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    • 1. 发明申请
    • TACTILE CONTROL ARRANGEMENT FOR ELECTRICAL OR ELECTRONIC DEVICES INTEGRATED IN A TEXTILE SUPPORT
    • 电子或电子设备的手机控制装置集成在纺织品支持中
    • WO2014001843A1
    • 2014-01-03
    • PCT/IB2012/053230
    • 2012-06-26
    • ORANGE S.R.L.FONDAZIONE ISTITUTO ITALIANO DI TECNOLOGIAMAGGIALI, MarcoSANDINI, GiulioBOTTINO, Marcello
    • MAGGIALI, MarcoSANDINI, GiulioBOTTINO, Marcello
    • H03K17/96G06F3/02G06F3/044
    • G06F3/016G06F1/163G06F3/0416G06F3/044G06F2203/04102G06F2203/04107H03K17/9622H03K2017/9602H03K2217/94094
    • A tactile control arrangement (10) for at least one electronic device (W, P) including a touch control interface (12) based on a capacitive sensor matrix (S) and a electronic processing module (16) associated to the sensor matrix (S) and arranged to receive therefrom a plurality of electrical signals indicative of the touch or the pressure of an external body on at least one sensor (S) of the matrix and consequent commands to be transmitted towards the above-mentioned electronic device (W, P) is described. The sensor matrix (S) comprises a plurality of active sensor electrodes (E) and a corresponding plurality of conductive tracks (T) for the connection of the active electrodes (E) with the processing module (16). The sensor matrix (S) is formed by a plurality of flexible functional layers (32-48) including a first layer (32) of conductive elastomeric material forming the active electrodes (E) and a second layer (42) of conductive elastomeric material forming the conductive tracks (T) on a plane parallel to the layer (32) of active electrodes (E), which first and second layers (32, 42) of conductive elastomeric material are separated by a flexible layer (40) of insulating material comprising a non-conductive fabric bearing a plurality of vias at the active electrodes (E) of the first layer (32) and the corresponding conductive tracks (T) of the second layer (42), wherein the layers (32, 42) of active electrodes (E) and conductive tracks (T) are deformed so as to directly contact through the vias of the non-conductive textile layer (40).
    • 一种用于至少一个电子设备(W,P)的触觉控制装置(10),包括基于电容式传感器矩阵(S)的触摸控制接口(12)和与传感器矩阵(S)相关联的电子处理模块(16) ),并且被布置为从其接收指示矩阵的至少一个传感器(S)上的外部主体的触摸或压力的多个电信号,并且随后的命令将被发送到上述电子设备(W,P )。 传感器矩阵(S)包括用于将有源电极(E)与处理模块(16)连接的多个有源传感器电极(E)和相应的多个导电轨道(T)。 传感器矩阵(S)由多个柔性功能层(32-48)形成,包括形成有源电极(E)的导电弹性材料的第一层(32)和形成的导电弹性体材料的第二层(42) 在平行于有源电极(E)的层(32)的平面上的导电轨道(T),其中导电弹性体材料的第一和第二层(32,42)由绝缘材料的柔性层(40)隔开,包括 在第一层(32)的有源电极(E)和第二层(42)的相应的导电轨道(T)上带有多个通孔的非导电织物,其中活性层(32,42) 电极(E)和导电轨迹(T)变形,以便直接接触非导电织物层(40)的通路。
    • 6. 发明申请
    • APPARATUS FOR MEASURING THE STIFFNESS OF A SAMPLE OF MATERIAL IN A PLURALITY OF DIRECTIONS LAYING IN A SAME PLANE
    • 用于测量在同一平面上铺设多个方向的材料样品的强度的装置
    • WO2012164538A1
    • 2012-12-06
    • PCT/IB2012/052776
    • 2012-06-01
    • FONDAZIONE ISTITUTO ITALIANO DI TECNOLOGIAMASIA, LorenzoSANDINI, Giulio
    • MASIA, LorenzoSANDINI, Giulio
    • G01N3/34A61B5/22
    • G01N3/32G01N3/04G01N3/40G01N2203/0037G01N2203/0076G01N2203/0254
    • The apparatus (10) comprises: deformation means (14, 28, 32, 44) arranged to bring about cyclically on the sample of material (S) a deformation cycle comprising a predetermined displacement (Δ1) along a direction of deformation (x 1 , x 2 , X i , x 8 ), moving means (12, 16, 18) arranged to vary each time the direction of deformation (x 1 , x 2 , X i , x 8 ), and force sensor means (34) arranged to be connected to the sample of material (S) to detect, during each deformation cycle, the reaction force (F 1 , F 2 , F i , F 8 ) applied on the sample of material (S) along the direction of deformation (x 1 , x 2 , X i , x 8 ). The deformation means (14, 28, 32, 44) are configured in such a manner that the direction of deformation (x 1 , x 2 , X i , x 8 ) is a radial direction perpendicular to an axis of rotation (z), and the moving means (12, 16, 18) are arranged to vary the direction of deformation (x 1 , x 2 , X i , x 8 ) by rotation about that axis of rotation (z).
