Patents Assigned to Performance IT
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Patent number: 11058936Abstract: An exercise rack enclosure system for providing an exercise rack which is concealable within an enclosure. The exercise rack enclosure system generally includes an enclosure including an interior space. An exercise rack is pivotably connected to the enclosure within the interior space. The exercise rack is adjustable between a collapsed position, in which the exercise rack is completely positioned within the interior space of the enclosure, and an extended position, in which the exercise rack extends out of the interior space of the enclosure for use. The enclosure may optionally include one or more doors for concealing the interior space and exercise rack when not in use. Various attachments may be stored in the enclosure and removably connected to the exercise rack for performing a wide range of exercise moves.Type: GrantFiled: March 30, 2021Date of Patent: July 13, 2021Assignee: PRx Performance, LLCInventors: Brian B. Brasch, Garrett A. Iverson, Jacob M. Yokom
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Patent number: 11059774Abstract: The present disclosure relates to fluid bed processes that utilize silica particles as a fluidization aid. The process comprises reacting one or more reactants in a reactor comprising a fluid bed to form a product. The fluid bed comprises a catalyst composition comprising a catalyst and an inert additive composition comprising silica particles from 0.5 wt % to 30 wt %, based on the total weight of the catalyst composition. The silica particles are discrete, inert particles that are mixed with the catalyst in the fluid bed.Type: GrantFiled: June 27, 2019Date of Patent: July 13, 2021Assignee: Ascend Performance Materials Operations LLCInventors: Yawu T. Chi, James Sutton, Ali Akhavan, Celia L. Kniepmann, Matthew D. Cox, Valerie S. Monical
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Patent number: 11058995Abstract: The present disclosure relates more to processes for making a filter element that includes a filter membrane having a strip of thermoplastic polymer material laminated thereto, for example, as a strip along an edge of the filter membrane. For example, one such process includes providing a sheet of filter membrane having a first surface and an opposed second surface; providing a strip of thermoplastic polymer material having a first surface and an opposed second surface; contacting the first surface of the strip of thermoplastic polymer material with the first surface of the filter membrane; and softening the strip of thermoplastic polymer material at at least its first surface by irradiation with laser radiation; such that the softened polymer material of the first surface of the strip of thermoplastic polymer material bonds to the first surface of the filter membrane upon hardening.Type: GrantFiled: September 29, 2017Date of Patent: July 13, 2021Assignee: SAINT-GOBAIN PERFORMANCE PLASTICS CORPORATIONInventors: Ashok K. Mohanty, Adam P. Nadeau
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Publication number: 20210204679Abstract: A high mobility, contoured shoulder and hip pad that can address various needs for body armor, equipment belt, and other types of equipment-users as identified above. The pad is shaped such that the pad can disperse the weight of a body armor system or other load carrying system on the faces of the user's shoulder and trapezius muscle or hip area. The width of the pad can involve reduced dimensions at the middle portion of the pad relative to the width dimensions at the ends of the pad, such as e.g., having an hourglass shape.Type: ApplicationFiled: December 16, 2020Publication date: July 8, 2021Applicant: Qore Performance, Inc.Inventors: Justin B. LI, J.D. WILLCOX
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Patent number: 11055633Abstract: An agricultural data collection framework is provided in a system and method for tracking and managing livestock, and for analyzing animal conditions such as health, growth, nutrition, and behavior. The framework uses ultra-high frequency interrogation of RFID tags to collect individual animal data across multiple geographical locations, and incorporates artificial intelligence techniques to develop machine learning base models for statistical process controls around each animal for evaluating the animal condition. The framework provides a determination of normality at an individual animal basis or for a specific location, and generates alerts, predictions, and a targeted processing or application schedule for prioritizing and delivering resources when intervention is needed.Type: GrantFiled: April 20, 2020Date of Patent: July 6, 2021Assignee: PERFORMANCE LIVESTOCK ANALYTICS, INC.Inventors: Dane T. Kuper, Dustin C. Balsley, Paul Gray, William Justin Sexten
