Patents by Inventor Ryan REVILLA

Ryan REVILLA 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).

  • Publication number: 20240042435
    Abstract: Described herein are multimodal test cards. The test cards include a shared architecture with interchangeable test zones. The test cards are particularly useful for diagnostic testing.
    Type: Application
    Filed: October 6, 2023
    Publication date: February 8, 2024
    Inventors: Eric Charrault, Sepehr Maktabi, Roy Heltsley, Steve Lee, Farzad Izadi Kharazi, Ryan Revilla, Tej Patel, Jonathan Tu
  • Publication number: 20220203363
    Abstract: Described herein are multimodal test cards. The test cards include a shared architecture with interchangeable test zones. The test cards are particularly useful for diagnostic testing.
    Type: Application
    Filed: December 31, 2021
    Publication date: June 30, 2022
    Inventors: Eric Charrault, Sepehr Maktabi, Roy Heltsley, Steve Lee, Farzad Izadi Kharazi, Ryan Revilla, Tej Patel, Jonathan Tu
  • Patent number: 9636674
    Abstract: A microfluidic chip for a microfluidic system includes a PDMS substrate having a first thickness, at least one microfluidic pathway in the substrate, a coating along the microfluidic pathway, and a glass layer having a second thickness on the substrate and above the microfluidic pathway, wherein the coating contains an optically transparent material, and the first thickness is greater than the second thickness. The coating includes cyanoacrylates, an UV curable epoxy adhesive, a gel epoxy or epoxy under trade name of EPO-TEK OG175, MasterBond EP30LV-1 or Locite 0151.
    Type: Grant
    Filed: November 6, 2015
    Date of Patent: May 2, 2017
    Assignee: FluxErgy, LLC
    Inventors: Tej Patel, Ryan Revilla, Matthew D'Ooge
  • Publication number: 20160059233
    Abstract: A microfluidic chip for a microfluidic system includes a PDMS substrate having a first thickness, at least one microfluidic pathway in the substrate, a coating along the microfluidic pathway, and a glass layer having a second thickness on the substrate and above the microfluidic pathway, wherein the coating contains an optically transparent material, and the first thickness is greater than the second thickness. The coating includes cyanoacrylates, an UV curable epoxy adhesive, a gel epoxy or epoxy under trade name of EPO-TEK OG175, MasterBond EP30LV-1 or Locite 0151.
    Type: Application
    Filed: November 6, 2015
    Publication date: March 3, 2016
    Inventors: Tej Patel, Ryan Revilla, Matthew D'Ooge
  • Patent number: 9180652
    Abstract: A microfluidic chip for a microfluidic system includes a PDMS substrate having a first thickness, at least one microfluidic pathway in the substrate, a coating along the microfluidic pathway, and a glass layer having a second thickness on the substrate and above the microfluidic pathway, wherein the coating contains an optically transparent material, and the first thickness is greater than the second thickness. The coating includes cyanoacrylates, an UV curable epoxy adhesive, a gel epoxy or epoxy under trade name of EPO-TEK OG175, MasterBond EP30LV-1 or Locite 0151.
    Type: Grant
    Filed: September 16, 2013
    Date of Patent: November 10, 2015
    Assignee: FluxErgy, LLC
    Inventors: Tej Patel, Ryan Revilla, Matthew D'Ooge
  • Patent number: 9120298
    Abstract: A microfluidic chip includes a thin biaxially-oriented polyethylene terephthalate (“BoPET”) film and a micro-channel in the BoPET film. A method for manufacturing a microfluidic chip includes coating UV epoxy on a first side of a BoPET film, placing the BoPET film on a first substrate with the first side facing the first substrate, curing the UV epoxy on the first side of the BoPET film to attach the BoPET film on the first substrate; forming at least one microfluidic pathway in the BoPET film, coating UV epoxy on a first side of a second substrate, placing the second substrate on the BoPET film with the first side of the second substrate facing a second side of the BoPET film, and curing the UV epoxy on the first side of the second substrate to attach the BoPET film to the second substrate. The microfluidic chip may be a multi-layered chip.
    Type: Grant
    Filed: September 16, 2013
    Date of Patent: September 1, 2015
    Assignee: FluxErgy, LLC
    Inventors: Tej Patel, Ryan Revilla, Matthew D'Ooge
  • Publication number: 20150086443
    Abstract: A microfluidic chip for a microfluidic system includes a micro-to-macro seal. The microfluidic chip has a substrate, at least one microfluidic pathway in the substrate, and a PDMS seal layer on the substrate and above the microfluidic pathway. The PDMS seal layer provides a seal above the microfluidic pathway and prevent particles or contaminants entering the micro-channel during transportation or prior to application. During application, a needle or piping pierces through the PDMS seal layer, and fluid can be pumped into the microfluidic chip without concern for the fluid leaking despite high pressure required to pump or drive the fluid into the microfluidic pathway.
    Type: Application
    Filed: September 22, 2013
    Publication date: March 26, 2015
    Applicant: FLUXERGY, LLC
    Inventors: Tej PATEL, Ryan REVILLA, MATTHEW D'OOGE
  • Publication number: 20150078971
    Abstract: A microfluidic chip includes a thin biaxially-oriented polyethylene terephthalate (“BoPET”) film and a micro-channel in the BoPET film. A method for manufacturing a microfluidic chip includes coating UV epoxy on a first side of a BoPET film, placing the BoPET film on a first substrate with the first side facing the first substrate, curing the UV epoxy on the first side of the BoPET film to attach the BoPET film on the first substrate; forming at least one microfluidic pathway in the BoPET film, coating UV epoxy on a first side of a second substrate, placing the second substrate on the BoPET film with the first side of the second substrate facing a second side of the BoPET film, and curing the UV epoxy on the first side of the second substrate to attach the BoPET film to the second substrate. The microfluidic chip may be a multi-layered chip.
    Type: Application
    Filed: September 16, 2013
    Publication date: March 19, 2015
    Applicant: FLUXERGY, LLC
    Inventors: Tej PATEL, Ryan REVILLA, MATTHEW D'OOGE
  • Publication number: 20150079665
    Abstract: A microfluidic chip for a microfluidic system includes a PDMS substrate having a first thickness, at least one microfluidic pathway in the substrate, a coating along the microfluidic pathway, and a glass layer having a second thickness on the substrate and above the microfluidic pathway, wherein the coating contains an optically transparent material, and the first thickness is greater than the second thickness. The coating includes cyanoacrylates, an UV curable epoxy adhesive, a gel epoxy or epoxy under trade name of EPO-TEK 0G175, MasterBond EP30LV-1 or Locite 0151.
    Type: Application
    Filed: September 16, 2013
    Publication date: March 19, 2015
    Applicant: FLUXERGY, LLC
    Inventors: Tej PATEL, Ryan REVILLA, MATTHEW D'OOGE
  • Patent number: D954573
    Type: Grant
    Filed: November 6, 2019
    Date of Patent: June 14, 2022
    Assignee: Fluxergy, LLC
    Inventors: Steve Lee, Ryan Revilla, Roy Heltsley, Ashwin Raghunathan