[0001] The invention relates to a table with a height-adjustable top, comprising a top supported
by at least one leg and first adjusting means for adjusting the height of the top.
[0002] Known from
WO 9935936 A is a table with a top, a base, a support for the top and a movable connecting element
for adjusting the height of the support relative to the base, wherein the connecting
element comprises for instance a parallelogram construction by means of which the
top is movable only in vertical direction. The known tabletop further comprises a
pneumatic weight counterbalancing element which is connected to a reservoir and arranged
between the base and the support in a manner such that a reaction force is generated
to counteract a gravitational force G acting on the support.
[0003] The known table has the drawback that it is of complex construction, is provided
with a base and a support which both have relatively large dimensions, and that this
table is unsuitable for coupling to a corresponding table to form a so-called duo-workplace.
[0004] It is an object of the invention to provide a height-adjustable table which is of
simple construction, is provided with legs and adjusting means which take up little
volume and which is suitable for coupling to a second table.
[0005] These objectives are achieved, and further advantages gained, with a table of the
type stated in the preamble, wherein according to the invention the at least one leg
is assembled from an upward inclining elongate telescopic body which is provided on
its end directed toward the top with a top support coupled to the top, second adjusting
means are provided for moving the top in a horizontal direction, drive means are provided
for driving the first and the second adjusting means and coupling means are provided
for coupling the first and the second adjusting means, wherein the first and the second
adjusting means and the coupling means are configured such that, during a change in
the height of the top by means of the first adjusting means, an associated movement
in horizontal direction is compensated by an opposite movement in horizontal direction
by means of the second adjusting means.
[0006] An upward inclining leg provides the advantage that, with a suitable choice of the
angle which the leg encloses with the floor surface, it can provide a seated user
with more legroom under the top, wherein the height-adjustability can be realized
by the telescopic body.
[0007] In an embodiment the top support is assembled from an elongate channel and a slide
element received slidably therein.
[0008] Such a top support takes up little volume and, when mounted on the underside of the
top, is largely concealed from view.
[0009] The elongate channel is for instance coupled rigidly to the top, wherein the slide
element is coupled rigidly to the telescopic body.
[0010] The elongate channel is preferably coupled rigidly to the telescopic body and the
slide element is coupled rigidly to the top.
[0011] The top rests slidably here on the leg, which is formed by the telescopic body.
[0012] The first adjusting means in a table according to the invention comprise in an embodiment
a first linear actuator which for instance comprises a first screw spindle which is
received in the leg and coupled to the top support.
[0013] The second adjusting means in a table according to the invention comprise in an embodiment
a second linear actuator which for instance comprises a second screw spindle which
is received in a holder coupled to the underside of the top and which is coupled to
the coupling means.
[0014] In a table according to these latter two embodiments the first screw spindle is coupled
to the second screw spindle for instance by means of a first right-angled transmission,
a rotating shaft and a second right-angled transmission, wherein the pitch of the
first and the second screw spindle and the transmission ratio of the first and the
second right-angled transmission are selected such that, during a change in the height
of the top as a result of a rotation of the first screw spindle, an associated movement
in horizontal direction is compensated by an opposite movement in horizontal direction
as a result of a rotation of the second screw spindle.
[0015] The drive means for driving the first and the second adjusting means are for instance
coupled to the connecting shaft for the purpose of rotating this shaft, and comprise
for instance a handle or an electric motor.
[0016] In an embodiment the drive means are coupled directly and rigidly to the connecting
shaft.
[0017] In another embodiment the drive means are coupled to the connecting shaft by means
of a right-angled transmission, for instance the second or a third right-angled transmission.
[0018] In an embodiment wherein the table according to the invention is free-standing, the
at least one leg is coupled rigidly to a base.
[0019] In an embodiment wherein the table according to the invention is coupled to a second
table the at least one leg of the first table is coupled rigidly to a leg of the second
table.
[0020] The invention will be elucidated hereinbelow on the basis of exemplary embodiments
and with reference to the drawings.
[0021] In the drawings
Fig. 1 is a perspective view of a first embodiment of a table according to the invention,
Fig. 2 is a perspective schematic view of the adjusting and drive means of the table
shown in Fig. 1,
Fig. 3 is a perspective schematic view of the underside of the table shown in Fig.
1,
Fig. 4 is a perspective view of the table shown in Fig. 1 in its highest position
as seen from a side,
Fig. 5 is a perspective view of the table shown in Fig. 1 in its lowest position as
seen from a side,
Fig. 6 is a perspective view of a second embodiment of a table according to the invention,
and
Fig. 7 is a perspective view of a third embodiment of a table according to the invention.
[0022] Corresponding components are designated in the figures with the same reference numerals.
[0023] Fig. 1 shows a table 10 with a top 2 and two telescopic legs assembled from parts
1a, 1b, 1c. On their upper end 1c directed toward top 2 these legs are coupled rigidly
to an elongate channel 3 in which a slide element 4 coupled rigidly to top 2 is slidably
received. Table 10 is of the free-standing type, wherein the legs are coupled rigidly
with their lower part 1a to a base 5.
[0024] Fig. 2 shows an adjusting and drive mechanism 6 with a first screw spindle 7 which
is coupled by means of a first right-angled transmission 8, a rotating hexagonal connecting
shaft 9 and a second right-angled transmission 11 to a second screw spindle 12. First
screw spindle 7 is received in a leg (not shown) and is coupled to top support 3,
4 (shown in Fig. 3). Second screw spindle 12 is coupled to a second right-angled transmission
11 which is coupled to hexagonal shaft 9 and is received in a holder 13 coupled rigidly
to the underside of top 2. The figure also shows a handle 14 coupled by means of a
third right-angled transmission 15 to hexagonal shaft 9 for the purpose of driving
this shaft.
