B64D11/0626

PASSENGER SEAT CANOPY

A canopy is configured to be mounted to a passenger seat of a passenger transport vehicle, in particular an aircraft. The canopy is foldable between a retracted storage configuration and an extended operational configuration. In the operational configuration, the canopy forms a hood establishing a passenger's personal space below the canopy. The canopy comprises at least one functional device which is configured for modifying a physical characteristics of the personal space. The at least one functional device in particular includes at least one of a lighting device configured for lighting the personal space and a venting device configured for venting the personal space.

System for heating and cooling a seat and seat assemblies

A system for heating and cooling a passenger seat utilizing a single unit for producing hot and cold conditioned air. The system includes a source of pressurized air, a vortex tube coupled to the source of pressurized air for producing hot and cold air streams, a duct network coupled to the vortex tube through a valve assembly, and a controller controlling passage of the flow of hot and cold air streams through the manifold assembly based on passenger selection. Conditioned air flow can be dispersed into a cushion assembly such as an interior of a spacer mesh component of the cushion assembly.

URINE-BASED POWER GENERATION FOR ADJUSTABLE SEAT CUSHION
20200361625 · 2020-11-19 · ·

A seat configured to support an occupant may include a urine-based power generator and an adjustable cushion. The urine-based power generator includes a urine accumulation reservoir configured to receive urine from the occupant, and the urine-based power generator is configured to provide power to the adjustable cushion. The seat may be an ejection seat, and the urine-based power generator and the adjustable cushion may be mounted to the seat such that the urine-based power generator and the adjustable cushion are configured to be ejected with the ejection seat.

Augmented reality system for pilot and passengers

The present disclosure achieves technical advantages as an aircraft having an augmented reality flight control system integrated with and operable from the pilot seat and an associated pilot headgear unit, wherein the flight control system is supplemented by flight-assisting artificial intelligence and geo-location systems. The present disclosure includes an augmented reality flight control system incorporating real-world objects with virtual elements to provide relevant data to a pilot during aircraft flight. A translucent substrate is disposed in the pilot's field of view such that the pilot can see therethrough, and observe virtual elements displayed on the substrate. The system includes a headgear that is worn by the pilot. A flight assistance module is configured to receive data related to the aircraft and provide predictive assistance to the pilot during flight based on the received data based in part on a pilot profile having preferences related to the pilot.

Unified passenger service unit (PSU) control

A unified passenger service unit (PSU) control concentrically incorporates a reading light, a gasper outlet, and a notification ring within a control knob rotatable or pushable (via a pushbutton or the control knob itself) by an occupant of the aircraft seat to which the PSU control corresponds. The notification ring may be activated by the passenger or by the cabin crew, and may be visible throughout the aircraft. The notification rings may indicate an attendant call, or be activated by the crew in groups or waves to direct passenger activity. The PSU control includes a user interface (UI) display that serves as a control interface for the gasper outlet and reading light. The UI display may also show indicators or messages sent by the cabin crew.

Headrest assembly with flexible support structure and stretched fabric cover

A headrest assembly including a plate attachable to a front side of a seat back, a flexible support structure attached to the plate, and a continuous fabric cover stretched over the flexible support structure and tensioned to create a hollow pocket behind the fabric cover and forward of the plate to allow the fabric cover to depress inward toward the plate in response to loading on a center portion of the fabric cover. The flexible support may be a flexible wire frame having symmetrical side portions angled away from the plate to induce a concave curve in the fabric cover to cradle the head of a seat occupant. The assembly may further include an adjustment mechanism for adjusting the position of the headrest relative to the seat back.