Patents by Inventor Roeland F. Papen

Roeland F. Papen 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: 6849408
    Abstract: The present invention is directed to methods for analyzing one or more fluid samples for the presence, amount or identity of one or more analytes optionally present in said samples, which uses a device having one or more round wells with a fixed diameter, the wells exposing a substrate of a specific thickness, whereby the substrate has oriented through going channels, in the area of the substrate exposed in the well is provided with at least one binding substance specific for a least one of said analytes. Using the device the sample fluid is forced to pass through the channels in the substrate from the upper side of the substrate to the lower side of the substrate and back at least one time, under conditions that are favorable to a reaction between any analyte present in the sample and the binding substances.
    Type: Grant
    Filed: September 24, 2001
    Date of Patent: February 1, 2005
    Assignee: PamGene B.V.
    Inventors: Wilhemus M. Carpay, Roeland F. Papen
  • Patent number: 6592825
    Abstract: A microvolume liquid handling system includes a microdispenser employing a piezoelectric transducer attached to a glass capillary, a positive displacement pump for priming and aspirating transfer liquid into the microdispenser, controlling the pressure of the liquid system, and washing the microdispenser between liquid transfers, and a pressure sensor to measure the liquid system pressure and produce a corresponding electrical signal. Dispensing of a single sub-nanoliter drop can be detected in real time. As the result of dispensing the liquid in sub-nanoliter droplets, the dispensed volume can be precisely controlled. The dispenser automatically detects the liquid surface of the transfer liquid, automatically aspirate, analyze desired volume of the transfer liquid, dispense the transfer liquid without contacting the destination vessel or its contents, and automatically wash off the transfer liquid from dispensing system after each transfer.
    Type: Grant
    Filed: February 1, 2001
    Date of Patent: July 15, 2003
    Assignee: Packard Instrument Company, Inc.
    Inventors: Richard E. Pelc, Nicholas S. Chibucos, Roeland F. Papen, Wilhelm Meyer
  • Patent number: 6537817
    Abstract: A method and apparatus for cleaning the interior of capillary tubes used to dispense 1 to 100 micron diameter liquid droplets by a piezoelectric transducer surrounding each capillary tube. Magnetic particles are aspirated into the capillary tubes and moved by an exterior magnet to cause deposits on the interior walls to be dislodged and subsequently discharged from the capillary tube. In a preferred embodiment, the magnetic particles are coated with a material capable of binding such deposits, e.g., DNA, RNA, and the like.
    Type: Grant
    Filed: October 13, 2000
    Date of Patent: March 25, 2003
    Assignee: Packard Instrument Company
    Inventor: Roeland F. Papen
  • Patent number: 6521187
    Abstract: A system for aspirating and ejecting microvolume drops of liquid onto porous sites of a substrate wafer is presented. The system includes a microdispenser employing a piezoelectric transducer attached to a glass capillary, a means for priming and aspirating transfer liquid into the microdispenser, for controlling the pressure of the system liquid, and for washing the microdispenser between liquid transfers, and a pressure sensor to measure the system liquid pressure and produce a corresponding electrical signal. The drops are generally in the 10 to 100 micron range and the pores are generally 10 to 10,000 times smaller than the diameter of the drops deposited thereon. The resulting spots are uniform, and only slightly larger in diameter than that of the drops. The drops are ejected from a distance greater than the diameter of the drops, thus avoiding any contact with the dispenser that could damage the wafer.
    Type: Grant
    Filed: January 21, 2000
    Date of Patent: February 18, 2003
    Assignee: Packard Instrument Company
    Inventor: Roeland F. Papen
  • Patent number: 6422431
    Abstract: In one embodiment, a microvolume liquid handling system includes a microdispenser employing a piezoelectric transducer attached to a glass capillary, a positive displacement pump for priming and aspiring transfer liquid into the microdispenser, controlling the pressure of the liquid system and washing the microdispenser between liquid transfers, and a pressure sensor to measure the liquid system pressure and produce a corresponding electrical signal. The pressure signal is used to verify and quantify the microvolume of transfer liquid dispensed and is used to perform automated calibration and diagnostics on the microdispenser. In another embodiment of the microvolume liquid handling system, a system reservoir is connected with tubing to a pressure control system for controlling the liquid system pressure in the system reservoir. The system reservoir is coupled to one or more microdispenser through a distribution tube having a branched section for each microdispenser.
    Type: Grant
    Filed: February 1, 2001
    Date of Patent: July 23, 2002
    Assignee: Packard Instrument Company, Inc.
