By Vibration Patents (Class 73/61.49)
  • Patent number: 7677087
    Abstract: Provided is a Angevin type quartz sensor which is high in measurement sensitivity, suppresses the influence of the surface tension of a sample solution during measurement, and enables an installed quartz resonator to stable oscillate. An opposing surface portion opposes one surface side of the quartz resonator via a housing area and a pouring opening formed in the outside area of the opposing surface portion. Measurement is conducted in a standstill state where the sample solution is filled in the lower side of the opposing surface portion. Since stress due to the surface tension of the sample solution does not act in this state, the quartz resonator can oscillate with reliability. Therefore, the quartz sensor can reduced the thickness of the quartz resonator, which realizes highly sensitive and highly accurate measurement.
    Type: Grant
    Filed: December 14, 2005
    Date of Patent: March 16, 2010
    Assignee: Nihon Dempa Kogyo Co., Ltd.
    Inventors: Shunichi Wakamatsu, Mitsuaki Koyama, Tsuyoshi Shiobara
  • Publication number: 20100061893
    Abstract: An object of the present invention is to provide a sensing device capable of easily grasping whether or not a concentration of a sensing target is equal to or less than a standard value.
    Type: Application
    Filed: November 12, 2006
    Publication date: March 11, 2010
    Applicant: Nihon Dempa Kogyo Co., Ltd.
    Inventor: Shunichi Wakamatsu
  • Patent number: 7618585
    Abstract: An ultrasonic wave passes different fuels of different concentrations with different velocities. The present invention provides a detecting and controlling device where, by a non-touching method, a velocity for an ultrasonic wave in a first fuel with a first fuel concentration is measured. The velocity obtained is taken for a comparison with another velocity for the same ultrasonic wave in a fuel with a default fuel concentration so that the first fuel concentration of the fuel can be under controlled.
    Type: Grant
    Filed: August 17, 2005
    Date of Patent: November 17, 2009
    Assignee: Atomic Energy Council - Institute of Nuclear Energy Research
    Inventors: Kang-Nang Perng, Ching-Shih Liu, Kin-Fu Lin, Charn-Ying Chen, Kang-Lin Hwang, Ying-Sheng Lee
  • Patent number: 7603889
    Abstract: Fluid sensor methods and systems adapted for monitoring and/or controlling distillation operations in fluidic systems, such as batch distillation operations or continuous distillation operations, are disclosed. Preferred embodiments are directed to process monitoring and/or process control for unit operations involving endpoint determination of a distillation, for example, as applied to a liquid-component-switching operation (e.g., a solvent switching operation), a liquid-liquid separation operation, a solute concentration operation, a dispersed-phase concentration operation, among others.
    Type: Grant
    Filed: March 31, 2006
    Date of Patent: October 20, 2009
    Assignee: MEAS France
    Inventors: Stephen Cypes, Mark Uhrich, Eric D. Carlson, Oleg Kolosov, David Padowitz, James Bennett, Leonid Matsiev
  • Patent number: 7571633
    Abstract: A device for measurement of entrained and dissolved gas has a first module arranged in relation to a process line for providing a first signal containing information about a sensed entrained air/gas in a fluid or process mixture flowing in the process line at a process line pressure. The device features a combination of a bleed line, a second module and a third module. The bleed line is coupled to the process line for bleeding a portion of the fluid or process mixture from the process line at a bleed line pressure that is lower than the process pressure. The second module is arranged in relation to the bleed line, for providing a second signal containing information about a sensed bleed line entrained air/gas in the fluid or process mixture flowing in the bleed line.
    Type: Grant
    Filed: February 29, 2008
    Date of Patent: August 11, 2009
    Assignee: CiDRA Corporate Services, Inc.
    Inventors: Daniel L. Gysling, Douglas H. Loose
  • Patent number: 7555952
    Abstract: The present invention prevents instability of frequency measurement caused by spatial connection between quartz sensors adjacent to each other when a plurality of quartz sensors, including a quartz resonator which varies a national frequency due to adsorption of an object, are to be detected. A common measuring unit measures a variation in frequency of each oscillation circuit corresponding to each quartz sensor by switching and connection in turn, and the oscillation circuits, excepting an oscillation circuit connected to the measuring unit by switches, are connected to a load on the output side of the oscillation circuit channels connected to the measuring unit and the load value is such that the respective oscillating frequencies are forcibly separated from each other.
    Type: Grant
    Filed: December 28, 2005
    Date of Patent: July 7, 2009
    Assignee: Nihon Dempa Kogyo Co., Ltd.
    Inventors: Naoki Onishi, Tsuyoshi Shiobara
  • Publication number: 20090113997
    Abstract: A sensor for detecting a substance in liquid includes a sensing oscillation circuit and a reference oscillation circuit. The sensing oscillation circuit includes a sensing SAW element in which a reaction film arranged so as to cover at least one IDT and to react with a substance in liquid is disposed and a first amplifier circuit. The reference oscillation circuit includes a reference SAW element and a second amplifier circuit. The reference SAW element includes at least one IDT and no reaction film. The oscillation frequency of the sensing oscillation circuit and the oscillation frequency of the reference oscillation circuit are separated by at least about 200×k2 (ppm), where k2 (%) is the electromechanical coupling coefficient of a piezoelectric substrate used in each of the sensing SAW element and the reference SAW element.
