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    • 12. 发明申请
    • ALL-DIFFERENTIAL RESONANT NANOSENSOR APPARATUS AND METHOD
    • 全差异共振纳米传感器装置及方法
    • US20110113856A1
    • 2011-05-19
    • US12617893
    • 2009-11-13
    • Cornel CobianuBogdan Serban
    • Cornel CobianuBogdan Serban
    • G01N29/02
    • G01N29/022G01N29/036G01N29/30G01N29/4436G01N2291/0256G01N2291/0427H03H9/2447
    • An all-differential resonant nanosensor apparatus for detecting multiple gasses and method of fabricating the same. The nanosensor apparatus generally includes a sensing loop, a reference loop, and a mixer. A sensing self assembled monolayer (SAM) or an ultrathin solid monolayer may be deposited on a sensing resonant beam associated with the sensing loop to detect the presence of the gas. A reference self assembled monolayer or an ultrathin solid film may be deposited on a reference resonant beam that possess similar visco-elastic properties (e.g., temperature, humidity and aging) as the sensing monolayer with no sensing properties. A differential reading electronic circuit may be interconnected with each resonant beam pair for signal processing. A drift-free frequency signal per each gas may be obtained by subtracting the frequency response from the sensing loop and the reference loop.
    • 一种用于检测多种气体的全差分谐振纳米传感器装置及其制造方法。 纳米传感器装置通常包括感测回路,参考回路和混合器。 感测自组装单层(SAM)或超薄固体单层可以沉积在与感测环相关联的感测谐振束上,以检测气体的存在。 参考自组装单层或超薄固体膜可以沉积在参考谐振光束上,该参考谐振光束具有与感测单层相似的粘弹性(例如温度,湿度和老化),没有感测特性。 差分读取电子电路可以与用于信号处理的每个谐振束对互连。 可以通过从感测回路和参考回路中减去频率响应来获得每个气体的无漂移频率信号。
    • 13. 发明授权
    • Data input device
    • 数据输入设备
    • US07800586B2
    • 2010-09-21
    • US10535399
    • 2003-11-24
    • Bogdan SerbanPhilippe Boyer
    • Bogdan SerbanPhilippe Boyer
    • G09G5/00
    • H03K17/9625H01H13/70H01H2239/012H03M11/24
    • A data input device including plural keys that are arranged over at least two lines. A unidirectional position detector is associated with each line of keys and each unidirectional position detector includes a first input connection, a second input connection, and an output connection. The output connections of the unidirectional position detectors are connected at different locations to a first ohmic resistor. In addition, the first input connections are connected to a first terminal of the data input device and the second input connections are connected to a second terminal of the data input device.
    • 一种数据输入装置,包括布置在至少两条线上的多个键。 单向位置检测器与每行键相关联,并且每个单向位置检测器包括第一输入连接,第二输入连接和输出连接。 单向位置检测器的输出连接在不同的位置连接到第一欧姆电阻。 此外,第一输入连接被连接到数据输入装置的第一端,而第二输入连接连接到数据输入装置的第二端。
    • 15. 发明申请
    • Capacitive pressure sensor
    • 电容式压力传感器
    • US20080202251A1
    • 2008-08-28
    • US11679613
    • 2007-02-27
    • Bogdan SerbanPhilippe BoyerAloyse Schoos
    • Bogdan SerbanPhilippe BoyerAloyse Schoos
    • G01L1/14H01G9/00
    • G01L1/142G01L9/0072H03K17/962
    • A capacitive pressure comprises a laminated arrangement with a first flexible, electrically insulating carrier film carrying a first capacitor electrode, a second flexible, electrically insulating carrier film carrying a second capacitor electrode and a flexible, electrically insulating spacer film sandwiched between the first and second carrier films. The spacer film has a through-hole or recess therein, with respect to which the first and second capacitor electrodes are arranged opposite one another, in such a way that the first and second electrodes are brought closer together by resilient bending of the first and/or second carrier film into the through-hole or recess under the action of a compressive force acting on the pressure sensor.
