BACKGROUND OF THE INVENTION
[0001] This invention generally relates to powered, motive toys and, in particular, to articulated
walking toys.
[0002] While articulated walking toys are generally known, it is believed that an articulated
toy with an alternate motive mechanism for providing a more anatomic-like walking
movement would be desirable.
[0003] US 4629440 discloses an articulated walking toy device according to the preamble of claim 1.
The articulated walking toy device is configured for movement across a surface and
comprises a frame and a plurality of leg assemblies movably coupled with the frame
so as to at least partially support it for movement across the surface. Each leg assembly
includes a leg member configured to rotate with respect to the frame about a joint,
a tab extending from the joint generally away from the leg member, a crank operably
connected with the tab for providing a composed movement of the leg members about
their respective joints, and a drive mechanism operatively engaged with the plurality
of leg assemblies so as to actuate each of the leg members of the plurality to rotate
about the joint in a like, predetermined cycle of movement. Upon actuation of the
drive mechanism at least some of the leg members of the plurality are out of phase
other leg members of the plurality, thus producing an anatomic-like gait of the toy
device on the surface.
BRIEF SUMMARY OF THE INVENTION
[0004] Briefly stated, the present invention is an articulated walking toy device configured
for movement across a surface. The toy device comprises a frame and a plurality of
leg assemblies movably coupled with the frame so as to at least partially support
the frame for movement across the surface. Each leg assembly includes a leg member
configured to rotate with respect to the frame about a joint. The joint is formed
by a pin passed through an hour glass shaped aperture to provide rotational movement
of the leg member with respect to the frame about at least first and second axes of
rotation intersecting in the joint. A drive mechanism is operatively engaged with
the plurality of leg assemblies so as to actuate each of the leg members to rotate
about the first and second axes in a like, predetermined, repeatable cycle of movement.
At least some of the leg members are out of phase with other leg members to produce
an anatomic-like gait of the toy device upon actuation of the drive mechanism.
[0005] In another aspect, the present invention is an articulated device configured for
walking movement across a surface. The device comprises a frame and a plurality of
leg assemblies movably coupled with the frame so as to at least partially support
the frame for movement across the surface. Each leg assembly includes a leg member
configured to rotate with respect to the frame about a joint. A tab extends from the
joint generally away from the leg member and includes a ramped surface with a slot
therealong. A crank is operably connected with the tab to slide along the slot such
that rotation of the crank causes the leg member to pivot about a first axis of rotation
of the joint. The crank has a cam surface operably connected with the ramped surface
such that rotation of the crank causes the cam surface of the crank to slide along
the ramped surface of the tab and pivot the leg member about a second axis of rotation
of the joint. A drive mechanism is drivingly engaged with each of the plurality of
leg assemblies through the tab of each leg assembly so as to cause each of the leg
members of the leg assemblies to move in the at least two different directions in
a like, predetermined, repeatable cycle of movement of each leg member. Movement of
at least some of the plurality of the leg members is unsynchronized with movement
of others of the plurality of the leg members, such that the plurality of leg members
produce an anatomic-like gait of the device across the surface.
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
[0006] The following detailed description of the preferred embodiments of the invention
will be better understood when read in conjunction with the appended drawings. For
the purpose of illustrating the invention, there is shown in the drawings an embodiment
which is presently preferred. It should be understood, however, that the invention
is not limited to the precise arrangements and instrumentalities shown.
[0008] Fig. 1 is a top right front perspective view of an articulated toy device in accordance
with a preferred embodiment of the present invention;
[0009] Fig. 2 is a top plan view of the toy device of Fig. 1;
[0010] Fig. 3 is an exploded perspective view the toy device of Fig. 1 having an outer housing
and a projectile launcher removed;
[0011] Fig. 4 is an enlarged cross-sectional view of the toy device of Fig. 1 taken generally
along line 4-4 of Fig. 2, the toy device having the outer housing and the projectile
launcher removed;
[0012] Fig. 5 is an enlarged cross-sectional view of the toy device of Fig. 1 taken generally
along line 5-5 of Fig. 2, the toy device having the outer housing and the projectile
launcher removed;
[0013] Fig. 6 is a partial view of the toy device of Fig. 1 having an alternative drive
mechanism and projectile launcher control; and
[0014] Fig. 7 is a side elevational view of the toy device of Fig. 6.
DETAILED DESCRIPTION OF THE INVENTION
[0015] Certain terminology is used in the following description for convenience only and
is not limiting. The words "right," "left," "upper," and "lower" designate directions
in the drawings to which reference is made. The words "inwardly" and "outwardly" refer
to directions toward and away from, respectively, the geometric center of an articulated
walking toy device in accordance with the present invention, and designated parts
thereof. The terminology includes the words noted above, derivatives thereof and words
of similar import.
[0016] Unless specifically set forth herein, the terms "a", "an" and "the" are not limited
to one element but instead should be read as meaning "at least one".