[0025] The pitch of the first 7 and second screw spindle 12 and the transmission ratio of
the first 8 and the second right-angled transmission 11 are selected such that, during
a change in the height of top 2 (shown in Fig. 3) as a result of a rotation of first
screw spindle 7, an associated movement in horizontal direction is compensated by
an opposite movement in horizontal direction as a result of a rotation of second screw
spindle 12.
[0026] Fig. 3 shows the underside of table 10 shown in Fig. 1 with, in addition to the components
shown in Fig. 2, the upper part 1c of the legs, top supports 3, 4 and a housing 16
for connecting shaft 9 and the second 11 and third right-angled transmission 15.
[0027] Fig. 4 and Fig. 5 show table 10 shown in Fig. 1 in respectively its highest and lowest
position, wherein it can clearly be seen that the vertical projection of top 2 onto
base 5 has not changed, in other words the top 2 has moved only in vertical direction.
[0028] Fig. 6 shows an assembly 20 of coupled tables with tops 2, 2', wherein the lower
parts 1a; 1a' of legs 1a, 1b, 1c; 1a', 1b', 1c' oriented toward each other are rigidly
coupled by transverse beams 17 which support an upright partition 18 which separates
the two tops 2; 2'. The coupled inclining legs 1a, 1b, 1c; 1a', 1b', 1c' are oriented
in upward direction toward each other.
[0029] Fig. 7 shows an assembly 30 of coupled tables with tops 2; 2' and coupled inclining
legs 1a, 1b, 1c; 1a', 1b', 1c' which are oriented away from each other in upward direction
and are coupled rigidly to a base 5.
1. Table (10, 20, 30) with a height-adjustable top, comprising a top (2) supported by
at least one leg (1a, 1b, 1c) and first adjusting means (7) for adjusting the height
of the top, characterized in that
the at least one leg is assembled from an upward inclining elongate telescopic body
(1a, 1b, 1c) which is provided on its end directed toward the top (2) with a top support
(3, 4) coupled to the top (2),
second adjusting means (12) are provided for moving the top (2) in a horizontal direction,
drive means (14) are provided for driving the first (7) and the second adjusting means
(12), and
coupling means (8, 9, 11) are provided for coupling the first (7) and the second adjusting
means (12),
wherein the first (7) and the second adjusting means (12) and the coupling means (8,
9, 11) are configured such that, during a change in the height of the top (2) by means
of the first adjusting means (7), an associated movement in horizontal direction is
compensated by an opposite movement in horizontal direction by means of the second
adjusting means (12).
2. Table (10, 20, 30) as claimed in claim 1, characterized in that the top support is assembled from an elongate channel (3) and a slide element (4)
received slidably therein.
3. Table (10, 20, 30) as claimed in claim 2, characterized in that the elongate channel (3) is coupled rigidly to the telescopic body (1c) and the slide
element (4) is coupled rigidly to the top (2).
4. Table (10, 20, 30) as claimed in any of the foregoing claims, characterized in that the first adjusting means comprise a first linear actuator.
5. Table (10, 20, 30) as claimed in claim 4, characterized in that the first linear actuator comprises a first screw spindle (7) which is received in
the leg and coupled to the top support (3, 4).
6. Table (10, 20, 30) as claimed in any of the foregoing claims, characterized in that the second adjusting means comprise a second linear actuator.
7. Table (10, 20, 30) as claimed in claim 6, characterized in that the second linear actuator comprises a second screw spindle (12) which is received
in a holder (13) coupled to the underside of the top (2) and which is coupled to the
coupling means (11).
8. Table (10, 20, 30) as claimed in claims 5 and 7, characterized in that the first screw spindle (7) is coupled to the second screw spindle (12) by means
of a first right-angled transmission (8), a rotating connecting shaft (9) and a second
right-angled transmission (11), wherein the pitch of the first (7) and the second
screw spindle (12) and the transmission ratio of the first (8) and the second right-angled
transmission (11) are selected such that, during a change in the height of the top
(2) as a result of a rotation of the first screw spindle (7), an associated movement
in horizontal direction is compensated by an opposite movement in horizontal direction
as a result of a rotation of the second screw spindle (12).
9. Table (10, 20, 30) as claimed in claim 8, characterized in that the drive means (14) are coupled to the connecting shaft (9) for the purpose of rotating
this shaft (9).
10. Table (10, 20, 30) as claimed in claim 9, characterized in that the drive means comprise a handle (14).
11. Table (10, 20, 30) as claimed in claim 9, characterized in that the drive means comprise an electric motor.
12. Table as claimed in any of the claims 9-11, characterized in that the drive means are coupled directly and rigidly to the connecting shaft.
13. Table as claimed in any of the claims 9-11, characterized in that the drive means (14) are coupled to the connecting shaft (9) by means of the second
right-angled transmission (11).
14. Table as claimed in any of the claims 9-11, characterized in that the drive means (14) are coupled to the connecting shaft (9) by means of a third
right-angled transmission (15).
15. Table (10, 30) as claimed in any of the foregoing claims, characterized in that the at least one leg (1a) is coupled rigidly to a base (5).
16. Table (20, 30) as claimed in any of the foregoing claims, characterized in that the at least one leg (1a) is coupled rigidly to a leg (1a') of a second table.