Washing machine and method of controlling spin-drying thereof
    1.
    发明授权
    Washing machine and method of controlling spin-drying thereof 有权
    洗衣机及其旋转干燥方法

    公开(公告)号:US08893341B2

    公开(公告)日:2014-11-25

    申请号:US12585243

    申请日:2009-09-09

    IPC分类号: D06F37/24 D06F35/00 D06F37/20

    CPC分类号: D06F37/203 D06F37/245

    摘要: Disclosed are a washing machine and a method of controlling spin-drying of the washing machine. The method changes the acceleration gradient of the drum passing a resonance point, i.e., the resonance point passing gradient of the drum, when the imbalance of the laundry due to the excessive vibration of the tub is sensed when passing a resonance point region (generally within 100 RPM, approximately 50˜80 RPM, after the entry into the spin-drying cycle) in the spin-drying cycle. Thus the position of the balancer is changed according to the imbalance of the laundry.

    摘要翻译: 公开了洗衣机和控制洗衣机的旋转干燥的方法。 该方法通过谐振点的加速度梯度,即当鼓通过谐振点区域(通常在 100rpm,进入旋转干燥循环后约为50〜80RPM)。 因此,平衡器的位置根据衣物的不平衡而改变。

    Washing machine and method of controlling spin-drying thereof
    4.
    发明申请
    Washing machine and method of controlling spin-drying thereof 有权
    洗衣机及其旋转干燥方法

    公开(公告)号:US20100088829A1

    公开(公告)日:2010-04-15

    申请号:US12585243

    申请日:2009-09-09

    IPC分类号: D06F35/00 D06F39/00

    CPC分类号: D06F37/203 D06F37/245

    摘要: Disclosed are a washing machine and a method of controlling spin-drying of the washing machine. The method changes the acceleration gradient of the drum passing a resonance point, i.e., the resonance point passing gradient of the drum, when the imbalance of the laundry due to the excessive vibration of the tub is sensed when passing a resonance point region (generally within 100 RPM, approximately 50˜80 RPM, after the entry into the spin-drying cycle) in the spin-drying cycle. Thus the position of the balancer is changed according to the imbalance of the laundry.

    摘要翻译: 公开了洗衣机和控制洗衣机的旋转干燥的方法。 该方法通过谐振点的加速度梯度,即当鼓通过谐振点区域(通常在 100rpm,进入旋转干燥循环后约为50〜80RPM)。 因此,平衡器的位置根据衣物的不平衡而改变。

    DEVICE FOR STORING REAGENT AND METHOD OF DISCHARGING REAGENT THEREOF
    7.
    发明申请
    DEVICE FOR STORING REAGENT AND METHOD OF DISCHARGING REAGENT THEREOF 有权
    用于储存试剂的装置和放出试剂的方法

    公开(公告)号:US20130149216A1

    公开(公告)日:2013-06-13

    申请号:US13528777

    申请日:2012-06-20

    IPC分类号: B01L3/00

    摘要: Provided are a device for storing a reagent capable of being adhered to a biochip and supplying the stored reagent to the biochip, and a method of discharging a reagent thereof. The device for storing a reagent includes an elastic film pressurizing part configured to pressurize an elastic film by magnetic force, and a reagent discharging part configured to store the reagent and discharge the reagent through an outlet by using the deformation in the elastic film due to the pressurization. According to the present invention, a magnetic force controlling device can be small-sized and the reagent can be automatically, high-precisely, and reproducibly supplied through the magnetic force control.

    摘要翻译: 提供了一种用于存储能够粘附到生物芯片并将储存的试剂供应到生物芯片的试剂的装置及其试剂的排出方法。 用于存储试剂的装置包括:弹性膜加压部,其被配置为通过磁力对弹性膜加压;以及试剂排出部,其构造成存储试剂,并且通过使用弹性膜中的变形通过出口排出试剂, 加压。 根据本发明,磁力控制装置可以小型化,并且可以通过磁力控制自动,高精度地且可重复地提供试剂。

    Three-dimensional nanodevices including nanostructures
    8.
    发明授权
    Three-dimensional nanodevices including nanostructures 有权
    包括纳米结构在内的三维纳米器件