[0017] Referring to the drawings in detail, wherein like numerals indicate like elements
throughout, there is shown in Figs. 1-6 preferred embodiments of an articulated walking
toy device, indicated generally at 10, configured for movement across a surface (not
shown) in accordance with the present invention. The toy device 10 includes a frame
12 and a plurality of leg assemblies 14 movably coupled with the frame 12 so as to
at least partially support the frame 12 for movement across the surface, as will be
described in more detail below. Each leg assembly 14 includes a leg member 16. Preferably,
the toy device 10 includes six leg members 16, three leg members 16 on each opposing
lateral side of a body or frame 12, to mimic an insect-like creature. The leg members
16 are preferably curved in order for a distal end of the leg members 16a to support
the frame 12 above the surface and to give the device 10 an animal-like appearance.
The leg members 16, toward the front and rear of the device 10, are preferably curved
or angled toward the front or rear of the device 10 respectively, but it is within
the scope of the present invention that the leg members 16 are identically shaped
or have any shape capable of performing the desired movement. It is also within the
scope of the present invention that there be more or less than six leg members 16,
provided the toy device 10 can still function to propel or support and propel the
toy device 10, as described herein.
[0018] The toy device 10 is intended to have a power source, such as one or more batteries
18 (see Figs. 4 and 5) disposed within a battery case 20, for instance, to power movement
of the toy device 10. Furthermore, it is preferred that the toy device 10 have control
electronics (not shown) within a control electronics housing (not shown) and be remotely
controlled by a user using a generally conventional remote control device (not shown)
spaced from the toy device 10. Additionally, it is intended that the toy device 10
includes a decorative outer housing 22, which is decorated in a manner that is visually
pleasing to the user, for instance, giving the toy device 10 a robotic, bug-like,
and/or monster-like appearance.
[0019] Referring to Figs. 1-2, the toy device 10 preferably includes a generally conventional,
spring actuated projectile launcher 24 engaged to a top surface of the outer housing
22. The projectile launcher 24 preferably uses conventional means to allow a single
dart 26 to be selectively fired by a user The toy device 10 further includes wing-like,
preferably stationary, structures 28 positioned on either side of the projectile launcher
24 to mimic wings or wing covers of an insect. While this is preferred, it is within
the scope of the present invention that the projectile launcher 24 be configured differently
so as to operate in a different, generally conventional manner and/or to fire more
than one dart 26. It is also contemplated that the wing-like structures 28 of the
toy device 10 be eliminated or differently configured. Furthermore, the projectile
launcher 24 could be eliminated or replaced with a different device to perform a different
function, such as a flashlight to illuminate an area around the toy device, a crane-like
member to allow the user to pick up and move objects during play, or a canister for
expelling a web-like substance, for instance.
[0020] Referring to Figs. 3-5, the plurality of leg members 16 are preferably attached to
the frame 12 in a manner to allow the leg members 16 to move generally in at least
two rotational directions, and, specifically, to pivot back and forth with respect
to the frame 12 and to allow distal ends 16a of the leg members 30 to be raised and
lowered with respect to the surface on which the toy device 10 is supported. The leg
members 16 are arranged on first and second sides 22a, 22b of the device 10. Preferably,
the leg members 16 are configured to rotate with respect to the frame 12 about a joint
30 having at least two degrees of freedom. The joint 30 is preferably formed by a
pin 32 passed through an hour glass shaped aperture 34 to provide rotational movement
of the leg member 16 with respect to the frame 12 about at least first and second
axes of rotation 36, 38 intersecting in the joint 30. The pin 32 is preferably fixed
to or stationary with respect to the frame 12 however it is within the scope of the
present invention that the pin 32 be attached to the joint 30 and rotatably retained
within the frame 12 or between the frame 12 and the battery case 20. The shape of
the aperture 34 allows rotation of the leg members 16 back and forth through interaction
of the pin 32 with a narrow portion of the aperture 34 and pivoting of the leg members
16 upward and downward through interaction of the pin 32 with angled-out portions
of the aperture 34. The aperture 34 has a central aperture axis 36' coaxial with the
axis of rotation 36 of or about the pin 32. The aperture 34 is preferably disposed
in a plane parallel with the central aperture axis 36' but the aperture 34 may also
have an hour glass shape such that the aperture is formed about an axis of symmetry
take about the central aperture axis 36'. The joint 30 provides rotational movement
of the leg members 16 with respect to the frame 12 about at least first and second
axes of rotation 36, 38 intersecting in the joint 30. The first axis 36 is coaxial
with the longitudinal axis of the pin 32 and the second axes of rotation extends generally
perpendicular to the first axis 36 shown into the page in Fig. 4. Although the above-described
joint is preferred, it is within the scope of the present invention that the leg members
16 be movably engaged with the frame 12 in a different manner, such as with a rotating
hinge, a conventional universal joint or a ball-in-socket configuration (not shown),
for instance, provided the leg members 16 are generally capable of moving in the at
least two rotational directions, as described above.
[0021] Referring now to Figs. 3 and 4, driving of the leg members 16 is preferably accomplished
using first and second motors 40, 42, which each drive a separate drive trains or
mechanism 44. The drive mechanisms 44 are essentially identical, with the first motor
40 driving a first drive mechanism 44a and the second motor 42 driving a second drive
mechanism 44b on the first and second lateral sides 22a, 22b of the device 10 respectively.