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Patent number: 11052383Abstract: Disclosed herein is the use of manganese, iron, cobalt, or nickel complexes containing tridentate pyridine di-imine ligands as hydrosilylation catalysts. These complexes are effective for efficiently catalyzing hydrosilylation reactions, as well as offering improved selectivity and yield over existing catalyst systems.Type: GrantFiled: September 26, 2017Date of Patent: July 6, 2021Assignees: MOMENTIVE PERFORMANCE MATERIALS INC., PRINCETON UNIVERSITYInventors: Keith James Weller, Crista Carmen H. Atienza, Julie Boyer, Paul Chirik, Johannes G. P. Delis, Kenrick Lewis, Susan A. Nye
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Patent number: 11056009Abstract: Techniques are described for the exchange of control signals between a controlled unmanned aircraft (i.e. drone) and a ground control station and for the transmission of communication signals, such as video, from the drone to the ground control station so that the signals are more difficult to intercept or jam. The video signal transmitted from the drone can be an analog RF signal employing one or more of video “scrambling”, RF signal inversion, hopping, usage of a wide frequency range and other techniques. To secure the control signals between the drone and the ground control station, techniques can include hopping, encryption and use of a wide frequency range.Type: GrantFiled: January 30, 2019Date of Patent: July 6, 2021Assignee: Performance Drone Works LLCInventors: Lucas Tholen, David Mitchell, Larry Dickinson, Lucas Anderson, Trevor Smith, Ryan Gury
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Publication number: 20210198187Abstract: A process for producing a TCH stream, the process comprising: separating, in a first column, an adiponitrile process stream comprising TCH and optionally adiponitrile, to form an adiponitrile stream comprising greater than 5 wt. % adiponitrile and a first TCH stream comprising TCH, and optionally a heavies stream comprising high-boiling components and solid impurities; and optionally purifying the first TCH stream, via one or more columns, to form a purified TCH stream comprising greater than 50 wt. % TCH; wherein the first column is operated at a pressure drop less than 25 mmHg.Type: ApplicationFiled: December 30, 2020Publication date: July 1, 2021Applicant: Ascend Performance Materials Operations LLCInventors: Sanjay Dube, Benjamin Haseltine, Jefferson Thomas Ebert, Darrick Elmore
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Publication number: 20210201974Abstract: A circuit for reducing read disturbance error in a tag array. The circuit includes a decoder, a plurality of m-bit comparators, and a plurality of n-bit comparators. The decoder is configured to enable access to a respective set of the tag array based on a value of an index of a requested address. Each respective m-bit comparator is configured to enable access to a respective plurality of Most Significant Bits (MSBs) of the respective set responsive to each respective Least Significant Bit (LSB) of a respective plurality of LSBs of the respective set being equal to a respective LSB of a tag of the requested address. Each respective n-bit comparator is configured to enable access to the respective set by a data bus responsive to each respective MSB of the respective plurality of MSBs being equal to a respective MSB of the tag.Type: ApplicationFiled: March 18, 2021Publication date: July 1, 2021Applicants: High Performance Data Storage, Sharif University of TechnologyInventors: Hossein Asadi, Elham Cheshmikhanikhanghah
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Publication number: 20210197536Abstract: The present disclosure relates to a multilayer protective film that may include a multilayer component and a release liner component underlying the multilayer component. The multilayer component may have a first PET layer overlying a second PET layer. The multilayer protective film may further have a thickness ratio MPFT:RLT of not greater than about 14:1, where MPFT is equal to the thickness of the multilayer component and RLT is equal to the thickness of the release liner component.Type: ApplicationFiled: December 15, 2020Publication date: July 1, 2021Applicant: SAINT-GOBAIN PERFORMANCE PLASTICS CORPORATIONInventors: Tad BERGSTRESSER, Luc A. GOEMAERE, Matthew GACEK
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Publication number: 20210198186Abstract: The present disclosure relates generally to processes for recovering tricyanohexane (TCH) via purification of by-product or co-product streams of adiponitrile production. In particular, the present disclosure relates to a process for purifying tricyanohexane (TCH), the process having the steps of (a) separating an adiponitrile process stream comprising adiponitrile and TCH to form a first overhead lights stream comprising low-boiling components and high-boiling components and a first bottoms heavies stream comprising high-boiling components and solid impurities; and (b) separating the first overhead lights stream in a distillation column to form a second overhead lights stream comprising low-boiling components, a second bottoms heavies stream comprising high-boiling components, and a TCH stream comprising TCH and less than 10 wt. % impurities; wherein the distillation column is a low pressure distillation column.Type: ApplicationFiled: December 30, 2020Publication date: July 1, 2021Applicant: Ascend Performance Materials Operations LLCInventors: Sanjay Dube, Benjamin Haseltine, Jefferson Thomas Ebert, Darrick Elmore
