Patents by Inventor Walter M. Presz, Jr.

Walter M. Presz, Jr. has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 10662404
    Abstract: A perfusion bioreactor includes at least one ultrasonic transducer that can acoustically generate a multi-dimensional standing wave. The standing wave can be used to retain cells in the bioreactor, and can also be utilized to dewater or further harvest product from the waste materials produced in a bioreactor.
    Type: Grant
    Filed: March 31, 2017
    Date of Patent: May 26, 2020
    Assignee: FloDesign Sonics, Inc.
    Inventors: Bart Lipkens, Louis Masi, Stanley Kowalski, III, Walter M. Presz, Jr., Jason Dionne, Brian Dutra, Ari Mercado, Thomas J. Kennedy, III, Arthur Martin
  • Patent number: 10640760
    Abstract: Multi-stage acoustophoretic devices for continuously separating a second fluid or a particulate from a host fluid are disclosed. Methods of operating the multi-stage acoustophoretic devices are also disclosed. The systems may include multiple acoustophoretic devices fluidly connected to one another in series, each acoustophoretic device comprising a flow chamber, an ultrasonic transducer capable of creating a multi-dimensional acoustic standing wave, and a reflector. The systems can further include pumps and flowmeters.
    Type: Grant
    Filed: May 3, 2017
    Date of Patent: May 5, 2020
    Assignee: FloDesign Sonics, Inc.
    Inventors: Bart Lipkens, Walter M. Presz, Jr., Brian Dutra, Rudolf Gilmanshin, Jason Dionne, Chris Leidel, Louis Masi, Goutam Ghoshal, Kedar Chitale
  • Patent number: 10550382
    Abstract: Devices for separating materials from a host fluid are disclosed. The devices include a flow chamber, an ultrasonic transducer, and a reflector. The ultrasonic transducer and reflector create an angled acoustic standing wave oriented at an angle relative to the direction of mean flow through the flow chamber. The angled acoustic standing wave results in an acoustic radiation force having an axial force component that deflects the materials, so that the materials and the host fluid can thus be separated. The angled acoustic standing wave can be oriented at an angle of about 20° to about 70° relative to the direction of mean flow through the flow chamber to deflect, collect, differentiate, or fractionate the materials from the fluid flowing through the device at flow rates of about 400 mL/min up to about 700 mL/min.
    Type: Grant
    Filed: June 5, 2017
    Date of Patent: February 4, 2020
    Assignee: FloDesign Sonics, Inc.
    Inventors: Bart Lipkens, Walter M. Presz, Jr., Kedar Chitale, Thomas J. Kennedy, III, Ben Ross-Johnsrud
  • Publication number: 20190345477
    Abstract: Beads with functionalized material applied to them are exposed to an acoustic field to trap, retain or pass the beads. The beads may include or be free of ferro magnetic material. The beads may be biocompatible or biodegradable for a host. The size of the beads may vary over a range, and/or be heterogenous or homogenous. The composition of the beads may include high, neutral or low acoustic contrast material. The chemistry of the functionalized material may be compatible with existing processes. The acoustic field may be generated, for example, in an acoustic angled wave device or in an acoustic fluidized bed.
    Type: Application
    Filed: May 23, 2019
    Publication date: November 14, 2019
    Inventors: Bart Lipkens, Kedar C. Chitale, Krishna N. Kumar, Walter M. Presz, JR., Ruan Zhang, Benjamin Ross-Johnsrud, Rudolf Gilmanshin, Natalia Rodionova, Rui Tostoes
  • Publication number: 20190276815
    Abstract: A closed and modular fluidic system composed of one or more acoustic elements and cell processing reagents. The system employs a cellular manufacturing process for producing cell and gene therapy therapeutics.
    Type: Application
    Filed: March 8, 2018
    Publication date: September 12, 2019
    Inventors: Bart Lipkens, Rui Tostoes, Brian Dutra, Rudolf Gilmanshin, Jason Dionne, Walter M. Presz, JR., Benjamin Ross-Johnsrud, Goutam Ghoshal, Kedar Chitale
  • Patent number: 10350514
    Abstract: An acoustic standing wave is utilized to separate components from a multi-component fluid, such as oil from an oil-water mixture, in a fluid flow scheme with an acoustophoresis device. For example, the flow scheme and device allows for trapping of the oil as the oil coalesces, agglomerates, and becomes more buoyant than the water.
    Type: Grant
    Filed: June 13, 2017
    Date of Patent: July 16, 2019
    Assignee: FloDesign Sonics, Inc.
    Inventors: Bart Lipkens, Jason Dionne, Ari Mercado, Brian Dutra, Walter M. Presz, Jr., Thomas J. Kennedy, III, Louis Masi
  • Patent number: 10322949
    Abstract: Separation of particles or droplets from a host fluid may be achieved using a transducer and/or reflector that is a thin, non-planar structure. The thin non-planar structure improves operation of an acoustic standing wave generated by an acoustic transducer. The structure may operate as a pressure release boundary and may be constructed as plastic film.
    Type: Grant
    Filed: April 18, 2017
    Date of Patent: June 18, 2019
    Assignee: FloDesign Sonics, Inc.