Because the drive mechanisms 44a, 44b are essentially identical, only the first drive
mechanism 44a will be described in detail. The first motor 40 drives a pulley 46 including
a first (smaller) pulley wheel 46a and a second (larger) pulley wheel 46b, which are
rotatably engaged to one another with a belt 46c. An output shaft 40a of the first
motor 40 is rotatably fixed with the first pulley wheel 46a, such that actuation of
the first motor 40 drives the first pulley wheel 46a to rotation and, in turn, rotates
the second pulley wheel 46b. A drive gear 48 is fixed to the second pulley wheel 46b
so as to rotate therewith. Three cranks 50 are disposed in a line proximate first
lateral side 22a of the frame 12. The cranks 50 are preferably comprised of leg gears
50a. The drive gear 48 is meshed with two adjacent leg gears 50a of the three leg
gears 50a engaged with the frame 12 to rotate the two meshed leg gears 50a about respective
pins 52. An idler gear 54 is disposed between the third leg gear 50a and the leg gear
50a adjacent thereto. In this way, each of the leg gears 50a is driven in the same
rotational direction by the first motor 40. Rotation of the leg gears 50a causes movement
of the leg members 16, as described below.
[0022] In this way, the first motor 40 controls operation of the leg members 16 on the first
lateral side 22a of the toy device 10, and the second motor 42 similarly controls
operation of the leg members 16 on the second lateral side 22b of the toy device 10,
thereby allowing turning of the toy device 10 by actuating one of the first and second
motors 40, 42 slower or in a direction opposite to the actuation of the other of the
first and second motors 40, 42. While the above-described drive train configuration
is preferred, it is within the scope of the present invention that other drive train
configurations be used, provided the alternate drive train configuration functions
to cause similar movement of the leg members 16 of the toy device 10. For instance,
a single motor and a drive train having a generally convention throw-out gear could
be used for the movement of all six leg members 16. In this way, when the motor is
driven in a first direction, all leg members 16 move together in one direction (i.e.,
a forward walking motion of the toy device), and, when the motor is driven in a second
direction, the leg members 16 on one lateral side of the toy device are caused to
move in one direction (i.e., a rearward walking motion of the toy device), while the
leg members on the other lateral side of the toy device, through operation of the
throw-out gear, are caused to either move in an opposite direction (i.e., a forward
walking motion of the toy device) or to stop motion, thereby allowing the toy device
to be turned. Alternatively, each leg member 16 or smaller groups of leg members 16
could each have a separate motor and drive train.
[0023] Referring to Figs. 3-5, each leg member 16 includes a tab 56 extending therefrom
and disposed generally within the toy device 10 proximate the respective crank 50.
The tab 56 includes a ramped surface 56a with a slot 56b therealong. The ramped surface
56a is preferably angled with respect to the frame 12 such that the proximal end of
the tab 56 is closest to the frame 12 and becomes further spaced from the frame 12
moving toward the joint 31. The slot 56b accepts an eccentric post 58 extending from
a top surface of the respective crank 50. Rotation of the crank 50 causes revolution
of the post 58 and causes movement of the leg member 16 in a front and back motion,
or a direction generally parallel to the frame 12, due to interaction of the slot
56b with the post 58. Because the post 58 is eccentric with respect to the crank 50,
quick return back-and-forth motion of the leg member 16 is produced such that the
leg member 16 moves slower in one rotational direction (i.e., rearward with respect
to the toy device 10 when the toy device 10 moves in a forward direction) than the
opposite rotational direction (i.e., forward with respect to the toy device 10 when
the toy device 10 moves in a forward direction). The post 58 includes upper cam surface
58a and the crank 50 includes a cam surface 58b, which essentially sandwich and capture
the tab 56 of the leg member 16 therebetween to constrain the leg member 16 and control
up and down motion of the leg member 16 or otherwise pivot about the second axis of
rotation 38 of the joint 30. In this way, up and down motion of the leg member 16,
motion perpendicular to the frame 12, can be controlled by the profile of the tab
34. That is, due to interaction of the ramped surface 34b of the tab 34 with the cam
surfaces 58a, 50a of the post 58 and the crank 50 respectively, the leg member 16
is caused to pivot upwardly and downwardly during rotation of the crank 50. The shape
of the ramped surface 56a is preferably tailored to cause the leg member 16 to be
rotated in a first direction around the first axis of rotation 36 of the joint 30
during the cycle of movement than the leg member 16 is rotated in an opposing direction
around the first axis of rotation 36 of the joint 30 during a remainder of the cycle
of movement. In this way, the leg member 16 is moved in a cyclical walking motion
during actuation of the first motor 40. Although not shown in Fig. 4, preferably,
the cranks 50 are configured so that the eccentric posts 58 are offset from one another
to cause an offset of the cyclical motion of each of the leg members 16 from one another
so that when some of the leg members 16 are in the quick return phase of motion and
is out of contact with the surface, others of the leg members 16 are in the slower
phase of motion and in contact with the surface to ensure that the toy device 10 remains
supported on the surface by at least some of the leg members 16 during motion of the
toy device 10. This offset further causes the toy device 10 to mimic an anatomic gait
in order to approximate ambulation of an actual six-legged creature, like an insect.
[0024] Referring to Figs. 6 and 7, the toy device of Figs. 1-5 may include an alternate
driving mechanism 144. Numbers similar to those used in Figs. 1-5 but incremented
by one hundred indicate similar elements as discussed above but included in embodiment
10'. A discussion of the similar features has been eliminated for convenience only
and is not limiting.
