A recessed sliding door latch assembly with a flush-mounted actuator eliminates protrusions that catch clothing.
A door knob assembly uses an accelerometer to detect rotation rate and direction for customized audio and visual feedback.
A recessed door handle pivots to release a latch via a pulling motion.
A rotatable window console member separates inner and outer components to streamline assembly.
A gravity-driven latch mechanism uses a damped release weight to automatically disengage when the container tilts.
An interchangeable electro-mechanical lock core uses a moveable plug and electronic controller to switch between locked and unlocked states.
A latch module encapsulates electronics in a dust-tight housing to enable universal door mounting.
Segmenting the latch into a base unit and modular accessories reduces production costs while enabling user customization and enhanced safety features.
Symmetric link rods bias hook portions against locking portions to eliminate collision noise and play during closure.
Mounting plates isolate glass panel holes from tensile stresses by applying compressive forces at a distance, preventing micro-cracks and breakage.
Pivoting handle component engages slidably disposed latch via contact surfaces to secure server casing without protruding buttons.
Reorienting the crank mechanism perpendicular to the frame plane reduces mullion width, increasing glass area and improving thermal insulation.
Segmented housing locks around stainless steel handles, applying antimicrobial coating to eliminate peeling risks from adhesive patches.
A retractable arm contacts an absorbent cartridge to receive sanitizing liquid for surface cleaning.
Replacing magnetic drive with a motorized linear potentiometer eliminates radial friction forces, ensuring repeatable cleaning of the entire tube length.