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    • 5. 发明申请
    • SUBSTRATE-PROCESSING APPARATUS AND METHOD OF TRANSFERRING SUBSTRATE IN THE SAME
    • 基板处理装置及其中的基板传输方法
    • WO2010016649A1
    • 2010-02-11
    • PCT/KR2009/001747
    • 2009-04-06
    • SEMES CO., LTD.HONG, Sang-SeokKIM, Hyun-Woo
    • HONG, Sang-SeokKIM, Hyun-Woo
    • H01L21/677
    • H01L21/67781
    • Provided is a substrate-processing apparatus including a transfer member loading and taking out a substrate to and from a storage member, and a control unit controlling the transfer member. The transfer member includes a plurality of transfer arms and an arm-driving part moving the respective transfer arms horizontally, and substrates are loaded on the respective transfer arms. The control unit controls a movement velocity and a position of the transfer member and compares movement velocity profiles of the transfer arms, so as to control movement velocities of the respective transfer arms. Accordingly, the simultaneously driven transfer arms simultaneously arrive at target points, and thus the substrate-processing apparatus reduces transfer time and improves productivity.
    • 提供了一种基板处理装置,其包括将存储部件加载和取出基板的转印部件和控制转印部件的控制部。 转印构件包括多个转印臂和臂驱动部分,水平地移动各个转印臂,并且基板被装载在相应的转印臂上。 控制单元控制传送构件的移动速度和位置,并且比较传送臂的移动速度分布,以便控制各传送臂的移动速度。 因此,同时驱动的传送臂同时到达目标点,因此基板处理装置减少传送时间并提高生产率。
    • 7. 发明申请
    • SOLAR SENSOR DEVICE FOR SENSING SUNLIGHT
    • 用于感应太阳的太阳传感器装置
    • WO2011126316A3
    • 2012-03-08
    • PCT/KR2011002439
    • 2011-04-07
    • SMARTEC CORPCHUNG SOON BAELEE JEONG GUKKANG IN SEOPKIM HYUN WOO
    • CHUNG SOON BAELEE JEONG GUKKANG IN SEOPKIM HYUN WOO
    • G01J1/02G01C1/00G05D3/00
    • G01S3/783G01J1/4228G01J2001/4266G01S3/7867
    • The present invention relates to a solar sensor device able to measure the azimuth angle and elevation angle of the sun, and the solar sensor device according to the present invention comprises: a structural body in the form of a polyhedron which consists of a flat upper surface and surfaces continuing on from the upper surface and consists of a plurality of inclined surfaces at respectively different angles of inclination from the upper surface; a plurality of solar sensors which are provided in the upper surface and the plurality of inclined surfaces of the structural body and which sense sunlight and output signals which accord with the angle of incidence of the sunlight; and a control unit which is provided inside the structural body, is electrically connected to the solar sensors, and estimates the position of the sun by selecting two or more composite signals in sequence from the highest output sensitivity, from among the plurality of solar sensors.
    • 本发明涉及能够测量太阳的方位角和仰角的太阳能传感器装置,并且根据本发明的太阳能传感器装置包括:多面体形式的结构体,其由平坦的上表面 以及从上表面延续的表面,并且由与上表面分别具有不同倾斜角度的多个倾斜表面组成; 多个太阳能传感器,其设置在结构体的上表面和多个倾斜表面中,并且感测与太阳光的入射角一致的太阳光和输出信号; 并且设置在结构体内部的控制单元电连接到太阳能传感器,并且通过从多个太阳能传感器中的最高输出灵敏度顺序选择两个或更多个复合信号来估计太阳的位置。
    • 8. 发明申请
    • MICROBUBBLE-GENERATING SHOWER
    • 微生物淋浴
    • WO2010140775A3
    • 2011-03-31
    • PCT/KR2010002811
    • 2010-05-03
    • MECKIM HYUN WOO
    • KIM HYUN WOO
    • A47K3/28B01F3/04B01F5/00B05B1/18
    • B05B1/18B05B7/0416B05B7/0425C02F1/34C02F1/74C02F2303/26C02F2307/06
    • The present invention relates to a microbubble-generating shower. The present invention provides a microbubble-generating shower comprising a showerhead, a bubble nozzle, and a spray nozzle. The shower head is integrally formed with an upper portion of a shower body in which a tap water flow channel is formed, and has an insertion portion which penetrates through the shower head and which is connected to the water flow channel. The insertion portion has one surface on which an inclined guide portion is formed to raise the pressure of the tap water. The insertion portion has a front end on which a threaded coupling portion is formed. The bubble nozzle is inserted and fixed in the insertion portion of the showerhead, and generates microbubbles consisting of micrometer-sized ultra-micro-sized air bubbles from the dissolved oxygen in the tap water using the pressure of the tap water, pressure resistance, and friction resistance to maximize tap water purifying and sterilizing effects. The spray nozzle is coupled to the coupling portion of the showerhead, and has a plurality of spray ports coupled to the bubble nozzle to spray tap water containing the microbubbles generated by the bubble nozzle. The bubble nozzle of the present invention generates microbubbles using the friction resistance and pressure resistance resulting from the variations in the pressure of the tap water, the expansion of water, and dissolved oxygen, etc., thereby maximizing tap water purifying and sterilizing effects, and thus preventing various skin diseases such as pruritus, allergies, atopies and the like caused by the harmful bacteria contained in tap water.