[0025] Driving of the leg members 116 is preferably accomplished using first and second
motors 140, 142, which each drive a separate drive trains or mechanism 144. The drive
mechanisms 144 are essentially identical, with the first motor 140 driving a first
drive mechanism 144a and the second motor 142 driving a second drive mechanism (not
shown) on the first and second lateral sides 122a, 122b of the device 10' respectively.
Because the drive mechanisms 144a are essentially identical, only the first drive
mechanism 144a will be described in detail. The first motor 140 drives a gear train
146 including a first gear 146a, a second gear 146b and a third gear 146c, which are
rotatably attached to the frame 112. The first gear 146a is meshed with the second
gear 146b. The second gear 146b and the third gear 146c are preferably identical combination
spur gears, each having a smaller inner gear portion 145 and a larger outer gear portion
147 but mounted with an opposite orientation such that the smaller inner gear portion
145 meshes with the larger outer gear portion 147 on each second and third gear 146b,
146c, respectively. The third gear 146c is operably connected through the frame 112
to a drive gear 148. The third gear 146c and the drive gear 148 are preferably fixedly
coupled together through a common axel (not shown). The drive gear 148 drives the
cranks 150, leg gears 150a and the idler gears 154 to move the leg members 116 as
was described above. The drive mechanisms 144 and the corresponding components may
be oriented directly underneath the frame 112 such that the orientation of the drive
mechanisms 144 and tabs (not shown) is inverse to the orientation of the drive mechanisms
44 described above.
[0026] The toy device 10 may include a latching mechanism 160 to releasably engage a dart
126 in a projectile launcher 124. The latching mechanism 160 is spring biased from
the projectile launcher 124 and includes two separately pivotably latch legs 160a
and 160b. The latch legs 160a, 160b retain the dart 126 by engaging with a ridge 126a
in the dart 126. First and second sector wheels 162a, 162b are rotatatably mounted
on the top of the frame 112 and driven with the leg gear 150a positioned on the opposing
side of the frame 112 such that the sector wheels 162a, 162b are driven in the same
direction as the corresponding leg gears 150a. The sector wheels 162a, 162b have a
circular flange 162c with an outer periphery notch 162d. A pair of levers 164 are
pivotably mounted above each sector wheel 162. The levers 164 are positioned such
that the extend through the notches 162d. As the sector wheels 162a, 162b are rotated,
the flanges 162c engage with the levers 164 to pivot the lever 164 in the direction
of rotation. When the device moves in one of two longitudinal directions, preferably
rearward toward the first motor 140, the sector wheels 162a, 162b rotate the corresponding
levers 164 toward the latching mechanism 160 to pivot the latching mechanism 160 and
releasing the latch legs 160a, 160b from the dart 126. Once the latch legs 160a, 160b
are released, a spring 126b launches the dart 126 from the projectile launcher 124.
Because the latch legs 160a, 160b are separately pivotable, both latch legs 160a,
160b must be released simultaneously in order to release the dart 126. To ensure that
both latch legs 160a, 160b are released at the same time, the each drive mechanism
144 must be operated simultaneously in the same direction, again preferably corresponding
to a reverse direction of the device 10'.
[0027] It will be appreciated by those skilled in the art that changes could be made to
the embodiment described above without departing from the broad inventive concept
thereof. In one important aspect of the invention, as few as a pair of the legs on
opposite sides of the toy device could be used to propel the toy device. Two legs
also could be used to both support and propel the toy device. For example, the distal,
surface contacting end of each leg could be provided with a member or surface that
resists rearward motion while permitting forward motion. This would permit each leg
to be moved from a forward position to a rearward position as described above and
brought back to a forward position without being raised from the support surface.
Alternatively or in addition, each leg could be pivoted slightly downwardly at the
end of its rearward movement to momentarily tilt the toy device away from that side
before the leg is slightly raised from the surface and returned to a forward position.
Also, a chassis with support wheels or equivalents could be provided and the leg assemblies
used only for propulsion. Four leg assemblies could be used to mimic four-legged creatures
(e.g., mammals, amphibians, and reptiles) while eight leg assemblies can be used to
mimic arachnids.
[0028] While remote control of the toy device is preferred, it will be appreciated that
the toy device can be factory preprogrammed to perform a predetermined movement or
series of movements or configured to be selectively programmed by a user to create
such predetermined movement(s). Alternatively or in addition, the toy device can be
equipped with sensors, e.g., switches, proximity detectors, etc., that will control
the toy device to turn away from or reverse itself automatically from whatever direction
it was moving in if or when an obstacle is contacted or otherwise sensed.
[0029] It is understood, therefore, that this invention is not limited to the particular
embodiment disclosed, but it is intended to cover modifications within the scope of
the present invention.