    Type: Application
    Filed: November 19, 2008
    Publication date: May 7, 2009
    Applicant: MURATA MANUFACTURING CO., LTD.
    Inventors: Kenjiro OKAGUCHI, Takuo HADA, Michio KADOTA
  • Publication number: 20090064693
    Abstract: A sensor system and method for analyzing a fluid contained within an environmental control system, comprising the steps of providing a system including a passage for containing a thermal change fluid; placing a sensor including a mechanical resonator in the passage; operating the resonator to have at least a portion thereof translate through the fluid; and monitoring the response of the resonator to the fluid in the passage. A preferred sensor includes a tuning fork resonator.
    Type: Application
    Filed: March 31, 2008
    Publication date: March 12, 2009
    Inventors: Leonid Matsiev, Oleg Kolosov, Mark D. Uhrich, William Rust, John M. Feland, III, John F. Varni, Blake Walker
  • Publication number: 20090031789
    Abstract: A liquid measuring device and an automatic analyzer which employs a resonance phenomenon of sound waves to detect an amount of a liquid reserved in a vessel with an opening are provided. The liquid measuring device includes a sound source that emits sound waves toward the opening, a control device that controls a frequency of the sound waves emitted by the sound source, a wave receiver that measures a resonance generated as the sound waves emitted by the sound source causes an air column in the vessel to resonate, a detector that detects a resonance frequency of the resonance measured by the wave receiver, and a liquid-amount determination unit that determines, based on the detected resonance frequency, an amount of the liquid reserved in the vessel.
    Type: Application
    Filed: July 29, 2008
    Publication date: February 5, 2009
    Applicant: OLYMPUS CORPORATION
    Inventor: Miyuki MURAKAMI
  • Publication number: 20080293042
    Abstract: A system for the detection of contaminates of a fluid in a conduit. The conduit is part of a fluid distribution system. A chemical or biological sensor array is connected to the conduit. The sensor array produces an acoustic signal burst in the fluid upon detection of contaminates in the fluid. A supervisory control system connected to the fluid and operatively connected to the fluid distribution system signals the fluid distribution system upon detection of contaminates in the fluid.
    Type: Application
    Filed: August 6, 2008
    Publication date: November 27, 2008
    Inventor: John F. Cooper
  • Patent number: 7454958
    Abstract: The invention provides devices and methods for acoustically determining the properties of the contents of one or more reservoirs in a plurality of reservoirs. Each reservoir is adapted to contain a fluid. An acoustic radiation generator can be positioned in acoustic coupling relationship to each of the reservoirs. Acoustic radiation generated by the acoustic radiation generator is transmitted through each reservoir to an analyzer. The analyzer is capable of analyzing a characteristic of the transmitted acoustic radiation and optionally correlating the characteristic to a property of the reservoirs' contents. Properties that may be determined include volume, temperature, and composition. The invention is particularly suited to determining the properties of the contents of a plurality of reservoirs to allow for accuracy and control over the dispensing of fluids therefrom.
    Type: Grant
    Filed: September 20, 2004
    Date of Patent: November 25, 2008
    Assignee: Labcyte Inc.
    Inventors: Richard N. Ellson, Richard G. Stearns
  • Publication number: 20080245135
    Abstract: A device includes a microfluidic channel and a nanoelectromechanical mass detector encapsulated within the microfluidic channel. Multiple microfluidic channels may be included with multiple nano electromechanical mass detectors encapsulated within each microfluidic channel. A method of detecting masses includes delivering a sample via the microfluidic channel to the nano electromechanical mass detectors and creating a pressure within the microfluidic channel that significantly reduces viscous damping effects on the mass detector. The detector may be actuated and response measured.
    Type: Application
    Filed: November 15, 2007
    Publication date: October 9, 2008
    Inventors: Keith Aubin, Bojan (Rob) Ilic, Seung-Min Park, Harold G. Craighead
  • Patent number: 7426852
    Abstract: A submersible meter is provided that measures the speed of sound propagating in an aerated fluid to determine any one of a plurality of parameters of the fluid, such as the gas holdup of the fluid (?b), the bubble size (db), the bubble surface area flux (Sb), and the flotation rate constant (k). The meter includes a spatial array of sensors disposed at predetermined axial locations x1-XN axially along a tube. The array of sensors provide acoustic pressure signals P1(t)-PN(t) to a transmitter which determines the speed of sound amix propagating through the aerated fluid in the tube using acoustic spatial array signal processing techniques. The submersible meter enables real time measurement of the bubble size, the bubble surface area flux and flotation rate constant, which enables real time monitoring of the efficiency and recovery rate of flotation machines.
    Type: Grant
    Filed: April 26, 2005
    Date of Patent: September 23, 2008
    Assignee: Expro Meters, Inc.
    Inventor: Paul Rothman
  • Patent number: 7398685
    Abstract: A measuring method using a surface acoustic wave device, with which even in a case where a target substance having a different viscosity is added to a buffer liquid on the surface acoustic wave device it is possible to measure a mass load accurately without suffering an effect of this viscous load, and it is also possible to shorten the time taken for the temperature of the buffer liquid to stabilize and thereby shorten the time taken for the measurement.
    Type: Grant
    Filed: June 10, 2005
    Date of Patent: July 15, 2008
    Assignee: Ulvac, Inc.
