Patents by Inventor Jeremy McCutcheon
Jeremy McCutcheon 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: 10103048Abstract: A process is disclosed for using two polymeric bonding material layers to bond a device wafer and carrier wafer in a way that allows debonding to occur between the two layers under low-force conditions at room temperature. Optionally, a third layer is included at the interface between the two layers of polymeric bonding material to facilitate the debonding at this interface. This process can potentially improve bond line stability during backside processing of temporarily bonded wafers, simplify the preparation of bonded wafers by eliminating the need for specialized release layers, and reduce wafer cleaning time and chemical consumption after debonding.Type: GrantFiled: August 28, 2014Date of Patent: October 16, 2018Assignee: Brewer Science, Inc.Inventors: Tony D. Flaim, Jeremy McCutcheon
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Patent number: 9827757Abstract: New temporary bonding methods and articles formed from those methods are provided. In one embodiment, the methods comprise coating a device or other ultrathin layer on a growth substrate with a rigid support layer and then bonding that stack to a carrier substrate. The growth substrate can then be removed and the ultrathin layer mounted on a final support. In another embodiment, the invention provides methods of handling device layers during processing that must occur on both sides of the fragile layer without damaging it. This is accomplished via the sequential use of two carriers, one on each side of the device layer, bonded with different bonding compositions for selective debonding.Type: GrantFiled: July 9, 2012Date of Patent: November 28, 2017Assignee: Brewer Science Inc.Inventors: Jeremy McCutcheon, Tony D. Flaim, Susan Bailey
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Patent number: 9472436Abstract: Multiple bonding layer schemes that temporarily join semiconductor substrates are provided. In the inventive bonding scheme, at least one of the layers is directly in contact with the semiconductor substrate and at least two layers within the scheme are in direct contact with one another. The present invention provides several processing options as the different layers within the multilayer structure perform specific functions. More importantly, it will improve performance of the thin-wafer handling solution by providing higher thermal stability, greater compatibility with harsh backside processing steps, protection of bumps on the front side of the wafer by encapsulation, lower stress in the debonding step, and fewer defects on the front side.Type: GrantFiled: May 8, 2014Date of Patent: October 18, 2016Assignee: Brewer Science Inc.Inventors: Rama Puligadda, Xing-Fu Zhong, Tony D. Flaim, Jeremy McCutcheon
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Patent number: 9263314Abstract: Multiple bonding layer schemes that temporarily join semiconductor substrates are provided. In the inventive bonding scheme, at least one of the layers is directly in contact with the semiconductor substrate and at least two layers within the scheme are in direct contact with one another. The present invention provides several processing options as the different layers within the multilayer structure perform specific functions. More importantly, it will improve performance of the thin-wafer handling solution by providing higher thermal stability, greater compatibility with harsh backside processing steps, protection of bumps on the front side of the wafer by encapsulation, lower stress in the debonding step, and fewer defects on the front side.Type: GrantFiled: August 4, 2011Date of Patent: February 16, 2016Assignee: Brewer Science Inc.Inventors: Rama Puligadda, Xing-Fu Zhong, Tony D. Flaim, Jeremy McCutcheon
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Patent number: 9224631Abstract: Multiple bonding layer schemes that temporarily join semiconductor substrates are provided. In the inventive bonding scheme, at least one of the layers is directly in contact with the semiconductor substrate and at least two layers within the scheme are in direct contact with one another. The present invention provides several processing options as the different layers within the multilayer structure perform specific functions. More importantly, it will improve performance of the thin-wafer handling solution by providing higher thermal stability, greater compatibility with harsh backside processing steps, protection of bumps on the front side of the wafer by encapsulation, lower stress in the debonding step, and fewer defects on the front side.Type: GrantFiled: February 27, 2014Date of Patent: December 29, 2015Assignee: Brewer Science Inc.Inventors: Rama Puligadda, Xing-Fu Zhong, Tony D. Flaim, Jeremy McCutcheon
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Patent number: 9111981Abstract: New temporary bonding methods and articles formed from those methods are provided. The methods comprise bonding a device wafer to a carrier wafer or substrate only at their outer perimeters in order to assist in protecting the device wafer and its device sites during subsequent processing and handling. The edge bonds formed by this method are chemically and thermally resistant, but can also be softened, dissolved, or mechanically disrupted to allow the wafers to be easily separated with very low forces and at or near room temperature at the appropriate stage in the fabrication process.Type: GrantFiled: January 23, 2009Date of Patent: August 18, 2015Assignee: Brewer Science Inc.Inventors: Tony D. Flaim, Jeremy McCutcheon
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Patent number: 9099512Abstract: New temporary bonding methods and articles formed from those methods are provided. The methods comprise bonding a device wafer to a carrier wafer or substrate only at their outer perimeters in order to assist in protecting the device wafer and its device sites during subsequent processing and handling. The edge bonds formed by this method are chemically and thermally resistant, but can also be softened, dissolved, or mechanically disrupted to allow the wafers to be easily separated with very low forces and at or near room temperature at the appropriate stage in the fabrication process.Type: GrantFiled: November 22, 2010Date of Patent: August 4, 2015Assignee: Brewer Science Inc.Inventors: Tony D. Flaim, Jeremy McCutcheon
