MULTI-PHASE TRANSFORMER AND TRANSFORMATION SYSTEM
    1.
    发明申请
    MULTI-PHASE TRANSFORMER AND TRANSFORMATION SYSTEM 有权
    多相变压器和变压系统

    公开(公告)号:US20130113587A1

    公开(公告)日:2013-05-09

    申请号:US13809393

    申请日:2011-07-22

    CPC classification number: H01F30/12 H01F27/2847 H01F27/2871

    Abstract: Provided are a multi-phase transformer having an easier-producible structure, and a transformation system wherein a plurality of such transformers are serially connected. Disclosed is a three-phase transformer (Tra) provided with three coils (1u, 1v, 1w) and a pair of magnetic members (21, 22) respectively provided on opposite ends in the axial direction of the coils (1u, 1v, 1w), wherein the coils (1u, 1v, 1w) are respectively provided with first and second sub-coils (11u, 12u; 11v, 12v; 11w, 12w).

    Abstract translation: 提供一种具有更容易制造的结构的多相变压器,以及其中多个这样的变压器串联连接的变换系统。 公开了一种具有三个线圈(1u,1v,1w)的三相变压器(Tra)和分别设置在线圈(1u,1v,1w)的轴向两端的相对端的一对磁性部件(21,22) ),其中线圈(1u,1v,1w)分别设置有第一和第二子线圈(11u,12u; 11v,12v; 11w,12w)。

    REACTOR
    2.
    发明申请
    REACTOR 有权
    反应堆

    公开(公告)号:US20130063237A1

    公开(公告)日:2013-03-14

    申请号:US13698269

    申请日:2011-05-12

    CPC classification number: H01F37/00 H01F3/06 H01F3/10 H01F27/2847

    Abstract: A core member (2) of the disclosed reactor (Da) comprises a magnetic wire material and is arranged outside a plurality of coils (1). As the core member (2) in the reactor (Da) having this structure is a wire material and is arranged outside the plurality of coils (1), the core member (2) can be formed by the winding of the wire material, simplifying manufacturing.

    Abstract translation: 所公开的反应器(Da)的芯体(2)包括一个磁线材,并且布置在多个线圈(1)的外侧。 由于具有这种结构的反应器(Da)中的芯构件(2)是线材,并且布置在多个线圈(1)的外侧,所以可以通过线材的卷绕来形成芯构件(2),从而简化 制造业。

    Method to raise accuracy of targeting the segmentation for sample distribution
    3.
    发明授权
    Method to raise accuracy of targeting the segmentation for sample distribution 失效
    提高样本分配分割的准确性的方法

    公开(公告)号:US08321436B2

    公开(公告)日:2012-11-27

    申请号:US10959116

    申请日:2004-10-07

    Abstract: To enhance the targeting accuracy in providing services such as provision of samples for members by performing management of member information and authentication while securing personal anonymity. There is provided a center server and a store terminal. The center server gives a unique ID to a member application, sends it to a particular mobile information terminal and manages it as authentication information about a member who is the user of the mobile information terminal. In response to purchases of a particular article by the member, the store terminal inputs the ID from the mobile information terminal and inputs purchase information about the article the member purchases. The center server then acquires attribute information about a member identified by the ID. Then, by checking the purchase information, the attribute information and service information set in association with attribute information about the member and kinds of articles and stored in particular storage means, information about a service to be provided for the member is identified.

    Abstract translation: 通过在确保个人匿名的同时执行会员信息和身份验证的管理,提高提供服务的定位准确性,例如为会员提供样品。 提供中心服务器和商店终端。 中心服务器为成员应用程序提供唯一的ID,将其发送到特定的移动信息终端,并将其作为关于作为移动信息终端的用户的成员的认证信息进行管理。 响应于成员购买特定文章,商店终端从移动信息终端输入ID并输入关于该会员购买的商品的购买信息。 然后,中心服务器获取关于ID识别的成员的属性信息。 然后,通过检查购买信息,与关于成员的物品和种类的属性信息相关联地设置的存储在特定存储装置中的属性信息和服务信息,识别关于要为会员提供的服务的信息。

    SCORODITE-TYPE IRON-ARSENIC COMPOUND PARTICLES, PRODUCTION METHOD THEREOF, AND ARSENIC-CONTAINING SOLID
    5.
    发明申请
    SCORODITE-TYPE IRON-ARSENIC COMPOUND PARTICLES, PRODUCTION METHOD THEREOF, AND ARSENIC-CONTAINING SOLID 失效
    标准型铁氧化物复合颗粒,其生产方法和含有固体的固体

    公开(公告)号:US20120045382A1

    公开(公告)日:2012-02-23

    申请号:US13266141

    申请日:2010-05-12

    Abstract: Scorodite-type iron-arsenic compound particles in which the particle surface layer part comprise an iron-rich layer having an Fe/As molar ratio of at least 1.24. The particles can be obtained in a reaction process of feeding an oxygen-containing gas to an aqueous solution containing an arsenic(V) ion and an iron(II) ion to precipitate a scorodite-type iron-arsenic compound crystal at a pH of at most 2, in which an oxidizing agent is further added to the liquid before the end of the reaction (treatment A). The particles may also be obtained by a method comprising keeping a scorodite-type iron-arsenic compound particle of good crystallinity in contact with an iron ion-containing aqueous solution having a controlled pH of from 2 to 9 at 0 to 90° C. (treatment B). The scorodite-type iron-arsenic particles have good filterability and excellent arsenic release-preventing effect.

