Patents by Inventor Christopher Zuccarelli

Christopher Zuccarelli 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: 10976286
    Abstract: The present invention uses a plurality of magnetic field sources and magnetic field sensors mounted against a surface. Based on the mass of ferromagnetic material, such as steel, the magnetic field sensors detect variable magnetic field strength and this variance is proportional to the mass of ferromagnetic material being detected. An electronic device reads the magnetic field values and uses the information to quantify the ferromagnetic material in the surface or inside the volume of the construction component.
    Type: Grant
    Filed: October 23, 2018
    Date of Patent: April 13, 2021
    Assignee: TECH4IMAGING LLC
    Inventors: Qussai Marashdeh, Christopher Zuccarelli, Jesse Hudak, Mohd Harish, Geoffrey Legg
  • Publication number: 20210010973
    Abstract: The present invention uses a plurality of magnetic field sources and magnetic field sensors mounted against a surface. Based on the mass of ferromagnetic material, such as steel, the magnetic field sensors detect variable magnetic field strength and this variance is proportional to the mass of ferromagnetic material being detected. An electronic device reads the magnetic field values and uses the information to quantify the ferromagnetic material in the surface or inside the volume of the construction component.
    Type: Application
    Filed: October 23, 2018
    Publication date: January 14, 2021
    Inventors: Qussai MARASHDEH, Christopher ZUCCARELLI, Jesse HUDAK, Mohd HARISH, Geoffrey LEGG
  • Patent number: 10746685
    Abstract: A system and method for imaging, monitoring, or measuring systems and processes utilizing only data provided from capacitance sensors. The present invention combines the multi-frequency method of both ECVT/AECVT and DCPT to image or measure processes and systems more efficiently and accurately than the methods alone. The present system analyzes capacitance and current phase acquired at multiple frequencies to determine a plurality of properties of single and multiphase systems all at once. The combined use of ECVT and DCPT in multiphase flow can also be extended to measure volume fraction and phase distribution of flows involving greater than three phases by using multiple frequencies for capacitance, current phase, or both.
    Type: Grant
    Filed: June 24, 2019
    Date of Patent: August 18, 2020
    Assignee: Tech4Imaging LLC
    Inventors: Qussai Marashdeh, Benjamin Straiton, Christopher Zuccarelli
  • Patent number: 10705043
    Abstract: A system and method for imaging, monitoring, or measuring systems and processes utilizing only data provided from capacitance sensors. The present invention combines the multi-frequency method of both ECVT/AECVT and DCPT to image or measure processes and systems more efficiently and accurately than the methods alone. The present system analyzes capacitance and current phase acquired at multiple frequencies to determine a plurality of properties of single and multiphase systems all at once. The combined use of ECVT and DCPT in multiphase flow can also be extended to measure volume fraction and phase distribution of flows involving greater than three phases by using multiple frequencies for capacitance, current phase, or both.
    Type: Grant
    Filed: May 31, 2017
    Date of Patent: July 7, 2020
    Assignee: Tech4Imaging LLC
    Inventors: Qussai Marashdeh, Benjamin Straiton, Christopher Zuccarelli
  • Patent number: 10551339
    Abstract: A stretchable capacitance sensor having multiple components for communicating signals to a data acquisition system for reconstructing an image of an area or object located in a subject being sensed, and for calculating the shape or conformity that it is in. The stretchable sensor consists of an inner layer of plates that provide the capacitance data, a middle layer of plates that provide the geometry-sensing data, and an outer layer of plates that serves as the shielding ground layer. The configuration of all three components can be variably changed to increase the capacitance data channels, increase or decrease flexibility and stretchability of the sensor, and increase the spatial resolution of the geometry sensing feature. The sensor is adapted to communicate signals to a data acquisition system for providing an image of the area or object between the capacitance plates.
    Type: Grant
    Filed: March 27, 2018
    Date of Patent: February 4, 2020
    Assignee: Tech4Imaging LLC
    Inventors: Qussai Marashdeh, Yousef Alghothani, Christopher Zuccarelli
  • Patent number: 10502655
    Abstract: The present invention uses a magnetic source and pressure sensors mounted against a surface. Based on the mass of metal inside a volume, the magnetic source is attracted to the surface and exerts pressure on the pressure sensor that is proportional to the mass of metal being detected. An electronic device reads the pressure value and uses the information to quantify the metal in the surface or inside the volume of the construction component.
    Type: Grant
    Filed: March 7, 2017
    Date of Patent: December 10, 2019
    Assignee: Tech4Imaging LLC
    Inventors: Qussai Marashdeh, Mohd Harish, Christopher Zuccarelli
  • Publication number: 20190310217
    Abstract: A system and method for imaging, monitoring, or measuring systems and processes utilizing only data provided from capacitance sensors. The present invention combines the multi-frequency method of both ECVT/AECVT and DCPT to image or measure processes and systems more efficiently and accurately than the methods alone. The present system analyzes capacitance and current phase acquired at multiple frequencies to determine a plurality of properties of single and multiphase systems all at once. The combined use of ECVT and DCPT in multiphase flow can also be extended to measure volume fraction and phase distribution of flows involving greater than three phases by using multiple frequencies for capacitance, current phase, or both.
