Patents Assigned to Innovadyne Technologies, Inc.
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Publication number: 20090074625Abstract: A manifold device is provided for use with a valve assembly, an aspiration source and a dispensing source to transfer fluid from at least one of a plurality of fluid reservoirs to at least one test site on a substrate surface. The manifold device includes a manifold body that defines a plurality of fluid aspiration conduits, for fluid aspiration in an aspiration position, and a plurality of fluid dispensing conduits to selectively dispense at least one droplet of the corresponding liquid sample slug, in a dispensing position. In the aspiration position, the respective sample paths are out of fluid communication with the dispensing source and, in the dispensing position, the respective sample paths are out of fluid communication with the aspiration source.Type: ApplicationFiled: December 2, 2008Publication date: March 19, 2009Applicant: INNOVADYNE TECHNOLOGIES, INC.Inventors: James E. Johnson, Neil R. Picha, Mitchel J. Doktycz
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Patent number: 7497995Abstract: A hybrid valve apparatus for use with an aspiration actuator and a dispensing actuator to transfer fluid from a reservoir to a test site on a substrate surface. The hybrid valve includes a valve assembly movable between an aspiration condition and a dispensing condition, and a manifold device coupled to the valve assembly. The manifold device includes a fluid aspiration conduit having a first aspiration port in fluid communication with the aspiration actuator. On an opposite end of the aspiration conduit is a second aspiration port in selective fluid communication with the valve assembly to selectively aspirate a liquid sample slug from the reservoir into a discrete sample path when the valve assembly is in the aspiration condition. The manifold device further includes a fluid dispensing conduit having a first dispensing port in fluid communication with the dispensing actuator, and a second dispensing port in selective fluid communication with the valve assembly.Type: GrantFiled: January 11, 2005Date of Patent: March 3, 2009Assignee: Innovadyne Technologies, Inc.Inventors: James E. Johnson, Neil R. Picha, Mitchel J. Doktycz
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Publication number: 20070155019Abstract: An apparatus and method for delivering repetitive, precision, low volume liquid dispensing from a dispensing orifice of a non-contact liquid dispensing apparatus. An elongated communication passageway of the dispensing apparatus is defined by interior walls having one end in fluid communication with a system fluid reservoir and an opposite end terminating at the dispensing orifice. A system fluid is placed in the communication passageway extending substantially continuously from the system fluid reservoir to the dispensing orifice. The system fluid reservoir is pressurized at a substantially constant back pressure, with a pressurizing gas, preferably helium, that suppresses in-gassing, and that is substantially insoluble to the system liquid. A dispensing liquid is aspirated through the dispensing orifice and into the communication passageway substantially to an interface region with the system fluid contained in the communication passageway.Type: ApplicationFiled: January 26, 2007Publication date: July 5, 2007Applicant: INNOVADYNE TECHNOLOGIES, INC.Inventors: James Johnson, Neil Picha, Craig Storms, David Martin
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Publication number: 20070053798Abstract: A removable secondary liquid dispensing module for use with an existing, automated liquid handling system that defines a work area having a plurality of discrete work stations. Each of the work stations of the automated liquid handling system includes a lab ware site and alignment structure enabling the removable securing standardized microtiter-plates at respective lab ware site. A plate positioning mechanism is configured to move and position the microtiter plates to and from the lab ware sites of the respective work stations thereof and into engagement with the respective carrier alignment structure thereof. Further, a primary liquid dispensing device is configured for selective contact-type dispensing of discrete quantities of fluid, in the range of about one (1) microliter to about ten (10) milliliters, into the test sites of the microtiter plates secured in the respective alignment structure of the respective work station.Type: ApplicationFiled: November 7, 2006Publication date: March 8, 2007Applicant: Innovadyne Technologies, Inc.Inventors: James Johnson, Neil Picha, David Martin, Joel McComb
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Patent number: 7169616Abstract: An apparatus and method for delivering repetitive, precision, low volume liquid dispensing from a dispensing orifice of a non-contact liquid dispensing apparatus. An elongated communication passageway of the dispensing apparatus is defined by interior walls having one end in fluid communication with a system fluid reservoir and an opposite end terminating at the dispensing orifice. A system fluid is placed in the communication passageway extending substantially continuously from the system fluid reservoir to the dispensing orifice. A relatively small volume of gaseous fluid is aspirated through the dispensing orifice, and into the communication passageway in a manner such that the gaseous fluid extends substantially continuously across the transverse cross-sectional dimension of the communication passageway.Type: GrantFiled: January 27, 2003Date of Patent: January 30, 2007Assignee: Innovadyne Technologies, Inc.Inventors: James E. Johnson, Neil R. Picha, Craig M. Storms, David A. Martin
