Patent classifications
D06F103/38
Laundry treating appliance having sensors, and methods of operation
A laundry treating appliance for treating laundry according to an automatic cycle of operation includes a cabinet defining a cabinet interior. A drum is rotatable within the cabinet interior, and at least partially defines a treating chamber. The treating chamber has a treating chamber air inlet and a treating chamber air outlet. A drying air circuit is fluidly coupled to the treating chamber air inlet and to the treating chamber air outlet. The laundry treating appliance can include first and second air temperature sensors, at least a first humidity sensor, and a controller operably coupled with the sensors.
Hybrid RF/conventional clothes dryer
The present application encompasses methods and apparatus for heating a load such as clothes immersed in a medium such as water during a heating period. A method embodiment of the present invention comprises heating the load and medium within an enclosure by subjecting said load and medium to heated air originated from a conventional energy source; and applying heat to said load and medium within the enclosure via an AC electrical field, embodied as a capacitor, originated from an RF power source.
Laundry treating appliance having sensors, and methods of operation
A laundry treating appliance for treating laundry according to an automatic cycle of operation includes a cabinet defining a cabinet interior. A drum is rotatable within the cabinet interior, and at least partially defines a treating chamber. The treating chamber has a treating chamber air inlet and a treating chamber air outlet. A drying air circuit is fluidly coupled to the treating chamber air inlet and to the treating chamber air outlet. The laundry treating appliance can include first and second air temperature sensors, at least a first humidity sensor, and a controller operably coupled with the sensors.
Embedded temperature sensors for monitoring temperature of articles and status of drying or cleaning cycles
An embedded temperature sensor may be attached to or otherwise associated with a textile in order to measure one or more temperatures of the textile. Temperature information received from one or more embedded temperature sensor(s) throughout the course of a dryer cycle may be analyzed to determine dryness of one or more textiles in a dryer, determine whether one or more textiles in the dryer are overdry, generate an indication of the dryness of the one or more textiles in the dryer, and/or to control one or more dryer cycles of the dryer, such as by automatically turning-off the dryer when one or more of the textiles in the dryer are determined to be dry. The embedded temperature sensor may further be used to validate a cleaning process in a cleaning machine.
Dryer control method
The present invention relates to a dryer control method comprising: an air supply step for supplying air to a drum via an air supply unit; a first agitation step for controlling a drive unit so that the drum carries out a second motion and a third motion from when the air supply step begins until a preset reference time is reached; and a second agitation step for controlling the drive unit so that the drum carries out a first motion, the second motion and the third motion from when the reference time is reached until the completion of the air supply step.
Methods for determining and performing conditioning operations within a laundry treatment appliance
A method of operating a dryer appliance includes predicting a removal point at which a laundry load will be removed from the tub of the dryer, the removal point being a certain amount of time after the completion of a main drying operation, determining a length of time required to perform a conditioning operation on the laundry load, determining a start time for the conditioning operation, and implementing a responsive action at the start time.
Method for operating a washing machine, and washing machine
A washing machine and method for operating a washing machine having a suds container for holding washing liquid, a non-ribbed drum provided with stamped portions rotatably mounted in the suds container for holding laundry, a motor for driving the drum, and a control device. During rotation of the drum in a subcritical rotational speed range, the method includes sampling a variable related to the drum or the motor over a predetermined period of time to determine time signals of the variable, executing a frequency analysis of the time signal of the variable to determine frequency components of the variable in a predetermined frequency range, summing the frequency components at predetermined frequencies of the predetermined frequency range, and detecting, depending on the sum of the summed up frequency components, whether a loading situation where laundry is sliding in the drum is present.
LEFTOVER LOAD DETECTION METHOD USING A HUMIDITY SENSOR IN A LAUNDRY APPLIANCE
A laundry treatment appliance includes a cabinet; a basket rotatably mounted within the cabinet and defining a chamber configured for receiving a load of clothes; a door rotatably mounted to the cabinet; a sensor positioned within the cabinet, the sensor configured to measure a humidity of air within the cabinet; and a controller operably coupled to the sensor, the controller being configured to determine that an operating cycle of the laundry treatment appliance has been completed; determine that a user has removed the load of clothes; obtain one or more humidity measurements of the chamber using the sensor after determining that the user has removed the load of clothes; identify a leftover article remaining in the chamber by analyzing the one or more humidity measurements of the chamber; and implement a responsive action in response to identifying the leftover article remaining in the chamber.
Method and system for setting parameters of a treatment cycle
A method and system for setting parameters of a treatment cycle in a household appliance is provided. First a model establishing a relationship between sets of configuration parameter values of achievable treatment performance is obtained. Then a target treatment performance for the treatment cycle is obtained. Values for a subset of a configuration parameter are fixed, the subset comprising at most all configuration parameters but a remaining configuration parameter. Then, a value for the remaining configuration parameter is determined. For this value, a difference between the target treatment performance and an achievable treatment performance predicted by the model using said value is below a predetermined threshold. Finally, the parameters of the treatment cycle, which can be setting parameters of the treatment cycle in the household appliance are output. The parameters comprise the determined value and the fixed values.