SYSTEM AND PROCESS FOR DESIGN OF WEARABLE ARTICLES AND ACCESSORIES

    公开(公告)号:US20200082466A1

    公开(公告)日:2020-03-12

    申请号:US16469602

    申请日:2017-12-13

    Abstract: A process operable uses a computerized system for displaying an article from a set of wearable articles or accessories. The article is displayed based upon a correlation between data indicative of features of mental impression of an article and the displayed article, and the computerized system includes a touch sensitive input device, a process module and a visual display module operably interconnected together via a communication link. The process includes the steps of (1) entering via a touch sensitive input device a first visual representation indicative of at least a portion of a mental impression of an article, wherein the first visual representation is a two-dimensional representation in a first predetermined viewing plane; (ii) in a processor module, comparing during step (i) data derived from input of the first visual representation and other data sets; and (iii) displaying on a visual display module a visual representation of at least a first article corresponding to the other data sets.

    SILICON HAIRSPRING
    12.
    发明申请
    SILICON HAIRSPRING 有权
    硅胶

    公开(公告)号:US20160238994A1

    公开(公告)日:2016-08-18

    申请号:US15045159

    申请日:2016-02-16

    CPC classification number: C30B29/06 C30B33/12 G04B1/145 G04B17/066 G04B17/227

    Abstract: A torque-restoring element for an oscillator for a mechanical timepiece and having an oscillator frequency, said torque restoring element comprising a spiral spring body having a number N turnings with an inner terminal end for engagement with a rotational inertial element via a collet, and an outer terminal for engagement with a stationary cock element, and having a width, a height and a total arc length; wherein the spiral spring body includes a core formed from mono-crystalline silicon wafer oriented along the crystallographic axis ; and wherein the spiral spring body includes at least one peripheral coating of a material having a thermal elastic constant different from that of the core of the spiral spring body so as to maintain the oscillator frequency an oscillator including the torque-restoring element substantially insensitive to variations of ambient temperature.

    Abstract translation: 一种用于机械钟表振荡器并具有振荡器频率的扭矩恢复元件,所述扭矩恢复元件包括螺旋弹簧体,所述螺旋弹簧体具有N个端部,其具有用于通过夹头与旋转惯性元件接合的内部端子, 外部端子,用于与固定旋塞元件接合,并且具有宽度,高度和总弧度长度; 其中所述螺旋弹簧体包括由沿着所述结晶轴<110>取向的单晶硅晶片形成的芯; 并且其中所述螺旋弹簧体包括具有与所述螺旋弹簧体的芯的热弹性常数不同的热弹性常数的材料的至少一个外围涂层,以便保持所述振荡器频率,所述振荡器包括所述扭矩恢复元件对变化基本不敏感 的环境温度。

    Method of marking a solid state material, and solid state materials marked according to such a method

    公开(公告)号:US10457089B2

    公开(公告)日:2019-10-29

    申请号:US15304843

    申请日:2015-04-16

    Abstract: A method of forming a non-optically detectable identifiable mark at an outer surface of an article formed from a solid state material, said method including the steps of forming a plurality of recesses within a predetermined region of a photoresist 5 applied to an outer surface of an article formed from a solid state material, wherein said plurality of recesses is formed by two-photon absorption lithography and wherein said one or more recesses extend at least partially through the photoresist and from an outer surface of the photoresist and towards said outer surface of the article 10 formed from a solid state material; and applying an etching process such that at least a portion of the outer surface of said article is exposed and etched so as to form a plurality of etched portions extending into said article from the outer surface of the article and corresponding to said plurality of recesses; wherein said predetermined region of said photoresist defines an identifiable mark to be applied to the outer 15 surface of said article; wherein said plurality of etched portions forms the nonoptically identifiable mark on the outer surface of said article; and wherein the maximum width of the etched portions of is less than 200 nm such that the identifiable mark is non-optically detectable in the visible light spectrum.

    METHOD OF MANUFACTURE OF MICRO COMPONENTS, AND COMPONENTS FORMED BY SUCH A PROCESS
    16.
    发明申请
    METHOD OF MANUFACTURE OF MICRO COMPONENTS, AND COMPONENTS FORMED BY SUCH A PROCESS 审中-公开
    微量组分的制备方法,以及这些方法形成的组分

    公开(公告)号:US20170043501A1

    公开(公告)日:2017-02-16

    申请号:US15306477

    申请日:2015-04-22

    Abstract: A method of forming a multi-level component includes the step of forming at least one arrangement of micro trenches in a predetermined arrangement in a mask material by a lithography process. Another step involves applying one or more etching processes to a surface of a component upon which the mask is applied. The micro trenches have either first or second different aspect ratios. In the applying step, the component is etched by an aspect ratio dependent etch (ARDE) process so as to form an arrangement of micro trenches and micro pillars between adjacent micro trenches. Another step involves removing the arrangement of micro pillars from the component by a removal process. There is also a multi-level component made according to the above method with a first portion at a first level and a further portion of a further level different from the first level.