    Inventors: Richard E. Pelc, Nicholas S. Chibucos, Roeland F. Papen, Wilhelm Meyer
  • Patent number: 6383748
    Abstract: The present invention is directed to methods for analyzing one or more fluid samples for the presence, amount or identity of one or more analytes optionally present in said samples, which uses a device having one or more round wells with a fixed diameter, the wells exposing a substrate of a specific thickness, whereby the substrate has oriented through going channels, in the area of the substrate exposed in the well is provided with at least one binding substance specific for a least one of said analytes. Using the device the sample fluid is forced to pass through the channels in the substrate from the upper side of the substrate to the lower side of the substrate and back at least one time, under conditions that are favorable to a reaction between any analyte present in the sample and the binding substances.
    Type: Grant
    Filed: September 14, 1999
    Date of Patent: May 7, 2002
    Assignee: Pamgene B.V.
    Inventors: Wilhemus M. Carpay, Roeland F. Papen
  • Publication number: 20020025533
    Abstract: The present invention is directed to methods for analyzing one or more fluid samples for the presence, amount or identity of one or more analytes optionally present in said samples, which uses a device having one or more round wells with a fixed diameter, the wells exposing a substrate of a specific thickness, whereby the substrate has oriented through going channels, in the area of the substrate exposed in the well is provided with at least one binding substance specific for a least one of said analytes. Using the device the sample fluid is forced to pass through the channels in the substrate from the upper side of the substrate to the lower side of the substrate and back at least one time, under conditions that are favorable to a reaction between any analyte present in the sample and the binding substances.
    Type: Application
    Filed: September 24, 2001
    Publication date: February 28, 2002
    Applicant: Pamgene B.V.
    Inventors: Wilhemus M. Carpay, Roeland F. Papen
  • Publication number: 20010016177
    Abstract: A microvolume liquid handling system includes a microdispenser employing a piezoelectric transducer attached to a glass capillary, a positive displacement pump for priming and aspirating transfer liquid into the microdispenser, controlling the pressure of the liquid system, and washing the microdispenser between liquid transfers, and a pressure sensor to measure the liquid system pressure and produce a corresponding electrical signal. The pressure signal is used to verify and quantify the microvolume of transfer liquid dispensed and is used to perform automated calibration and diagnostics on the microdispenser. In another embodiment of the microvolume liquid handling system, a system reservoir is connected with tubing to a pressure control system for controlling the liquid system pressure in the system reservoir. The system reservoir is coupled to one or more microdispensers through a distribution tube having a branched section for each microdispenser.
    Type: Application
    Filed: February 1, 2001
    Publication date: August 23, 2001
    Inventors: Richard E. Pelc, Nicholas S. Chibucos, Roeland F. Papen, Wilhelm Meyer
  • Publication number: 20010014477
    Abstract: A microvolume liquid handling system includes a microdispenser employing a piezoelectric transducer attached to a glass capillary, a positive displacement pump for priming and aspirating transfer liquid into the microdispenser, controlling the pressure of the liquid system, and washing the microdispenser between liquid transfers, and a pressure sensor to measure the liquid system pressure and produce a corresponding electrical signal. The pressure signal is used to verify and quantify the microvolume of transfer liquid dispensed and is used to perform automated calibration and diagnostics on the microdispenser. In another embodiment of the microvolume liquid handling system, a system reservoir is connected with tubing to a pressure control system for controlling the liquid system pressure in the system reservoir. The system reservoir is coupled to one or more microdispensers through a distribution tube having a branched section for each microdispenser.
    Type: Application
    Filed: February 1, 2001
    Publication date: August 16, 2001
    Inventors: Richard E. Pelc, Nicholas S. Chibucos, Roeland F. Papen, Wilhelm Meyer
  • Patent number: 6220075
    Abstract: A low volume liquid handling system is described which includes a microdispenser employing a piezoelectric transducer attached to a glass capillary, a positive displacement pump for priming and aspirating liquid into the microdispenser, controlling the pressure of the liquid system, and washing the microdispenser between liquid transfers, and a pressure sensor to measure the liquid system pressure and produce a corresponding electrical signal. The pressure signal is used to verify and quantify the microvolume dispensed and is used to perform automated calibration and diagnostics on the microdispenser.
