B60Y2200/10

Automated dispensing of travel path applicants

Systems, methods, apparatus, and computer program products are provided for dispensing a travel path applicant. For example, a computing entity can monitor the location of a maintenance vehicle and/or its travel path to dispense travel path applicants accordingly.

Valve With Frangible Fitting
20220009465 · 2022-01-13 ·

A valve for an air brake system on a commercial vehicle comprises a body, an inlet port connected to the body and at least one delivery port connected to the body. The inlet port has a threaded portion distal to the body and a hex portion proximate to the body. The hex portion includes a frangible feature in substantially the mid-point of the hex portion such that the valve can easily be removed from an air brake reservoir when the valve is broken at the frangible feature.

Decorative cover for motor vehicle wheels having active lighting
11173830 · 2021-11-16 · ·

A decorative cover for motor vehicle wheels, which is detachably arranged in the space between spokes of a motor vehicle rim, wherein the decorative cover has active lighting, the electrical energy of which can be generated by an energy module fastened to the rear of the decorative cover, wherein the energy generation thereof works independently of the fixed components of the motor vehicle.

Tyre cavity noise absorber
11186126 · 2021-11-30 · ·

A tyre cavity noise absorber comprising a body 1 of sound absorbing material with an outer protective cover 3. The body of sound absorbing material is intended to be mounted to a wheel 2 of a wheel and tyre 6 assembly so that a surface of the body is exposed in a tyre cavity of the wheel and tyre assembly. The outer protective cover only partially covers said surface of the body of sound absorbing material such that the cover protects the body of sound absorbing material from a bead 7 of a tyre as a tyre is fitted to, or removed from, the wheel and the uncovered parts of the body of sound absorbing material are free to absorb sound.

DIRECT DRIVE FOR A WINDSHIELD WIPER SYSTEM
20230311814 · 2023-10-05 ·

Provided are embodiments for a direct drive wiper system. The system includes a motor that is operably coupled to a wiper system to drive one or more wiper arms of the wiper system, and a gearbox, wherein an input to the gearbox is coupled to the motor and an output of the gearbox is coupled to the wiper assembly, wherein the gearbox is configured to convert an input from the motor to an output to drive the wiper system. The system also includes a brake and stopper mechanism that is coupled to the gearbox and the wiper system. Also provided are embodiments for a method for operating the direct drive wiper system.

Wired power transmission system for smart glass and vehicle thereof

An embodiment wired power transmission system for a smart glass includes a connector module including a power connector connected to a holder bracket configured to fix the smart glass, the connector module being configured to transmit power to the smart glass, an inverter configured to vary an applied voltage of the power to change the power or the voltage of the smart glass, and a cable module electrically connecting the power connector and the inverter through a power cable, the cable configured to maintain an electrical connection state by forming a tension of the power cable through an interval change between the connector module and the inverter.

Direct drive for a windshield wiper system

Provided are embodiments for a direct drive wiper system. The system includes a motor that is operably coupled to a wiper system to drive one or more wiper arms of the wiper system, and a gearbox, wherein an input to the gearbox is coupled to the motor and an output of the gearbox is coupled to the wiper assembly, wherein the gearbox is configured to convert an input from the motor to an output to drive the wiper system. The system also includes a brake and stopper mechanism that is coupled to the gearbox and the wiper system. Also provided are embodiments for a method for operating the direct drive wiper system.

Stackable battery apparatuses and methods of use

Landing apparatuses for unmanned aerial vehicles are provided herein. An example battery assembly can include a housing having a top surface, and a bottom surface, wherein the bottom surface of the housing having a receiving interface that receives a first protruding adapter of an associated object. The top surface of the housing having a second protruding adapter that mates with the receiving interface of a second battery assembly, an energy storage unit disposed within the housing, a locking mechanism disposed within the housing, a biasing member that places the locking mechanism in a locked configuration, and a controller having a processor and memory for storing instructions, the processor being configured to execute the instructions to cause the locking mechanism to move into an unlocked configuration.

Wired Power Transmission System for Smart Glass and Vehicle Thereof

An embodiment wired power transmission system for a smart glass includes a connector module including a power connector connected to a holder bracket configured to fix the smart glass, the connector module being configured to transmit power to the smart glass, an inverter configured to vary an applied voltage of the power to change the power or the voltage of the smart glass, and a cable module electrically connecting the power connector and the inverter through a power cable, the cable configured to maintain an electrical connection state by forming a tension of the power cable through an interval change between the connector module and the inverter.

Radar device for a motor vehicle and method for controlling the device

A radar device for a motor vehicle comprises a radar antenna configured to detect a reflected signal characterized as a reflection of a transmitted signal reflected by an object present in the field of view of the radar antenna; a controller configured to transmit at least one radar signal from the radar antenna, the radar signal being transmitted according to a determined object detection transmission power; the controller being configured to detect the power level of the reflected signal derived from the transmitted radar signal reflected by the detected object; the controller being configured to adjust the transmission power, according to the power level of the reflected signal detected, to a minimum power sufficient for the detection of the detected object.