1. An articulated walking toy device (10) configured for movement across a surface, the
toy device (10) comprising:
a frame (12, 112)
a plurality of leg assemblies (14) movably coupled with the frame (12 ,112) so as
to at least partially support the frame (12, 112) for movement across the surface,
each leg assembly (14) including a leg member (16) configured to rotate with respect
to the frame (12, 112) about a joint (30), a tab (56) extending from the joint (30)
generally away from the leg member (16), a crank (50) operably connected with the
tab (56) ; and
a drive mechanism (44, 144) operatively engaged with the plurality of leg assemblies
(14) so as to actuate each of the leg members (16) of the plurality to rotate about
the joint (30) in a like, predetermined, repeatable cycle of movement, with at least
some of the leg members (16) of the plurality being out of phase with other leg members
(16) of the plurality to produce an anatomic-like gait of the toy device (10) on the
surface upon actuation of the drive mechanism (44, 144)
characterized in that
the tab (56) includes a ramped surface (56a) with a slot (56b) therealong; and in that
the crank (50) is operably connected with the tab (56) to slide along the slot (56b)
such that rotation of the crank (50) causes the leg member (16) to pivot about a first
axis of rotation (36) of the joint (30), the crank (50) having a cam surface (58b)
operably connected with the ramped surface (56a) such that rotation of the crank (50)
causes the cam surface (58b) of the crank (50) to slide along the ramped surface (56a)
of the tab (56) and pivot the leg member (16) about a second axis of rotation (38)
of the joint (30).
2. The articulated walking toy device of claim 1, wherein the joint (30) is formed by
a pin (32) passed through an hour glass shaped aperture (34) to provide rotational
movement of the leg member (16) with respect to the frame (12) about the first and
second axes (36, 38) of rotation intersecting in the joint (30).
3. The articulated walking toy device of claim 1, wherein interaction of the crank (50)
with the slot (56b) causes rotation of the leg member (16) in a direction generally
parallel to the surface supporting the plurality of leg members (16) and interaction
of the cam surface (58b) of the crank (50) with the ramped surface (56a) causes rotation
of the leg member (16) in a direction generally perpendicular to the surface supporting
the plurality of leg members (16).
4. The articulated walking toy device of claim 3, wherein the crank (50) is located with
respect to the tab (56) and the joint (30) such that, for each rotational cycle of
the crank (50), the connected leg member (16) is rotated faster in a first direction
around the first axis of rotation (36) of the joint (30) during the cycle of movement
than the leg member (16) is rotated in an opposing direction around the first axis
of rotation (36) of the joint (30) during a remainder of the cycle of movement.
5. The articulated walking toy device of claim 1, wherein the drive mechanism (44) comprises:
at least a first motor (40) supported from the frame (12); and
a pulley wheel (46) driven by the first motor (40) and drivingly coupled to at least
the leg assemblies (14) disposed on a first lateral side (22a) of the device.
6. The articulated walking toy device of claim 5, wherein the drive mechanism (44) further
comprises:
a second motor (42) supported from the frame (12) and drivingly coupled to the leg
assemblies (14) disposed on a second lateral side (22b) of the device opposite the
first lateral side (22a) for movement of the leg assemblies (14) on the second lateral
side (22b) independently of the movement of the leg assemblies (14) on the first lateral
side (22a).
7. The articulated walking toy device of claim 6, wherein the crank (50) of each leg
assembly (14) is provided by a leg gear (50a) mounted for rotation on the frame (12)
and a post (58) extending transversely to the gear (50a) radially spaced from an axis
of rotation of the leg gear (50a), the post (58) including a cam surface (58a) operably
connected with the ramped surface (56a), each leg gear (50a) of at least the leg assemblies
(14) disposed on the first lateral side (22a) of the device being driven by the pulley
wheel (46).
8. The articulated walking toy device of claim 7, further comprising a drive gear (48)
fixedly connected with the pulley wheel (46) to rotate with the pulley wheel (46),
the drive gear (48) being drivingly engaged with the leg gear (50a) of a first leg
assembly (14) proximal the pulley (46).
9. The articulated walking toy device of claim 6, further comprising an idler gear (54)
between each pair of adjoining leg assemblies (14) on at least the first lateral side
(22a) of the frame (12) operatively connecting the pair of adjoining leg assemblies
(14) for movement by simultaneous driving engagement with the leg gear (50a) of each
of the pair of adjoining leg assemblies (14), whereby operation of the first motor
(40) causes rotation of each leg gear (50a) of each of the leg assemblies (14) on
at least the first lateral side (22a) of the frame (12) in the same rotational direction
to drive each of the leg assemblies (14) on the first lateral side (22a) of the frame
(12) in the repeatable cycle of movement at the same time in same cyclical direction.
10. The articulated walking toy device of claim 1, wherein the drive mechanism (144) comprises:
a first motor (140) supported from the frame (112) driving coupled to a first sector
wheel (162a);
a second motor (142) supported from the frame (112) driving coupled to a second sector
wheel (162b); and
a latch mechanism (160) driving coupled to the first and second sector wheels (162a,
162b) and being configured to fully release only when the device moves in one of two
longitudinal directions.
11. The articulated walking toy device of claim 1, further comprising a spring actuated
projectile launcher (24, 124) engaged to a top surface of an outer housing (22).