    • 本发明涉及一种产生微泡的淋浴。 本发明提供了一种产生微泡的淋浴器,其包括喷头,气泡喷嘴和喷嘴。 淋浴头与形成有自来水流路的淋浴体的上部一体形成,并且具有穿过喷淋头并与水流通道连接的插入部。 插入部分具有一个表面,在该表面上形成有倾斜的引导部分以提高自来水的压力。 插入部具有形成螺纹连接部的前端。 气泡喷嘴被插入并固定在喷头的插入部分中,并且使用自来水的压力,耐压性和自来水的压力,从自来水中的溶解氧产生由微米尺寸的超微小尺寸气泡组成的微气泡 摩擦阻力最大化自来水净化和消毒效果。 喷嘴连接到喷头的连接部分,并且具有多个连接到泡罩喷嘴的喷射口,以喷射含有由气泡喷嘴产生的微气泡的自来水。 本发明的气泡喷嘴利用由自来水的压力变化,水分膨胀和溶解氧等导致的摩擦阻力和耐压性产生微泡,从而最大化自来水净化和消毒效果,并且 从而防止由自来水中含有的有害细菌引起的各种皮肤疾病如瘙痒,过敏,特应性等。
    • 9. 发明申请
    • SOLAR SERVO CONTROL TRACKING DEVICE USING PYRANOMETER
    • 太阳能伺服控制跟踪装置使用偏光仪
    • WO2011025129A1
    • 2011-03-03
    • PCT/KR2010/003707
    • 2010-06-10
    • SDN CO., LTDCHOI, Kee HyokLIM, In CheolKIM, Hyun WooWOO, Hyeok JaeSHIN, Kyoo Jae
    • CHOI, Kee HyokLIM, In CheolKIM, Hyun WooWOO, Hyeok JaeSHIN, Kyoo Jae
    • G01J1/06
    • G01J1/4228F24S50/00F24S50/20G01J2001/4285G01S3/7861H02S20/32Y02E10/47
    • A solar servo control tracking device using a pyranometer is disclosed. The device includes: a solar panel; a tracker having a solar panel driving motor driving the solar panel; a tracker controller controlling the tracker; first pyranometers measuring a solar azimuth in EW and detecting solar radiation of 380 nm to 840 nm wavelengths; second pyranometers measuring a solar azimuth in NS and detecting solar radiation; and a third pyranometer measuring a solar azimuth in the CE and detecting solar radiation. The tracker controller includes: signal amplifiers amplifying detection signals in three azimuths by the pyranometers; signal processors filtering the amplified detection signals by limiting a voltage; and a main control microcomputer outputting a control signal to the solar panel driving motor to stop the solar panel when the solar radiations are same and the solar radiations in one direction are maximum.
    • 公开了一种使用太阳光伏计的太阳能伺服控制跟踪装置。 该装置包括:太阳能电池板; 具有驱动太阳能电池板的太阳能电池板驱动电机的跟踪器; 跟踪器控制器; 测量EW中太阳方位角的第一个太阳辐射计,并检测380 nm至840 nm波长的太阳辐射; 测量NS中的太阳方位角并检测太阳辐射的第二台太阳辐射计; 以及测量CE中的太阳方位角并检测太阳辐射的第三个测角仪。 跟踪器控制器包括:信号放大器,通过太阳辐射计放大三个方位角的检测信号; 信号处理器通过限制电压对放大的检测信号进行滤波; 以及当太阳辐射相同并且一个方向上的太阳辐射最大时,向太阳能电池板驱动电机输出控制信号以停止太阳能电池板的主控制微型计算机。