Patents by Inventor Frederick J. Good
Frederick J. Good 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).
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Patent number: 11701721Abstract: An adaptive cutting system is presented that facilitates cutting workpieces in new and different ways in a fun, easy, fast, accurate and safe manner. The system includes a benchtop having a grid of bench dog holes across its surface as well as a pair of table tracks embedded within its surface. An edge track extends around the benchtop and a pair of hinge members are connected to the edge tracks that also connect to a saw track that is movable between a raised and lowered position. The system also includes narrow rip stops, wide rip stops, bench dogs and a miter gauge all of which work in concert with the on-table features to facilitate on-table measurement and alignment of workpieces for performing cutting operations.Type: GrantFiled: June 10, 2022Date of Patent: July 18, 2023Assignee: Kreg Enterprises, Inc.Inventors: Joseph W. Gibson, Doyle R. Ramsey, Shelby Lee Strempke, Nathan Scott Combs, Neil M. Holland, Elliot James Hoff, Timothy J. Forbes, Allen F. Raushel, Jacob Martin, Casey L. Kerkmann, Stacy A. Peterson, Christian D. Ewoldt, Michael P. Marusiak, Mark David McClellan, Frederick J. Good, Scott Clark, Edward Charles Hay
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Publication number: 20220371111Abstract: An adaptive cutting system is presented that facilitates cutting workpieces in new and different ways in a fun, easy, fast, accurate and safe manner. The system includes a benchtop having a grid of bench dog holes across its surface as well as a pair of table tracks embedded within its surface. An edge track extends around the benchtop and a pair of hinge members are connected to the edge tracks that also connect to a saw track that is movable between a raised and lowered position. The system also includes narrow rip stops, wide rip stops, bench dogs and a miter gauge all of which work in concert with the on-table features to facilitate on-table measurement and alignment of workpieces for performing cutting operations.Type: ApplicationFiled: June 10, 2022Publication date: November 24, 2022Inventors: Joseph W. Gibson, Doyle R. Ramsey, Shelby Lee Strempke, Nathan Scott Combs, Neil M. Holland, Elliot James Hoff, Timothy J. Forbes, Allen F. Raushel, Jacob Martin, Casey L. Kerkmann, Stacy A. Peterson, Christian D. Ewoldt, Michael P. Marusiak, Mark David McClellan, Frederick J. Good, Scott Clark, Edward Charles Hay
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Patent number: 11383312Abstract: An adaptive cutting system is presented that facilitates cutting workpieces in new and different ways in a fun, easy, fast, accurate and safe manner. The system includes a benchtop having a grid of bench dog holes across its surface as well as a pair of table tracks embedded within its surface. An edge track extends around the benchtop and a pair of hinge members are connected to the edge tracks that also connect to a saw track that is movable between a raised and lowered position. The system also includes narrow rip stops, wide rip stops, bench dogs and a miter gauge all of which work in concert with the on-table features to facilitate on-table measurement and alignment of workpieces for performing cutting operations.Type: GrantFiled: December 18, 2020Date of Patent: July 12, 2022Assignee: KREG ENTERPRISES, INC.Inventors: Joseph W. Gibson, Doyle R. Ramsey, Shelby Lee Strempke, Nathan Scott Combs, Neil M. Holland, Elliot James Hoff, Timothy J. Forbes, Allen F. Raushel, Jacob Martin, Casey L. Kerkmann, Stacy A. Peterson, Christian D. Ewoldt, Michael P. Marusiak, Mark David McClellan, Frederick J. Good, Scott Clark, Edward Charles Hay
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Publication number: 20210138566Abstract: An adaptive cutting system is presented that facilitates cutting workpieces in new and different ways in a fun, easy, fast, accurate and safe manner. The system includes a benchtop having a grid of bench dog holes across its surface as well as a pair of table tracks embedded within its surface. An edge track extends around the benchtop and a pair of hinge members are connected to the edge tracks that also connect to a saw track that is movable between a raised and lowered position. The system also includes narrow rip stops, wide rip stops, bench dogs and a miter gauge all of which work in concert with the on-table features to facilitate on-table measurement and alignment of workpieces for performing cutting operations.Type: ApplicationFiled: December 18, 2020Publication date: May 13, 2021Inventors: Joseph W. Gibson, Doyle R. Ramsey, Shelby Lee Strempke, Nathan Scott Combs, Neil M. Holland, Elliot James Hoff, Timothy J. Forbes, Allen F. Raushel, Jacob Martin, Casey L. Kerkmann, Stacy A. Peterson, Christian D. Ewoldt, Michael P. Marusiak, Mark David McClellan, Frederick J. Good, Scott Clark, Edward Charles Hay
