Support seals limit low-pressure mold flow inside hollow enclosures while stabilizing and protecting encapsulated electronic components.
Splitting the circuit board and battery between the temples balances ear pressure while conductive connectors power the dimmable lenses.
Infrared reflection from elastic material detects wearable wear status, switches operating modes, and reduces power use with periodic sensing.
Light transmitted through the nose and redirected by cushioned pad surfaces reduces motion and environmental sensitivity in heart-rate sensing.
A temple cavity houses a preassembled circuit board and elastic contact, simplifying smart-glasses assembly in limited space.
A limiting member guides wire through a confined rotating-joint trough, preventing fracture and stabilizing electrical connections.
Through-portioned substrate regions route display-panel wiring away from the optical area, improving light transmittance in smart contact lenses.
A first seal member between the upper and lower exterior cases helps preserve waterproofing when exterior-case fastening loosens.