A63H18/00

Circuit arrangement for a model car racing track
10981076 · 2021-04-20 · ·

A circuit arrangement for a model car racing track, having at least two tracks for model cars, wherein a positive busbar and a negative busbar are in each case assigned to each track, and a first driving speed controller is connected between a positive supply terminal and the positive busbar of the first track and a second driving speed controller is connected between a negative supply terminal and the negative busbar of the second track.

User Controllable Marble Run Kit
20200276505 · 2020-09-03 ·

A method of operating a marble run includes providing first input through a user interface to a wireless device. The method further includes using the wireless device to transmit a first wireless control signal to a wireless receiver disposed on a marble run responsive at least in part to receiving the first input. The marble run includes a plurality of physically interconnectable marble run modules, each module configured to retain a marble and guide the travel of the marble through the module on at least a first surface. The plurality of marble run modules includes at least a first controllable module. The method further includes using the first controllable module to alter a travel path of a marble through the first controllable module responsive to the wireless receiver receiving the first wireless control signal.

User Controllable Marble Run Kit
20200276505 · 2020-09-03 ·

A method of operating a marble run includes providing first input through a user interface to a wireless device. The method further includes using the wireless device to transmit a first wireless control signal to a wireless receiver disposed on a marble run responsive at least in part to receiving the first input. The marble run includes a plurality of physically interconnectable marble run modules, each module configured to retain a marble and guide the travel of the marble through the module on at least a first surface. The plurality of marble run modules includes at least a first controllable module. The method further includes using the first controllable module to alter a travel path of a marble through the first controllable module responsive to the wireless receiver receiving the first wireless control signal.

User controllable marble run kit
10653970 · 2020-05-19 · ·

A marble run apparatus kit includes a plurality of physically interconnectable marble run modules, each module configured to retain a marble and guide the travel of the marble through the module. The plurality of marble run modules includes at least a first controllable module. The first controllable module includes a baffle, an actuator, and a wireless receiver. The baffle is disposed in the module, and has a first position and a second position. The baffle is configured to direct the marble within the module in different directions based on whether the baffle is in the first position or the second position. The actuator is supported on the module, and receives a first control signal. The actuator changes the position of the baffle responsive to receiving the first control signal. The wireless receiver provides the first control signal to the actuator upon receiving a first wireless control signal.

User controllable marble run kit
10653970 · 2020-05-19 · ·

A marble run apparatus kit includes a plurality of physically interconnectable marble run modules, each module configured to retain a marble and guide the travel of the marble through the module. The plurality of marble run modules includes at least a first controllable module. The first controllable module includes a baffle, an actuator, and a wireless receiver. The baffle is disposed in the module, and has a first position and a second position. The baffle is configured to direct the marble within the module in different directions based on whether the baffle is in the first position or the second position. The actuator is supported on the module, and receives a first control signal. The actuator changes the position of the baffle responsive to receiving the first control signal. The wireless receiver provides the first control signal to the actuator upon receiving a first wireless control signal.

Apparatus movement system, apparatus, apparatus movement control method, storage medium having stored therein apparatus movement control program, and cardboard member

A first grounded portion is at least one of portions of an apparatus that are grounded, and vibrates in accordance with a vibration of at least a first vibration unit. A second grounded portion is at least one of the portions of the apparatus that are grounded, and vibrates in accordance with a vibration of at least a second vibration unit. Then, a first control signal for controlling the vibration of the first vibration unit and a second control signal for controlling the vibration of the second vibration unit are generated, whereby, in a state where the apparatus is on a certain surface, the apparatus moves on the certain surface by a vibration of the first grounded portion grounded on the certain surface and/or a vibration of the second grounded portion grounded on the certain surface.

Systems and methods for inertially-instituted binding of a RC vehicle
10578439 · 2020-03-03 · ·

Example implementations may relate to an RC vehicle with a receiver and an inertial measurement unit. In particular, the RC vehicle may include vehicle controller circuitry that works together with the inertial measurement unit to instruct the receiver to enter a bind mode when the RC vehicle is rotated, oriented, or positioned in a certain way. In an example embodiment, the RC vehicle may instruct the receiver to enter a bind mode when the RC vehicle is first powered on and is rotated 180 degrees in a certain direction, such as from upright to upside-down.

Systems and methods for inertially-instituted binding of a RC vehicle
10578439 · 2020-03-03 · ·

Example implementations may relate to an RC vehicle with a receiver and an inertial measurement unit. In particular, the RC vehicle may include vehicle controller circuitry that works together with the inertial measurement unit to instruct the receiver to enter a bind mode when the RC vehicle is rotated, oriented, or positioned in a certain way. In an example embodiment, the RC vehicle may instruct the receiver to enter a bind mode when the RC vehicle is first powered on and is rotated 180 degrees in a certain direction, such as from upright to upside-down.

Construction system for creating autonomous control system stimuli and a complete deterministic operational environment for mobile agents using printed adhesive tape and other accessories
10537817 · 2020-01-21 · ·

A customizable adhesive toy playscape is constructed of a combination of printed adhesive playscape tape and other accessories, such as printed stickers, upstanding signs, toy vehicles, and the tape roll core that can be used by children (or adults) for creating imaginary playscape tape worlds for play, education, or other uses. The playscape tape can be part of a single layer track construction that includes machine-readable codes for controlling movement of a mobile agent traveling thereover.

Reconfigurable toy vehicle track set
10518185 · 2019-12-31 · ·

A toy vehicle track set is provided. The toy vehicle track set comprises a plurality of track segments. Each track segment of the plurality of track segments has a coupling portion and a plurality of lanes for toy vehicles to race along. The plurality of track segments may be collectively positioned in a racing configuration or a transport configuration. The track segments are coupled together to form a multi-lane raceway in the racing configuration. One or more track segments of the plurality of track segments are positioned to form a rectilinear transport structure in the transport configuration.