    Inventors: Atsushi Itoh, Motoko Ichihashi
  • Patent number: 7367240
    Abstract: A apparatus 10, 110 is provided that measures the speed of sound and/or vortical disturbances propagating in a fluid or mixture having entrained gas/air to determine the gas volume fraction of the flow 12 propagating through a pipes and compensating or correcting the volumetric flow measurement for entrained air. The GVF meter includes and array of sensor disposed axially along the length of the pipe. The GVF measures the speed of sound propagating through the pipe and fluid to determine the gas volume fraction of the mixture using array processing. The GVF meter can be used with an electromagnetic meter and a consistency meter to compensate for volumetric flow rate and consistency measurement respective, to correct for errors due to entrained gas/air.
    Type: Grant
    Filed: January 22, 2007
    Date of Patent: May 6, 2008
    Assignee: CiDRA Corporation
    Inventors: Daniel L. Gysling, Douglas H. Loose
  • Patent number: 7334452
    Abstract: Methods for monitoring a fluid composition include placing a mechanical resonator in the fluid composition and oscillating the resonator. The resonator can be a tuning fork resonator having tines oscillated in opposite directions and in opposite phases. A variable frequency input signal can be varied over a predetermined frequency range and oscillate the mechanical resonator at less than 1 MHz. A frequency-dependent resonator response curve can be stored in a computer memory and fitted to a model curve to monitor the fluid. The resonator can be coated with a protective coating. The resonator can be treated with a functionality designed to change a resonance frequency of the resonator after being exposed to a selected target chemical and the resonance frequency monitored to detect presence of the target chemical.
    Type: Grant
    Filed: July 23, 2002
    Date of Patent: February 26, 2008
    Assignee: Visyx Technologies, Inc.
    Inventors: Leonid Matsiev, James Bennett, Eric McFarland
  • Patent number: 7331232
    Abstract: A measurement method and a biosensor apparatus using a resonator with which it is not necessary to agitate a sample solution in a cell and even if the amount of the sample solution is very small the influence of pressure waves is greatly reduced and extremely easy and accurate measurement is possible. In a method of the kind wherein a sample solution is brought into contact with one side of a resonator having first and second electrodes on opposite sides of a crystal plate and an a.c. signal is applied across the first and second electrodes and a frequency change of the resonator is measured from a relationship between the frequency of the a.c. signal and an electrical characteristic of the resonator, the resonator is made to oscillate at an N-tuple harmonic (N=3, 5, 7 . . . ) as the frequency change is measured.
    Type: Grant
    Filed: September 23, 2004
    Date of Patent: February 19, 2008
    Assignee: ULVAC, Inc.
    Inventors: Atsushi Itoh, Motoko Ichihashi
  • Patent number: 7322245
    Abstract: In industrial sensing applications at least one parameter of at least one fluid in a pipe 12 is measured using a spatial array of acoustic pressure sensors 14,16,18 placed at predetermined axial locations x1, x2, x3 along the pipe 12. The pressure sensors 14,16,18 provide acoustic pressure signals P1(t), P2(t), P3(t) on lines 20,22,24 which are provided to signal processing logic 60 which determines the speed of sound amix of the fluid (or mixture) in the pipe 12 using acoustic spatial array signal processing techniques with the direction of propagation of the acoustic signals along the longitudinal axis of the pipe 12. Numerous spatial array-processing techniques may be employed to determine the speed of sound amix. The speed of sound amix is provided to logic 48, which calculates the percent composition of the mixture, e.g., water fraction, or any other parameter of the mixture, or fluid, which is related to the sound speed amix. The logic 60 may also determine the Mach number Mx of the fluid.
    Type: Grant
    Filed: December 5, 2005
    Date of Patent: January 29, 2008
    Assignee: CiDRA Corporation
    Inventors: Daniel L. Gysling, Alan D. Kersey, James D. Paduano
  • Patent number: 7322243
    Abstract: An acoustic wave sensor system for monitoring the etch rate or etch ability of a selective material has an acoustic wave sensing device having a piezoelectric substrate and at least one electrode coupled to the substrate for generating a propagating acoustic wave and for detecting changes in frequency or other propagation characteristics of the acoustic wave. A selective material is disposed on the substrate. Changes in propagation characteristics of the wave caused by etching of the selective material by an etchant can be analyzed to evaluate the etching rate or etch ability of the selective material. The sensing system can have a wireless sensing device which device is mountable in an oil filter system for monitoring the corrosion of the engine. The sensing device can be configured as BAW, SH-SAW, SH-APM, FPM devices or other acoustic wave devices.
    Type: Grant
    Filed: June 16, 2005
    Date of Patent: January 29, 2008
    Assignee: Honeywell International Inc.
    Inventors: James Z T Liu, Michael L. Rhodes, Aziz Rahman
  • Patent number: 7275421
    Abstract: An apparatus 10 and method is provided that includes a spatial array of unsteady pressure sensors 15-18 placed at predetermined axial locations x1-xN disposed axially along a pipe 14 for measuring at least one parameter of a solid particle/fluid mixture 12 flowing in the pipe 14. The pressure sensors 15-18 provide acoustic pressure signals P1(t)-PN(t) to a signal processing unit 30 which determines the speed of sound amix(?) of the particle/fluid mixture 12 in the pipe 14 using acoustic spatial array signal processing techniques. The primary parameters to be measured include fluid/particle concentration, fluid/particle mixture volumetric flow, and particle size. Frequency based sound speed is determined utilizing a dispersion model to determine the parameters of interest. the calculating the at least one parameter uses an acoustic pressure to calculate.
