A dual-outlet nozzle sprays one fluid stream at the vehicle window and another at the camera to clear debris from both surfaces at once.
A timed delay between tank motor startup and distributor opening equalizes hose pressure for consistent cleaning of vehicle sensors.
Integrated spring pockets, spoiler-matched profiles, and locking tabs improve wiper blade aerodynamics, alignment, and retention.
A fluid-pressure telescoping nozzle cleans vehicle sensors only when needed, keeping the field of view clear during normal operation.
When washer fluid runs low, the cleaner control switches sensor cleaning modes to conserve liquid and maintain reliable LiDAR and camera sensing.
A cavity-backed wiper lip with damping and segmented tilt bars improves windshield contact, moisture removal, and mounting stability.
Vehicle camera images of the windshield and ground adjust wiper speed and sampling rate to avoid unnecessary wiping and energy use.
Radar detections are checked against camera images to spot outer cover deposits, trigger cleaning or heating, and avoid false object sensing.
A cleaning agent doubles as fluid bearing and drive to clean vehicle sensor covers in less space while reducing cleaner use.
Temperature feedback keeps sensor-cleaning fluid warm enough to clear ice while avoiding hydrophobic coating damage and excess heating.
An integrated wash tube in a composite aircraft wiper blade dispenses fluid without welding or brazing, preserving support strength and cleaning performance.
Map-based clearance detection retracts a roof sensor before low structures, preserving ground coverage while avoiding collisions.
Operation-time signals let a small mobility vehicle wiper switch between two standby positions, improving maintenance access and usability.