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Patent number: 7135146Abstract: A removable secondary liquid dispensing module for use with an existing, automated liquid handling system that defines a work area having a plurality of discrete work stations. Each of the work stations of the automated liquid handling system includes a lab ware site and alignment structure enabling the removable securing standardized microtiter-plates at respective lab ware site. A plate positioning mechanism is configured to move and position the microtiter plates to and from the lab ware sites of the respective work stations thereof and into engagement with the respective carrier alignment structure thereof. Further, a primary liquid dispensing device is configured for selective contact-type dispensing of discrete quantities of fluid, in the range of about one (1) microliter to about ten (10) milliliters, into the test sites of the microtiter plates secured in the respective alignment structure of the respective work station.Type: GrantFiled: September 6, 2002Date of Patent: November 14, 2006Assignee: Innovadyne Technologies, Inc.Inventors: James E. Johnson, Neil R. Picha, David A. Martin, Joel McComb
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Patent number: 6983636Abstract: A universal calibration apparatus and method to estimate the dispense output from a low volume, non-contact, liquid dispensing systems that may be applied for every hardware configuration (e.g., tube length, orifice diameter, tip design, etc), reagent solution property and environmental condition. This same calibration technique is applied to calibrate or tune these non-contact liquid dispensing systems to dispense desired volumes (in the range of about 0.050 ?L to 50 ?L), irrespective of the hardware configuration or the solution properties. That is, the calibration technique is not dependent on any variables, but the result (the actual dispense volume) is dependant on the variable mentioned. By actuating selected pulse widths, and measuring the resulting volume, a Calibration Profile can be generated correlating the liquid volume dispensed from the orifice to the respective pulse width of the dispensing valve thereof through calibration points.Type: GrantFiled: January 27, 2003Date of Patent: January 10, 2006Assignee: Innovadyne Technologies, Inc.Inventors: James E. Johnson, Neil R. Picha, Craig M. Storms, David A. Martin
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Publication number: 20050129584Abstract: A hybrid valve apparatus for use with an aspiration actuator and a dispensing actuator to transfer fluid from a reservoir to a test site on a substrate surface. The hybrid valve includes a valve assembly movable between an aspiration condition and a dispensing condition, and a manifold device coupled to the valve assembly. The manifold device includes a fluid aspiration conduit having a first aspiration port in fluid communication with the aspiration actuator. On an opposite end of the aspiration conduit is a second aspiration port in selective fluid communication with the valve assembly to selectively aspirate a liquid sample slug from the reservoir into a discrete sample path when the valve assembly is in the aspiration condition. The manifold device further includes a fluid dispensing conduit having a first dispensing port in fluid communication with the dispensing actuator, and a second dispensing port in selective fluid communication with the valve assembly.Type: ApplicationFiled: January 11, 2005Publication date: June 16, 2005Applicant: INNOVADYNE TECHNOLOGIES, INC.Inventors: James Johnson, Neil Picha, Mitchel Doktycz
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Patent number: 6852291Abstract: A hybrid valve apparatus for use with an aspiration actuator and a dispensing actuator to transfer fluid from a reservoir to a test site on a substrate surface. The hybrid valve includes a valve assembly movable between an aspiration condition and a dispensing condition, and a manifold device coupled to the valve assembly. The manifold device includes a fluid aspiration conduit having a first aspiration port in fluid communication with the aspiration actuator. On an opposite end of the aspiration conduit is a second aspiration port in selective fluid communication with the valve assembly to selectively aspirate a liquid sample slug from the reservoir into a discrete sample path when the valve assembly is in the aspiration condition. The manifold device further includes a fluid dispensing conduit having a first dispensing port in fluid communication with the dispensing actuator, and a second dispensing port in selective fluid communication with the valve assembly.Type: GrantFiled: October 11, 2000Date of Patent: February 8, 2005Assignee: Innovadyne Technologies, Inc.Inventors: James E. Johnson, Neil R. Picha, Mitchel J. Doktycz
