Abstract:
A toy with an exterior structure. Constructed to transform from a rollable first shape to a second shape. An interior structure inside the exterior structure is endowed with a magnetic body that moves by way of a magnetic force that acts from the exterior of the toy, an interior locking portion that moves simultaneously with the movement of this magnetic body, and a biasing member that effects a force which moves or turns this interior locking portion in a particular direction. If the magnetic force does not act from the exterior of the toy, the first shape of the exterior structure maintained. In the event that a magnetic force has acted from the exterior of the said toy, the exterior structure transforms from the first shape to the second shape.
Abstract:
In an aspect, a toy character assembly is provided, and includes a housing, a toy character, at least one sensor and a controller. The toy character is positioned inside the housing and includes a breakout mechanism that is operable to break the housing to expose the toy character. The at least one sensor detects interaction with a user. The controller is configured to determine whether a selected condition has been met based on at least one interaction with the user, and to operate the breakout mechanism to break the housing to expose the toy character if the condition is met. Optionally, the condition is met based upon having a selected number of interactions with the user.
Abstract:
In an aspect, a robotic system is provided and includes at least two digital servo modules, each of which includes a position-controlled motor and a position sensor for sensing a servo position, a plurality of building block elements that are connectable with the digital servo modules to create position-controlled joints of a robotic figure, at least two wheel modules enabling wheeled movement of the robotic figure and a central controller communicating with and controlling the digital servo modules and the wheel modules. The central controller operatively places a selected group of digital servo modules in a learned motion mode, wherein a corresponding group of position-controlled joints is enabled to be manually manipulated, and wherein each of the selected digital servo module periodically transmits servomotor position to the central controller. The central controller can steer the robotic figure wheel modules based on servo positions of the selected digital servo modules.
Abstract:
A system for making a craft comprises a core and a sleeve. The core includes a molding portion. The sleeve has an exterior surface and defines an interior space. The sleeve comprises a collapsible portion that is collapsible towards the interior space. The sleeve is configured to cover the molding portion such that the molding portion of the core prevents collapsing of the collapsible portion interiorly. The core is configured to be releasable from the sleeve and when there is a layer of dried molding material on the exterior surface, the collapsible portion of the sleeve is articulable interiorly away from the layer of dried molding material to at least partially collapse the sleeve for removal from the layer of dried molding material.
Abstract:
In an aspect, a toy character assembly is provided, and includes a housing, a toy character, at least one sensor and a controller. The toy character is positioned inside the housing and includes a breakout mechanism that is operable to break the housing to expose the toy character. The at least one sensor detects interaction with a user. The controller is configured to determine whether a selected condition has been met based on at least one interaction with the user, and to operate the breakout mechanism to break the housing to expose the toy character if the condition is met. Optionally, the condition is met based upon having a selected number of interactions with the user.
Abstract:
In an aspect, the invention is directed to a set of game pieces including a character game piece representing a character and a plurality of parameter impact game pieces. Each of the parameter impact game pieces includes a parameter impact indicator. When a parameter impact game piece is stacked on the character game piece the parameter impact indicator provides a graphic representation of the parameter impact carried out by the parameter impact game piece. When another parameter impact game piece is stacked on the first parameter impact game piece a graphic representation of the total parameter impact carried out by both parameter impact game pieces is provided by permitting the parameter impact indicators from both parameter impact game pieces to be visible to the players. In this way, the parameter impact level incurred by the character can be shown to increase incrementally after subsequent parameter impacts.