    Type: Grant
    Filed: April 24, 2003
    Date of Patent: October 2, 2007
    Assignee: CiDRA Corporation
    Inventors: Daniel L. Gysling, Douglas H. Loose
  • Patent number: 7260980
    Abstract: The invention provides a liquid cell for an atomic force microscope. The liquid cell includes a liquid cell housing with an internal cavity to contain a fluid, a plurality of conductive feedthroughs traversing the liquid cell housing between the internal cavity and a dry side of the liquid cell, a cantilevered probe coupled to the liquid cell housing, and a piezoelectric drive element disposed on the cantilevered probe. The cantilevered probe is actuated when a drive voltage is applied to the piezoelectric drive element through at least one of the conductive feedthroughs. A method of imaging an object in a liquid medium and a method of sensing a target species with the liquid cell are also disclosed.
    Type: Grant
    Filed: March 10, 2004
    Date of Patent: August 28, 2007
    Inventors: Jesse D. Adams, Benjamin S. Rogers, Todd A. Sulchek
  • Patent number: 7191638
    Abstract: A device for determining and/or monitoring at least one physical parameter of a medium, having at least one mechanically oscillatable unit and at least one drive-/receive unit. The drive-/receive unit excites the oscillatable unit to oscillate, or, it receives the oscillations of the oscillatable unit, as the case may be. The invention includes that in the drive-/receive unit at least one piezo-drive is provided, which has at least one exterior surface. The exterior surface is composed of at least two segments of different polarization, wherein the directions of polarization are directed essentially opposite to one another. The mechanically oscillatable unit is directly or indirectly connected with the exterior surface, so that the mechanically oscillatable unit is excited to a movement, or so that the movement of the mechanically oscillatable unit is received. The movement always has at least two different force components.
    Type: Grant
    Filed: December 19, 2003
    Date of Patent: March 20, 2007
    Assignee: Endress + Hauser GmbH + Co. KG
    Inventor: Sergej Lopatin
  • Patent number: 7191639
    Abstract: An on-chip coil is provided in a micromachined device for magnetic actuation of a nanoelectromechanical microcantilever. The novel geometry involves a three dimensional solenoid or planar coil carrying high current that generates a large enough magnetic field in its close proximity to a permalloy thin film patch or columnar magnet disposed on the distal end of the piezoresistive microcantilever to effectively interacts with the magnetic thin film deposited on the microcantilever. The device comprises an effective actuators which can be integrated with biofunctionalized cantilever arrays in hybrid semiconductor-microfluidics devices for the analysis and detection of biological analytes.
    Type: Grant
    Filed: April 1, 2004
    Date of Patent: March 20, 2007
    Assignee: California Institute of Technology
    Inventors: Hongxing Tang, Michael L. Roukes
  • Patent number: 7181955
    Abstract: The consistency of a pulp slurry in a pipe 12 is determined using a pair of effective sound speeds a1eff and a2eff of the fluid/pipe system. The pair of effective system sound speed measurements are taken at two sensing regions X1, X2 along the pipe wherein each of the sensing regions comprises a different system cross sectional area compliance. The pair of effective system sound speeds a1eff and a2eff are provided to signal processing logic 160, which determines at least the composition of the fluid 12 flowing in the pipe 112. The effective system sound speeds a1eff and a2eff may be provided by a pair of sound speed meters positioned at sensing regions X1, X2 wherein the sound speed meters utilize a spatial array of acoustic pressure sensors placed at predetermined axial locations along the pipe 112. One technique uses acoustic spatial array signal processing techniques with the direction of propagation of the acoustic signals along the longitudinal axis of the pipe 112.
    Type: Grant
    Filed: August 7, 2003
    Date of Patent: February 27, 2007
    Assignee: Weatherford/Lamb, Inc.
    Inventor: Daniel L. Gysling
  • Patent number: 7165464
    Abstract: A apparatus 10,110 is provided that measures the speed of sound and/or vortical disturbances propagating in a fluid or mixture having entrained gas/air to determine the gas volume fraction of the flow 12 propagating through a pipes and compensating or correcting the volumetric flow measurement for entrained air. The GVF meter includes and array of sensor disposed axially along the length of the pipe. The GVF measures the speed of sound propagating through the pipe and fluid to determine the gas volume fraction of the mixture using array processing. The GVF meter can be used with an electromagnetic meter and a consistency meter to compensate for volumetric flow rate and consistency measurement respective, to correct for errors due to entrained gas/air.
    Type: Grant
    Filed: January 27, 2004
    Date of Patent: January 23, 2007
    Assignee: CiDRA Corporation
    Inventors: Daniel L. Gysling, Douglas H. Loose
  • Patent number: 7140238
    Abstract: Method for determining the composition of a homogeneous fluid, for example a petroleum effluent on flow, an emulsion consisting of water and oil, or a foam consisting of oil and gas. The attenuation and the phase shift of microwave beams that have traversed a fluid of unknown composition with paths of different lengths are measured (stage A). Two equations approaching the measured values are determined, the first equation giving a relation between the attenuation and the length of the path, the second equation giving a relation between the phase shift and the length of the path (stage C). Then the composition of the fluid is determined by comparing the two equations with pairs of equations stored in form of databases, each pair of equations corresponding to a fluid of known composition (stage D).
