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    • 5. 发明授权
    • Magnetostrictive strain sensor (airgap control)
    • 磁致伸缩应变传感器(气隙控制)
    • US07234361B2
    • 2007-06-26
    • US11034440
    • 2005-01-11
    • Bruno P. B. LequesneThaddeus SchroederDonald T. MorelliThomas A. Baudendistel
    • Bruno P. B. LequesneThaddeus SchroederDonald T. MorelliThomas A. Baudendistel
    • G01B7/16G01B5/30
    • G01L1/127G01L1/125
    • A sensor assembly for measuring force along an axis (F) comprises an inductance coil extending around the axis (F) for establishing a loop of magnetic flux looping axially through the coil and extending around the axis (F) to define a donut shaped ring of magnetic flux surrounding the axis (F). A core of magnetostrictive material provides a primary path for the magnetic flux in a first portion of the loop of magnetic flux and a magnetic carrier provides a return path for magnetic flux in a second portion of the loop of magnetic flux as the magnetic flux circles the coil through the core and the carrier. A first interface extends radially between the core and the carrier whereby the core and the carrier are urged together at the interface in response to a force applied parallel to the axis (F). Various embodiments or combinations of the core and carrier are illustrated in FIGS. 3–7.
    • 用于沿轴线(F)测量力的传感器组件包括围绕轴线(F)延伸的电感线圈,用于沿轴线(F)绕轴线(F)建立一个环绕磁通量的环路,并且围绕轴线(F)延伸以形成环形环 围绕轴线(F)的磁通量。 磁致伸缩材料的核心提供磁通环路的第一部分中的磁通量的主路径,并且磁性载体在磁通环路的第二部分中提供用于磁通量的返回路径, 线圈通过芯和载体。 第一界面在芯体和载体之间径向延伸,由此芯体和载体响应于平行于轴线(F)施加的力而在界面处被推动在一起。 图1和图2中示出了芯和载体的各种实施例或组合。 3-7。
    • 6. 发明授权
    • Sensor assembly having embedded wires within a powder metal core and a
method therefor
    • 传感器组件在粉末金属芯内具有嵌入的线及其方法
    • US5315245A
    • 1994-05-24
    • US983064
    • 1992-11-25
    • Thaddeus SchroederChi H. LeungBruno P. B. LequesneRobert W. Ward
    • Thaddeus SchroederChi H. LeungBruno P. B. LequesneRobert W. Ward
    • G01R33/09H01L43/02G01R33/06G01B7/14G01R3/00H01F1/06
    • G01R33/09H01L43/02Y10T29/49007Y10T29/49076
    • A semiconductor magnetoresistive sensor and a method for its assembly is specifically provided. The preferred assembly method of this invention is compatible with automated semiconductor chip placement and packaging technology, so as to alleviate the previous requirement that the semiconductor sensing element be separately packaged. The sensor leads are substantially embedded within a powdered metal permanent magnet body. An exposed terminal end of each lead is available for electrical and adhesive contact to a subsequently attached magnetoresistive semiconductor sensing element, using conventional semiconductor placement and packaging techniques. The powdered metal magnetic body is preferably formed by utilizing powder metal compaction techniques, wherein the powder metal is compacted around the interior electrical leads. The teachings of this invention may also be employed to form a variety of electrical sensors and devices, wherein the leads are substantially embedded within a metal core so as to produce a solid assembly. The embedded leads may have a variety of shapes, such as straight or coiled, may range in number from one to a plurality, and may have a variety of physical properties, such as magnetic or non-magnetic, depending on the desired application.
    • 具体地提供半导体磁阻传感器及其组装方法。 本发明的优选组装方法与自动半导体芯片放置和封装技术相兼容,以便减轻半导体传感元件分开封装的先前要求。 传感器引线基本上嵌入粉末状金属永磁体内。 使用常规的半导体放置和封装技术,每个引线的暴露端子可用于与随后附接的磁阻半导体感测元件的电和粘合接触。 粉末状金属磁体优选通过利用粉末金属压实技术形成,其中粉末金属在内部电引线周围压实。 本发明的教导也可用于形成各种电传感器和装置,其中引线基本上嵌入在金属芯内以便产生固体组件。 嵌入式引线可以具有各种形状,例如直线或卷绕,其数量可以在一个至多个的范围内,并且可以具有各种物理性质,例如磁性或非磁性,这取决于所需的应用。