Folded flexible substrates balance gravity and elastic force in an imager support, improving shake correction response while lowering drive power.
A dual-coil lens motion structure combines autofocus and optical image stabilization to improve blur correction without adding separate mechanisms.
A damping member and support unit stabilize bobbin vibration and phase shift, improving autofocus speed and feedback accuracy in compact camera modules.
Capacitive sensing on the circuit board replaces Hall detection to save camera module space and improve anti-shake motor position control.
An integrated VCM and black mask cut magnetic interference, flare, tuning complexity, and power use in dual camera modules.
A guide ball between magnetic guide plates stabilizes OIS motion, avoids extra guide members, and prevents lens rotation in compact cameras.
Embedding the circuit assembly in the lens holder saves space, improves magnetic interference control, and supports reliable autofocus and OIS.
A nested retractable lens group and actuator extend for imaging, then retract near the sensor to preserve thin device profiles.
An integrated PCB and pattern-coil structure cuts camera module assembly steps, lowers height, and prevents warping and contact failures.
Flat wire coils shrink the lens holder footprint while improving electromagnetic drive efficiency for autofocus and optical image stabilization.
Angled, symmetric magnetic members in a VCM lens barrel suppress disturbance fields, improving magnetic sensor position detection.
Vibration cleaning removes foreign matter from the outer lens while a node-mounted adjustment structure preserves lens alignment and image quality.