1. Ein mit Gelenken ausgestattetes Spielzeuggerät (10), ausgestaltet zur Bewegung entlang
einer Fläche, wobei das Spielzeuggerät (10) aufweist:
- Einen Rahmen (12, 112);
- eine Mehrzahl von Bein-Baugruppen (14), welche mit dem Rahmen (12, 112) beweglich
gekoppelt sind, so dass sie den Rahmen (12, 112) zwecks Bewegung entlang einer Fläche
zumindest teilweise tragen, wobei jede Bein-Baugruppe (14) ein Bein-Bauteil (16) aufweist,
welches gegenüber dem Rahmen (12, 112) um eine Gelenkverbindung (30) rotierbar ausgestaltet
ist, wobei sich eine Lasche (56) von der Gelenkverbindung (30) im Wesentlichen von
der Bein-Baugruppe (14) weg erstreckt, und wobei eine Kurbel (50) mit der Lasche (56)
wirkungsmäßig gekoppelt ist; und
- eine wirkungsmäßig mit der Mehrzahl von Bein-Baugruppen (14) gekoppelte Antriebsmechanik
(44, 144), um jedes Bein-Bauteil (16) der Mehrzahl in einem gleichen, vorgegebenen,
wiederholbaren Bewegungszyklus um die Gelenkverbindung (30) zu schwenken, wobei wenigstens
einige der Bein-Bauteile (16) der Mehrzahl außer Phase mit den anderen Bein-Bauteilen
(16) der Mehrzahl sind, um bei Aktivierung der Antriebsmechanik (44, 144) eine anatomie-gerechte
Gangart des Spielzeuggerätes (10) auf der Oberfläche hervorzurufen;
dadurch gekennzeichnet, dass
- die Lasche (56) eine rampenartige Oberfläche (56a) mit einem daran entlang laufenden
Schlitz (56b) aufweist; sowie dadurch, dass
- die Kurbel (50) mit der Lasche (56) wirkungsmäßig verbunden ist, um entlang des
Schlitzes (56b) zu gleiten, derart, dass eine Rotation der Kurbel (50) das Bein-Bauteil
(16) veranlasst, um eine erste Drehachse (36) der Gelenkverbindung (30) zu schwenken,
wobei die Kurbel (50) eine nockenartige Oberfläche (58b) aufweist, welche mit der
rampenartigen Oberfläche (56a) derart wirkungsmäßig gekoppelt ist, dass eine Rotation
der Kurbel (50) die nockenartige Oberfläche (58b) der Kurbel (50) veranlasst, an der
rampenartigen Oberfläche (56a) der Lasche (56) entlang zu gleiten und das Bein-Bauteil
(16) um eine zweite Drehachse (38) der Gelenkverbindung (30) zu schwenken.
2. Das mit Gelenken ausgestattete Spielzeuggerät nach Anspruch 1, wobei die Gelenkverbindung
(30) durch einen Stift (32) gebildet ist, welcher eine sanduhrförmige Öffnung (34)
durchsetzt, um eine Drehbewegung des Bein-Bauteils (16) gegenüber dem Rahmen (12)
um die erste und zweite Drehachse (36, 38) zu bewirken, welche das Gelenk (30) durchsetzen.
3. Das mit Gelenken ausgestattete Spielzeuggerät nach Anspruch 1, wobei das Zusammenwirken
der Kurbel (50) mit dem Schlitz (56b) eine Drehung des Bein-Bauteils (16) in einer
Richtung im Wesentlichen parallel zu der die Mehrzahl von Bein-Bauteilen (16) stützenden
Oberfläche bewirkt, und wobei das Zusammenwirken der NockenOberfläche (58b) der Kurbel
(50) mit der rampenartigen Oberfläche (56a) eine Drehung des Bein-Bauteils (16) in
einer Richtung im Wesentlichen rechtwinklig zu der die Mehrzahl von Bein-Bauteilen
(16) stützenden Oberfläche bewirkt.
4. Das mit Gelenken ausgestattete Spielzeuggerät nach Anspruch 3, wobei die Kurbel in
Bezug auf die Lasche (56) und die Gelenkverbindung (30) derart positioniert ist, dass
das angeschlossene Bein-Bauteil (16) bei jedem Rotationszyklus der Kurbel (50) in
einer ersten Richtung um die erste Drehachse (36) der Gelenkverbindung (30) im Verlauf
des Bewegungszykels schneller rotiert wird als das Bein-Bauteil (16) in einer entgegengesetzten
Richtung um die erste Drehachse (36) der Gelenkverbindung (30) während des restlichen
Bewegungszykels rotiert wird.
5. Das mit Gelenken ausgestattete Spielzeuggerät nach Anspruch 1, wobei die Antriebsmechanik
(44) aufweist:
- wenigstens einen ersten, von dem Rahmen (12) getragenen Motor (40); und
- ein von dem ersten Motor (40) angetriebenes Riemenrad (46), das mit wenigstens den
Bein-Baugruppen (14) an einer ersten Seite (22a) des Gerätes antriebsmäßig gekoppelt
ist.
6. Das mit Gelenken ausgestattete Spielzeuggerät nach Anspruch 5, wobei die Antriebsmechanik
(44) ferner aufweist:
- einen zweiten, von dem Rahmen (12) getragenen Motor (42), der mit wenigstens den
Bein-Baugruppen (14) an einer zweiten Seite (22b) antriebsmäßig gekoppelt ist, um
die Bein-Baugruppen (14) an der zweiten Seite (22b) unabhängig von der Bewegung der
Bein-Baugruppen (14) an der ersten Seite (22a) zu bewegen.
