Patent classifications
A63G21/00
Multi-level play equipment
A play apparatus has plural types of elevated equipment, namely a ropes course and a zip coaster. Both types of elevated equipment have respective user safety supports that extend along the respective equipment and receive a safety harness worn by a user. The user need not change safety harnesses to use the different types of equipment. The entry and exit locations for the elevated equipment are in a common area elevated above the ground. A third type of equipment, namely an obstacle course, is located under and above the common area.
SMART PLAYGROUND WITH USER ACTIVATED FEATURES AND RELATED METHODS
A playground structure may include a body, a piezoelectric sensor carried by the body and configured to detect a touch input on adjacent portions of the body, and an output device configured to generate audio indicators. The playground structure may include a controller coupled to the output device and the piezoelectric sensor and configured to selectively change the audio indicators based upon the touch input.
SYSTEMS AND METHODS FOR GENERATING AUGMENTED AND VIRTUAL REALITY IMAGES
A ride system includes at least one ride vehicle. The at least one ride vehicle is configured to receive a ride passenger. The ride system includes electronic goggles configured to be worn by the ride passenger. The electronic goggles include a camera and a display. The ride system includes a computer graphics generation system communicatively coupled to the electronic goggles, and configured to generate streaming media of a real world environment based on image data captured via the camera of the electronic goggles, generate one or more virtual augmentations superimposed on the streaming media of the real world environment, and to transmit the streaming media of the real world environment along with the one or more superimposed virtual augmentations to be displayed on the display of the electronic goggles.
SYSTEMS AND METHODS FOR GENERATING AUGMENTED AND VIRTUAL REALITY IMAGES
A ride system includes at least one ride vehicle. The at least one ride vehicle is configured to receive a ride passenger. The ride system includes electronic goggles configured to be worn by the ride passenger. The electronic goggles include a camera and a display. The ride system includes a computer graphics generation system communicatively coupled to the electronic goggles, and configured to generate streaming media of a real world environment based on image data captured via the camera of the electronic goggles, generate one or more virtual augmentations superimposed on the streaming media of the real world environment, and to transmit the streaming media of the real world environment along with the one or more superimposed virtual augmentations to be displayed on the display of the electronic goggles.
LINEAR MOTOR DRIVEN SYSTEM AND METHOD
A vehicle motion control system comprising: a sliding surface; a vehicle adapted to slide on said gliding surface; and a linear motor associated with the vehicle and the sliding surface for affecting sliding motion of the vehicle on the sliding surface.
LINEAR MOTOR DRIVEN SYSTEM AND METHOD
A vehicle motion control system comprising: a sliding surface; a vehicle adapted to slide on said gliding surface; and a linear motor associated with the vehicle and the sliding surface for affecting sliding motion of the vehicle on the sliding surface.
Systems and methods for generating augmented and virtual reality images
A ride system includes at least one ride vehicle. The at least one ride vehicle is configured to receive a ride passenger. The ride system includes electronic goggles configured to be worn by the ride passenger. The electronic goggles include a camera and a display. The ride system includes a computer graphics generation system communicatively coupled to the electronic goggles, and configured to generate streaming media of a real world environment based on image data captured via the camera of the electronic goggles, generate one or more virtual augmentations superimposed on the streaming media of the real world environment, and to transmit the streaming media of the real world environment along with the one or more superimposed virtual augmentations to be displayed on the display of the electronic goggles.
Systems and methods for generating augmented and virtual reality images
A ride system includes at least one ride vehicle. The at least one ride vehicle is configured to receive a ride passenger. The ride system includes electronic goggles configured to be worn by the ride passenger. The electronic goggles include a camera and a display. The ride system includes a computer graphics generation system communicatively coupled to the electronic goggles, and configured to generate streaming media of a real world environment based on image data captured via the camera of the electronic goggles, generate one or more virtual augmentations superimposed on the streaming media of the real world environment, and to transmit the streaming media of the real world environment along with the one or more superimposed virtual augmentations to be displayed on the display of the electronic goggles.
Themed interactive environment in the form of a motel or hotel and method of operating the same
A hotel or motel room incorporates special effects in accordance with a particular theme (e.g., haunted room). A control room provides a concealed area for personnel and/or automated systems to trigger the special effects which may include, but are limited to shaking, rattling, rumbling, pepper ghosts, water fixtures being activated, thunder and lightning, swapping tiles with digital graphics, turning on a TV, clock or light, etc. Heat sensors, weight sensors, floor mats and/or other sensors determine positions of guests in the hotel and hotel rooms thereby allowing the automatic or manual triggering of the special effects.
Play center using structural monoliths for water delivery capabilities
A play structure having one or more monolith structures for the connection of other surfaces (e.g., deckings, water-based elements, interactive elements, etc.). Each of the monolith structures may be adjustably connected with a ground surface such that a variety of possible angles may be obtained by the monolith with respect to the ground surface. After the desired orientation of the monolith is obtained to the ground surface via the adjustable connection, the monolith may be secured in such position. Water or other fluid may be provided to the monolith structures via piping that interfaces with the monolith structures by a fluid connection that is in communication with piping disposed within the monolith structures. A fluid dumping or delivery system (e.g., based upon a tipping element that provides water to a fluid flowing surface and/or other water dispersion element) may be provided as part of the play structure.