, relative to the frame; and the said multi-segment treadmill is configured to be movable from a revealing position in front of the office desk where the inner segment and the outer segment are flat on the floor, and a space-sharing storing position wherein the inner segment and the outer segment are inside of the existing leg opening of the office desk, and is further configured to be movable from the space-sharing storing position to the revealing position; wherein the inner segment of said multi-segment treadmill is the closest to the office desk and the outer segment is the farthest from the office desk while the multi-segment treadmill is in the revealing position; wherein a transition of the multi-segment treadmill between the revealing position and the space-sharing storing position consists of a combination of three movements, the three movements comprising movement A, movement B, and movement C; and said movement A is a pulling of the entire multi-segment treadmill toward the office desk; and said movement B is a rotation of the inner segment and the outer segment of the multi-segment treadmill toward each other; said rotation stops prior to the inner segment occupying an acute angle toward the outer segment; wherein the automated assembly prevents additional rotation of the inner segment and the outer segment toward each other and prevents the inner segment and the outer segment from folding together or coming within an acute angle of each other; and said movement C is a rotation of the inner segment and the outer segment of the multi-segment treadmill around an inner edge of the inner segment until the multi-segment treadmill occupies the space-sharing storing position inside of the existing leg opening of the office desk; and wherein a transition of the multi-segment treadmill from the space-sharing position to the revealing position is the combination of the three movements in the order of movement C, movement B, and movement A with respect to an opposite direction of the movements; wherein said space-sharing storing position allows the inner segment and the outer segment of the multi-segment treadmill to occupy different storage areas within the office desk; wherein the automated assembly allows a person to work at the office desk by sharing the available leg space with the frame and the multi-segment treadmill while the multi-segment treadmill is in the space-sharing storing position; and in the said space-sharing storing position, the inner segment is positioned at substantially vertical alignment with the floor and the outer segment is positioned at a substantially parallel position with the floor; and in the said space-sharing storing position, the outer segment occupies a space under the flat upper part of the office desk; and in the said space-sharing storing position, the outer segment occupies the available extra space above a sitting person's legs; and in the said space-sharing storing position, the inner segment occupies the available extra space in front of the sitting person's legs.
8. The automated assembly of claim 7, wherein the at least one motor includes two motors.
9. The automated assembly of claim 7, wherein the automated assembly can be a standalone unit.
10. The automated assembly of claim 9, wherein the at least one motor includes two motors.
11. The automated assembly of claim 7, wherein a part of the office desk which shapes the leg opening also serves as a part of the frame such that the at least one motor is coupled to the said multi-segment treadmill and to the part of the office desk.
12. The automated assembly of claim 11, wherein the at least one motor includes two motors.
Description
BRIEF DESCRIPTION OF THE FIGURES
(1) Various embodiments of the presently disclosed device are shown herein with reference to the drawings, wherein:
(2)
(3)
(4)
(5)
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(7)
DETAILED DESCRIPTION OF THE DISCLOSURE
(8) This disclosure presents an Automated Assembly able to be installed under almost any existing office/computer desk by utilizing extra space arranged for a worker's legs. The segments of the multi-segment treadmill shares the leg space with the person sitting at the office/computer desk.
(9) A small disadvantage of this disclosure is that the size of a storing multi-segment treadmill may be limited by the sizes of existing office/computer desks. For example, in the USA, the existing leg opening for a standard office/computer desk is approximately 24″ deep, 25″ wide, and 27″ high. Realistic dimensions required for a leg opening for an average-size person are smaller, which provides extra space necessary for space-sharing storing multi-segment treadmill under/inside the office desk.
(10) In the space-sharing storing position, the multi-segment treadmill is stored under the office/computer desk as shown on
(11)
(12) However, the position shown on
(13) The simplest designs of the Automated Assembly are presented while the actual design or each part of it may bear great disparities from the illustrations presented. Chains, strings, spools, connecting rods, gears, etc. could be involved in the storing/revealing process. In the presented embodiments, the frame consists of two L-shaped parts on both sides of the Automated Assembly, but could have various shapes and configurations.
(14) The travel of the multi-segment treadmill from the revealing position in front of the office/computer desk into the space-sharing storing position consists of a combination of three movements:
(15) Movement A: Pulling the entire multi-segment treadmill toward the office/computer desk;
(16) Movement B: Rotating of connected segments of the multi-segment treadmill toward each other. Rotation stops before the inner segment occupies an acute angle toward the outer segment; the design prevents further rotation of segments toward each other and segments cannot fold together or come within an acute angle of each other;
Movement C: Rotation of all connected segments of the multi-segment treadmill around the inner edge of the inner segment until the multi-segment treadmill occupies the space-sharing storing position inside/under of the office/computer desk;
The vice versa transition is the combination of movements C, B, and A with respect to the opposite direction of movements depicted in each paragraph;
(17) The rotation of the outer segment toward the inner segment can be stopped before the outer segment reaches the acute angle with the inner segment by a simple bracket(s).
(18) A design requires the use of a motor instead of a linear actuator presented on
(19) The transition from the revealing (working) to the space-sharing storing position may use one or several guides or perforated guiding channels. Those guides may also serve as a part, or shape the entire frame, supporting the transition of the multi-segment treadmill.
(20) Two flat panels on both sides of a treadmill can form a frame of the presented Automatic Assembly as soon as they are strong enough to support the weight of the multi-segment treadmill. A different metal, plastic, wood, or other material could be in use for panels which form the frame. Naturally, a weight of the frame should be as light as possible for handling and transportation reasons. Therefore, panels may be cut into an L-shape similar to the frame (3) presented in this disclosure. The multi-segment treadmill may also use existing panels, like panels on both sides of the leg's opening present in most existing office/computer desks. Finally, some designs may require a frame panel only on one side of the Automated Assembly.
(21) Operation
(22) Both proposed designs, involving the linear actuator(s) or motor(s) provide similar functionality and require two main positions of the multi-segment treadmill. The space-sharing storing position presented by
(23) The electric parts of the presented Automated Assembly are not specified for the presented embodiments since they can be designed in many ways and/or independently from the Automated Assembly. For example, the electric control could have a form of a button mounted under the desk, or can be a part of a remote control, together or separate from the on/off function, speed, and positional treadmill controls.
REFERENCE NUMBERS
(24) 1—Office desk 2—Multi-segment treadmill 2.1—The outer segment 2.2—The inner segment 2.3—The inner edge of the inner segment 3—Frame consisted of two panels (the panels are L—shaped and reinforced) 4—Linear actuator 5—Bottom roller 6—Motor 7—Gears or spools 8—Chain or cord 9—Point of attachment (of a chain or cord to a multi-segment treadmill)