In general, the present invention relates to action skill toys that are designed to be juggled in one hand or to be juggled between the hands. More particularly, the present invention relates to action skill games that have rigid appendages that radiate from a common hub area.
There are many toys and novelty items that take practice and skill to operate. A prime example of such an action skill toy is the yo-yo. Such action skill toys require that the user develop the needed hand-eye coordination, muscle memory, and dexterity to correctly play with the toy.
Many action skill toys are intended to be juggled. That is, the toy is designed to be repeatedly thrown and caught either in the same hand or between hands. Juggling toys tend to balance about a central point so that the toy will spin predictably in the air when released from the juggler's hand. Such a balance is necessary to ensure that the toy will spin in a consistent manner each time it is caught and released. A complication occurs when the item being juggled is not ridged but has the ability to bend or fold. Items that bend or fold have a center of gravity that can change drastically depending upon the configuration of the item at a given point in time.
The present invention is an action skill toy that is intended to be juggled, yet has a changeable configuration that effects its center of gravity. The user must not only develop the skills needed to throw and catch the action skill toy but must also develop the skills to control the configuration of the toy in flight. In this manner, the flight path of the action skill toy can become predictable, yet changeable, between tosses. This enables a wide range of juggling effects and tricks to be achieved that are not possible using traditional ridged juggling toys. The improved action skill toy is described and claimed below.
The present invention is an action skill toy that is intended to be juggled by being repeatedly thrown and caught in one hand or between both hands of a user. The action skill toy has a central hub area and rigid appendages that extend away from the central hub area. It is the rigid appendages that are grasped by a user's hands. Each of the ridged appendages has a first end within the central hub area and a free second end that extends out of the central hub area. Each of the rigid appendages is coupled at a pivot joint to another of the appendages within the central hub area. This enables each of the rigid appendages to rotate about a pivot joint in a common plane of rotation.
To facilitate the grasping of the rigid appendages during juggling, each of the rigid appendages has an enlarged area near its free end. The enlarged areas enable the rigid appendages to be easily grasped. The enlarged areas also provide space for the mounting of illumination units. The illumination units automatically activate when the appendages are juggled and rotate in the common plane of rotation about the pivot joints.
For a better understanding of the present invention, reference is made to the following description of an exemplary embodiment thereof, considered in conjunction with the accompanying drawings, in which:
Although the present invention action skill toy can have a variety of shapes, only one exemplary embodiment of the action skill toy is illustrated and described. The exemplary embodiment is selected in order set forth one of the best modes contemplated for the invention. The illustrated embodiment, however, is merely exemplary and should not be considered a limitation when interpreting the scope of the appended claims.
Referring to
In the shown embodiment, the appendages 11 include a base appendage 12 and two arm appendages 14, 16. The two arm appendages 14, 16 attach to the base appendage 12 at hinged pivot joints 18 within the hub area 13. In this manner the arm appendages 14, 16 can rotate in a common plane about the pivot joints 18, relative the base appendage 12, through a wide range of motions.
As will be explained, all of the appendages 11 have enlarged areas 15 that extend outside of the hub area 13. The enlarged areas 15 are used to grab, catch and throw the action skill toy 10 during juggling and play. The appendages 11 can all be identical. However, in the shown embodiment, the appendages 11 have different shapes that enhance the play value of the action skill toy 10. For instance, certain juggling games may require that one of the appendages 11 not be touched as the action skill toy 10 is juggled.
The base appendage 12 is generally Y-shaped. That is, the base appendage 12 has an enlarged head 20, a shaft 22 that extends from the enlarged head 20, and two small hinge yokes 24, 26 that extend away from the shaft 22 at inclined angles. The enlarged head 20 and shaft 22 are linearly aligned between a jointed end 30 and a free end 28. The enlarged head 20 starts at the free end 28 and the shaft 22 terminates at the jointed end 30 in the crux of the overall Y-shape. Accordingly, at the jointed end 30, the hinge yokes 24, 25 and the shaft 22 diverge. The jointed end 30 of the base appendage 12 terminates on a rounded surface 32 that extends between the two sets of hinge yokes 24, 26. The rounded surface 32 forms a finger cradle within the hub area 13 that is disposed at or near the center of gravity of the action skill toy 10 when the arm appendages 14, 16 and the base appendage 12 are symmetrically disposed. The purpose of the rounded surface 32 is later explained.
Each of the hinge yokes 24, 26 is formed by two parallel panels 34, 36 that extend away from the shaft 22 in a common direction. The space between the parallel panels 34, 36 forms a slot 38. Holes 39 are formed in the parallel panels 34, 36 to receive a hinge pin 40. The slot 38 within each hinge yoke 24, 26 is open with the exception of a stop 42 that is purposely positioned to limit the rotational motion range of the arm appendages 14, 16.
The enlarged head 20 on the base appendage 12 has a face surface 44 and an opposite rear surface 46. The enlarged head 20 also has two long flat side surfaces 50, 52 that extend between the face surface 44 and the rear surface 46. As such, the two long flat side surfaces 50, 52 lay perpendicular to the common plane of rotation for the various appendages 11. The face surface 44 is translucent. An internal chamber 54 is defined within the enlarged head 20 between the face surface 44, the rear surface 46, and the two flat side surfaces 50, 52. This reduces the weight of the enlarged head 20 and provides room for a first internal illumination unit 56.
The illumination unit 56 contains at least one LED 58, a battery 59, and a logic circuit 60 capable of detecting motion. When the logic circuit 60 detects motion, the LED 58 is automatically activated for a short period of time. The light produced by the LED 58 is directed toward the translucent face surface 44. The face surface 44 is illuminated by the light and becomes highly visible to a person observing the action skill toy 10.
The arm appendages 14, 16 attach to the hinge yolks 24, 26 that extend from the jointed end 30 of the shaft 22. The two arm appendages 14, 15 have mirrored shapes. Each of the arm appendages 14, 16 has an arm shaft 62. The first end 64 of the arm shaft 62 has a hole 66 formed therethrough. The first end 64 of the arm shaft 62 fits into the slot 38 of either hinge yoke 24, 26. The hinge pin 40 passes through both the hinge yolks 24, 26 and the hole 66 in the arm shaft 22. This forms the pivot joints 18 that enable both the arm appendages 14, 16 and the base appendage 12 to move independently, as each can rotate about the pivot joint 18 in the common plane of rotation.
The free end 65 of the arm shaft 62 opposite the hole 66 terminates with an enlarged head 70. The enlarged head 70 is mostly hollow and has a front surface 72, a rear surface 74, and a flat side contact surface 76. The rear surface 74 of each enlarged head 70 is translucent to light. An internal illumination unit 78 is positioned within each of the enlarged heads 70. The illumination unit 78 contains at least one LED 80, a battery 82, and a logic circuit 84 capable of detecting motion. When the logic circuit 84 detects motion, the LED 80 automatically lights for a short period of time. The light produced by the LED 80 is directed toward the translucent rear surface 74. The rear surface 74 is internally illuminated by the light and becomes highly visible to a person observing the action skill toy 10.
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It will be understood that the embodiment of the present invention that is illustrated and described is merely exemplary and that a person skilled in the art can make many variations to that embodiment. For instance, the shape and length of the base appendage 12 and the arm appendages 14, 16 can be changed as a matter of design choice. The base appendage 12 and the arm appendages 14, 16 can all be identical. Otherwise, a manufacturer may select a stylish form, where the base appendage 12 is a character and the arm appendages 14, 16 are the arms to that character. All such embodiments are intended to be included within the scope of the present invention as defined by the claims.
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