Abstract:
A vehicle cleaner system includes a sensor, a cleaner, a vehicle control unit, and a cleaner control unit. The sensor is mounted on a vehicle, and is configured to acquire information around the vehicle, and is configured to output a sensor signal. The cleaner is capable of discharging a cleaning liquid to the sensors. The vehicle control unit is configured to recognize information around a host vehicle or control the host vehicle by using the sensor signal output from the sensor. The cleaner control unit is configured to output to at least one of the sensor and the vehicle control unit an in-operation signal indicating that the cleaner is in operation when the cleaner is in operation.
Abstract:
A system includes a dome, a wiper assembly, a position sensor and a control device. The wiper assembly includes a wiper blade configured to rotate around the dome. The position sensor may be configured to send a signal to a control device when a wiper blade passes the position sensor. The control device may include one or more processors configured to receive the signal from the position sensor and determine a location of the wiper blade relative to the dome based on the received signal.
Abstract:
A window wiper system includes a wiper assembly, a window moisture sensor, a wiper torque sensor and a control module. The control module is responsive to the window moisture sensor and the torque sensor to control the operation of the window wiper assembly.
Abstract:
The present invention relates to the control of a window washer system associated with a system for wiping a glazed surface of a motor vehicle, said wiper system comprising a wiper motor for rotating at least one wiper blade holder arm, and this window washer system comprising a liquid reservoir connected to at least one nozzle designed to deliver, over a wiping cycle, at least one liquid jet for at least a first window washer system activation period defined between an instant (td1) for initiating the spraying of the liquid and an instant (ta1) for stopping the spraying of the liquid, these instants each being determined as a function respectively of a first angular position and of a second angular position of the wiper blade holder arm defining a first angular sector in which the spraying of the liquid is continuous. According to the invention, the instant (td1) for initiating the spraying is advanced by a compensation period (t1) corresponding at least to the period for feeding the liquid from the reservoir to the nozzle.
Abstract:
If a washer switch is turned on in a state in which a wiper determining portion determines that a wiper switch is in an OFF state, and a vehicle speed determining portion determines that a vehicle speed is equal to or more than a predetermined speed, a simultaneous operation control portion ejects the washer fluid in a state in which the wiper is positioned at a lower reversing position. The simultaneous operation control portion causes the wiper to reciprocate at least once simultaneously with the ejection. The simultaneous operation control portion additionally ejects the washer fluid at least once, in a state in which the wiper is positioned at an intermediate position between the lower reversing position and an upper reversing position. Accordingly, it is possible to inhibit a lack of the washer fluid from being generated on the surface to be wiped.
Abstract:
A wiper control system includes a rear wiper control circuit associated with a front wiper control circuit. The wiper drive signals generated in the front wiper control circuit are fed to the rear wiper control circuit. The rear wiper control circuit derives a rear wiper drive timing on the basis of the occurrences of the front wiper drive signals. The rear wiper driving frequency is generally lower than that of the front wiper driving frequency. The lower rate of the rear wiper driving frequency relative to the front wiper driving frequency is preferably variable depending upon the vehicle driving condition.
Abstract:
A vehicle sensor cleaning apparatus and a control method of the vehicle sensor cleaning apparatus are disclosed. The vehicle sensor cleaning apparatus includes a liquid controller configured to control washer fluid spraying to at least one sensor located in a vehicle, and an air controller configured to control air spraying to at least one sensor located in the vehicle, wherein the liquid controller and/or the air controller are further configured to dynamically adjust a duty cycle of a control signal according to vehicle speed and/or an amount of rain.
Abstract:
A washer fluid distribution device includes a plurality of nozzle units formed consecutively, a transfer conduit configured to pass through the plurality of nozzle units and having one end fluidly connected to an introduction part, the introduction part located at one end of the transfer conduit and configured to allow a washer fluid to be introduced from a washer pump, a plurality of discharge holes configured to correspond to the number of the nozzle units in the transfer conduit and having different angles based on a center of the transfer conduit, and a controller configured to control a rotation angle of the transfer conduit to allow the discharge holes to correspond to the nozzle units in response to a user's request.
Abstract:
A washer fluid distribution device includes a plurality of nozzle units formed consecutively, a transfer conduit configured to pass through the plurality of nozzle units and having one end fluidly connected to an introduction part, the introduction part located at one end of the transfer conduit and configured to allow a washer fluid to be introduced from a washer pump, a plurality of discharge holes configured to correspond to the number of the nozzle units in the transfer conduit and having different angles based on a center of the transfer conduit, and a controller configured to control a rotation angle of the transfer conduit to allow the discharge holes to correspond to the nozzle units in response to a user's request.
Abstract:
A window wiper system includes a wiper assembly, a window moisture sensor, a wiper torque sensor and a control module. The control module is responsive to the window moisture sensor and the torque sensor to control the operation of the window wiper assembly.