Bonding transparent members between cases creates a gap that enables flexible key and illumination placement without increasing device size.
Cured sealant under screw heads resists shear during assembly while maintaining clamping force against gaskets to prevent material loss over time.
An integrated housing structure embeds conductor tracks to eliminate cabling, reducing installation space and simplifying assembly.
A compression block absorbs impact forces by allowing the camera assembly to separate from the sidewall, preventing misalignment after drops.
A standalone garage door opener module integrates a self-contained power source and electronic circuitry within a housing that mounts through a vehicle headliner.
A power module package uses embedded springs to transfer stress between protruding structures.
A slider actuator converts handle rotation into linear motion to toggle electrical switches within sealed enclosures.
An integrally formed metal bracket positions storage devices through elastic deformation of its segments.
A spliced back plate enables a flexible display to switch between flat and curved states.
A heat dissipating structure uses a segmented fastening system to secure components while isolating thermal paths.
Injecting dielectric members into cover cavities resolves weak bonding strength caused by external impacts on dissimilar materials.
Segmented back housing bodies connect via rotating joints to adapt display curvature without exposing internal components or increasing thickness.
Segmented sealing components prevent inward deformation while mechanical hooks engage the hole edge to stop slippage.