Abstract:
본 발명은 진공청소기용 사이클론 집진장치에 관한 것으로서, 길이방향으로 세울 때 바닥면이 되는 제1측벽과 길이방향으로 누일 때 바닥면이 되는 제2측벽을 구비하는 청소기 본체에 설치되는 진공청소기용 사이클론 집진장치에 있어서, 청소기 본체에, 길이방향의 중심축이 청소기 본체의 제1측벽과 수평을 이루도록 설치되며, 측면의 상부에 형성된 오물 토출구를 포함하는 사이클론 유닛; 및 사이클론 유닛의 일측에 청소기 본체에 대해 착탈 가능하도록 설치되며, 상단이 막힌 통 형상으로 형성되며, 상단 벽에는 사이클론 유닛의 오물 토출구에 대응되는 오물 인입구가 형성된 먼지통;을 포함하여 구성된다. 캐니스터형, 업라이트형, 오물토출구, 오물인입구, 먼지통
Abstract:
청소기 본체가 흡입구체에 장착 및 탈착될 수 있는 업라이트 및 캐니스터 겸용 진공청소기가 개시된다. 개시된 진공청소기는 피청소면 상을 이동하면서 오물을 흡입하는 흡입구체; 피청소면으로부터 오물과 함께 흡입된 공기로부터 오물을 분리 및 수거하는 집진장치를 구비한 청소기 본체; 흡입구체에 힌지 결합되고, 청소기 본체의 하부를 흡입구체와 연통되도록 지지하는 지지유닛; 및 청소기 본체의 하부를 지지유닛에 탈착할 수 있게 록킹하는 록킹유닛을 포함하는 것을 특징으로 한다. 청소기, 본체, 흡입구체, 업라이트, 캐니스터, 겸용, 장착, 분리, 지지부재, 레버
Abstract:
The present invention relates to a cyclone dust collecting apparatus including: a cyclone unit which has a first cyclone part for separating dust from sucked air and which has a second cyclone part having at least one cone for separating fine dust from air filtered by the first cyclone part; and a cover unit which has a first cover arranged on the second cyclone part and having an outlet communicated with the cone of the second cyclone part and which has a second cover having a space part arranged on the first cover and having air discharged from the second cyclone part though the first cover. The first cover has a sealing protrusion on the upper surface. The sealing protrusion surrounds at least part of the one or more outlets of the first cover, corresponding to each of the outlets, and is formed along the outline of the space part of the second cover.
Abstract:
자외선 발생 유닛을 구비한 노즐조립체 및 이를 구비하는 진공청소기가 개시된다. 개시된 노즐조립체는 피청소면을 따라 이동하는 노즐본체; 상기 노즐본체에 설치되며, 연장부를 구비한 드럼브러시 유닛; 선택적으로 피청소면과 마주하도록 상기 드럼브러시 유닛에 접철가능하게 설치되는 자외선 발생 유닛; 및 상기 자외선 발생 유닛의 접철 동작에 따라 상기 자외선 발생유닛의 전원을 온/오프하는 스위치 수단;을 포함하는 것을 특징으로 한다. 노즐조립체, 살균, 자외선 발생유닛, 마이크로 스위치
Abstract:
PURPOSE: An apparatus and method for dynamically determining a practice mode of a reconfigurable array are provided to practice a loop in the optimum practice mode by dynamically determining a practice mode of the loop based on performance information and an estimate value of running time. CONSTITUTION: A performance information acquisition unit(301) obtains performance information showing running time according to loop repeat count at the VLIW(Very Long Instruction Word) mode and the CGA(Coarse Grained Array) mode. A running time estimating unit(302) obtains an estimate value in regard to the running time of a loop. A code generating unit(303) creates a CGA code of the loop for the CGA mode and a VLIW cod for the VLIW mode. A mode determining unit(304) selects the CGA code or the CGA code by using the performance information and the estimate value.
Abstract:
PURPOSE: A reconfigurable processor and a method thereof are provided to reduce processing time and code length of a superposition loop by allocating a loop to a PE. CONSTITUTION: An extracting unit(105) extracts loop execution count information from inner and outer loops in a superposition loop. A loop merger(110) merges the inner and outer loops based on the loop execution count information. A scheduler(120) allocates a command of the inner loop to a PE(Processing Element).
Abstract:
PURPOSE: A processor, memory management apparatus, and method thereof are provided to reduce the energy consumption of a memory chip by sharing an instruction cache unit and a configuration memory unit with the memory apparatus. CONSTITUTION: A processing core unit is operated in a first or a second mode. A storage unit(301) includes storage spaces including storage lines. An output interface unit(302) outputs first data corresponding to the storage line of the selected storage space by selecting the storage space in the first mode. The output interface unit outputs second data which integrates data corresponding to the storage lines of the storage spaces by selecting the storage space in the second mode. A processing core unit is formed as a reconfiguration array and is operated using VLIW(Very Long Instruction Word) architecture.
Abstract:
PURPOSE: A reconfigurable processor and a method for handling interrupt thereof are provided to promptly process an interrupt request by securing some PE for interrupt handling when the interrupt request happens. CONSTITUTION: A CGA(Coarse-Grained Array)(101) includes plural PEs(Processing Elements), and a host processor(102) shares at least one PE with the CGA. A controller(103) designates at least one PE additionally. When an interrupt request happens while a loop operation is executed in the CGA, the controller allows the designated PE to process the interrupt request. A central register file(202) stores the processing result of the CGA and the host processor.
Abstract:
PURPOSE: An interrupt handling apparatus and method for an equal-model processor, and a processor including the interrupt handling apparatus are provided to promptly process an interrupt by processing an interrupt in the processor. CONSTITUTION: A remaining latency updater(14) compares a current latency with a residual latency. If the current latency is larger than the residual latency, the residual latency updating unit updates the residual latency to the value of the current latency. An interrupt support determiner(16) outputs a signal for indicating the interrupt support based on the residual latency. If the residual latency is larger than 1, the interrupt support determination unit outputs an interrupt non-support flag.
Abstract:
PURPOSE: A fan motor apparatus having a diffuser unit for a vacuum cleaner is provided to improve the fine dust separation efficiency by evenly distributing discharged air and reducing the flow velocity. CONSTITUTION: A fan motor apparatus(1) comprises a fan motor unit(130) and a diffuser unit(100). The fan motor unit takes in or discharges the air in the specific direction. The diffuser unit includes an intake section and an exhaust section. The intake section discharges the air drawn through a flow path surface to the fan motor unit. The air discharged from the fan motor unit is drawn into the exhaust section and then distributed and discharged.