The present invention relates to a desk, and more particularly to a height adjustable desk.
According to ergonomic guideline of work place design, a height of a work surface should be influenced in part by the nature task. In the research of Ward and Kirk (1970), the tasks are classified into three type, light work, precision work and heavy work. The work-surface height for the light work should be equal to an elbow height of the worker. The work-surface height for the precision work should be higher than elbow height, and the work-surface height for the heavy work should be higher than elbow height. However, the heights of the works are different, so that the work-surface height should be adjustable according to the work's body scale to let him/her have a safe work place and an efficient performance.
A conventional height adjustable desk has a worksurface and a plurality of adjustable legs connected to a bottom of the worksurface. Each of the adjustable legs includes an upper tube connected to the worksurface and a lower tube fitted to the upper tube. The upper tube is provided with a plurality of bores, and the lower tube is provided with a bore. The upper tube is movable relative to the lower tube, and one of the bores of the upper tube is aligned with the bore of the lower tube for a pin inserted into both bores of the lower tube and the upper tube to fix them. Such desk only provides a few of heights to be adjusted that could not fit all the workers with various heights.
In view of the above, the primary objective of the present invention is to provide a height adjustable desk, which provides a continuous adjustment of height.
In order to achieve the objective of the present invention, a height adjustable desk includes a worksurface, a control module, and at least a leg module. The control module has a control circuit and a control panel electrically connected to the control circuit. The leg module is connected to a bottom of the worksurface, and has a first leg member, a second leg member and, a driving device. The first leg member engages the second leg member for reciprocation relative to the second leg member. The second leg member is fixed with a block with a threaded hole. The driving device has a motor fixed to the worksurface and electrically connected to the control circuit and a screw rod connected to a spindle of the motor. The screw rod is received in the first leg member, and screwed into the threaded hole of the block. When a user operates the control panel, the control circuit commands the motor to rotate the screw rod accordingly to lift or lower the worksurface.
In an embodiment, the leg module further has an inner tube fixed in the second leg member, and the block is fixed in the inner tube.
In an embodiment, the leg module further has a stand fixed to a bottom end of the second leg member, and the inner tube is fixed to a holder of the stand.
In an embodiment, the screw rod has a distal end suspend in the first leg member, and a weight member is connected to the distal end of the screw rod.
In an embodiment, each of the first and the second leg members is provided with a stopper, and the stoppers abut against each other when the worksurface is lifted to a maximum height.
In an embodiment, the driving device further has a case fixed to the bottom of the worksurface, and the motor is fixed in the case; the case is provided with an opening, and the first leg member has an end connected to the opening of the box, so that the case is communicated with the first leg member.
In an embodiment, the driving device further has a sensor connected to the spindle of the motor to sense a number of turns of the motor, and the sensor is electrically connected to the control circuit to send the control circuit a signal of the number of turns.
In an embodiment, the screw rod is provided with a space ring and a thrust bearing.
In an embodiment, the control panel is provided with a lift key and a lower key; the lift key is pressed to drives the screw rod to rotate in a direction to lift the worksurface until the user releases the lift key; the lower key is pressed to drives the screw rod to rotate in an opposite direction to lift the worksurface until the user releases the lower key.
In an embodiment, the control panel is provided with at least a memory key; the memory key is pressed to store a current height of the worksurface as a setting height in a memory of the control circuit, and the worksurface is adjusted to the setting height automatically when a user presses the memory key.
The present invention will be best understood by referring to the following detailed description of some illustrative embodiments in conjunction with the accompanying drawings, in which
The worksurface 10 is a rectangular board, on a bottom side of which the control module 12 and the leg modules 14 are provided.
The control module 12 includes a control box 16 and a control panel 18. The control box 16 is fixed to the bottom of the worksurface 10, in which a control circuit (not shown) and a power (not shown) are provided. The panel 18 is fixed to an edge of the worksurface 10, and electrically connected to the control circuit through a wire 20. The panel 18 has a plurality of keys for user to operate to control the leg modules 14.
As shown in
As shown in
When a user operates the control panel 18, and control circuit drives the motor 44 to rotate accordingly, and the screw rod 48 is rotated at the same time. Since the block 36 is fixed to the second leg member 24 through the inner tube 34 and the stand 26, the first leg member 22 will be reciprocated relative to the second leg member 24 when the motor 44 is started. As a result, the worksurface 10 lifted (
In the present preferred embodiment, as shown in
It must be pointed out that the embodiments described above are only some preferred embodiments of the present invention. All equivalent structures which employ the concepts disclosed in this specification and the appended claims should fall within the scope of the present invention.