7. Das mit Gelenken ausgestattete Spielzeuggerät nach Anspruch 6, wobei die Kurbel (50)
jeder Bein-Baugruppe (14) mit einem Bein-Zahnrad (50a) versehen ist, welches drehbeweglich
an dem Rahmen (12) gelagert ist, und mit einem Pfosten (58), welcher sich in einem
radialen Abstand zu der Drehachse des Bein-Zahnrades (50a) quer zu dem Zahnrad (50a)
erstreckt, wobei der Pfosten (58) eine nockenartige Oberfläche (58a) aufweist, welche
wirkungsmäßig an der rampenartigen Oberfläche (56a) angeschlossen ist, wobei jedes
Bein-Zahnrad (50a) wenigstens der Bein-Baugruppen (14) an der ersten Seite (22a) des
Gerätes von dem Riemenrad (46) angetrieben ist.
8. Das mit Gelenken ausgestattete Spielzeuggerät nach Anspruch 7, ferner umfassend ein
fest mit dem Riemenrad (46) verbundenes Antriebszahnrad (48), welches gemeinsam mit
dem Riemenrad (46) rotiert, wobei das Antriebszahnrad (48) antriebsmäßig mit dem Bein-Zahnrad
(50a) einer ersten Bein-Baugruppe (14) nahe dem Riemenrad (46) kämmt.
9. Das mit Gelenken ausgestattete Spielzeuggerät nach Anspruch 6, ferner umfassend ein
Zwischenrad (54) zwischen jedem Paar von aneinandergrenzenden Bein-Baugruppen (14)
an wenigstens der ersten Seite (22a) des Rahmens (12), um das Paar angrenzender Bein-Baugruppen
(14) bewegungsmäßig zu koppeln zum simultanen Antriebs-Zahneingriff mit dem Bein-Zahnrad
(50a) jeder der angrenzenden Bein-Baugruppen (14), wodurch der Betrieb des ersten
Motors (40) eine Drehbewegung des Bein-Zahnrades (50a) jeder der Bein-Baugruppen (14)
an wenigstens der ersten Seite (22a) des Rahmens (12) in der gleichen Drehrichtung
bewirkt, um die Bein-Baugruppen (14) an der ersten Seite (22a) des Rahmens (12) innerhalb
des wiederholbaren Bewegungszyklus zur selben Zeit in die selbe Zyklusrichtung anzutreiben.
10. Das mit Gelenken ausgestattete Spielzeuggerät nach Anspruch 1, wobei die Antriebsmechanik
(144) umfasst:
- einen ersten, von dem Rahmen (112) getragenen Motor (140), der mit einem ersten
Segmentrad (162a) antriebsmäßig gekoppelt ist;
- einen zweiten, von dem Rahmen (112) getragenen Motor (142), der mit einem zweiten
Segmentrad (162b) antriebsmäßig gekoppelt ist;
- eine mit dem ersten und zweiten Segmentrad (162a, 162b) antriebsmäßig gekoppelte
Klinkenmechanik (160), die derart ausgebildet ist, dass sie nur dann voll auslöst,
wenn das Gerät sich in einer von zwei Längsrichtungen bewegt.
11. Das mit Gelenken ausgestattete Spielzeuggerät nach Anspruch 1, ferner umfassend ein
federbetätigtes Projektil-Abschussgerät (24, 124) auf der Oberseite eines äußeren
Gehäuses (22).
1. Dispositif de jouet articulé qui marche (10) configuré pour se déplacer à travers
une surface, le dispositif de jouet (10) comprenant :
un châssis (12, 112)
plusieurs ensembles de patte (14) reliés de manière mobile au châssis (12, 112) de
manière à supporter au moins partiellement le châssis (12, 112) pour un déplacement
à travers la surface, chaque ensemble de patte (14) comprenant un élément de patte
(16) configuré pour tourner par rapport au châssis (12, 112) autour d'une articulation
(30), une languette (56) s'étendant à partir de l'articulation (30) de manière générale
en s'éloignant de l'élément de patte (16), une manivelle (50) reliée de manière opérationnelle
à la languette (56) ; et
un mécanisme d'entraînement (44, 144) en prise de manière opérationnelle avec les
plusieurs ensembles de patte (14) de manière à actionner chacun des éléments de patte
(16) parmi les plusieurs pour qu'il tourne autour de l'articulation (30) de manière
analogue à un cycle de mouvement pouvant être répété, prédéterminé, au moins certains
des éléments de patte (16) parmi les plusieurs étant déphasés par rapport à d'autres
éléments de patte (16) des plusieurs pour produire comme une démarche anatomique du
dispositif de jouet (10) sur la surface lors de l'actionnement du mécanisme d'entraînement
(44, 144)
caractérisé en ce que
la languette (56) comprend une surface en rampe (56a) ayant une fente (56b) le long
de celle-ci ; et en ce que
la manivelle (50) est reliée de manière opérationnelle à la languette (56) pour coulisser
le long de la fente (56b) de sorte qu'une rotation de la manivelle (50) amène l'élément
de patte (16) à pivoter autour d'un premier axe de rotation (36) de l'articulation
(30), la manivelle (50) ayant une surface de came (58b) reliée de manière opérationnelle
à la surface en rampe (56a) de sorte qu'une rotation de la manivelle (50) amène la
surface de came (58b) de la manivelle (50) à coulisser le long de la surface en rampe
(56a) de la languette (56) et à faire pivoter l'élément de patte (16) autour d'un
second axe de rotation (38) de l'articulation (30).
