Abstract:
A water softener is provided to increase the soft water flow by using an impeller and improve the performance of a water softener by magnetizing the fluid which has cavitation, based on the interaction of both impeller and a permanent magnet. An impeller is made of the material having magnetism, and a casing accommodates the impeller to be rotative. A permanent magnet(18) arranged inside the casing, and a driving device(30) drives the impeller. Fluid is magnetized by the interaction of both impeller and a permanent magnet.
Abstract:
A refrigerator is provided to improve supercooling effect and to prevent a beverage from freezing by continuously transmitting vibration to water, which is thermodynamically unstable, using a vibrating member. A refrigerator comprises a body, a supercooling chamber, plural supercooling containers(30), and a vibrating member(32). The supercooling chamber is installed in the body to supercool a beverage. The supercooling containers are formed in the supercooling chamber and store the beverage. The vibrating member vibrates the supercooling containers. The vibrating member is an ultrasonic generating unit.
Abstract:
A dishwasher is provided to draw in or out dishes from a lower basket conveniently by adjusting the height of the lower basket. A dishwasher comprises a case(10) having a washing tub(13), a door(11) opening the case, baskets(20,30), a moving device, and a fixing device(50). The baskets place dishes to be washed inside the washing tub. The moving device moves the baskets from the lower part to the upper part. The fixing device connected to the moving device fixes the baskets at a predetermined position. The moving device consists of an upper rotation shaft(40a) fixed on the upper part of the case, a lower rotation shaft(40c) fixed on the basket, and links(40b,40b') coupling the upper rotation shaft with the lower rotation shaft.
Abstract:
A cleaner system is provided to allow a user to use a vacuum cleaner by clamping a suction tube to a main body and to use the vacuum cleaner as a docking station by clamping an interface to the main body. A cleaner system comprises a vacuum cleaner, a robot cleaner(100), an interface(300). The vacuum cleaner includes a suction body, a main body(30), and suction tubes. The suction body sucks dust. The main body has a suction unit(130) supplies suction force to the suction body. The removable suction tube is clamped to the main body to connect the suction body with the main body. The robot cleaner cleans the floor automatically. The interface is mounted to the main body to uses the main body as a docking station(200). The interface includes a connection unit(310) and a control unit(350). The connection unit provides a discharge path(340) discharging dust in the robot cleaner to the main body when the robot cleaner docks with the main body. The control unit operates the suction unit.
Abstract:
A robot cleaner system having a robot cleaner and a docking station is provided to connect a dust outlet with a dust inlet by installing a magnet to one of the first docking unit and a second docking unit and installing a magnetic member to the other. In a robot cleaner system having a robot cleaner(100) and a docking station(200), the robot cleaner has a first docking unit(140) with a dust outlet. The docking station has a second docking unit(240) with a dust inlet(241). One of the docking units is movable. One of the docking units has a magnet and the other has a magnetic member.
Abstract:
A robot cleaner system is provided to maintain a docking condition of a robot cleaner and a docking station accurately by connecting the robot cleaner and the docking station with a connection device combined in a discharging port of the robot cleaner. A robot cleaner system comprises a robot cleaner(100), a docking station(200), and a connection device. The robot cleaner cleans the dust on a bottom surface automatically. The docking station removes the dust in the robot cleaner in the condition of docking the robot cleaner. The connection device forms a discharging passage for discharging the dust to the docking station from the robot cleaner while maintaining the docking condition of the robot cleaner to the cocking station when the robot cleaner is docked to the docking station.
Abstract:
상변화메모리소자의형성방법을제공할수 있다. 이를위해서, 하부전극및 층간절연막을가지는반도체기판이준비될수 있다. 상기하부전극은층간절연막으로둘러싸일수 있다. 상기반도체기판을반도체증착장비의공정챔버내 안착시킬수 있다. 상기공정챔버내 소오스가스들, 반응가스및 퍼지가스를주입해서반도체기판상에상변화물질막을형성할수 있다. 상기소오스가스들은공정챔버에동시에주입될수 있다. 상기상변화물질막은층간절연막을통해서하부전극과접촉할수 있다. 상기층간절연막을노출시키도록상변화물질막을식각해서층간절연막에상변화메모리셀을형성할수 있다. 상기상변화메모리셀 상에상부전극을형성할수 있다.
Abstract:
처리 용량을 종래에 비해 증가된 전기 탈이온화 방식의 연수기가 개시된다. 본 발명에 따른 연수기는 양이온교환막과 음이온교환막 사이에 이온교환물질이 충전된 탈염실과 양이온 및 음이온교환막 외측에 구성되는 농축실이 스택 구조로 배열되고, 스택 구조의 외측에 음극과 양극이 각각 마련되는 연수기에 있어서, 탈염실에 이온교환물질을 이온교환수지로 충전할 경우에는 내측은 액상이고 외측은 고상인 캡슐 형태나, 내외측의 밀도가 다르거나, 이온교환기를 외측에 집중시킨 형태로 설치함으로써, 이온교환수지 입자 크기가 크더라도 이온의 흡착 및 이동속도를 모두 증가시켜 처리 용량을 현저하게 늘릴 수 있다. 또한, 이온교환물질을 이온교환섬유로 충전할 경우에는 직물 형태나 두께가 서로 다른 형태나, 중공이 구비된 형태나, 표면에 요철이 마련된 형태나, 방향성을 구비하는 등의 다양한 형태로 설치함으로써, 상기와 마찬가지로 이온 흡착 및 이동속도를 증가시켜 처리 용량을 현저하게 늘릴 수 있다.