A multi-edge elastomeric refill lets the wiper blade rotate to a fresh wiping surface, extending service life while cutting waste and replacement cost.
A looped heating element integrated during extrusion simplifies heated wiper blade manufacturing while improving low-temperature wiping and deicing.
A rigid arm holder locks the wiper in its parking position so the arm can double as a grab handle, freeing space and improving visibility.
Focused airflow from a blower chamber cleans, dries, and cools a rotating sensor while limiting air leakage that weakens lens cleaning.
Machine-learning cleaning control adjusts spray timing and fluid use from sensor dirtiness, environment, and operator input.
A lens wiper parked on the exposed lens surface removes deposits without enlarging the imaging unit or adding complex waterproofing.
A pivoting cover with an elastic tongue lets one wiper connector lock and release multiple arm types, reducing adapter selection and install complexity.
A rigid fitting projection and flexible side wall keep the wiper blade locked to the arm while still allowing easy attachment and removal.
A three-piece cover and camera cradle separate strength from sealing, improving harness routing, drainage, and lens protection in rear view bases.
Controlled polyurethane modulus and breaking stress stabilize blade rubber cutting, restoring uniform contact and wiping performance.
Split end covers, sealing rings, and tooth-shaped gap control improve tread cleaner sealing, mounting, and wheel-tread cleaning stability.
Current ripple angle estimation replaces Hall IC sensing to suppress wiper overrun, noise, and incomplete wiping at reversing positions.
A bidirectional pump and trigger switch separate front and rear washer spraying while cutting control space, cost, and heat.
Branched polyethylene blended with EPM and EPDM improves crosslinking, helping sealing elements resist aging and compression set.
Segmented motor acceleration during wiper reversal cuts reversing sound and chatter while preserving compact mounting space.
A movable cover guides cleaning fluid across vehicle optical surfaces, improving dirt removal in wind while cutting fluid waste and overspray.
An offset pivot and rotation layout lets one wiper connector fit multiple arm profiles while keeping the adapter compact and easy to install.
Coordinates the vehicle wiper with LiDAR non-ranging periods to clean the LiDAR window without degrading detection accuracy.
Sensor data triggers only the needed low- or high-impact cleaning action to restore autonomous vehicle sensor clarity with less pollution.
Stored wiper state and restart delay prevent dry or icy windshield wiping, reducing blade wear and noise after vehicle power cycling.
Software-controlled motor reversal and speed settings let one wiper assembly adapt sweep angle and speed across vehicle platforms.
A scraper fixed to the axle arm continuously clears snow, ice, and mud from the rim interior to protect drum brake actuators.
Separating fluid and power interfaces on the wiper blade enables a flatter assembly, better sealing, lower leakage risk, and easier connection.
Controlled modulus and breaking stress keep blade rubber from deforming during recutting, producing uniform contact and wiping performance.
A shared temperature adjustment unit heats or cools both the washer tank and front luggage compartment, reducing added thermal hardware.
An eductor mixes pressurized air with passively drawn cleaning fluid to maintain surface cleaning while cutting washer fluid use.
Frequency-tuned polyurethane blade rubber improves curved-surface contact and particulate dirt scraping for stable long-term wiping.
A pivoting insert and hose-guided chamber let vehicle fluids be filled without engine access while maintaining a tight seal and preventing leaks.
An elastic interference stop keeps the rear wiper cover open, preventing tool interference during head assembly and motor removal.
A protruding flexible release lever and rigid bridging part make wiper blade removal easier while keeping the arm-blade link secure.