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    • 38. 发明授权
    • Switchable filter with resonators
    • 具有谐振器的可切换滤波器
    • US07586391B2
    • 2009-09-08
    • US11845362
    • 2007-08-27
    • Alexandre VolatierPascal AnceyBertrand Dubus
    • Alexandre VolatierPascal AnceyBertrand Dubus
    • H03H9/54H03H9/70H01L41/083
    • H03H9/60H03H9/583H03H9/584H03H9/587H03H9/588H03H9/589Y10T29/42
    • A switchable filter may include a first acoustic resonator including first electrodes, and a first resonant layer between the first electrodes and having electrostrictive material. The switchable filter may further include a second acoustic resonator including second electrodes, and a second resonant layer between the second electrodes and having electrostrictive material. The second acoustic resonator may be acoustically coupled with the first acoustic resonator. At least one of the first electrodes and at least one of the second electrodes may be arranged between the first resonant layer and the second resonant layer. The electrostrictive material may adjust a resonance and a filter switching of the first and second acoustic resonators as a function of a control voltage applied to terminals of the first and second acoustic resonators. Two electrodes from one of the first electrodes and the second electrodes may be filter input electrodes. Two electrodes from one of the first electrodes and the second electrodes may be filter output electrodes.
    • 可切换滤波器可以包括包括第一电极的第一声谐振器和在第一电极之间并具有电致伸缩材料的第一谐振层。 可切换滤波器还可以包括包括第二电极的第二声谐振器和在第二电极之间并具有电致伸缩材料的第二谐振层。 第二声谐振器可以与第一声谐振器声学耦合。 第一电极中的至少一个和第二电极中的至少一个可以布置在第一谐振层和第二谐振层之间。 电致伸缩材料可以根据施加到第一和第二声谐振器的端子的控制电压来调节第一和第二声谐振器的谐振和滤波器切换。 来自第一电极和第二电极中的一个的两个电极可以是滤波器输入电极。 来自第一电极和第二电极之一的两个电极可以是滤波器输出电极。
    • 39. 发明申请
    • SWITCHABLE FILTER WITH RESONATORS
    • 可调谐滤波器与谐振器
    • US20080129416A1
    • 2008-06-05
    • US11845362
    • 2007-08-27
    • Alexandre VOLATIERPascal AnceyBertrand Dubus
    • Alexandre VOLATIERPascal AnceyBertrand Dubus
    • H03H9/00H01L41/22
    • H03H9/60H03H9/583H03H9/584H03H9/587H03H9/588H03H9/589Y10T29/42
    • A switchable filter may include a first acoustic resonator including first electrodes, and a first resonant layer between the first electrodes and having electrostrictive material. The switchable filter may further include a second acoustic resonator including second electrodes, and a second resonant layer between the second electrodes and having electrostrictive material. The second acoustic resonator may be acoustically coupled with the first acoustic resonator. At least one of the first electrodes and at least one of the second electrodes may be arranged between the first resonant layer and the second resonant layer. The electrostrictive material may adjust a resonance and a filter switching of the first and second acoustic resonators as a function of a control voltage applied to terminals of the first and second acoustic resonators. Two electrodes from one of the first electrodes and the second electrodes may be filter input electrodes. Two electrodes from one of the first electrodes and the second electrodes may be filter output electrodes.
    • 可切换滤波器可以包括包括第一电极的第一声谐振器和在第一电极之间并具有电致伸缩材料的第一谐振层。 可切换滤波器还可以包括包括第二电极的第二声谐振器和在第二电极之间并具有电致伸缩材料的第二谐振层。 第二声谐振器可以与第一声谐振器声学耦合。 第一电极中的至少一个和第二电极中的至少一个可以布置在第一谐振层和第二谐振层之间。 电致伸缩材料可以根据施加到第一和第二声谐振器的端子的控制电压来调节第一和第二声谐振器的谐振和滤波器切换。 来自第一电极和第二电极之一的两个电极可以是滤波器输入电极。 来自第一电极和第二电极之一的两个电极可以是滤波器输出电极。
    • 40. 发明授权
    • Method of predicting the formation of water condensation
    • 预测水凝结形成的方法
    • US5741067A
    • 1998-04-21
    • US620532
    • 1996-03-25
    • Michel GschwindPascal Ancey
    • Michel GschwindPascal Ancey
    • G01N27/12G01N25/68G01N27/00G01N25/12
    • G01N25/68
    • A method of predicting the formation of water condensation on a surface in contact with humid air includes the steps of placing on the surface an element that adopts initially a temperature approximately equal to a temperature of the surface. The element is thermally cycled. Each cycle includes a cooling phase and a heating phase. The cooling phase includes first and second steps. Electric current is supplied to a cooling mechanism in the first step of the cooling phase to decrease the temperature of the element to below the temperature of the surface. An electric current is supplied to the cooling mechanism in the second step of the cooling phase to further decrease the temperature of the element. The current of the first step is greater than the current of the second step, such that the temperature of the element decreases more rapidly in the first step than in the second step. The formation of water condensation on the surface is predicted based upon the formation of water condensation on the element.
    • 预测与潮湿空气接触的表面上的水冷凝形成的方法包括以下步骤:在表面上放置初始温度大约等于表面温度的元件。 元件热循环。 每个循环包括冷却阶段和加热阶段。 冷却阶段包括第一和第二步骤。 在冷却阶段的第一步骤中,向冷却机构供给电流,将元件的温度降低至表面温度以下。 在冷却阶段的第二步骤中,向冷却机构供给电流,进一步降低元件的温度。 第一步骤的电流大于第二步骤的电流,使得元件的温度在第一步骤中比在第二步骤中更快地降低。 基于在元件上形成水凝结来预测表面上的水凝结的形成。