    • 电容压力包括具有承载第一电容器电极的第一柔性电绝缘载体膜的层压装置,承载第二电容器电极的第二柔性电绝缘载体膜和夹在第一和第二载体之间的柔性电绝缘隔离膜 电影。 间隔膜在其中具有通孔或凹槽,第一和第二电容器电极相对于第一和第二电容器电极彼此相对布置,使得第一和第二电极通过第一和/ 或第二载体膜在作用在压力传感器上的压缩力的作用下进入通孔或凹部。
    • 16. 发明申请
    • Input Device
    • 输入设备
    • US20080018611A1
    • 2008-01-24
    • US11679535
    • 2007-02-27
    • Bogdan SerbanPhilippe BoyerAloyse Schoos
    • Bogdan SerbanPhilippe BoyerAloyse Schoos
    • G06F3/041
    • G06F3/045G06F3/0416G06F3/044G06F2203/04103H03K17/975
    • An input device comprises a capacitive proximity and pressure sensor, which includes a first carrier layer, a second carrier layer and a spacer arranged between the first and second carrier layers, the first carrier layer having a first capacitor electrode applied thereon, the second carrier layer having a second capacitor electrode applied thereon, the first and second capacitor electrodes being arranged opposite one another with respect to the spacer in such a way that, in response to a compressive force acting on the pressure sensor, the first and second capacitor electrodes are brought closer together. The input device further comprises a control circuit configured so as to operate in at least two modes of operation, including a first and a second mode of operation. The control circuit determines, while in the first mode of operation, a quantity indicative of a capacitance between the first capacitor electrode and ground and, while in the second mode of operation, a quantity indicative of a capacitance between the first capacitor electrode and the second capacitor electrode.
    • 输入装置包括电容式接近和压力传感器,其包括第一载体层,第二载体层和布置在第一和第二载体层之间的间隔物,第一载体层具有施加在其上的第一电容器电极,第二载体层 具有施加在其上的第二电容器电极,所述第一和第二电容器电极相对于所述间隔件彼此相对地布置,使得响应于作用在压力传感器上的压缩力,使第一和第二电容器电极被带到 靠近在一起 该输入装置还包括控制电路,该控制电路配置成在包括第一和第二操作模式的至少两种操作模式下工作。 控制电路在第一操作模式中确定表示第一电容器电极和地之间的电容的量,而在第二操作模式中,指示第一电容器电极和第二电容器电极之间的电容量 电容电极。
    • 19. 发明授权
    • Position detection device
    • 位置检测装置
    • US08184106B2
    • 2012-05-22
    • US10553657
    • 2004-04-13
    • Bogdan Serban
    • Bogdan Serban
    • G06F3/045
    • G06F3/045G06F3/0414
    • A position detection device including a substrate; a first ohmic resistor applied to the substrate and extending along an active surface of the position detector, whereby the first ohmic resistor is connected between a first terminal and a second terminal of the position detection device; a plurality of electric conductors connected to the first ohmic resistor at places that are distinct therefrom, the electric conductors extending from the first ohmic resistor inside the active surface alternating between the first electric conductors, whereby one first end of the conductor elements is connected to a third terminal of the position detection device. The conductor elements are configured as ohmic resistors extending through the active surface of the device and a second end of the conductor elements is connected to a fourth terminal of the position detection device.
    • 一种位置检测装置,包括:基板; 第一欧姆电阻器,其被施加到所述基板并且沿着所述位置检测器的有效表面延伸,由此所述第一欧姆电阻器连接在所述位置检测装置的第一端子和第二端子之间; 在与第一欧姆电阻不同的地方连接到第一欧姆电阻器的多个电导体,从第一欧姆电阻器延伸到有源表面内部的电导体在第一电导体之间交替,由此导体元件的一个第一端连接到 位置检测装置的第三端子。 导体元件被配置为延伸穿过器件的有源表面的欧姆电阻器,并且导体元件的第二端连接到位置检测器件的第四端子。