Magnetic coupling replaces wear-prone gears and elastic supports to keep a slide-out rotary camera aligned and prevent tilting over time.
An integrated motor and protruding output shaft rotate the module directly, cutting gear sets, backlash, space use, and cost.
Bent first and second circuit boards disperse stress during optical-axis rotation, cutting elastic resistance and driving power for image stabilization.
A rotating camera module retracts into the housing to protect exposed parts while preserving structural strength and a unified device appearance.
Parallel shaft-sleeve sliding pairs guide camera extension and rotation more accurately, reducing jamming, stuttering, and motion instability.
A driven linkage flips the camera module to adjust viewing angle, reducing hand-tremor image tilt and enabling front and rear use.
A rotating multi-function control in one shell opening preserves rapid physical input while improving device strength and appearance unity.
A driven two-link hinge lets a camera or other module rotate to offset hand tremors, preserve image quality, and support flexible viewing angles.
A screw-driven transmission engages meshing gears after camera ejection, enabling automatic module rotation with less user handling.
A rotating resistance mechanism adds friction at the flip camera shaft to prevent shake and unwanted rotation under external forces.
A movable camera transmission mechanism lets one module switch between front and rear positions, preserving full-screen display space and wider shooting angles.
A screw-and-gear pop-up camera rotates automatically after ejection, reducing manual handling while enabling full-screen mobile design.
A screw-driven transmission lets a pop-up camera extend and then rotate automatically, saving phone space while preserving imaging.
Context data from cameras and microphones is offloaded to a host or cloud layer, improving wearable AI interaction without adding device weight.
A telescopic linkage rotates the camera assembly around its optical axis to counter rotational shake beyond standard linear OIS.
Shared motion sensing stabilizes multiple camera lenses while reducing sensor count and space.
A rotatable mounting seat positions a photographing module within a rear housing groove to reclaim screen area.
A rotatable camera module uses a turnover element to switch between front and rear positions.