2. Dispositif de jouet articulé qui marche selon la revendication 1, dans lequel l'articulation
(30) est formée par un axe (32) passé à travers une ouverture en forme de sablier
(34) pour fournir un mouvement de rotation de l'élément de patte (16) par rapport
au châssis (12) autour des premier et second axes (36, 38) de rotation se recoupant
dans l'articulation (30).
3. Dispositif de jouet articulé qui marche selon la revendication 1, dans lequel une
interaction de la manivelle (50) avec la fente (56b) provoque une rotation de l'élément
de patte (16) dans une direction généralement parallèle à la surface supportant les
plusieurs éléments de patte (16) et une interaction de la surface de came (58b) de
la manivelle (50) avec la surface en rampe (56a) provoque une rotation de l'élément
de patte (16) dans une direction généralement perpendiculaire à la surface supportant
les plusieurs éléments de patte (16).
4. Dispositif de jouet articulé qui marche selon la revendication 3 dans lequel la manivelle
(50) est positionnée par rapport à la languette (56) et à l'articulation (30) de telle
sorte que, pour chaque cycle de rotation de la manivelle (50), l'élément de patte
relié (16) est mis en rotation plus vite dans une première direction autour du premier
axe de rotation (36) de l'articulation (30) pendant le cycle de mouvement que l'élément
de patte (16) n'est mis en rotation dans une direction opposée autour du premier axe
de rotation (36) de l'articulation (30) pendant le reste du cycle de mouvement.
5. Dispositif de jouet articulé qui marche selon la revendication 1 dans lequel le mécanisme
d'entraînement (44) comprend :
un premier moteur électrique (40) supporté par le châssis (12) ; et
une roue de poulie (46) entraînée par le premier moteur électrique (40) et reliée
de manière menante au moins aux ensembles de patte (14) disposés sur un premier côté
latéral (22a) du dispositif.
6. Dispositif de jouet articulé qui marche selon la revendication 5 dans lequel le mécanisme
d'entraînement (44) comprend de plus :
un second moteur électrique (42) supporté par le châssis (12) et relié de manière
menante aux ensembles de patte (14) disposés sur un second côté latéral (22b) du dispositif
opposé au premier côté latéral (22a) pour un mouvement des ensembles de patte (14)
sur le second côté latéral (22b) indépendant du mouvement des ensembles de patte (14)
du premier côté latéral (22a).
7. Dispositif de jouet articulé qui marche selon la revendication 6 dans lequel la manivelle
(50) de chaque ensemble de patte (14) est fournie par une roue dentée de patte (50a)
montée pour tourner sur le châssis (12) et un montant (58) s'étendant transversalement
par rapport à la roue dentée (50a) radialement espacé à partir d'un axe de rotation
de la roue dentée de patte (50a), le montant (58) comprenant une surface de came (58a)
reliée de manière opérationnelle à la surface en rampe (56a), chaque roue dentée de
patte (50a) d'au moins les ensembles de patte (14) disposés sur le premier coté latéral
du dispositif étant entraînée par la roue de poulie (46).
8. Dispositif de jouet articulé qui marche selon la revendication 7 comprenant de plus
une roue dentée d'entraînement (48) reliée de manière fixe à la roue de poulie (46)
pour tourner avec la roue de poulie (46), la roue dentée d'entraînement (48) étant
en prise de manière menante avec la roue dentée de patte (50a) d'un premier ensemble
de patte (14) proximal par rapport à la poulie (46).
9. Dispositif de jouet articulé qui marche selon la revendication 6, comprenant de plus
une roue dentée de ralenti (54) entre chaque paire d'ensembles de patte adjacents
(14) sur au moins le premier côté latéral (22a) du châssis (12) reliant de manière
opérationnelle la paire d'ensembles de patte adjacents (14) pour un mouvement par
mise en prise 90 simultanée avec la roue dentée de patte (50a) de chacun de la paire
d'ensembles de patte adjacents (14), de sorte qu'un fonctionnement du premier moteur
électrique (40) provoque une rotation de chaque roue dentée de patte (50a) de chacun
des ensembles de patte (14) sur au moins le premier côté latéral (22a) du châssis
(12) dans le même sens de rotation pour entraîner chacun des ensembles de patte (14)
situés sur le premier côté latéral (22a) du châssis (12) dans les cycles de mouvement
pouvant être répétés au même moment dans une même direction cyclique.
10. Dispositif de jouet articulé qui marche selon la revendication 1, dans lequel le mécanisme
d'entraînement (144) comprend :
un premier moteur électrique (140) supporté par le châssis (112) relié de manière
menante à une première roue de secteur (162a) ;
un second moteur électrique (142) supporté par le châssis (112) relié de manière menante
à une seconde roue de secteur (162b) ; et
un mécanisme de verrouillage (160) relié de manière menante aux première et seconde
roues de secteur (162a, 162b) et étant configuré pour libérer entièrement seulement
lorsque le dispositif se déplace dans une de deux directions longitudinales.
11. Dispositif de jouet articulé qui marche selon la revendication 1 comprenant de plus
un lanceur de projectile actionné par ressort (24, 124) en prise sur une surface supérieure
d'un boîtier extérieur (22).