    Type: Grant
    Filed: April 2, 2004
    Date of Patent: November 28, 2006
    Assignee: Institut Francais du Petrole
    Inventors: Claude Beauducel, Yohan Bentolila, Abdelaziz Faraj, Michel Constant
  • Patent number: 7104117
    Abstract: A device (1) for determining the qualify of a medium, particularly of a lubricant and/or cutting oil, includes a number of sensors (3, 4, 5, 6, 7) that emit electric output signals according to the respective sensor-specific input variables. One sensor is a temperature sensor (7) that emits an output signal, which is essentially only dependent on the temperature (T) of the medium and is essentially independent of, in particular, the quality of the medium. At least one other sensor (3, 4, 5, 6) emits an output signal that is dependent on both the quality of the medium as well as the temperature (T) of the medium. The sensors (3, 4, 5, 6, 7) are placed on a shared substrate (2) that can be immersed in the medium. An associated process also determines the quality of a medium.
    Type: Grant
    Filed: October 15, 2002
    Date of Patent: September 12, 2006
    Assignee: Hydac Electronic GmbH
    Inventors: Stephanus Büttgenbach, Hans-Heinrich Harms
  • Patent number: 7096719
    Abstract: An apparatus 10 is provided that measures the speed of sound propagating in a multiphase mixture to determine parameters, such as mixture quality, particle size, vapor/mass ratio, liquid/vapor ratio, mass flow rate, enthalpy and volumetric flow rate of the flow in a pipe or unconfined space, for example, using acoustic and/or dynamic pressures. The apparatus includes a pair of ultrasonic transducers disposed axially along the pipe for measuring the transit time of an ultrasonic signal to propagate from one ultrasonic transducer to the other ultrasonic transducer. A signal process, responsive to said transit time signal, provides a signal representative of the speed of sound of the mixture. An SOS processing unit then provides an output signal indicative of at least one parameter of the mixture flowing through the pipe. The frequency of the ultrasonic signal is sufficiently low to minimize scatter from particle/liquid within the mixture.
    Type: Grant
    Filed: January 13, 2004
    Date of Patent: August 29, 2006
    Assignee: CiDRA Corporation
    Inventor: Daniel L. Gysling
  • Patent number: 7073370
    Abstract: A method and apparatus for measuring properties of a liquid composition includes a mechanical resonator, such as a cantilever, connected to a measurement circuit. The mechanical resonator can be covered with a coating to impart additional special detection propertied to the resonator, and multiple resonators can be attached together as a single sensor to obtain multiple frequency responses. The invention is particularly suitable for combinatorial chemistry applications, which require rapid analysis of chemical properties for screening. In one embodiment, the resonator is operated at a frequency of less than 1 MHz.
    Type: Grant
    Filed: October 15, 2003
    Date of Patent: July 11, 2006
    Assignee: Symyx Technologies
    Inventors: Leonid Matsiev, James Bennett, Eric McFarland
  • Patent number: 7059172
    Abstract: The present invention discloses an apparatus for determining the density and the phase fraction of a fluid flowing in a conduit. The apparatus comprises a fiber optic density meter situated along the conduit that provides a signal indicative of the density of the fluid. The density meter includes two sound speed meters disposed at different sensing regions along the pipe. The sensing regions have a substantially different cross sectional area compliance. Each sound speed meter measures an acoustic pressure within the pipe at its corresponding axial location and provides a signal indicative of the effective fluid sound speed at its corresponding sensing region. Because each sensing region has a substantially different cross sectional area compliance, the density of the fluid is determined by the difference between the effective fluid sound speed signals. From the effective sound speed at either sensing region or from a separate acoustic sensor array, the infinite fluid sound speed may be determined.
    Type: Grant
    Filed: January 14, 2003
    Date of Patent: June 13, 2006
    Assignee: Weatherford/Lamb, Inc.
    Inventor: Daniel L. Gysling
  • Patent number: 6988411
    Abstract: In industrial sensing applications at least one parameter of at least one fluid in a pipe 12 is measured using a spatial array of acoustic pressure sensors 14,16,18 placed at predetermined axial locations x1, x2, x3 along the pipe 12. The pressure sensors 14,16,18 provide acoustic pressure signals P1(t), P2(t), P3(t) on lines 20,22,24 which are provided to signal processing logic 60 which determines the speed of sound amix of the fluid (or mixture) in the pipe 12 using acoustic spatial array signal processing techniques with the direction of propagation of the acoustic signals along the longitudinal axis of the pipe 12. Numerous spatial array-processing techniques may be employed to determine the speed of sound amix. The speed of sound amix is provided to logic 48, which calculates the percent composition of the mixture, e.g., water fraction, or any other parameter of the mixture, or fluid, which is related to the sound speed amix. The logic 60 may also determine the Mach number Mx of the fluid.