    Abstract translation: 形成多级部件的方法包括通过光刻工艺在掩模材料中以预定布置形成至少一个微沟槽布置的步骤。 另一步骤包括对施加掩模的部件的表面施加一个或多个蚀刻工艺。 微沟槽具有第一或第二不同的纵横比。 在施加步骤中,通过纵横比依赖蚀刻(ARDE)工艺来蚀刻部件,以便在相邻的微沟槽之间形成微沟槽和微柱的布置。 另一个步骤是通过移除过程从组件中移除微柱的排列。 还有根据上述方法制造的多级组件,其中第一部分处于第一级,而另一部分又与第一级不同。

    METHOD OF PROVIDING MARKINGS TO PRECIOUS STONES INCLUDING GEMSTONES AND DIAMONDS, AND MARKINGS AND MARKED PRECIOUS STONES MARKED ACCORDING TO SUCH A METHOD
    18.
    发明申请
    METHOD OF PROVIDING MARKINGS TO PRECIOUS STONES INCLUDING GEMSTONES AND DIAMONDS, AND MARKINGS AND MARKED PRECIOUS STONES MARKED ACCORDING TO SUCH A METHOD 审中-公开
    向包括钻石和钻石在内的重要石碑提供标记的方法,以及根据这种方法标记的标记和标记的重要石碑

    公开(公告)号:US20150101365A1

    公开(公告)日:2015-04-16

    申请号:US14286306

    申请日:2014-05-23

    Abstract: An identifiable mark on a portion of a polished facet of a surface of an article and being identifiable by an optical magnifying viewing device, said identifiable mark comprising a nano-structure formed by a two-dimensional or a three-dimensional lattice of a plurality of discrete nanometer sized recessed or protruded entities, wherein said entities are arranged within a predefined region of said polished facet in a predetermined arrangement in relation to each other and such that an outer interface surface between the facet of the article and air is formed and an inner interface surface between the facet of the article and air is formed. Said predetermined arrangement of said entities is non-uniform and non-periodic arrangement, and wherein said entities are sized and shaped so as to cause optical scattering upon reflection of incident light and the distance from the inner interface surface to the outer interface surface is greater than the amplitude of the non-marked portion of said polished face. Upon reflection of incident light having one or more predetermined wavelengths by said lattice at a predetermined angle of incidence to said lattice, interference due to scattering of light from said lattice is induced such that said reflected light has a variation in intensity providing one or more local maxima of one or more wavelengths. Said mark is identifiable by way of an optical magnifying viewing device inclined at a requisite viewing angle such that a local maxima is detected.

    Abstract translation: 在物品表面的抛光小面的一部分上的可识别的标记并且可由光学放大观察装置识别,所述可识别标记包括由多个或多个的二维或三维网格形成的纳米结构 离散的纳米尺寸的凹入或突出的实体,其中所述实体以相对于彼此的预定布置布置在所述抛光小面的预定区域内,并且使得形成制品的小面与空气之间的外部界面表面, 形成制品的小面与空气之间的界面。 所述实体的所述预定布置是不均匀和非周期性布置,并且其中所述实体的尺寸和形状被设计成在入射光反射时引起光学散射,并且从内部界面表面到外部界面表面的距离更大 比所述抛光面的未标记部分的幅度大。 通过所述格子以预定的入射角对所述格子反射具有一个或多个预定波长的入射光,由于来自所述晶格的光的散射引起的干涉被引起,使得所述反射光具有提供一个或多个局部 一个或多个波长的最大值。 所述标记可通过以必要的视角倾斜的光学放大观察装置来识别,从而检测到局部最大值。

    NANOPARTICLE DELIVERY SYSTEM
    19.
    发明申请

    公开(公告)号:US20220031863A1

    公开(公告)日:2022-02-03

    申请号:US17299568

    申请日:2019-12-03

    Abstract: A conjugate (110) comprising a nanoparticle (210) for delivery of a drug to a treatment site in the body of a subject; a drug molecule (220) releasably linked to said nanoparticle (210), wherein said drug molecule (220) has a therapeutic effect at the treatment site in the body of the subject; and a disease targeting molecule (230) releasably linked to said nanoparticle (210); wherein upon said conjugate (110) being adjacent diseased tissue (240) of a subject, said disease targeting molecule (230) retains the conjugate (110) adjacent said diseased tissue (240); said drug molecule (220) is released from said nanoparticle (110) so as to provide a therapeutic effect to said diseased tissue (240); and said disease targeting molecule (230) is subsequently released from said nanoparticle (210) such that retention of the nanoparticle (210) is released, and such that the nanoparticle (210) is dispersible from said diseased tissue (240).

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