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Publication number: 20150122426Abstract: Multiple bonding layer schemes that temporarily join semiconductor substrates are provided. In the inventive bonding scheme, at least one of the layers is directly in contact with the semiconductor substrate and at least two layers within the scheme are in direct contact with one another. The present invention provides several processing options as the different layers within the multilayer structure perform specific functions. More importantly, it will improve performance of the thin-wafer handling solution by providing higher thermal stability, greater compatibility with harsh backside processing steps, protection of bumps on the front side of the wafer by encapsulation, lower stress in the debonding step, and fewer defects on the front side.Type: ApplicationFiled: November 21, 2014Publication date: May 7, 2015Applicant: BREWER SCIENCE INC.Inventors: Rama Puligadda, Xing-Fu Zhong, Tony D. Flaim, Jeremy McCutcheon
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Publication number: 20150064385Abstract: A process is disclosed for using two polymeric bonding material layers to bond a device wafer and carrier wafer in a way that allows debonding to occur between the two layers under low-force conditions at room temperature. Optionally, a third layer is included at the interface between the two layers of polymeric bonding material to facilitate the debonding at this interface. This process can potentially improve bond line stability during backside processing of temporarily bonded wafers, simplify the preparation of bonded wafers by eliminating the need for specialized release layers, and reduce wafer cleaning time and chemical consumption after debonding.Type: ApplicationFiled: August 28, 2014Publication date: March 5, 2015Applicant: Brewer Science Inc.Inventors: Tony D. Flaim, Jeremy McCutcheon
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Publication number: 20140239453Abstract: Multiple bonding layer schemes that temporarily join semiconductor substrates are provided. In the inventive bonding scheme, at least one of the layers is directly in contact with the semiconductor substrate and at least two layers within the scheme are in direct contact with one another. The present invention provides several processing options as the different layers within the multilayer structure perform specific functions. More importantly, it will improve performance of the thin-wafer handling solution by providing higher thermal stability, greater compatibility with harsh backside processing steps, protection of bumps on the front side of the wafer by encapsulation, lower stress in the debonding step, and fewer defects on the front side.Type: ApplicationFiled: May 8, 2014Publication date: August 28, 2014Applicant: Brewer Science Inc.Inventors: Rama Puligadda, Xing-Fu Zhong, Tony D. Flaim, Jeremy McCutcheon
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Publication number: 20140174627Abstract: Multiple bonding layer schemes that temporarily join semiconductor substrates are provided. In the inventive bonding scheme, at least one of the layers is directly in contact with the semiconductor substrate and at least two layers within the scheme are in direct contact with one another. The present invention provides several processing options as the different layers within the multilayer structure perform specific functions. More importantly, it will improve performance of the thin-wafer handling solution by providing higher thermal stability, greater compatibility with harsh backside processing steps, protection of bumps on the front side of the wafer by encapsulation, lower stress in the debonding step, and fewer defects on the front side.Type: ApplicationFiled: February 27, 2014Publication date: June 26, 2014Applicant: Brewer Science Inc.Inventors: Rama Puligadda, Xing-Fu Zhong, Tony D. Flaim, Jeremy McCutcheon
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Publication number: 20140162034Abstract: Multiple bonding layer schemes that temporarily join semiconductor substrates are provided. In the inventive bonding scheme, at least one of the layers is directly in contact with the semiconductor substrate and at least two layers within the scheme are in direct contact with one another. The present invention provides several processing options as the different layers within the multilayer structure perform specific functions. More importantly, it will improve performance of the thin-wafer handling solution by providing higher thermal stability, greater compatibility with harsh backside processing steps, protection of bumps on the front side of the wafer by encapsulation, lower stress in the debonding step, and fewer defects on the front side.Type: ApplicationFiled: August 4, 2011Publication date: June 12, 2014Applicant: Brewer Science Inc.Inventors: Rama Puligadda, Xing-Fu Zhong, Tony D. Flaim, Jeremy McCutcheon
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Publication number: 20140130969Abstract: New temporary bonding methods and articles formed from those methods are provided. In one embodiment, the methods comprise coating a device or other ultrathin layer on a growth substrate with a rigid support layer and then bonding that stack to a carrier substrate. The growth substrate can then be removed and the ultrathin layer mounted on a final support. In another embodiment, the invention provides methods of handling device layers during processing that must occur on both sides of the fragile layer without damaging it. This is accomplished via the sequential use of two carriers, one on each side of the device layer, bonded with different bonding compositions for selective debonding.Type: ApplicationFiled: July 9, 2012Publication date: May 15, 2014Applicant: BREWER SCIENCE INC.Inventors: Jeremy McCutcheon, Tony D. Flaim, Susan Bailey