    Inventors: Bart Lipkens, Walter M. Presz, Jr., Kedar Chitale, Brian McCarthy, Benjamin Ross-Johnsrud, Thomas J. Kennedy, III, Dane Mealey, Brian Dutra, David Sokolowski
  • Publication number: 20190144843
    Abstract: Multi-stage acoustophoretic devices for continuously separating a second fluid or a particulate from a host fluid are disclosed. Methods of operating the multi-stage acoustophoretic devices are also disclosed. The systems may include multiple acoustophoretic devices fluidly connected to one another in series, each acoustophoretic device comprising a flow chamber, an ultrasonic transducer capable of creating a multi-dimensional acoustic standing wave, and a reflector. The systems can further include pumps and flowmeters.
    Type: Application
    Filed: September 6, 2018
    Publication date: May 16, 2019
    Inventors: Bart Lipkens, Walter M. Presz, JR., Brian Dutra, Jason Dionne, Goutam Ghoshal, Kedar C. Chitale
  • Publication number: 20190062690
    Abstract: Separation of materials is achieved using affinity binding and acoustophoretic techniques. A column provided with a fluid mixture of materials for separation and support structures may be used with acoustic waves to block flow of the support structures. The support structures can have an affinity for one or more materials in the fluid mixture. By blocking flow of the support structures, materials bound or adhered to the support structure are also blocked.
    Type: Application
    Filed: May 18, 2018
    Publication date: February 28, 2019
    Inventors: Rui Tostoes, Bart Lipkens, Kedar Chitale, Benjamin Ross-Johnsrud, Walter M. Presz, JR., Jack Saloio
  • Publication number: 20190011407
    Abstract: Separation of materials is achieved using affinity binding and acoustophoretic techniques. A column provided with a fluid mixture of materials for separation and support structures may be used with acoustic waves to block flow of the support structures. The support structures can have an affinity for one or more materials in the fluid mixture. By blocking flow of the support structures, materials bound or adhered to the support structure are also blocked.
    Type: Application
    Filed: April 26, 2018
    Publication date: January 10, 2019
    Inventors: Bart Lipkens, Rui Tostoes, Kedar C. Chitale, Benjamin Ross-Johnsrud, Walter M. Presz, JR., Jack Saloio
  • Publication number: 20180362918
    Abstract: A closed and modular fluidic system composed of one or more acoustic elements and cell processing reagents. The system employs a cellular manufacturing process for producing cell and gene therapy therapeutics.
    Type: Application
    Filed: June 15, 2018
    Publication date: December 20, 2018
    Inventors: Bart Lipkens, Rui Tostoes, Brian Dutra, Rudolf Gilmanshin, Jason Dionne, Walter M. Presz, JR., Benjamin Ross-Johnsrud, Goutam Ghoshal, Kedar Chitale
  • Patent number: 10106770
    Abstract: Methods for generating particulate clusters and nodal trapping lines having desired widths are disclosed. The devices include an acoustic chamber having an inlet and an outlet. An ultrasonic transducer and reflector create a multi-dimensional acoustic standing wave that generates particulate clusters separated by a channel of fluid running therebetween and creates nodal trapping lines. The frequency of the multi-dimensional acoustic standing wave can be selectively tuned so as to selectively control at least one of (a) a width of each particulate cluster, or (b) a width of each channel of fluid. The frequency of the multi-dimensional acoustic standing wave can also be selectively tuned so as to selectively control the width of each nodal trapping line. Also disclosed are particulate clusters separated by a channel of fluid, wherein a ratio of the widths of the particulate clusters and the channel of fluid can be varied as desired.
    Type: Grant
    Filed: January 3, 2017
    Date of Patent: October 23, 2018
    Assignee: FloDesign Sonics, Inc.
    Inventors: Walter M. Presz, Jr., Kedar Chitale, Bart Lipkens
  • Publication number: 20180298371
    Abstract: Methods and systems for separating material from a host fluid use an acoustophoresis device. These methods and systems can deflect material (e.g., a second fluid, cells, beads or other particles, exosomes, viruses, oil droplets) in host fluid streams at high flow rates.
    Type: Application
    Filed: March 30, 2018
    Publication date: October 18, 2018
    Inventors: Bart Lipkens, Jason Dionne, Walter M. Presz, JR., Kedar C. Chitale, Benjamin Ross-Johnsrud
  • Publication number: 20180275106
    Abstract: Separation of materials is achieved using affinity binding and acoustophoretic techniques. A column provided with a fluid mixture of materials for separation and support structures may be used with acoustic waves to block flow of the support structures. The support structures can have an affinity for one or more materials in the fluid mixture. By blocking flow of the support structures, materials bound or adhered to the support structure are also blocked.
    Type: Application
    Filed: April 26, 2018
    Publication date: September 27, 2018
    Inventors: Bart Lipkens, Rui Tostoes, Kedar C. Chitale, Benjamin Ross-Johnsrud, Walter M. Presz, JR., Jack Saloio
  • Publication number: 20180223439
    Abstract: Methods for causing interaction between two sets of particles are disclosed herein. The two sets of particles are co-located in a multi-dimensional acoustic standing wave, or are co-located by acoustic streaming. This is more effective than conventional methods, for example by increasing the homogeneity of the fluid mixture containing the particles, while using reduced amounts of one particle set.