    Abstract translation: 微粒状铁砷化合物颗粒,其中颗粒表面层部分包含Fe / As摩尔比至少为1.24的富铁层。 可以在将含氧气体进料到含有砷(V)离子和铁(II))离子的水溶液的反应过程中获得颗粒,以在pH为at的条件下沉淀出臭葱石型铁砷化合物晶体 最多的2,其中在反应结束之前进一步向液体中加入氧化剂(处理A)。 颗粒也可以通过以下方法获得:在0至90℃下,将具有良好结晶度的臭葱石型铁砷化合物颗粒与受控pH为2至9的含铁离子的水溶液接触。( 治疗B)。 臭葱型铁砷颗粒具有良好的过滤性和优异的防砷防止效果。

    LASER DEVICE AND LASER MODULE
    7.
    发明申请
    LASER DEVICE AND LASER MODULE 审中-公开
    激光器件和激光模块

    公开(公告)号:US20080112444A1

    公开(公告)日:2008-05-15

    申请号:US11965315

    申请日:2007-12-27

    Abstract: A laser module includes a substrate 1, a first laser element 2 placed on the substrate 1, a second laser element 3 placed with an output surface opposed to the first laser element 2 on the substrate 1, and a mirror 7 placed between the first laser element 2 and the second laser element 3. The mirror 7 has a reflective surface capable of reflecting output light from the first laser element 2 or the second laser element 3 in a predetermined direction, and is placed so as to move or rotate between a first position capable of reflecting the output light from the first laser element 2 and a second position capable of reflecting the output light from the second laser element 3. Thus, a laser module can be provided in which high precision, low cost, and miniaturization can be realized.

    Abstract translation: 激光模块包括基板1,放置在基板1上的第一激光元件2,在基板1上设置有与第一激光元件2相对的输出面的第二激光元件3,以及配置在第一激光器 元件2和第二激光元件3。 反射镜7具有反射表面,该反射表面能够沿着预定方向反射来自第一激光元件2或第二激光元件3的输出光,并且能够在能够反射来自第一激光元件2或第二激光元件3的输出光的第一位置之间移动或旋转 第一激光元件2和能够反射来自第二激光元件3的输出光的第二位置。 因此,可以提供可以实现高精度,低成本和小型化的激光模块。

    Powder for underlayer of coating-type magnetic recording medium
    8.
    发明授权
    Powder for underlayer of coating-type magnetic recording medium 有权
    涂层型磁记录介质底层粉末

    公开(公告)号:US07238438B2

    公开(公告)日:2007-07-03

    申请号:US10508033

    申请日:2003-04-02

    CPC classification number: G11B5/738 Y10T428/2982

    Abstract: A powder for an underlayer of a coating-type magnetic recording medium, which powder comprises flat-acicular iron oxide particles having an average major axis length of 20–200 nm, a short axis cross-section taken perpendicularly to the long axis that has a long width and a short width, and a short axis cross-section ratio defined as the ratio of the long width to the short width that is greater than 1.3 and substantially uniform in the long axis direction, the powder having a specific surface area measured by the BET method of 30–100 m2/g. The underlayer powder preferably contains 0.1–5.0 wt % of P and, optionally, an amount of R(R representing one or more rare earth elements, defined as including Y) such that R/Fe expressed in atomic percentage (at. %) is 0.1–10 at. %.

    Abstract translation: 一种用于涂层型磁记录介质底层的粉末,该粉末包含平均长轴长度为20-200nm的扁平针状氧化铁颗粒,垂直于长轴的短轴截面为 长宽度和短宽度,短轴截面比定义为长宽与短宽的比大于1.3并且在长轴方向上基本均匀,所述粉末的比表面积由 BET法为30-100m 2 / g。 底层粉末优选含有0.1-5.0重量%的P和任选的R(R表示一个或多个稀土元素,定义为包括Y)的量,使得以原子百分比(at。%)表示的R / Fe为 0.1-10 at。 %。

    Method of making ferromagnetic iron alloy powder for magnetic recording medium
    9.
    发明授权
    Method of making ferromagnetic iron alloy powder for magnetic recording medium 有权
    制备铁磁铁合金粉末用于磁记录介质的方法

    公开(公告)号:US07166172B2

    公开(公告)日:2007-01-23

    申请号:US11002669

    申请日:2004-12-03

    CPC classification number: G11B5/70621 G11B5/70615 Y10S428/90 Y10T428/2991

    Abstract: A ferromagnetic iron alloy powder for a magnetic recording medium is composed of acicular iron-base particles of an average major axis length (X) of not less than 20 nm and not greater than 80 nm and have oxygen content of not less than 15 wt % and coercive force (Hc) of not less than [0.0036 X3−1.1 X2+110 X−1390 (Oe)] (where X is average major axis length expressed in nm). The ferromagnetic iron alloy powder is obtained by reacting metal powder composed of acicular iron-base particles having an average major axis length of not less than 20 nm and not greater than 80 nm with pure water in substantial absence of oxygen to form a metal oxide film on the particle surfaces. Optionally, the particles can be reacted with a weak oxidizing gas by a wet or dry method.

    Abstract translation: 用于磁记录介质的铁磁性铁合金粉末由平均长轴长(X)不小于20nm且不大于80nm的针状铁基颗粒组成,氧含量不小于15重量% 和矫顽力(Hc)不小于[0.0036×3 -1.1×2 +1×10 -1390(Oe)](其中X是表示的平均长轴长度 nm)。 通过使基本上不含氧的平均长轴长度不小于20nm且不大于80nm的针状铁基颗粒组成的金属粉末与纯水反应形成金属氧化物膜而获得铁磁性铁合金粉末 在颗粒表面。 任选地,颗粒可以通过湿法或干法与弱氧化气体反应。

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