    Type: Grant
    Filed: May 10, 2004
    Date of Patent: January 24, 2006
    Assignee: CiDRA Corporation
    Inventors: Daniel L. Gysling, Alan D. Kersey, James D. Paduano
  • Patent number: 6959601
    Abstract: An apparatus for noninvasively monitoring the flow and/or the composition of a flowing liquid using ultrasound is described. The position of the resonance peaks for a fluid excited by a swept-frequency ultrasonic signal have been found to change frequency both in response to a change in composition and in response to a change in the flow velocity thereof. Additionally, the distance between successive resonance peaks does not change as a function of flow, but rather in response to a change in composition. Thus, a measurement of both parameters (resonance position and resonance spacing), once calibrated, permits the simultaneous determination of flow rate and composition using the apparatus and method of the present invention.
    Type: Grant
    Filed: November 18, 2004
    Date of Patent: November 1, 2005
    Assignee: The Regents of the University of California
    Inventor: Dipen N. Sinha
  • Patent number: 6957565
    Abstract: A method for measuring properties of a fluid that includes oscillating a tuning fork resonator in a fluid. The invention is particularly suitable for in-line monitoring of various physical and electrical properties of fluids flowing in a conduit.
    Type: Grant
    Filed: October 15, 2003
    Date of Patent: October 25, 2005
    Assignee: SYMYX Technologies, Inc.
    Inventors: Leonid Matsiev, James Bennett, Eric McFarland
  • Patent number: 6955787
    Abstract: An array of piezoelectric resonators used in a sensor device in order to identify chemical and biological agents. The resonators can operate as bulk acoustic wave (BAW), surface acoustic wave (SAW), or Love mode devices. The sensor device integrates gravimetric, calorimetric, thermal gravimetric, voltage gravimetric and optical detection methods into one sensor system, improving the accuracy of identifying hazardous agents. For gravimetric detection, dual-mode resonators provide simultaneous calorimetric and gravimetric data, one type from each mode. Resonators with heaters on the surfaces will provide thermal gravimetric data. An optical detector can be used to analyze the optical signal from the surface of a coated resonator. Additionally, voltage gravimetric measurements can be made with an electric field set up between the resonator and an external electrode. Thermal voltage gravimetric measurements can be made by adding an integrated heater on the resonator with an external electrode.
    Type: Grant
    Filed: October 11, 2003
    Date of Patent: October 18, 2005
    Inventor: William Paynter Hanson
  • Patent number: 6904786
    Abstract: A method and apparatus for measuring properties of a liquid composition includes a mechanical resonator, such as a cantilever, connected to a measurement circuit. The mechanical resonator's response over the frequency range depends on various characteristics of the liquid being tested, such as the temperature, viscosity, and other physical properties. The invention is particularly suitable for combinatorial chemistry applications, which require rapid analysis of chemical properties for screening.
    Type: Grant
    Filed: October 7, 2002
    Date of Patent: June 14, 2005
    Assignee: Symyx Technologies, Inc.
    Inventors: Leonid Matsiev, James Bennett, Eric McFarland
  • Patent number: 6889560
    Abstract: An apparatus for noninvasively monitoring the flow and/or the composition of a flowing liquid using ultrasound is described. The position of the resonance peaks for a fluid excited by a swept-frequency ultrasonic signal have been found to change frequency both in response to a change in composition and in response to a change in the flow velocity thereof. Additionally, the distance between successive resonance peaks does not change as a function of flow, but rather in response to a change in composition. Thus, a measurement of both parameters (resonance position and resonance spacing), once calibrated, permits the simultaneous determination of flow rate and composition using the apparatus and method of the present invention.
    Type: Grant
    Filed: August 26, 2003
    Date of Patent: May 10, 2005
    Assignee: The Regents of the University of California
    Inventor: Dipen N. Sinha
  • Patent number: 6862920
    Abstract: At least one parameter of at least one fluid in a pipe is measured using a spatial array of acoustic pressure sensors placed at predetermined axial locations along the pipe 12. The pressure sensors provide acoustic pressure signals, which are provided to a signal processing system that determines the speed of sound amix of the fluid (or mixture) in the pipe 12 using acoustic spatial array signal processing techniques. Numerous spatial array processing techniques may be employed to determine the speed of sound amix. The speed of sound amix is provided to another logic system that calculates the percent composition of the mixture, e.g., water fraction, or any other parameter of the mixture or fluid which is related to the sound speed amix. The signal processing system may also determine the Mach number Mx of the fluid. The acoustic pressure signals measured are lower frequency (and longer wavelength) signals than those used for ultrasonic flow meters, and thus are more tolerant to inhomogeneities in the flow.
    Type: Grant
    Filed: January 29, 2002
    Date of Patent: March 8, 2005
    Assignee: Weatherford/Lamb, Inc.
    Inventors: Daniel L. Gysling, Alan D. Kersey, James D. Paduano
  • Publication number: 20040250606
    Abstract: The invention relates to a device (1) for determining the quality of a medium, particularly of a lubricant and/or cutting oil, comprising a number of sensors (3, 4, 5, 6, 7) that output an electric output signal according to the respective sensor-specific input variable. One sensor is a temperature sensor (7) that outputs an output signal, which is essentially only dependent on the temperature (T) of the medium and is essentially independent of, in particular, the quality of the medium. At least one other sensor (3, 4, 5, 6) outputs an output signal that is dependent on both the quality of the medium as well as the temperature (T) of the medium. The sensors (3, 4, 5, 6, 7) are placed on a shared substrate (2) that can be immersed in the medium. The invention also relates to an associated method.