    Type: Application
    Filed: April 6, 2018
    Publication date: August 9, 2018
    Inventors: BART LIPKENS, WALTER M. PRESZ, JR., JASON DIONNE, RUI TOSTOES, GOUTAM GHOSHAL
  • Publication number: 20180223273
    Abstract: Multi-stage acoustophoretic devices for continuously separating a second fluid or a particulate from a host fluid are disclosed. Methods of operating the multi-stage acoustophoretic devices are also disclosed. The systems may include multiple acoustophoretic devices fluidly connected to one another in series, each acoustophoretic device comprising a flow chamber, an ultrasonic transducer capable of creating a multi-dimensional acoustic standing wave, and a reflector. The systems can further include pumps and flowmeters.
    Type: Application
    Filed: March 30, 2018
    Publication date: August 9, 2018
    Inventors: Bart Lipkens, Jason Dionne, Walter M. Presz, JR., Brian Dutra
  • Publication number: 20180066224
    Abstract: Methods are disclosed for separating beads and cells from a host fluid. The method includes flowing a mixture containing the host fluid, the beads, and the cells through an acoustophoretic device having an ultrasonic transducer including a piezoelectric material driven by a drive signal to create a multi-dimensional acoustic standing wave. A drive signal is sent to drive the at least one ultrasonic transducer to create the multi-dimensional acoustic standing wave. A recirculating fluid stream having a tangential flow path is located substantially tangential to the standing wave and separated therefrom by an interface region. A portion of the cells pass through the standing wave, and the beads are held back from the standing wave in the recirculating fluid stream at the interface region. Also disclosed is an acoustophoretic device having a coolant inlet adapted to permit the ingress of a cooling fluid into the device for cooling the transducer.
    Type: Application
    Filed: August 29, 2017
    Publication date: March 8, 2018
    Inventors: Bart Lipkens, Rudolf Gilmanshin, Louis Masi, Benjamin Ross-Johnsrud, Erik Miller, Walter M. Presz, JR., Thomas J. Kennedy, III
  • Publication number: 20180015392
    Abstract: Devices for separating a host fluid from a second fluid or particulate are disclosed. The devices include an acoustic chamber, a fluid outlet at a top end of the acoustic chamber, a concentrate outlet at a bottom end of the acoustic chamber, and an inlet on a first side end of the acoustic chamber. An ultrasonic transducer and reflector create a multi-dimensional acoustic standing wave in the acoustic chamber that traps and separates particulates (e.g. cells) from a host fluid. The host fluid is collected via the fluid outlet, and the particulates are collected via the concentrate outlet. The device is a large-scale device that is able to process liters/hour, and has a large interior volume.
    Type: Application
    Filed: August 29, 2017
    Publication date: January 18, 2018
    Inventors: Bart Lipkens, Walter M. Presz, JR., Jeffrey King, Jason Barnes, Dane Mealey, Brian McCarthy, Ben Ross-Johnsrud, Kedar Chitale
  • Publication number: 20180003110
    Abstract: Engine inlets are disclosed that include an intake opening for the ingress of incoming air and acoustic filtration means for generating an acoustic wave that separates or clarifies material from the incoming air. The acoustic filtration means can include at least one ultrasonic transducer with a piezoelectric material configured to be driven to create an acoustic wave, such as a multi-dimensional acoustic wave or angled acoustic wave. Physical filtration means, such as an inertial or vortical separator, can be provided. Other engine inlets are also disclosed in which the acoustic filtration means are located within the physical filtration means. Further disclosed are methods for separating material from air employing acoustic separation means and physical filtration means.
    Type: Application
    Filed: July 3, 2017
    Publication date: January 4, 2018
    Inventors: Bart Lipkens, Walter M. Presz, JR., Wayne A. Thresher, Brian Kennedy, Thomas J. Kennedy, III
  • Patent number: 9827511
    Abstract: An acoustophoresis device which includes a substantially vertical flow path of the fluid mixture in order to improve separation of particles/secondary fluid from a primary fluid is disclosed. The vertical flow path reduces velocity non-uniformities in the acoustic chamber resulting from gravity forces. The device includes an acoustic chamber in which multidimensional acoustic standing waves are generated. The fluid can be introduced into the acoustic chamber using a dump diffuser in which a plurality of inlets enter near the bottom of the acoustic chamber such that flow symmetry reduces both, gravity driven flow non-uniformities, and any flow interference effects between inlet mixture flow into the acoustic chamber and the continuous gravity driven particle cluster drop out.
    Type: Grant
    Filed: July 2, 2015
    Date of Patent: November 28, 2017
    Assignee: FLODESIGN SONICS, INC.
    Inventors: Bart Lipkens, Brian McCarthy, Jason Barnes, Dane Mealey, Ben Ross-Johnsrud, Walter M. Presz, Jr., Kedar Chitale