Abstract:
A controlling method for a dryer is applied to a dryer, in which at least one of a heat pump system and a heater is selected as a heat source for heating air supplied in to a drum and a heat supply capacity of the heat pump system is more than that of the heater. The controlling method includes, when both the heat pump system and the heater are selected as the heat sources, turning the heat pump system on, turning the heater on after the heat pump system is normally turned on, turning the heater off to cool the drum and terminate drying after the drying is performed, and turning the heat pump system off after the heater is turned off.
Abstract:
A filter system comprises a hollow fiber membrane filter having pores; and an electrostatic adsorption filter partially or wholly having positive charges to be ion adsorbed with nanoparticles of negative charges by an electrostatic attraction, the nanoparticles which exist in the water, and the electrostatic adsorption filter configured to remove in advance the nanoparticles from the water to be supplied to the hollow fiber membrane filter, to prevent a water passing amount of the hollow fiber membrane filter from being rapidly reduced. According to the present invention, the viruses existing in raw water may be removed in accordance with a size exclusion mechanism of the hollow fiber membrane filter, and the nanoparticles, which cause the reduction of the water passing amount of the hollow fiber membrane filter, may be removed using the electrostatic adsorption filter.
Abstract:
The present invention relates to a separation membrane having both antibiotic and hydrophilic properties for water treatment and a preparation method thereof. In the separation membrane of the present invention, since an organic compound (antimicrobial and/or hydrophilic compound) is chemically conjugated to non-metal inorganic nanoparticles or metal nanoparticles, the nanoparticles are not eluted from the separation membrane even when the separation membrane is used for water treatment for a long period of time, so that the separation membrane may continuously maintain antimicrobial properties and high water permeability, is safe to the human body even when used for the treatment of drinking water, such as water purification, and exhibits characteristics in which stain resistance is also significantly enhanced due to antimicrobial and hydrophilic properties, which have been continuously imparted. Furthermore, high mechanical strength is exhibited by a metal or inorganic nanofiller introduced.
Abstract:
A laundry machine having a heat exchanger cleaning device may include a cabinet, a drum provided in the cabinet, a heat exchanger for heating air to dry laundry in the drum, air conduits to circulate the air between the heat exchanger and the drum, and a control valve that controls a flow of water to the heat exchanger to clean lint deposits on the heat exchanger. An area of the heat exchanger may be divided into a plurality of regions, such that a first nozzle is coupled to the first outlet port and provided above a first region of the plurality of regions and a second nozzle is coupled to the second outlet port and provided above a second region of the plurality of regions. The control valve may selectively direct the flow of water toward the first nozzle or the second nozzle to clean a desired region.
Abstract:
An antenna assembly for a vehicle includes first glass having a black mask region on one surface thereof; second glass disposed opposite to the first glass; a film layer disposed between the first glass and the second glass; a transparent substrate disposed in an inner region of the film layer and having an antenna transparent electrode portion in a mesh structure; and a substrate having a feed line electrically connected to the antenna transparent electrode portion of the transparent substrate.
Abstract:
Disclosed herein is a dryer. In the dryer according to an embodiment of the present invention, the length in which a condensate discharge container (82) for storing a condensate is pulled out can be minimized because a length in the front and back direction of the condensate discharge container (82) is smaller than a length in the width direction of the condensate discharge container (82). Stability is increased because the condensate discharge container (82) is disposed under a cabinet (10). The dryer according to an embodiment of the present invention has advantages in that a space required to pull out the condensate discharge container (82) can be minimized because the condensate discharge container (82) is laterally disposed and a drum (30) having a higher capacity compared to the same size can be installed because a structure disposed over the drum (30) within the cabinet (10) is minimized.
Abstract:
Antennas capable of supporting high frequencies are disclosed, for example, a transparent antenna applicable to glass for vehicles is disclosed. A transparent antenna installed on a glass includes an adhesive layer attached to the glass, a transparent substrate disposed on the adhesive layer, an antenna structure layer disposed on the transparent substrate, a protective layer disposed on the antenna structure layer, and a power feeding portion connected to the antenna structure layer.
Abstract:
A transparent antenna module according to the present specification comprises: a dielectric substrate; dielectric structures formed on and in contact with the dielectric substrate and formed to be spaced a gap area having a predetermined distance apart from each other in at least one axial direction; a first conductive layer formed in the gap area to be in contact with the dielectric substrate and formed to have a first thickness; and a second conductive layer formed on and in contact with the first conductive layer and formed to have a second thickness.
Abstract:
Disclosed is a dryer, including a cabinet (10) configured to have an entry hole (17) formed on the front surface of the cabinet (10), a door being installed in the entry hole (17), a drum (30) disposed within the cabinet (10) and configured to rotate with the laundry received therein, an evaporator (54) disposed in the cabinet (10) and configured to remove moisture from air circulating through the drum (30) by condensing the moisture, a drawer space (19) disposed under the entry hole (17) and depressed backward from the front surface of the cabinet (10), a drawer (70) disposed in the drawer space (19) and configured to move with respect to the cabinet (10) so that it is pulled out from the drawer space (19), a condensate discharge container (82) configured to have a condensate condensed by the evaporator (54) stored therein, detachably held in the drawer (70), and exposed to a user when the drawer (70) is pulled out, and a guide supporter (90) configured to couple a cabinet-side structure and a drawer-side structure and to guide the pulling out of the drawer (70).
Abstract:
Disclosed herein is a dryer. In the dryer according to an embodiment of the present invention, the length in which a condensate discharge container (82) for storing a condensate is pulled out can be minimized because a length in the front and back direction of the condensate discharge container (82) is smaller than a length in the width direction of the condensate discharge container (82). Stability is increased because the condensate discharge container (82) is disposed under a cabinet (10). The dryer according to an embodiment of the present invention has advantages in that a space required to pull out the condensate discharge container (82) can be minimized because the condensate discharge container (82) is laterally disposed and a drum (30) having a higher capacity compared to the same size can be installed because a structure disposed over the drum (30) within the cabinet (10) is minimized.