    Type: Application
    Filed: June 24, 2019
    Publication date: October 10, 2019
    Inventors: Qussai Marashdeh, Benjamin Straiton, Christopher Zuccarelli
  • Publication number: 20180348158
    Abstract: A system and method for imaging, monitoring, or measuring systems and processes utilizing only data provided from capacitance sensors. The present invention combines the multi-frequency method of both ECVT/AECVT and DCPT to image or measure processes and systems more efficiently and accurately than the methods alone. The present system analyzes capacitance and current phase acquired at multiple frequencies to determine a plurality of properties of single and multiphase systems all at once. The combined use of ECVT and DCPT in multiphase flow can also be extended to measure volume fraction and phase distribution of flows involving greater than three phases by using multiple frequencies for capacitance, current phase, or both.
    Type: Application
    Filed: May 31, 2017
    Publication date: December 6, 2018
    Inventors: Qussai Marashdeh, Benjamin Straiton, Christopher Zuccarelli
  • Publication number: 20180325414
    Abstract: A system and method capable of performing multiple types of non-invasive tomographic techniques. The system is capable, via electronic control, of detecting and imaging materials within a volume using electrical capacitance, displacement phase current, magnetic inductance, and magnetic pressure sensing. The system is also able to control the amplitude, phase, and frequency of individual electrode excitation to increase imaging resolution and phase detection. This allows many dimensions of non-invasive data to be captured without the need for multiple instruments or moving parts, at a high data capture rate.
    Type: Application
    Filed: May 12, 2017
    Publication date: November 15, 2018
    Inventors: Qussai Marashdeh, Christopher Zuccarelli
  • Publication number: 20180259487
    Abstract: The present invention uses a magnetic source and pressure sensors mounted against a surface. Based on the mass of metal inside a volume, the magnetic source is attracted to the surface and exerts pressure on the pressure sensor that is proportional to the mass of metal being detected. An electronic device reads the pressure value and uses the information to quantify the metal in the surface or inside the volume of the construction component.
    Type: Application
    Filed: March 7, 2017
    Publication date: September 13, 2018
    Inventors: Qussai Marashdeh, Mohd Harish, Christopher Zuccarelli
  • Publication number: 20180224388
    Abstract: A stretchable capacitance sensor having multiple components for communicating signals to a data acquisition system for reconstructing an image of an area or object located in a subject being sensed, and for calculating the shape or conformity that it is in. The stretchable sensor consists of an inner layer of plates that provide the capacitance data, a middle layer of plates that provide the geometry-sensing data, and an outer layer of plates that serves as the shielding ground layer. The configuration of all three components can be variably changed to increase the capacitance data channels, increase or decrease flexibility and stretchability of the sensor, and increase the spatial resolution of the geometry sensing feature. The sensor is adapted to communicate signals to a data acquisition system for providing an image of the area or object between the capacitance plates.
    Type: Application
    Filed: March 27, 2018
    Publication date: August 9, 2018
    Inventors: Qussai Marashdeh, Yousef Alghothani, Christopher Zuccarelli
  • Patent number: 9958408
    Abstract: A stretchable capacitance sensor having multiple components for communicating signals to a data acquisition system for reconstructing an image of an area or object located in a subject being sensed, and for calculating the shape or conformity that it is in. The stretchable sensor consists of an inner layer of plates that provide the capacitance data, a middle layer of plates that provide the geometry-sensing data, and an outer layer of plates that serves as the shielding ground layer. The configuration of all three components can be variably changed to increase the capacitance data channels, increase or decrease flexibility and stretchability of the sensor, and increase the spatial resolution of the geometry sensing feature. The sensor is adapted to communicate signals to a data acquisition system for providing an image of the area or object between the capacitance plates.
    Type: Grant
    Filed: May 11, 2016
    Date of Patent: May 1, 2018
    Assignee: TECH4IMAGING LLC
    Inventors: Qussai Marashdeh, Yousef Alghothani, Christopher Zuccarelli
  • Publication number: 20170328853
    Abstract: A stretchable capacitance sensor having multiple components for communicating signals to a data acquisition system for reconstructing an image of an area or object located in a subject being sensed, and for calculating the shape or conformity that it is in. The stretchable sensor consists of an inner layer of plates that provide the capacitance data, a middle layer of plates that provide the geometry-sensing data, and an outer layer of plates that serves as the shielding ground layer. The configuration of all three components can be variably changed to increase the capacitance data channels, increase or decrease flexibility and stretchability of the sensor, and increase the spatial resolution of the geometry sensing feature. The sensor is adapted to communicate signals to a data acquisition system for providing an image of the area or object between the capacitance plates.
    Type: Application
    Filed: May 11, 2016
    Publication date: November 16, 2017
    Inventors: Qussai Marashdeh, Yousef Alghothani, Christopher Zuccarelli