Mechanical removal of conductive mesh forms flexible circuit traces that bend, stretch, and integrate reliably into washable soft goods.
A transparent circuit film replaces rigid PCB or FPC substrates to deliver backlighting and capacitive touch on curved user interfaces.
A transparent circuit film with embedded LEDs replaces rigid PCB or FPC layers to improve backlighting and capacitive touch on curved surfaces.
Elastic PCB edges lock into the sensor housing without tools, cutting assembly time while maintaining stable positioning under vibration and shock.
A subtractive conductive mesh forms flexible circuit traces that bend, stretch, and integrate durably into textiles and upholstered products.
Transparent circuit film replaces costly PCB or FPC substrates to deliver backlighting and capacitive touch on curved interface surfaces.
Mechanical and chemical removal of conductive mesh forms flexible circuit traces that stay drapable, durable, and washable in soft goods.
Bendable PCB sections and flexible housing walls let a proximity sensor flex under movement while protecting circuitry and detection reliability.
Articulated housing segments and bendable PCB sections let a proximity sensor flex in tight spaces while protecting circuitry and detection reliability.
Segmented substrate regions linked by a stretchable layer let electronics deform while maintaining electrical reliability and durability.
A deflectable PCB region changes electrode spacing for capacitive input detection, reducing sensor complexity, cost, and mechanical stress.