By merging the base and protective case, this lens actuator blocks impurities, improves impact resistance, and keeps camera modules compact.
Independent dual prisms with separate actuators and feedback improve camera shake compensation while supporting a slimmer optical path layout.
A VCM with flexures, magnets, coils, and position sensing shifts the image sensor on multiple axes for compact camera stabilization and autofocus.
A segmented bottom elastic member and guide portion reduce bobbin tilt, twisting, and assembly time in AF and OIS camera modules.
An elastic support structure separates lens motion from housing shock, improving hand tremor compensation and image capture stability.
Electrical contact with different circuit assemblies reveals movable-part position, cutting sensor cost and supporting smaller optical drives.
An asymmetric ball-unit layout keeps the lens module moving parallel to the optical axis during autofocus, reducing tilt and improving stability.
A shock absorber placed between the guide and stopper cuts transmitted shock and mechanical noise while keeping optical actuation stable.
A nested lower support member extends elastic length in tight camera-module space to suppress AF oscillation and stabilize OIS.
Elastic PCB connection portions and dampers relieve support-member stress in micro camera modules, improving autofocus and OIS reliability.
An SMA-driven tilting carrier stabilizes the lens and image sensor together, enabling large-angle OIS in a compact camera module.
Concentric helical drives and bearings deliver coarse and fine lens focus from one rotary input while saving packaging space.
A holder-integrated damper absorbs shock around the movable lens barrel, reducing module height while protecting the lens and filter.
An elastic PCB connection and damper reduce support-member stress under vibration, improving AF and OIS reliability in compact camera modules.
Magnetic coupling, stepped surfaces, and reinforcement frames improve lens barrel alignment, adhesive control, and image stability.
Dual cushioning surfaces on the movable member absorb collision shock in camera actuators, reducing damage and abnormal noise.
A shock absorber placed between the guide and stopper cuts transmitted impact, protecting camera components and preserving autofocus performance.
A non-parallel support structure with locally tuned stiffness suppresses resonance-driven AF oscillation while preserving compact camera module performance.