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    • 2. 发明申请
    • MEMS VASCULAR SENSOR
    • MEMS血管传感器
    • US20120215121A1
    • 2012-08-23
    • US13461716
    • 2012-05-01
    • Tzung K. HsiaiGopikrishnan SoundararajanEun Sok KimHongyu YuMahsa RouhanizadehChristina Tiantian Lin
    • Tzung K. HsiaiGopikrishnan SoundararajanEun Sok KimHongyu YuMahsa RouhanizadehChristina Tiantian Lin
    • A61B5/027
    • B81C1/00246G01N3/24
    • A micromachined sensor for measuring vascular parameters, such as fluid shear stress, includes a substrate having a front-side surface, and a backside surface opposite the front-side surface. The sensor includes a diaphragm overlying a cavity etched within the substrate, and a heat sensing element disposed on the front-side surface of the substrate and on top of the cavity and the diaphragm. The heat sensing element is electrically couplable to electrode leads formed on the backside surface of the substrate. The sensor includes an electronic system connected to the backside surface and configured to measure a change in heat convection from the sensing element to surrounding fluid when the sensing element is heated by applying an electric current thereto, and further configured to derive from the change in heat convection vascular parameters such as the shear stress of fluid flowing past the sensing element.
    • 用于测量诸如流体剪切应力的血管参数的微加工传感器包括具有前侧表面的基底和与前侧表面相对的背侧表面。 传感器包括覆盖在衬底内蚀刻的空腔的膜片,以及设置在衬底的前侧表面上并且在空腔和隔膜顶部上的感热元件。 热敏元件可电连接到形成在基板的背面上的电极引线。 所述传感器包括连接到所述背面的电子系统,并且被配置为当通过向其施加电流来加热所述感测元件时,测量从所述感测元件到周围流体的热对流变化,并进一步被配置为从热变化 对流血管参数,例如流过感测元件的流体的剪切应力。
    • 3. 发明授权
    • MEMS vascular sensor
    • MEMS血管传感器
    • US08216434B2
    • 2012-07-10
    • US12041577
    • 2008-03-03
    • Tzung K. HsiaiGopikrishnan SoundararajanEun Sok KimHongyu YuMahsa RouhanizadehChristina Tiantian Lin
    • Tzung K. HsiaiGopikrishnan SoundararajanEun Sok KimHongyu YuMahsa RouhanizadehChristina Tiantian Lin
    • C23C14/34
    • B81C1/00246G01N3/24
    • A micromachined sensor for measuring vascular parameters, such as fluid shear stress, includes a substrate having a front-side surface, and a backside surface opposite the front-side surface. The sensor includes a diaphragm overlying a cavity etched within the substrate, and a heat sensing element disposed on the front-side surface of the substrate and on top of the cavity and the diaphragm. The heat sensing element is electrically couplable to electrode leads formed on the backside surface of the substrate. The sensor includes an electronic system connected to the backside surface and configured to measure a change in heat convection from the sensing element to surrounding fluid when the sensing element is heated by applying an electric current thereto, and further configured to derive from the change in heat convection vascular parameters such as the shear stress of fluid flowing past the sensing element.
    • 用于测量诸如流体剪切应力的血管参数的微加工传感器包括具有前侧表面的基底和与前侧表面相对的背侧表面。 传感器包括覆盖在衬底内蚀刻的空腔的膜片,以及设置在衬底的前侧表面上并且在空腔和隔膜顶部上的感热元件。 热敏元件可电连接到形成在基板的背面上的电极引线。 所述传感器包括连接到所述背面的电子系统,并且被配置为当通过向其施加电流来加热所述感测元件时,测量从所述感测元件到周围流体的热对流变化,并进一步被配置为从热变化 对流血管参数,例如流过感测元件的流体的剪切应力。
    • 8. 发明授权
    • Acoustic wave micromixer using fresnel annular sector actuators
    • 声波微混合器使用菲涅尔环形扇形执行器
    • US06682214B1
    • 2004-01-27
    • US10089042
    • 2002-03-21
    • Vibhu VivekEun Sok KimYi Zeng
    • Vibhu VivekEun Sok KimYi Zeng
    • B01F1300
    • B01F13/0059B01F13/0001Y10S366/04
    • A Fresnel Annular Sector Actuator (FASA) for micromixing of fluids, utilizes a self-focusing acoustic wave transducer which focuses acoustic waves through constructive wave interference. In the transducer, RF power is applied between the electrodes (sandwiching a piezoelectric film) with its frequency preferably corresponding to the thickness mode resonance of the piezoelectric film. Strong acoustic waves are generated over the electrode area, and interfere with each other as they propagate in the fluid. By proper design of the electrodes, and forming various combinations of the electrodes, wave focusing can be achieved. The mixing can be further enhanced by providing selective actuation and sequencing of the different segments by an RF signal source.
    • 用于液体微混合的菲涅尔环形扇形致动器(FASA)利用自聚焦声波传感器,其通过建构性的波干扰来聚焦声波。 在换能器中,RF电源施加在电极(夹持压电膜)之间,其频率优选地对应于压电膜的厚度模式共振。 在电极区域上产生强烈的声波,并且当它们在流体中传播时彼此干扰。 通过适当设计电极,并形成电极的各种组合,可实现波聚焦。 通过由RF信号源提供对不同段的选择性致动和排序,可以进一步增强混合。