Patent classifications
A45D20/00
CONTROL METHOD OF HEAT BLOWER SYSTEM
Heat blower system includes: hair dryer that has housing, fan, and heater; and program that controls hair dryer. Program has a step of obtaining at least one outdoor environment information among an outdoor temperature, an outdoor humidity, an outdoor wind speed, a day length, and an ultraviolet ray intensity. Program further has a step of calculating at least one operational condition of an air volume or an air temperature of hair dryer, based on the obtained outdoor environment information. According to the present aspect, outdoor environment information such as the outdoor temperature, the outdoor humidity, the outdoor wind speed, the day length, and the ultraviolet ray intensity can comprehensively be obtained to adjust operational conditions of hair dryer, appropriately.
DRYER
A dryer for drying hair or clothes is disclosed. The dryer includes a head and a handle attached to the head. The dryer further includes ultrasonic devices, a controller, a vacuum pump, and a reservoir. The head has a surface on which inlet holes are formed. The ultrasonic devices are positioned on the surface of the head. The ultrasonic devices produce ultrasonic vibrations that break down water molecules into mist. The controller controls an operation of the ultrasonic devices.
DRYER
A dryer for drying hair or clothes is disclosed. The dryer includes a head and a handle attached to the head. The dryer further includes ultrasonic devices, a controller, a vacuum pump, and a reservoir. The head has a surface on which inlet holes are formed. The ultrasonic devices are positioned on the surface of the head. The ultrasonic devices produce ultrasonic vibrations that break down water molecules into mist. The controller controls an operation of the ultrasonic devices.
HYGROSCOPIC LIQUID HAIR ROLLER
A hair roller is disclosed having a roller portion and a retaining clip. The roller has a support structure and a tubular moisture permeable hydrophobic cover. The retaining clip is omega-shaped having two halves and a hinge with a first spring and a ratchet mechanism that maintains the clip in closed. The roller support structure includes a core and two end caps or ends. The roller cover forms a cavity with support structure to enclose a first hygroscopic material. The retaining clip also includes a mass of hygroscopic material contained within a chamber formed between a frame and a second moisture permeable hydrophobic cover.
HYGROSCOPIC LIQUID HAIR ROLLER
A hair roller is disclosed having a roller portion and a retaining clip. The roller has a support structure and a tubular moisture permeable hydrophobic cover. The retaining clip is omega-shaped having two halves and a hinge with a first spring and a ratchet mechanism that maintains the clip in closed. The roller support structure includes a core and two end caps or ends. The roller cover forms a cavity with support structure to enclose a first hygroscopic material. The retaining clip also includes a mass of hygroscopic material contained within a chamber formed between a frame and a second moisture permeable hydrophobic cover.
Motor and a handheld device having a motor
A handheld device comprising a motor for generating an airflow through the device, the motor including: a frame for supporting a rotor assembly and a stator assembly, the frame including an inner wall and an outer wall and a plurality of diffuser vanes extending between the inner wall and outer wall; a rotor assembly including a shaft, a magnet, a bearing assembly and an impeller; and a stator assembly including a bobbin, a stator core and a winding wound around the bobbin; the frame being formed of zinc and the impeller being formed of aluminium.
Motor and a handheld device having a motor
A handheld device comprising a motor for generating an airflow through the device, the motor including: a frame for supporting a rotor assembly and a stator assembly, the frame including an inner wall and an outer wall and a plurality of diffuser vanes extending between the inner wall and outer wall; a rotor assembly including a shaft, a magnet, a bearing assembly and an impeller; and a stator assembly including a bobbin, a stator core and a winding wound around the bobbin; the frame being formed of zinc and the impeller being formed of aluminium.
Modular apparatus for increasing number of electrical sockets and organizing hair care items
A hair care organizing apparatus includes a wall tap and an organizer unit attached to the wall tap. The wall tap has a plug that is inserted into a socket of an electrical outlet. The wall tap also has at least one electrical socket that receives a plug of an electrically-powered device. The organizer unit has at least first and second holders for receiving and supporting distinct hair care accessories. The first holder is intended for a hair dryer. In use, the hair dryer is plugged into the at least one electrical socket and inserted into the first holder to support the hair dryer from the organizer unit.
Modular apparatus for increasing number of electrical sockets and organizing hair care items
A hair care organizing apparatus includes a wall tap and an organizer unit attached to the wall tap. The wall tap has a plug that is inserted into a socket of an electrical outlet. The wall tap also has at least one electrical socket that receives a plug of an electrically-powered device. The organizer unit has at least first and second holders for receiving and supporting distinct hair care accessories. The first holder is intended for a hair dryer. In use, the hair dryer is plugged into the at least one electrical socket and inserted into the first holder to support the hair dryer from the organizer unit.
Dryer
A dryer for drying hair or clothes is disclosed. The dryer includes a head and a handle attached to the head. The dryer further includes ultrasonic devices, a controller, a vacuum pump, and a reservoir. The head has a surface on which inlet holes are formed. The ultrasonic devices are positioned on the surface of the head. The ultrasonic devices produce ultrasonic vibrations that break down water molecules into mist. The controller controls an operation of the ultrasonic devices. The vacuum pump is positioned inside the head to generate suction force that draws the mist into the head. The reservoir is positioned inside the handle and connected to the vacuum pump by way of a conduit. The reservoir collects the mist generated by the plurality of the ultrasonic devices.