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Publication number: 20030170903Abstract: An apparatus and method for delivering repetitive, precision, low volume liquid dispensing from a dispensing orifice of a non-contact liquid dispensing apparatus. An elongated communication passageway of the dispensing apparatus is defined by interior walls having one end in fluid communication with a system fluid reservoir and an opposite end terminating at the dispensing orifice. A system fluid is placed in the communication passageway extending substantially continuously from the system fluid reservoir to the dispensing orifice. A relatively small volume of gaseous fluid is aspirated through the dispensing orifice, and into the communication passageway in a manner such that the gaseous fluid extends substantially continuously across the transverse cross-sectional dimension of the communication passageway.Type: ApplicationFiled: January 27, 2003Publication date: September 11, 2003Applicant: INNOVADYNE TECHNOLOGIES, INC.Inventors: James E. Johnson, Neil R. Picha, Craig M. Storms, David A. Martin
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Publication number: 20030167822Abstract: A universal calibration apparatus and method to estimate the dispense output from a low volume, non-contact, liquid dispensing systems that may be applied for every hardware configuration (e.g., tube length, orifice diameter, tip design, etc), reagent solution property and environmental condition. This same calibration technique is applied to calibrate or tune these non-contact liquid dispensing systems to dispense desired volumes (in the range of about 0.050 &mgr;L to 50 &mgr;L), irrespective of the hardware configuration or the solution properties. That is, the calibration technique is not dependent on any variables, but the result (the actual dispense volume) is dependant on the variable mentioned. By actuating selected pulse widths, and measuring the resulting volume, a Calibration Profile can be generated correlating the liquid volume dispensed from the orifice to the respective pulse width of the dispensing valve thereof through calibration points..Type: ApplicationFiled: January 27, 2003Publication date: September 11, 2003Applicant: INNOVADYNE TECHNOLOGIES, INC.Inventors: James E. Johnson, Neil R. Picha, Craig M. Storms, David A. Martin
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Patent number: 6585296Abstract: A high pressure be seating assembly adapted for liquid sealing against a rigid surface having a connecting conduit. The tube sealing assembly includes a rigid, elongated, tube member having a spherical sector-shaped distal end portion with a radius substantially larger than the radius of the tube member. The tube member further includes a central conduit terminating at an apex of the spherical sector-shaped distal end portion to define an annular rim portion such that a fluid-tight seal can be formed between the central conduit of the tube member and the connecting conduit of the surface. This seal is formed at a contact interface between the rim portion and the surface when a relative axial force is applied therebetween.Type: GrantFiled: October 23, 2000Date of Patent: July 1, 2003Assignee: Innovadyne Technologies, Inc.Inventors: Neil R. Picha, James E. Johnson
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Publication number: 20030072679Abstract: A removable secondary liquid dispensing module for use with an existing, automated liquid handling system that defines a work area having a plurality of discrete work stations. Each of the work stations of the automated liquid handling system includes a lab ware site and alignment structure enabling the removable securing standardized microtiter-plates at respective lab ware site. A plate positioning mechanism is configured to move and position the microtiter plates to and from the lab ware sites of the respective work stations thereof and into engagement with the respective carrier alignment structure thereof. Further, a primary liquid dispensing device is configured for selective contact-type dispensing of discrete quantities of fluid, in the range of about one (1) microliter to about ten (10) milliliters, into the test sites of the microtiter plates secured in the respective alignment structure of the respective work station.Type: ApplicationFiled: September 6, 2002Publication date: April 17, 2003Applicant: INNOVADYNE TECHNOLOGIES, INC.Inventors: James E. Johnson, Neil R. Picha, David A. Martin, Joel McComb
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Patent number: 6453929Abstract: A wash system for a fluid handling system that permits simultaneous washing of a plurality of parallel fluid channels is disclosed. In one aspect of the invention, a specialized rotary wash valve is described. In another aspect of the invention a system which incorporates wash and selector valves is described which permits a plurality of separate fluid lines emerging from the selector valve to be washed simultaneously.Type: GrantFiled: February 16, 2001Date of Patent: September 24, 2002Assignee: Innovadyne Technologies, Inc.Inventors: James E. Johnson, Neil Picha, Jon Nichols
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Publication number: 20020112767Abstract: A wash system for a fluid handling system that permits simultaneous washing of a plurality of parallel fluid channels is disclosed. In one aspect of the invention, a specialized rotary wash valve is described. In another aspect of the invention a system which incorporates wash and selector valves is described which permits a plurality of separate fluid lines emerging from the selector valve to be washed simultaneously.Type: ApplicationFiled: February 16, 2001Publication date: August 22, 2002Applicant: Innovadyne Technologies, Inc.Inventors: James E. Johnson, Neil Picha, Jon Nichols