The present invention relates to a toy figure with various pre-recorded sounds and movements that are played upon the activation of one or more switches.
Toy figures have always been the mainstay as toys for young children. Included therewith, are figures that when activated by a user talk or sing in response thereto. For example, in some instances a switch may be placed within the figure that when pressed causes the toy figure to emit various sound bites or noises. The present invention is directed more towards aquatic animals or animals and figures that include tails, such as but not limited to, fish, mermaids, dragons, alligators, etc.
The prior art does include numerous mechanical aquatic animals. In their basic form, aquatic animals have been developed for many years for fish tanks and aquariums. Such aquatic animals may include mechanical moving parts that may be activated by pressure, floats, or springs to simulate movement in the water. More recent robotic aquatic animals include highly developed mechanics to actually move the robotic aquatic animals under water in a manner that simulates an actual fish swimming.
Nevertheless, there is always a continual need for improvements and novel features not found in the prior art. For example, the ability to provide an aquatic animal or other tailed creature (hereinafter referred to broadly as a “figure”) that does not require water and that still resembles the same movement. Such a figure includes multiple switches and a proximity sensor that when triggered, invokes various responses and movements. For example, if the figure was a fish, the responses and movements could include a moving tail and flippers. The fish may also include vibrations in the mouth to simulate nibbling and include the closing or blinking of an eye. Various sound responses may also be included such as music, voices, and sound effects.
In one embodiment of the present invention there is provided a toy figure, having a body defined with a front portion, a rear portion, and a bottom portion. The figure further includes a flexible tail extending from the rear portion. The tail being defined as having a flexible membrane with a plurality of sectional coverings separately secured to the flexible membrane. The flexible membrane is able to remain flexible in regions defined between the plurality of sectional coverings. The figure also includes a wheel rotatably attached to the body and extending from the bottom portion of the body. A first motor mechanism is housed in the body and is operatively connected to drive the wheel such that when the first motor mechanism is activated the wheel moves, which causes the freely flexible tail to move.
The figure may also include a head extending from the front portion of the body. The head has a pair of eyes and a pair of eye lids that are moveable in relation to the eyes and biased in an open position. A second motor mechanism is housed in the body and operatively connected to the eye lids such that when the second motor mechanism is activated, the eye lids are engaged to move to a closed position temporarily to provide an appearance the figure has blinked.
The figure may also include a mouth with a tongue pivotally connected therein. The second motor mechanism when operating is able to engage and move the tongue causing the tongue to vibrate. The vibration movement simulates the figure nibbling.
The figure may also include a pair of appendages separately extending from either side of the body of the figure. Each appendage is movably connected to the body of the figure. In addition, the second motor mechanism when operating is able to move the pair of appendages.
A circuit board having preprogrammed sounds and controls is further positioned in the figure. The preprogrammed controls are defined to control the motor mechanisms and thus control the movement of the figure. The circuit board has programming to replay the preprogrammed sounds and controls upon the triggering of a switch or possibly upon direction of a timing mechanism.
Numerous other advantages and features of the invention will become readily apparent from the following detailed description of the invention and the embodiments thereof, from the claims, and from the accompanying drawings.
A fuller understanding of the foregoing may be had by reference to the accompanying drawings, wherein:
a is a bottom view of the animal in
b is a bottom view of the animal in
a through 8c are views of the inside cam surface of the eye gear cap illustrating the movement of the pin and engagement of the eye gear cap;
While the invention is susceptible to embodiments in many different forms, there are shown in the drawings and will be described in detail herein the preferred embodiments of the present invention. It should be understood, however, that the present disclosure is to be considered an exemplification of the principles of the invention and is not intended to limit the spirit or scope of the invention and/or claims of the embodiments illustrated.
Referring now to
The
The responses may include mechanical movement of portions of the figure, including, movement of the tail 14 (
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Housed within the body 28 of the
As mentioned, the circuit board 40 controls motor mechanisms to move the
Continuing to refer to
Similarly, a second one way clutch mechanism is employed to vibrate the tongue 23. The tongue gear train 76 when moving in a specific direction operates a gear cap 88 that moves a tongue flapper arm 100. The tongue flapper arm 100 comes in contact with a tongue flap 102 that is secured to a tongue 23. The tongue 23 is pivotally secured to the body 30 such that movement of the tongue flap 102 will cause the tongue to vibrate about its pivot 106. Moreover, the eye gear train 74 and the tongue gear train 76 are laid out such that when the second motor 70 is operating in a first direction, the eye flapper arm 90 moves and when the second motor 70 is operating in a direction opposite to the first direction, the tongue flapper arm 100 moves.
When the second motor 70 is operating in either direction, the second motor 70 engages the fin gear train 78. The fin gear train 78 includes a pair of fin gears 110 secured on an axle. The fin gears 110 are diametrically opposed on either side of the
Various switches in the
A second switch 132 may be positioned within the mouth 22. The second switch 132 is activated when a user places an object within the mouth, such as a finger (
Referring now to
Referring now to
The present invention may therefore be described as a motorized interactive audio animatronics toy aquatic animal having semi-realistic styling, motorized moving eyes and mouth as well as a multi-segmented body and tail. The tail has pivoting means for simulating the action of swimming in place when an electronically controlled motorized transverse wheel located beneath the front end of the animal causes the front end of the animal to oscillate. The same motorized wheel can cause the animal to rotate 360° in either direction. The animal is equipped with switches and sensors in various locations to detect petting and feeding and sounds from a person interacting with the fish and further includes a speaker and electronic voice for responding to and/or prompting interaction from a person. The animal may include other sound effects such as bubbling or splashing and/or other human sounds such as burping.
In another embodiment, the present invention may be a motorized interactive audio animatronics toy animal having robotic styling, as well as a multi-segmented body and tail. The tail having pivoting means for simulating the action of swimming in place when an electronically controlled motorized transverse wheel causes the animal to rotate in either direction and/or perform electronically controlled moves in response to pre-programmed sounds or music. The animal is equipped switches, sensors or lights and a speaker that when combined with its motorized movements can convey a mood of the animal. To increase the quality of play with the animal. The animal can further have electronic circuits programmed to help compose music to convey its mood.
In yet another aspect of the invention, the present invention may be controlled through a remote controller unit. The remote controller unit may send signals received by receivers in the animal. The circuit board may have programming to control the movement of the animal to follow the signals or move the animal in response to such signals.
From the foregoing and as mentioned above, it is observed that numerous variations and modifications may be effected without departing from the spirit and scope of the novel concept of the invention. It is to be understood that no limitation with respect to the embodiments illustrated herein is intended or should be inferred. It is intended to cover, by the appended claims, all such modifications within the scope of the appended claims.