    Type: Grant
    Filed: April 30, 1999
    Date of Patent: April 24, 2001
    Assignee: Packard Instrument Company
    Inventors: Roeland F. Papen, Richard E. Pelc, Nicholas S. Chibucos, Wilhelm Meyer
  • Patent number: 6203759
    Abstract: In a microvolume liquid handling system, a system reservoir is connected with tubing to a pressure control system for controlling the liquid system pressure in the system reservoir. The system reservoir is coupled to one or more microdispensers through a distribution tube having a branched section for each microdispenser. In this embodiment, each microdispenser is coupled to its own flow sensor and to enable a system controller to respectively measure and control the flow of liquid in the each microdispenser.
    Type: Grant
    Filed: April 7, 1998
    Date of Patent: March 20, 2001
    Assignee: Packard Instrument Company
    Inventors: Richard E. Pelc, Nicholas S. Chibucos, Roeland F. Papen, Wilhelm Meyer
  • Patent number: 6112605
    Abstract: A low volume liquid handling system is described which includes a microdispenser employing a piezoelectric transducer attached to a glass capillary, a positive displacement pump for priming and aspirating liquid into the microdispenser, controlling the pressure of the liquid system, and washing the microdispenser between liquid transfers, and a pressure sensor to measure the liquid system pressure and produce a corresponding electrical signal. The pressure signal is used to verify and quantify the microvolume dispensed and is used to perform automated calibration and diagnostics on the microdispenser.
    Type: Grant
    Filed: April 30, 1999
    Date of Patent: September 5, 2000
    Assignee: Packard Instrument Company
    Inventors: Roeland F. Papen, Richard E. Pelc, Nicholas S. Chibucos, Wilhelm Meyer
  • Patent number: 6094966
    Abstract: A low volume liquid handling system is described which includes a microdispenser employing a piezoelectric transducer attached to a glass capillary, a positive displacement pump for priming and aspirating liquid into the microdispenser, controlling the pressure of the liquid system, and washing the microdispenser between liquid transfers, and a pressure sensor to measure the liquid system pressure and produce a corresponding electrical signal. The pressure signal is used to verify and quantify the microvolume dispensed and is used to perform automated calibration and diagnostics on the microdispenser.
    Type: Grant
    Filed: April 30, 1999
    Date of Patent: August 1, 2000
    Assignee: Packard Instruments Company
    Inventors: Roeland F. Papen, Richard E. Pelc, Nicholas S. Chibucos, Wilhelm Meyer
  • Patent number: 6083762
    Abstract: A low volume liquid handling system is described which includes a microdispenser employing a piezoelectric transducer attached to a glass capillary, a positive displacement pump for priming and aspirating liquid into the microdispenser, controlling the pressure of the liquid system, and washing the microdispenser between liquid transfers, and a pressure sensor to measure the liquid system pressure and produce a corresponding electrical signal. The pressure signal is used to verify and quantify the microvolume dispensed and is used to perform automated calibration and diagnostics on the microdispenser.
    Type: Grant
    Filed: January 16, 1998
    Date of Patent: July 4, 2000
    Assignee: Packard Instruments Company
    Inventors: Roeland F. Papen, Richard E. Pelc, Nicholas S. Chibucos, Wilhelm Meyer
  • Patent number: 6079283
    Abstract: A low volume liquid handling system is described which includes a microdispenser employing a piezoelectric transducer attached to a glass capillary, a positive displacement pump for priming and aspirating liquid into the microdispenser, controlling the pressure of the liquid system, and washing the microdispenser between liquid transfers, and a pressure sensor to measure the liquid system pressure and produce a corresponding electrical signal. The pressure signal is used to verify and quantify the microvolume dispensed and is used to perform automated calibration and diagnostics on the microdispenser.
    Type: Grant
    Filed: January 22, 1998
    Date of Patent: June 27, 2000
    Assignee: Packard Instruments Comapny
    Inventors: Roeland F. Papen, Richard E. Pelc, Nicholas S. Chibucos, Wilhelm Meyer
  • Patent number: 5927547
    Abstract: A low volume liquid handling system is described which includes a microdispenser employing a piezoelectric transducer attached to a glass capillary, a positive displacement pump for priming and aspirating liquid into the microdispenser, controlling the pressure of the liquid system, and washing the microdispenser between liquid transfers, and a pressure sensor to measure the liquid system pressure and produce a corresponding electrical signal. The pressure signal is used to verify and quantify the microvolume dispensed and is used to perform automated calibration and diagnostics on the microdispenser.
    Type: Grant
    Filed: June 12, 1998
    Date of Patent: July 27, 1999
    Assignee: Packard Instrument Company
    Inventors: Roeland F. Papen, Richard E. Pelc, Nicholas S. Chibucos, Wilhelm Meyer