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Publication number: 20130061869Abstract: New methods of weakening the bonds between a bonded pair of wafers or substrates are provided. The substrates are preferably bonded at their outer peripheries. When it is desired to separate the substrates, they are contacted with a solvent system suitable for weakening, softening, and/or dissolving the bonding composition at their outer peripheries. Megasonic energy is simultaneously directed at the substrates (and preferably the bonding composition itself), so as to increase solvent penetration into the composition, thus decreasing the time needed for substrate separation and increasing throughput.Type: ApplicationFiled: September 6, 2012Publication date: March 14, 2013Applicant: BREWER SCIENCE INC.Inventors: Jeremy McCutcheon, James E. Strothmann
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Publication number: 20120034437Abstract: Multiple bonding layer schemes that temporarily join semiconductor substrates are provided. In the inventive bonding scheme, at least one of the layers is directly in contact with the semiconductor substrate and at least two layers within the scheme are in direct contact with one another. The present invention provides several processing options as the different layers within the multilayer structure perform specific functions. More importantly, it will improve performance of the thin-wafer handling solution by providing higher thermal stability, greater compatibility with harsh backside processing steps, protection of bumps on the front side of the wafer by encapsulation, lower stress in the debonding step, and fewer defects on the front side.Type: ApplicationFiled: August 4, 2011Publication date: February 9, 2012Applicant: BREWER SCIENCE INC.Inventors: Rama Puligadda, Xing-Fu Zhong, Tony D. Flaim, Jeremy McCutcheon
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Publication number: 20110069467Abstract: New temporary bonding methods and articles formed from those methods are provided. The methods comprise bonding a device wafer to a carrier wafer or substrate only at their outer perimeters in order to assist in protecting the device wafer and its device sites during subsequent processing and handling. The edge bonds formed by this method are chemically and thermally resistant, but can also be softened, dissolved, or mechanically disrupted to allow the wafers to be easily separated with very low forces and at or near room temperature at the appropriate stage in the fabrication process.Type: ApplicationFiled: November 22, 2010Publication date: March 24, 2011Applicant: BREWER SCIENCE INC.Inventors: Tony D. Flaim, Jeremy McCutcheon
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Patent number: 7790231Abstract: An improved apparatus (20) and method are provided for effective, high speed contact planarization of coated curable substrates such as microelectronic devices to achieve very high degrees of planarization. The apparatus (20) includes a planarizing unit (28) preferably having an optical flat flexible sheet (88) and a backup optical flat body (82), and a curing assembly (30). In operation, a substrate (78) having a planarizable coating (76) is placed within a vacuum chamber (26) beneath sheet (88) and body (82). A pressure differential is created across sheet (88) so as to deflect the sheet into contact with a central region C of the coating (76), whereupon the coating (76) is brought into full planarizing contact with sheet (88) and body (82) by means of a support (114) and vacuum chuck (120); at this point the coating (76) is cured using assembly (30).Type: GrantFiled: July 8, 2004Date of Patent: September 7, 2010Assignee: Brewer Science Inc.Inventors: Jeremy McCutcheon, James E. Lamb, III
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Publication number: 20090218560Abstract: New temporary bonding methods and articles formed from those methods are provided. The methods comprise bonding a device wafer to a carrier wafer or substrate only at their outer perimeters in order to assist in protecting the device wafer and its device sites during subsequent processing and handling. The edge bonds formed by this method are chemically and thermally resistant, but can also be softened, dissolved, or mechanically disrupted to allow the wafers to be easily separated with very low forces and at or near room temperature at the appropriate stage in the fabrication process.Type: ApplicationFiled: January 23, 2009Publication date: September 3, 2009Applicant: Brewer Science Inc.Inventors: Tony D. Flaim, Jeremy McCutcheon
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Publication number: 20070105384Abstract: An improved apparatus (20) and method are provided for effective, high speed contact planarization of coated curable substrates such as microelectronic devices to achieve very high degrees of planarization. The apparatus (20) includes a planarizing unit (28) preferably having an optical flat flexible sheet (88) and a backup optical flat body (82), and a curing assembly (30). In operation, a substrate (78) having a planarizable coating (76) is placed within a vacuum chamber (26) beneath sheet (88) and body (82). A pressure differential is created across sheet (88) so as to deflect the sheet into contact with a central region C of the coating (76), whereupon the coating (76) is brought into full planarizing contact with sheet (88) and body (82) by means of a support (114) and vacuum chuck (120); at this point the coating (76) is cured using assembly (30).Type: ApplicationFiled: January 3, 2007Publication date: May 10, 2007Inventors: Jeremy McCutcheon, James Lamb
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Publication number: 20050056963Abstract: An improved apparatus (20) and method are provided for effective, high speed contact planarization of coated curable substrates such as microelectronic devices to achieve very high degrees of planarization. The apparatus (20) includes a planarizing unit (28) preferably having an optical flat flexible sheet (88) and a backup optical flat body (82), and a curing assembly (30). In operation, a substrate (78) having a planarizable coating (76) is placed within a vacuum chamber (26) beneath sheet (88) and body (82). A pressure differential is created across sheet (88) so as to deflect the sheet into contact with a central region C of the coating (76), whereupon the coating (76) is brought into full planarizing contact with sheet (88) and body (82) by means of a support (114) and vacuum chuck (120); at this point the coating (76) is cured using assembly (30).Type: ApplicationFiled: July 8, 2004Publication date: March 17, 2005Inventor: Jeremy McCutcheon