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    • 2. 发明申请
    • TUNABLE INDUCTIVE COMPONENT AND USE OF THE COMPONENT
    • 可调的电感元件和部件来
    • WO2008145478A2
    • 2008-12-04
    • PCT/EP2008055445
    • 2008-05-05
    • SIEMENS AGGOETSCH DIETERMATZ RICHARD
    • GOETSCH DIETERMATZ RICHARD
    • H01F21/08G01L9/007H01F10/20H01F10/265H01F21/02
    • The invention relates to a tunable inductive component comprising at least one ceramic multi-layer body having at least one ferrite layer having ferritic material and at least one coil integrated in the volume of the multi-layer body. A permeability of the ferrite layer is dependent on a mechanical stress acting on the ferrite layer, the coil being integrated in the volume of the multi-layer body such that an inductivity of the coil is dependent on the permeability of the ferrite layer, and a means for transferring the mechanical stress to the ferrite layer is provided, so that the permeability of the ferrite layer can be adjusted. The means for transferring the mechanical stress is, for example, an integrated piezo-element. The tunable inductive component is used in filter or oscillator circuits. The component can also be used as a pressure sensor.
    • 本发明涉及一种可调的电感成分,其包含至少一种陶瓷层叠体与铁素体材料的至少一个铁氧体层和至少一个集成在多层体线圈的体积。 在这种情况下,铁素体层的渗透性受作用在铁素体层时,集成在多层体,该铁素体层的渗透性的线圈的电感取决于的体积这样的方式在线圈上的机械应力,以及用于在所述铁素体层上传送的机械应力 本,从而使铁素体层的渗透性可调节。 用于传送机械应力的装置是例如一个集成的压电元件。 使用发现于滤波器或振荡器电路可调谐电感分量。 的组分也可以用作压力传感器。
    • 3. 发明申请
    • SUBSTRATE COMPRISING A TUNEABLE ELECTRICAL COMPONENT AND USE OF THE SAME
    • 具有可调电子部件的基板以及基板与部件的使用
    • WO2005034593A3
    • 2005-06-30
    • PCT/EP2004052067
    • 2004-09-07
    • SIEMENS AGDERNOVSEK OLIVERMATZ RICHARDNEAINI ASHKANSCHUH CARSTENWERSING WOLFRAM
    • DERNOVSEK OLIVERMATZ RICHARDNEAINI ASHKANSCHUH CARSTENWERSING WOLFRAM
    • H01P1/18H01P9/00H05K1/02H05K1/03H05K1/16
    • H01P9/00H01P1/184H05K1/0272H05K1/0306H05K1/16H05K1/162H05K1/165H05K2203/0776H05K2203/171
    • The invention relates to a substrate (1) comprising at least one tuneable electrical component (2, 22). According to the invention, a volume section (11) of the substrate is provided with at least one cavity (3) that is partially filled with a continuous strip (4) of fluid having a determined electrical property in such a way that the position of the strip of fluid in the cavity can be modified. Said fluid strip is arranged in the cavity such that an electrical operating variable of the electrical component can be modified by a modification of the position of the fluid strip. The invention enables a concept described as "software defined radio" to be implemented. The position of the fluid strip can be modified in any way, enabling both a digital and a continuous modification of the operating variable of the tuneable electrical component to be achieved. Preferably, the substrate is a ceramic multilayer substrate formed by low temperature co-fired ceramics technology. The inventive substrate provided with the component is used, for example, for tuning the frequency of a mobile radio telephone.
    • 本发明涉及一种基片(1),具有至少一个可调谐电部件(2,22),在所述基板的体积部分(11)的至少一个空腔(3)被布置,部分地填充有流体的连续带(4)的流体的 填充一个特定的电特性,使得流体带的位置可以在空腔被改变和流体体积被布置在所述腔中,使得所述电部件的电操作变量可以通过改变流体的空腔中的带的位置而改变。 通过本发明,可以实现被称为“软件定义无线电”的概念。 流体带的位置可以任意改变。 这使得可以实现可调电气部件的操作尺寸的数字连续变化和连续变化。 优选地,衬底是LTCC(低温共烧陶瓷)技术中的多层陶瓷衬底。 具有该装置的基板例如用于移动电话的频率调谐。
    • 4. 发明申请
    • X-RAY DETECTOR MODULE
    • RAY检测器模块
    • WO2011018287A2
    • 2011-02-17
    • PCT/EP2010060018
    • 2010-07-13
    • SIEMENS AGMATZ RICHARD
    • MATZ RICHARD
    • H01L31/08
    • H01L31/18H01L31/085
    • The invention relates to the design of a semiconducting, imaging x-ray detector module having internal polarization compensation. In a first embodiment, the x-ray detector module comprises a plurality of semi-insulating semiconductor layers for detecting x-ray radiation, wherein a layer that is highly doped over the entire surface is arranged as an intermediate layer between two semiconductor layers, respectively. The x-ray detector module is designed as a monolithic block. The intermediate layer is so thin that the charge concentrations created by absorption of an x-ray quantum pass through said layer substantially undisrupted and can drift further in the field of the subsequent detector layer. In an alternative non-monolithic embodiment, metal contact surfaces are arranged on the top side and on the bottom side of the semi-insulating detector layers. The contact surfaces that are located on opposing surfaces of two neighboring detector layers are electrically connected to one another by a dielectric substrate, such as a circuit board. Said contact surfaces are, as in the monolithic version, connected to a mean electrical potential via corresponding supply lines and connected to electronics for reading out the detector signals pixel by pixel.
    • 本发明涉及一种具有内部偏振补偿的半导体,成像X射线探测器模块的结构。 X射线检测器模块包括第一实施例中,多个用于检测X射线半绝缘半导体层,一个非常高度掺杂的表面层被分别设置为两个HaIbleiterlagen之间的中间层。 X射线检测器模块被构造为整体块。 该中间电平是如此之薄,通过X射线量子的电荷云的吸收接收通过它在很大程度上未受干扰的通雏鸭信息,并可以继续在随后的检测器位置的场漂移。 在一个替代方案中,非单片实施例中,每个金属接触区域被布置在顶部和半绝缘层检测器的下侧。 分别位于两个相邻的检测器层的相对表面上的那些接触面,例如是电介质基板上。电连接在一起的印刷电路板。 这些接触表面被定义为在通过相应的进料管线的单片版本到一个中间电势,并且连接到电子器件的检测器信号的逐像素读出。