A stacked sensor-between-PCBs layout shrinks camera module thickness and bezel size while avoiding solder heat and optical tilt.
Repulsive and attractive pole pairing stabilizes reflector rotation, improving two-axis OIS precision, responsiveness, and centering.
A non-uniform planar coil turn layout reduces Lorentz force variation from magnet displacement, improving image stabilization accuracy.
A motorized holder moves filters or lenses into an optical sensor's view to create controlled distortions for autonomous vehicle perception testing.
Imaging and vehicle state data drive active damping between cab and chassis, reducing vibration and preserving sensor image quality.
Integrated damping, magnetic actuation, and position sensing help shrink optical element drives while preserving autofocus and image stabilization durability.
By placing the drive magnet and coil between axis and guide balls, this folded camera module boosts reflector force for OIS without added length.
An L-shaped guide bracket and perpendicular coil-magnet layout enable large-stroke image stabilization without added motor height or force loss.
A multilayer lubrication coating on SMA motor bearings cuts friction, improving travel precision and reducing low-frequency preview jitter.
Integrated magnetic sensing and drive control on one IC chip enables precise two-axis lens positioning for autofocus and image stabilization.