    Type: Application
    Filed: April 22, 2004
    Publication date: December 16, 2004
    Inventors: Stephanus Buttgenbach, Hans-Heinrich Harms
  • Patent number: 6826949
    Abstract: A liquid sample sensing device comprises a set of stackable liquid sample base units that are adapted to be stacked together to form multiple sample volumes that are substantially sealed, each with an electroacoustic member disposed therein having a surface adapted for binding to a particular target molecule. Top and bottom units are preferably attached to a closed loop of flexible tubing and a peristaltic pump. Individual electroacoustic members in the stack can each be adapted to bind with different target molecules, allowing for a multiple target assay. Alternately, a plurality of electroacoustic members can be adapted to bind with the same type of target molecule, thereby increasing the sensitivity of the sensing device. The base units are adapted such that sample liquid is caused to flow over and be in close proximity to the sensing surface of each electroacoustic member as the sample liquid flows from one base unit to the next, thereby increasing the efficiency of binding.
    Type: Grant
    Filed: June 13, 2003
    Date of Patent: December 7, 2004
    Assignee: Becton, Dickinson and Company
    Inventor: Klaus W. Berndt
  • Publication number: 20040216515
    Abstract: The present invention relates to physical chemistry and can be used for a quality test of liquids, in particular, multi-component liquid products, to ascertain the conformity of various process liquids, pharmaceutical preparations, foodstuffs, biological liquids to standard in pharmacology, food processing and chemical industries, and in medical diagnostics. The method of invention enables determining of the mechanical impedance within a drop (1) of test liquid having a specified volume, in the preferred embodiment, 5 mcl, placed on the surface of a piezoelectric resonator (3) of ultrasound frequencies, which provides for excitation of shear modes within drop (1) while it is drying up. The obtained time dependence of the mechanical impedance of drop (1) is used as the information parameter.
    Type: Application
    Filed: July 21, 2003
    Publication date: November 4, 2004
    Inventors: Tatjana Anatoljevna Yakhno, Vladimir Grigorievich Yakhno, Ivan Ivanovich Shmeljov, Anatoly Gennadievich Sanin, Evgeny Valerievich Krotov, Yuri Yakovievich Brodsky
  • Publication number: 20040200269
    Abstract: Apparatus for displaying, measuring the size of and counting individual inclusions in suspension in moving liquid metal using an ultrasound sensor including emission device for emitting ultrasound beam pulses and at least one reception device for detecting reflected ultrasound beam pulses. The apparatus also includes an echo acquisition and processing device for reflected ultrasound beams received by the at least one reception means, a display device for displaying echos as images of inclusions, an image analysis device to count and measure inclusions based on the displayed images, and at least one control reflector having predetermined dimensions and geometry stable over time and which can be selectively placed in path defined by the ultrasound beam pulses. The control reflector enables calibration of the apparatus.
    Type: Application
    Filed: November 20, 2003
    Publication date: October 14, 2004
    Applicant: Pechiney Rhenalu & Aluminium Pechiney
    Inventors: Jean Muller, Pierre Le Brun, Thierry Odievre
  • Patent number: 6748793
    Abstract: Systems and methods for ultrasound sensing a compound's concentration in aqueous solution are provided. As a result of the ultrasound sensing, an accurate real time measurement of the concentration of the compound of interest in aqueous solution is obtained. In various non-limiting embodiments, the invention provides ultrasound sensing of methanol's concentration in aqueous solution in connection with a fuel circulation process for a direct methanol fuel cell. Since the speed of sound in a water-methanol system increases significantly with methanol content, techniques for measuring characteristic sound velocities are used to give sufficient resolution for a fuel circulation process.
    Type: Grant
    Filed: December 28, 2001
    Date of Patent: June 15, 2004
    Assignees: E. I. du Pont de Nemours and Company, ABB Research Ltd.
    Inventors: Arnold Rabinovich, Daryl Tulimieri
  • Patent number: 6732575
    Abstract: In industrial sensing applications at least one parameter of at least one fluid in a pipe 12 is measured using a spatial array of acoustic pressure sensors 14,16,18 placed at predetermined axial locations x1, x2, x3 along the pipe 12. The pressure sensors 14,16,18 provide acoustic pressure signals P1(t), P2(t), P3(t) on lines 20,22,24 which are provided to signal processing logic 60 which determines the speed of sound amix of the fluid (or mixture) in the pipe 12 using acoustic spatial array signal processing techniques with the direction of propagation of the acoustic signals along the longitudinal axis of the pipe 12. Numerous spatial array-processing techniques may be employed to determine the speed of sound amix. The speed of sound amix is provided to logic 48, which calculates the percent composition of the mixture, e.g., water fraction, or any other parameter of the mixture, or fluid, which is related to the sound speed amix. The logic 60 may also determine the Mach number Mx of the fluid.