    公开(公告)号:US08263964B2

    公开(公告)日:2012-09-11

    申请号:US12672995

    申请日:2008-05-19

    IPC分类号: H01L29/06

    摘要: Provided are three-dimensional (3D) nanodevices including 3D nanostructures. The 3D nanodevice includes at least one nanostructure, each nanostructure including an oscillation portion floating over a substrate and support portions for supporting both lengthwise end portions of the oscillation portion, supports disposed on the substrate to support the support portions of each of the nanostructures, at least one controller disposed at an upper portion of the substrate, a lower portion of the substrate, or both the upper and lower portions of the substrate to control each of the nanostructures, and a sensing unit disposed on each of the oscillation portions to sense an externally supplied adsorption material. Thus, unlike in a typical planar device, generation of impurities between a nanodevice and a substrate can be reduced, and mechanical vibration can be caused. In particular, since 3D nanostructures have mechanical and electrical characteristics, 3D nanodevices including new 3D nanostructures can be provided using nano-electro-mechanical systems (NEMS). Also, a single electron device, a spin device, or a single electron transistor (SET)-field effect transistor (FET) hybrid device can be formed using a simple process unlike in planar devices.

    摘要翻译: 提供了三维(3D)纳米器件,包括3D纳米结构。 3D纳米装置包括至少一个纳米结构,每个纳米结构包括漂浮在基板上的振荡部分和支撑部分,用于支撑振荡部分的两个纵向端部,支撑件设置在基板上以支撑每个纳米结构的支撑部分, 设置在基板的上部,基板的下部或基板的上部和下部的至少一个控制器,以控制每个纳米结构;以及感测单元,设置在每个振荡部分上以感测 外部供应的吸附材料。 因此,与典型的平面器件不同,可以减少纳米器件与衬底之间的杂质的产生,并且可能引起机械振动。 特别地,由于3D纳米结构具有机械和电学特性,可以使用纳米机电系统(NEMS)提供包括新的3D纳米结构的3D纳米器件。 此外,可以使用与平面器件不同的简单工艺来形成单电子器件,自旋器件或单电子晶体管(SET)场效应晶体管(FET)混合器件。

    Biosensor and method of driving the same
    9.
    发明授权
    Biosensor and method of driving the same 失效
    生物传感器及其驱动方法

    公开(公告)号:US08164123B2

    公开(公告)日:2012-04-24

    申请号:US12703939

    申请日:2010-02-11

    IPC分类号: H01L29/78 H01L29/772

    CPC分类号: G01N27/4145

    摘要: Provided are a biosensor and a method of driving the same. The biosensor includes a transistor including a substrate including a source, a drain, and a channel formed between the source and the drain, a gate insulating layer formed on the channel, and a source electrode and a drain electrode respectively connected with the source and the drain, a fluid line for covering the transistor to have an inner space together with the transistor and in which a sample solution including target molecules flows, a reference electrode formed on an inner wall of the fluid line, and a probe molecule layer attached on the reference electrode and reacting with the target molecules. Accordingly, the reference electrode is formed on the inner wall of the fluid line, enabling miniaturization of the bio device. Also, the probe molecules are formed on the reference electrode to measure a change in threshold voltage according to a change in electric potential between the reference electrode and the gate insulating layer, such that the sensitivity and reaction rate can be remarkably improved.

    摘要翻译: 提供了一种生物传感器及其驱动方法。 生物传感器包括晶体管,其包括基板,该基板包括源极,漏极和形成在源极和漏极之间的沟道,形成在沟道上的栅极绝缘层以及分别与源极和漏极连接的源极和漏极 漏极,用于覆盖晶体管的流体线,其与晶体管一起具有内部空间,并且其中包含目标分子的样品溶液流动,形成在流体管线的内壁上的参考电极和附着在该流体管线上的探针分子层 参考电极并与靶分子反应。 因此,参考电极形成在流体管线的内壁上,使生物装置能够小型化。 此外,探针分子形成在参考电极上,以根据参考电极和栅极绝缘层之间的电位的变化来测量阈值电压的变化,从而可以显着提高灵敏度和反应速率。