Air purification device with a needle-shaped electrode having a protective cover thereon
    121.
    发明授权
    Air purification device with a needle-shaped electrode having a protective cover thereon 失效
    具有针状电极的空气净化装置,其上具有防护罩

    公开(公告)号:US06620224B1

    公开(公告)日:2003-09-16

    申请号:US10217308

    申请日:2002-08-12

    Applicant: Hisashi Sato

    Inventor: Hisashi Sato

    Abstract: In accordance with the present invention, there is provided an air purification device including: a first electrode in the shape of a hollow cylinder having both ends open; a second electrode in the shape of a solid needle having a tip end portion of a predetermined length including a pointed tip; a dielectric member covering the second electrode except the tip end portion; and a power supply for applying a high voltage across the two electrodes in order to create a corona discharge, for generating ozone and ion wind. The dielectric material may be of any type of silicone or plastic (including epoxy) as long as it is inexpensive and easy to mold. The dielectric member is, for example, in the shape of a circular flange, providing ease of maintenance and safety measures as well as permitting effective airflow.

    Abstract translation: 根据本发明,提供了一种空气净化装置,包括:第一电极,其形状为两端敞开的中空筒; 固体针形状的第二电极,其具有包括尖端的预定长度的末端部分; 覆盖除了前端部分之外的第二电极的电介质部件; 以及用于在两个电极两端施加高电压以产生电晕放电以产生臭氧和离子风的电源。 介电材料可以是任何类型的硅树脂或塑料(包括环氧树脂),只要其便宜且易于模塑即可。 电介质构件例如是圆形凸缘的形状,提供易于维护和安全措施以及允许有效的气流。

    Liquid magnetic processing unit
    122.
    发明申请
    Liquid magnetic processing unit 失效
    液磁处理装置

    公开(公告)号:US20020056679A1

    公开(公告)日:2002-05-16

    申请号:US10039510

    申请日:2001-10-23

    Inventor: Takashi Sato

    Abstract: The present invention is directed to provide a liquid magnetic processing unit that can activate a liquid flowing in a thick pipe and can perform water treatment. The liquid magnetic processing unit wound around the pipe in which the liquid flows and that activates the liquid by magnetic force, which comprises a water treatment sections having a band wore around the pipe and magnet housings equipped to the band in an inserting manner and that house a plurality of permanent magnets inside, in which the water processing sections are covered with a case that consists of a non-magnetic material.

    Abstract translation: 本发明旨在提供一种能够激活在厚管中流​​动的液体并可进行水处理的液体磁性处理单元。 液体磁性处理单元缠绕在液体流过的管道中并且通过磁力激活液体,该液体磁性处理单元包括具有围绕管子穿过的带的水处理部分和以插入方式装配到带状物的磁体壳体, 多个永磁体,其中水处理部分被由非磁性材料构成的壳体覆盖。

    Electrostatic filter and method of installation

    公开(公告)号:US10005015B2

    公开(公告)日:2018-06-26

    申请号:US14119045

    申请日:2012-05-14

    Inventor: Ronald L. Bowman

    Abstract: An air filtration system includes a frame directing an airflow through the air filtration system and a media filter disposed in the frame including one or more filtration elements. The system further includes one or more alignment features and one or more sealing elements interactive with the one or more alignment features to prevent incorrect installation of the media filter into the frame. A method of installing a media filter in an air filtration system includes aligning an alignment feature of the media filter with an opening in a frame of the air filtration system and inserting the media filter into the frame. The alignment feature ensures that the media filter is inserted in the frame in a correct orientation.

    Integrated environmental control for electronic equipment enclosures

    公开(公告)号:US10004163B2

    公开(公告)日:2018-06-19

    申请号:US15167747

    申请日:2016-05-27

    Inventor: Frank Smith

    Abstract: Embodiments include systems and methods for integrated control of environmental conditions in an equipment enclosure. For example, a novel airflow inlet structure can be installed into a primary airflow path of the equipment enclosure. The airflow inlet structure can include an integrated electrostatic filter sub-structure and an integrated electromagnetic radiation (EMR) control sub-structure. During operation of equipment within the enclosure, air drawn through the equipment enclosure can flow through the primary airflow path in such a way as to flow through the electrostatic filter sub-structure; and the EMR control sub-structure can control EMR emitted by the equipment, such that EMR leaving the enclosure is attenuated to below a threshold level.

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