Abstract:
A method for aligning a removable sensor on a vehicle includes connecting the removable sensor to a sensor mounting device. The method further includes connecting a connector of an alignment apparatus to either (i) the removable sensor such that a spatial reference component of the alignment apparatus has a known position and orientation relative to a current position and orientation of the removable sensor or (ii) a fixed connection location on the vehicle such that the spatial reference component indicates a desired position and orientation of the removable sensor. In addition the method includes adjusting the current position and orientation of the removable sensor by reference to the alignment apparatus to cause the current position and orientation of the removable sensor to match the desired position and orientation of the removable sensor.
Abstract:
A flight control surface position sensor assembly for an aircraft including a position indicator positioned on a pulley wherein the pulley is secured to the aircraft and the pulley engages a cable associated with a flight control surface of the aircraft. The flight control surface position sensor assembly further includes a sensor which senses rotation of the position indicator with rotation of the pulley
Abstract:
A computing device determines whether or not to authorize a network request. In particular, responsive to the computing device receiving the network request from a mobile device, the computing device controls a plurality of light fixtures to each optically transmit a respective challenge code. The computing device approves or rejects the network request based respectively on whether or not a group of the challenge codes is received from the mobile device, each challenge code in the group being optically receivable at a location authorized for approving the network request.
Abstract:
A lighting assembly includes a light source, such as an ultraviolet (UV) light source that is configured to emit UVC light, and a reflector system including a base having an internal central crest that is configured to direct emitted light away from the light source.
Abstract:
Bushings include a tubular body that defines a through-bore for receiving a fastener for mounting a component to an object. The tubular body includes end regions and a plurality of spring elements spaced circumferentially around the tubular body and extending longitudinally along the tubular body between the end regions. Also disclosed are apparatus that include bushings, such as aircraft, and associated methods of utilizing bushings and of manufacturing bushings.
Abstract:
A rechargeable battery comprises a chassis including a lower fixation plate, and a plurality of battery cells on the lower fixation plate. The lower fixation plate includes at least one flow channel positioned to collect condensate from the battery cells and move the collected condensate away from the battery cells.
Abstract:
A portable sanitizing method includes moving a cover of a case assembly between an open position that exposes a storage chamber and a closed position; storing a wand assembly including a sanitizing head having an ultraviolet (UV) lamp in the storage chamber when not in use; and removing the wand assembly from the storage chamber to disinfect one or more components with UV light emitted by the UV lamp.
Abstract:
A system to identify cargo. The system includes sensors that detect different aspects of the cargo. A computing device receives signals from the sensors indicative of the sensed aspects. The computing device determines an initial identity of the cargo based on the signals from the sensors. When the initial identities are consistent between the different sensors, the computing device identifies the cargo as the initial identify. When the initial identities are inconsistent, the computing device identifies the cargo in a different manner.
Abstract:
There is provided a portable wand system including a wand applicator containing a surface treatment application element. The portable wand system further includes a wand controller subsystem coupled to the wand applicator. The wand controller subsystem includes a computer program, and a depiction of one or more surfaces to be surface treated with the surface treatment application element. The portable wand system further includes a user input button coupled to the wand applicator, an indicator element, a power assembly coupled to the wand controller subsystem, and one or more registration features to register the wand applicator against known location(s) at the one or more surfaces in the depiction. The portable wand system measures positional data of the wand applicator in real-time, and compares the positional data against the depiction, to indicate to a user when a predetermined surface treatment application is achieved for the one or more surfaces.
Abstract:
An ultraviolet (UV) light pacing system includes an assembly including a UV lamp configured to emit UV light to disinfect a component. One or more range light sources are configured to emit ranging light. At least one aspect of the ranging light is altered to provide a visual cue for guiding motion of the assembly to disinfect the component. An ultraviolet (UV) light pacing method includes emitting ranging light from one or more range light sources of and assembly having a UV lamp configured to emit UV light to disinfect a surface of a component, and altering at least one aspect of the ranging light to provide a visual cue for guiding motion of the assembly to disinfect the component.