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    • 2. 发明申请
    • SENSOR DEVICE WITH HELICAL ANTENNA AND RELATED SYSTEM AND METHOD
    • 带有天线的传感器装置及相关系统及方法
    • US20110241959A1
    • 2011-10-06
    • US12755123
    • 2010-04-06
    • Ion GeorgescuDana E. GuranIoan PavelescuCornel Cobianu
    • Ion GeorgescuDana E. GuranIoan PavelescuCornel Cobianu
    • H01Q1/36H01Q9/16H01B13/00
    • H01Q11/08H01Q1/3233H01Q1/38
    • An apparatus includes a sensor that receives a first electrical signal and provides a second electrical signal in response to the first electrical signal. The second electrical signal is based on at least one parameter monitored by the sensor. The apparatus also includes an antenna that converts first wireless signals into the first electrical signal and that converts the second electrical signal into second wireless signals. The antenna includes a substrate, conductive traces, and conductive interconnects. The conductive traces are formed on first and second surfaces of the substrate. The conductive interconnects couple the conductive traces, and the conductive interconnects and the conductive traces form at least one helical arm of the antenna. The conductive traces could be formed in various ways, such as by etching or direct printing. The conductive interconnects could also be formed in various ways, such as by filling vias in the substrate or direct printing.
    • 一种装置包括传感器,其接收第一电信号并响应于第一电信号提供第二电信号。 第二电信号基于由传感器监测的至少一个参数。 该装置还包括天线,其将第一无线信号转换成第一电信号并将第二电信号转换成第二无线信号。 天线包括基板,导电迹线和导电互连。 导电迹线形成在基板的第一和第二表面上。 导电互连件耦合导电迹线,并且导电互连和导电迹线形成天线的至少一个螺旋臂。 导电迹线可以以各种方式形成,例如通过蚀刻或直接印刷。 导电互连也可以以各种方式形成,例如通过在基板中填充通孔或直接印刷。
    • 3. 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。
    • 4. 发明授权
    • Method for sensor fabrication and related sensor and system
    • 传感器制造方法及相关传感器及系统
    • US07891252B2
    • 2011-02-22
    • US12362741
    • 2009-01-30
    • Cornel CobianuViorel AvramescuIon GeorgescuStefan-Dan Costea
    • Cornel CobianuViorel AvramescuIon GeorgescuStefan-Dan Costea
    • G01L7/00
    • G01L9/0025B60C23/0408C03C27/00H01L41/1132H01L41/331Y10T29/42
    • A method includes forming multiple trenches in a first wafer, forming a sensor structure on a first surface of a second wafer, and bonding the first wafer and the second wafer. The method also includes etching a second surface of the second wafer to form a sensor diaphragm in the second wafer. The method further includes removing a portion of the first wafer by cutting the first wafer in multiple areas of the first wafer associated with the trenches. A sensor includes a substrate and a surface acoustic wave (SAW) resonator on a first surface of the substrate. The sensor also includes a bonding pad electrically coupled to the SAW resonator and a notch formed in a second surface of the substrate. The sensor further includes a cover separated from the first surface of the substrate by a spacer. The SAW resonator is located between the cover and the substrate.
    • 一种方法包括在第一晶片中形成多个沟槽,在第二晶片的第一表面上形成传感器结构,以及结合第一晶片和第二晶片。 该方法还包括蚀刻第二晶片的第二表面以在第二晶片中形成传感器膜片。 该方法还包括通过在与沟槽相关联的第一晶片的多个区域中切割第一晶片来去除第一晶片的一部分。 传感器包括在基板的第一表面上的基板和表面声波(SAW)谐振器。 传感器还包括电耦合到SAW谐振器的接合焊盘和形成在衬底的第二表面中的凹口。 传感器还包括通过间隔件与衬底的第一表面分离的盖。 SAW谐振器位于盖和基板之间。
    • 7. 发明申请
    • Multifunctional multichip system for wireless sensing
    • 多功能多芯片无线传感系统
    • US20070164859A1
    • 2007-07-19
    • US11331722
    • 2006-01-13
    • Cornel CobianuIon GeorgescuJames CookViorel Avramescu
    • Cornel CobianuIon GeorgescuJames CookViorel Avramescu
    • G08B1/08G08B13/14
    • G06K19/0723G06K19/0716
    • A multifunctional multichip system can operate in a passive mode by using at least one antenna to receive electromagnetic energy and using that energy to perform system functions. The system includes a sensor, an impedance matching circuit and an RFID module. The sensor produces a sensor signal containing a measurement. The RFID can produce an identification signal containing identification information. Alternatively, the RFID chip can be used in an addressing mode wherein the system only produces a signal in response to an addressing signal containing addressing information. The addressing signal is received from the electromagnetic field. In either mode, the sensor signal is coupled from the antenna into the electromagnetic field from which a receiver can obtain it. The signal can contain the identification information as well as the measurement. A matching network minimizes the effects of impedance mismatches between the system elements.