    Type: Grant
    Filed: November 8, 2001
    Date of Patent: May 11, 2004
    Assignee: CiDRA Corporation
    Inventors: Daniel L. Gysling, Alan D. Kersey, James D. Paduano
  • Publication number: 20040065143
    Abstract: An apparatus and method for determining the density and fluid-type of a fluid flowing in a capillary tube, the velocity and viscosity of a blood sample flowing in a capillary tube, the erythrocyte sedimentation rate (ESR) of a blood sample after flow has been brought to an abrupt stop in a capillary tube, and/or the zeta sedimentation rate (ZSR) of a blood sample after flow has been brought to an abrupt stop in a capillary tube. These measurements are accomplished by directing a waveform pulse, such as an ultrasound pulse, at a pre-determined frequency transversely across the capillary tube and sample fluid, and by determining the flight of time of the pulse through the capillary tube and sample fluid and/or the Doppler shift of the echo signals reflecting off cells moving forwardly or transversely within a flowing, or stationary, blood sample.
    Type: Application
    Filed: October 3, 2002
    Publication date: April 8, 2004
    Inventor: Frederick K. Husher
  • Publication number: 20040035190
    Abstract: An apparatus for noninvasively monitoring the flow and/or the composition of a flowing liquid using ultrasound is described. The position of the resonance peaks for a fluid excited by a swept-frequency ultrasonic signal have been found to change frequency both in response to a change in composition and in response to a change in the flow velocity thereof. Additionally, the distance between successive resonance peaks does not change as a function of flow, but rather in response to a change in composition. Thus, a measurement of both parameters (resonance position and resonance spacing), once calibrated, permits the simultaneous determination of flow rate and composition using the apparatus and method of the present invention.
    Type: Application
    Filed: August 26, 2003
    Publication date: February 26, 2004
    Inventor: Dipen N. Sinha
  • Patent number: 6684683
    Abstract: A method and an apparatus for characterizing the barrier properties of an array of coatings. The method including providing a plurality of acoustic wave devices, wherein each of the plurality of acoustic wave devices comprises at least one surface, and providing a plurality of coating materials suitable for forming a plurality of coatings on the at least one surface of each of the plurality of acoustic wave devices. The method also including coating each of the plurality of acoustic wave devices with at least one of the plurality of coating materials to form a plurality of coated acoustic wave devices and measuring a predetermined output parameter of each of the plurality of coated acoustic wave devices.
    Type: Grant
    Filed: February 27, 2002
    Date of Patent: February 3, 2004
    Assignee: General Electric Company
    Inventors: Radislav Alexandrovich Potyrailo, Michael Jarlath Brennan
  • Publication number: 20030197125
    Abstract: Apparatus and method for in situ measurements of at least one property of a liquid contained within a vessel.
    Type: Application
    Filed: April 19, 2002
    Publication date: October 23, 2003
    Inventors: Robert De Saro, Arel Weisberg
  • Publication number: 20030150257
    Abstract: The invention provides devices and methods for acoustically assessing the contents of a plurality of reservoirs that are typically provided as an array. An acoustic radiation generator is employed for generating acoustic radiation having an image field of a size sufficient to interrogate a plurality of selected reservoirs at one time. The generator is placed in acoustic coupling relationship via a fluid acoustic coupling medium to the selected reservoirs, and acoustic radiation generated by the generator is transmitted through the coupling medium, an exterior surface of the selected reservoirs, and the selected reservoirs. A characteristic of the transmitted acoustic radiation is analyzed so as to assess the contents of each of the selected reservoirs. Fluid may be ejected from the selected reservoirs according to the assessment. Optionally, a means is provided for removing fluid acoustic coupling medium from the exterior surface after acoustic assessment.
    Type: Application
    Filed: December 4, 2002
    Publication date: August 14, 2003
    Inventors: Mitchell W. Mutz, Richard N. Ellson, James K. Foote
  • Publication number: 20030121315
    Abstract: Systems and methods for ultrasound sensing a compound's concentration in aqueous solution are provided. As a result of the ultrasound sensing, an accurate real time measurement of the concentration of the compound of interest in aqueous solution is obtained. In various non-limiting embodiments, the invention provides ultrasound sensing of methanol's concentration in aqueous solution in connection with a fuel circulation process for a direct methanol fuel cell. Since the speed of sound in a water-methanol system increases significantly with methanol content, techniques for measuring characteristic sound velocities are used to give sufficient resolution for a fuel circulation process.
    Type: Application
    Filed: December 28, 2001
    Publication date: July 3, 2003
    Inventors: Arnold Rabinovich, Daryl Tulimieri
  • Patent number: 6581452
    Abstract: Volume measuring apparatus is used in a closed space as in the case of volume measurement of liquid in a container placed on an orbit of an artificial satellite and permits the volume measurement in a state without mixture with gas, liquid, or solid. A volume measuring apparatus is an apparatus for measuring the volume of liquid or solid under microgravity, which has two or more containers coupled to each other by a pipe, a device for separating or fixing a gas phase, a liquid phase, or a solid phase, a pressure fluctuation source, a pressure signal receiver, a pressure gage, and a thermometer, wherein the separating or fixing device, the pressure fluctuation source, the pressure signal receiver, the pressure gage, and the thermometer are placed in the containers and wherein the pressure fluctuation source, the pressure signal receiver, the pressure gage, and the thermometer are connected to a signal analyzing unit.
    Type: Grant
    Filed: March 19, 2002
    Date of Patent: June 24, 2003
    Assignees: Agency of Industrial Science and Technology, Japan Space Forum, National Space Development Agency of Japan
    Inventors: Akihiro Nakano, Nobukazu Ohnishi