    • 设备(10)包括:变形装置(14,28,32,44),其布置成循环地在材料样品(S)上带来一个变形周期,该变形循环包括沿变形方向(x1, x2,Xi,x8),被布置成每当变形(x1,x2,Xi,x8)和力传感器装置(34)布置成连接到样品的方向 在每个变形循环期间,沿着变形方向(x1,x2,Xi,x8)施加在材料样品(S)上的反作用力(F1,F2,Fi,F8)的材料(S)。 变形装置(14,28,32,44)的构造使得变形方向(x1,x2,Xi,x8)是垂直于旋转轴线(z)的径向方向,移动装置 (12,16,18)被布置成通过绕该旋转轴线(z)旋转来改变变形方向(x1,x2,Xi,x8)。
    • 7. 发明申请
    • OPEN MAGNETIC ASSEMBLY WITH THREE ACTIVE SIDES, IN PARTICULAR FOR MAGNETIC RESONANCE IMAGING
    • 具有三个主动面的磁性组件,特别是用于磁共振成像
    • WO2012131635A1
    • 2012-10-04
    • PCT/IB2012/051557
    • 2012-03-30
    • FONDAZIONE ISTITUTO ITALIANO DI TECNOLOGIABERTORA, FrancoVIALE, AndreaBORCETO, AliceSANDINI, Giulio
    • BERTORA, FrancoVIALE, AndreaBORCETO, AliceSANDINI, Giulio
    • G01R33/38G01R33/3875
    • G01R33/3806G01R33/3875
    • What is described is an open - structure magnetic assembly comprising a first and a second source of magnetic field (10, 20), which define a magnet cavity (C) open at least at a side. The first source of magnetic field (10) comprises a magnetic structure having a C- shaped volume, including a middle portion (12) defining a back wall of the cavity (C) and a pair of lateral portions (14) forming at the ends respective facing poles (N, S), which is arranged for generating in a gap region a substantially uniform magnetic field component oriented along the direction connecting the poles. The second source of magnetic field (20) comprises at least one winding extended around a portion (12; 14) of the magnetic structure so as to have a plurality of conducting sections lying on a surface within the cavity, adapted to be passed through by a unidirectional current flow whereby they generate in the space volume facing them a second substantially unidirectional magnetic field having an orientation congruent with that of the first magnetic field generated by the first source (10).
    • 所描述的是包括第一和第二磁场源(10,20)的开放结构的磁性组件,其限定至少在一侧开口的磁体空腔(C)。 第一磁场源(10)包括具有C形容积的磁结构,包括限定空腔(C)的后壁的中间部分(12)和形成在端部的一对横向部分(14) 各个相对的极(N,S),其布置成在间隙区域中沿着连接极的方向定向的基本上均匀的磁场分量。 所述第二磁场源(20)包括围绕所述磁性结构的一部分(12; 14)延伸的至少一个绕组,以便具有位于所述空腔内的表面上的多个导电部分,其适于通过 单向电流,由此它们在面向它们的空间体积中产生具有与由第一源(10)产生的第一磁场的方向一致的方向的第二基本单向磁场。