    • 多功能多芯片系统可以通过使用至少一个天线来接收电磁能并使用该能量来执行系统功能,以无源模式操作。 该系统包括传感器,阻抗匹配电路和RFID模块。 传感器产生包含测量值的传感器信号。 RFID可以产生包含识别信息的识别信号。 或者,RFID芯片可以以寻址模式使用,其中系统仅响应于包含寻址信息的寻址信号产生信号。 从电磁场接收寻址信号。 在任一模式中,传感器信号从天线耦合到电磁场中,接收器可从该电磁场获得它。 该信号可以包含识别信息以及测量。 匹配网络可以最大限度地减少系统元件之间阻抗失配的影响。
    • 8. 发明授权
    • Sensor device with helical antenna and related system and method
    • 带螺旋天线的传感器装置及相关系统及方法
    • US09437933B2
    • 2016-09-06
    • US12755123
    • 2010-04-06
    • Ion GeorgescuDana E. GuranIoan PavelescuCornel Cobianu
    • Ion GeorgescuDana E. GuranIoan PavelescuCornel Cobianu
    • H01Q11/08H01Q1/38H01Q1/32
    • H01Q11/08H01Q1/3233H01Q1/38
    • An apparatus includes a sensor that receives a first electrical signal and provides a second electrical signal in response to the first electrical signal. The second electrical signal is based on at least one parameter monitored by the sensor. The apparatus also includes an antenna that converts first wireless signals into the first electrical signal and that converts the second electrical signal into second wireless signals. The antenna includes a substrate, conductive traces, and conductive interconnects. The conductive traces are formed on first and second surfaces of the substrate. The conductive interconnects couple the conductive traces, and the conductive interconnects and the conductive traces form at least one helical arm of the antenna. The conductive traces could be formed in various ways, such as by etching or direct printing. The conductive interconnects could also be formed in various ways, such as by filling vias in the substrate or direct printing.
    • 一种装置包括传感器,其接收第一电信号并响应于第一电信号提供第二电信号。 第二电信号基于由传感器监测的至少一个参数。 该装置还包括天线,其将第一无线信号转换成第一电信号并将第二电信号转换成第二无线信号。 天线包括基板,导电迹线和导电互连。 导电迹线形成在基板的第一和第二表面上。 导电互连件耦合导电迹线,并且导电互连和导电迹线形成天线的至少一个螺旋臂。 导电迹线可以以各种方式形成,例如通过蚀刻或直接印刷。 导电互连也可以以各种方式形成,例如通过在基板中填充通孔或直接印刷。
    • 9. 发明授权
    • System for monitoring structural assets
    • 监测结构性资产的制度
    • US08479590B2
    • 2013-07-09
    • US12949113
    • 2010-11-18
    • Cornel CobianuFrank TurnbullIon GeorgescuViorel Avramescu
    • Cornel CobianuFrank TurnbullIon GeorgescuViorel Avramescu
    • G01N29/04G01N3/00
    • G01N29/2462G01N29/223G01N2291/0232G01N2291/2634
    • A system for detection of stress and deformation in a structural asset, for instance, one of reinforced concrete. An area on the asset may have a structure interface, such as a patch, attached to it with a fastening mechanism which may be a layer of an epoxy or other material, or be items such as screws, bolts, welds, or the like. One or more surface acoustic wave (SAW) strain sensors may be attached to the interface with an adhesive layer of epoxy or other material, or with mechanical items. Stress may be transmitted by the interface to the strain sensors. The sensors may be interrogated with a wire or wireless reader to obtain strain measurements. The measurements may indicate stress and deformations such as bulges and breaks in the asset. The measurements may also be a basis for determining location and extent of the stress and deformations.
    • 一种用于检测结构资产中的应力和变形的系统,例如钢筋混凝土之一。 资产上的区域可以具有附接到其上的结构界面,例如贴片,其具有可以是环氧树脂或其它材料层的紧固机构,或者诸如螺钉,螺栓,焊接等的物品。 一个或多个表面声波(SAW)应变传感器可以与环氧树脂或其它材料或机械物品的粘合剂层附接到界面。 应力可以通过接口传递到应变传感器。 传感器可以用线或无线读取器询问以获得应变测量值。 测量结果可能表示压力和变形,如资产中的凸起和断裂。 测量也可能是确定应力和变形的位置和程度的基础。