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Patent number: 10875109Abstract: An adaptive cutting system is presented that facilitates cutting workpieces in new and different ways in a fun, easy, fast, accurate and safe manner. The system includes a benchtop having a grid of bench dog holes across its surface as well as a pair of table tracks embedded within its surface. An edge track extends around the benchtop and a pair of hinge members are connected to the edge tracks that also connect to a saw track that is movable between a raised and lowered position. The system also includes narrow rip stops, wide rip stops, bench dogs and a miter gauge all of which work in concert with the on-table features to facilitate on-table measurement and alignment of workpieces for performing cutting operations.Type: GrantFiled: April 30, 2019Date of Patent: December 29, 2020Assignee: KREG ENTERPRISES, INC.Inventors: Joseph W. Gibson, Doyle R. Ramsey, Shelby Lee Strempke, Nathan Scott Combs, Neil M. Holland, Elliot James Hoff, Timothy J. Forbes, Allen F. Raushel, Jacob Martin, Casey L. Kerkmann, Stacy A. Peterson, Christian D. Ewoldt, Michael P. Marusiak, Mark David McClellan, Frederick J. Good, Scott Clark, Edward Charles Hay
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Publication number: 20200391310Abstract: An adaptive cutting system is presented that facilitates cutting workpieces in new and different ways in a fun, easy, fast, accurate and safe manner. The system includes a benchtop having a grid of bench dog holes across its surface as well as a pair of table tracks embedded within its surface. An edge track extends around the benchtop and a pair of hinge members are connected to the edge tracks that also connect to a saw track that is movable between a raised and lowered position. The system also includes narrow rip stops, wide rip stops, bench dogs and a miter gauge all of which work in concert with the on-table features to facilitate on-table measurement and alignment of workpieces for performing cutting operations.Type: ApplicationFiled: April 30, 2019Publication date: December 17, 2020Inventors: Joseph W. Gibson, Doyle R. Ramsey, Shelby Lee Strempke, Nathan Scott Combs, Neil M. Holland, Elliot James Hoff, Timothy J. Forbes, Allen F. Raushel, Jacob Martin, Casey L. Kerkmann, Stacy A. Peterson, Christian D. Ewoldt, Michael P. Marusiak, Mark David McClellan, Frederick J. Good, Scott Clark, Edward Charles Hay
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Patent number: 6361915Abstract: A process for manufacturing a conductive micro-powder includes the steps of: (i) forming an aqueous dispersion of conductive material and the first surfactant, (ii) mixing a latex emulsion of a polymer and a second surfactant into the aqueous dispersion to form a suspension and (iii) recovering the conductive micro-powder from the suspension. The first and second surfactants are of the same class and polarity. The conductive micro-powder finds particular utility as a coating for carrier core particles, and as a conductive coating component of carrier particle coatings.Type: GrantFiled: November 28, 2000Date of Patent: March 26, 2002Assignee: Xerox CorporationInventors: John G. Van Dusen, Frederick J. Good, Vladislav Skorokhod, Suresh K. Ahuja, Michael S. Hawkins
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Patent number: 5019275Abstract: Water soluble terpolymers based on (1) an acrylamide or acrylamide derivative, (2) a cationic vinyl monomer and (3) a hydrophilic vinyl monomer of the formula CH.sub.2 C(R)C(O)O(CH.sub.2 (CH.sub.2).sub.m O).sub.n E where R and E are each hydrogen or alkyl, m is an integer from 1 to 3 and n is an integer from 1 to 25 are useful flocculants.Type: GrantFiled: August 15, 1990Date of Patent: May 28, 1991Assignee: Polypure, Inc.Inventors: Frederick J. Good, Jr., Ronald E. Highsmith
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Patent number: 4988442Abstract: The present invention provides an improved biological sludge dewatering process. The process comprises the steps of: (a) heating biological sludge to a temperature of about 90.degree. to about 150.degree. C. which corresponds to a pressure of about 0 to about 55 psig and retaining the biological sludge at that temperature for less than about 15 minutes; (b) centrifuging the heated biological sludge to isolate the solids of the heated biological sludge from the liquid of the heated biological sludge; (c) chemically conditioning the isolated solids; and (d) dewatering the conditioned solids to produce a high solids biological sludge. The present process is used for dewatering any biological sludge to produce a high solids cake. The resulting high solids cake may be used as landfill, incinerated, or used as fertilizer by spreading on land and plowing said fertilizer into the soil.Type: GrantFiled: November 7, 1988Date of Patent: January 29, 1991Assignee: Polypure, Inc.Inventors: Ronald E. Highsmith, Frederick J. Good, Jr., Francis S. Lupton, Kenneth P. Kehrer, Glenn E. Petrie
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Patent number: 4981936Abstract: Water soluble terpolymers based on (1) an acrylamide or acrylamide derivative, (2) a cationic vinyl monomer and (3) a hydrophilic vinyl monomer of the formula CH.sub.2 C(R)C(O)O(CH.sub.2 (CH.sub.2).sub.m O).sub.n E where R and E are each hydrogen or alkyl, m is an integer from 1 to 3 and n is an integer from 1 to 25 are useful flocculants.Type: GrantFiled: April 14, 1989Date of Patent: January 1, 1991Assignee: Polypure, Inc.Inventors: Frederick J. Good, Jr., Ronald E. Highsmith