Patent classifications
F16M11/2057
Generating optimized tool paths and machine commands for beam cutting tools
A facility for automated modelling of the cutting process for a particular material to be cut by a beam cutting tool, such as a waterjet cutting system, from empirical data to predict aspects of the waterjet's effect on the workpiece across a range of material thicknesses, across a range of cutting geometries, and across a range of cutting quality levels, all of which may be broader than, and independent of the actual requirements for a target workpiece, is described.
MOVABLE BASES FOR SHADE STRUCTURES
A movable base for a shade structure such as an umbrella that is operable between a movable configuration and a braked configuration. The movable base includes a first frame, including a plurality of wheels, such as caster wheels, and a second, e.g., movable, frame that is actuatable relative to the first frame and wheels. In the movable position, a plurality of feed are raised and the wheels are in contact with a ground surface. In the fixed position, the feet of the second frame are in contact with the ground and/or the wheels are raised.
MOUNTING ASSEMBLY
A mounting assembly includes a mounting block. A first shaft is supported by the mounting block and movable about a first rotational axis and a first extension axis with respect to the mounting block. A second shaft is coupled to the first shaft and movable about a second rotational axis.
Shimbari Systems for the Stabilization of Surfaces
Based on the traditional shimbari principle, new methods for precise positioning and support of shimbari rods utilizing a modular aluminum framing system have been developed. With these innovations, a wide range of three-dimensional works of art can be treated, including large-scale sculptures with complex contours and irregular surfaces. These methods and systems include easily adaptable shimbari clamping devices and pivot mounts developed by a team of conservators and an industrial designer-fabricator in the Department of Objects Conservation at the Metropolitan Museum of Art.
YOKE FOR A SUSPENSION SYSTEM FOR A MEDICAL LAMP
A yoke for a suspension system for a medical lamp comprises a rigid yoke member having a first end and a second end, a first revolving joint-component fixed to the first end, wherein the first revolving joint has a first rotation axis, and a second revolving joint-component fixed to the second end, wherein the second revolving joint has a second rotation axis. The first rotation axis is included in a plane and the second rotation axis intersects the plane or is included in the plane, and the first rotation axis and a projection, onto the plane, of the second rotation axis intersecting the plane or the second rotation axis included in the plane enclose an angle (α) of more than 0 degrees and less than 90 degrees.
Systems and methods for mounting photographic equipment
An apparatus is provided comprising a shaft having an axis and mounted to a boom structure, a support structure configured to be coupled to the shaft, wherein the support structure is configured to rotate about the axis. In addition, a method is provided comprising translating a cradle along a vertical axis, and rotating, in response to the translating, a support structure about a shaft, wherein the cradle is supported by the support structure, wherein the cradle remains stationary with regard to pitch rotation during the translating.
Holding mechanism for stabilizer and handheld stabilizer
A stabilizer folding structure and a handheld stabilizer. a stabilizer folding structure for rotationally connecting the motor base and the rocker arm such that the motor base and the rocker arm have an unfolded first state and a stored second state during relative rotation, comprising: an elastic member, applying An elastic force for abutting the motor base and the rocker arm; and a snap structure at a position where the motor base abuts the rocker arm, in the first state and the second state, The snap structure is engaged to restrict relative rotation of the motor base and the rocker arm. In other states, the snap structure is disengaged such that the motor base and the rocker arm are relatively rotatable. The folding structure of aspects of the invention facilitates the folding and storage of the stabilizer, and is convenient for the user to use.
Short throw projector mount with micro-adjust feature
A short throw projector mount enabling a finely tuned distance adjustment and/or finely tuned height adjustment of an attached projector. The mount includes a wall interface, a projector positioning head, and an elongate arm operably coupling the wall interface and the projector positioning head. A first end of the arm is coupled to the wall interface, and the projector positioning head is operably coupled proximate an opposing second end of the arm such that the projector positioning head is shiftable along a longitudinal axis of the arm. The arm further includes a positioning mechanism arranged to selectively drive shifting of the projector positioning head. A vertical positioning mechanism may be provided to shift the projector vertically relative to the wall interface.
Lens bracket assembly and gimbal used therewith
A lens bracket assembly for supporting an imaging device. The imaging device includes a body and a lens connected to the body. The lens bracket assembly includes a mounting plate, a supporting plate configured for carrying the imaging device, and a bracket. The mounting plate includes a first surface and two inner sidewalls extended from two opposing ends of the first surface along a direction substantially perpendicular to the first surface. The two inner sidewalls provide first sliding slots. The supporting plate includes a first side and two outer sidewalls providing second sliding slots, and is slidably disposed on the mounting plate with the second sliding slots matching the first sliding slots at corresponding positions. The bracket is coupled to the first side of the supporting plate, and includes a shape that matches the lens of the imaging device.
Method and system for moving cameras using robotic mounts
A robotic mount is configured to move an entertainment element such as a video display, a video projector, a video projector screen or a camera. The robotic mount is moveable in multiple degrees of freedom, whereby the associated entertainment element is moveable in three-dimensional space. In one embodiment, a system of entertainment elements are made to move and operate in synchronicity with each other, such as to move a single camera via multiple robotic mounts to one or more positions or along one or more paths.