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Patent number: 11047037Abstract: Embodiments of the present disclosure are directed to thin conductive composites, such as biosensor electrodes, containing a polymeric film substrate a conductive layer disposed adjacent the substrate. The conductive layer includes Krypton and a conductive material. The conductive layer has an average thickness of no greater than about 150 nanometers. The conductive layer has a normalized thickness (t/?) of no greater than about 3.0. Further, the composite has a sheet resistance of no greater than about 97.077t?1.071 ohm/sq, where t represents the thickness of the conductive layer in nanometers.Type: GrantFiled: May 27, 2016Date of Patent: June 29, 2021Assignee: SAINT-GOBAIN PERFORMANCE PLASTICS CORPORATIONInventors: Wentao Xu, Fabien Lienhart
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Patent number: 11046012Abstract: A method for generating a signal indicative for nozzle maintenance, including feeding modeling material through a feed channel of a printhead to a nozzle of the printhead in a three-dimensional modeling system, determining a parameter indicative of a fluid resistance of modeling material within the nozzle. Determining the parameter includes determining a flowrate of the modeling material within the feed channel, determining a pressure exerted on the modeling material within the feed channel and determining a pressure exerted on the modeling material outside the feed channel, determining a pressure difference between the pressure exerted on the modeling material within the feed channel and the pressure exerted on the modeling material outside the feed channel, and calculating the parameter from the determined flow rate and the determined pressure difference.Type: GrantFiled: April 16, 2018Date of Patent: June 29, 2021Assignee: BOND HIGH PERFORMANCE 3D TECHNOLOGY B.V.Inventors: Thomas Jonathan Bruggeman, Adrianus Bruggeman, Martijn Johannes Wolbers, Kevin Hendrik Jozef Voss, Bouwe Kuiper, Koendert Hendrik Kuit, Marald Speelman
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Publication number: 20210186025Abstract: The present disclosure relates to a process for preparing fibers and/or fabrics having antimicrobial properties, the process comprising: determining an operating pressure limit; calculating an amount of zinc based on the operating pressure limit; forming a polyamide composition comprising: polyamide; and the calculated amount of zinc; forming fibers from the polyamide composition, wherein the forming is conducted at an operating pressure below the operating pressure limit.Type: ApplicationFiled: December 18, 2020Publication date: June 24, 2021Applicant: Ascend Performance Materials Operations LLCInventors: Albert ORTEGA, Wai-shing Yung, Scott E. Osborn
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Patent number: 11035076Abstract: Cellulosic materials modified with a surface modifier to promote compatibility with a hydrophobic material and methods for producing surface-modified cellulosic materials are provided. The methods include providing a slurry of a cellulosic material and adding a surface modifier to the slurry. The surface modifier may be added to the slurry in a soluble form and precipitated by adjusting the pH. The surface-modified cellulosic material may be solvent-dried and/or dried using conventional drying methods to enhance hydrophobicity. To solvent-dry the surface-modified cellulosic material, a solvent is added to an aqueous slurry of the surface-modified cellulosic material to form an azeotrope. The azeotrope has a boiling point that is less than the boiling point of the solvent. The slurry is distilled to remove the azeotrope from the surface-modified cellulose material. The solvent is removed from the surface-modified cellulose material.Type: GrantFiled: June 22, 2017Date of Patent: June 15, 2021Assignee: PERFORMANCE BIOFILAMENTS INC.Inventors: Gurminder Minhas, Keith Gourlay
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Patent number: 11034129Abstract: A composite includes a first layer of a first fluoropolymer; a second layer of at least one ply of a reinforcing fabric overlying the first layer; and a third layer of a second fluoropolymer overlying the second layer opposite to the first layer, wherein the first layer, the third layer, or combination thereof have an outer surface that is defect free; wherein the composite has a continuous length of at least about 3 meters. Embodiments of such composites can find applications, for example, as processing aids for an electronic device, a food, a polymer, insulating an electrical device, or heat sealing a polymer.Type: GrantFiled: February 16, 2017Date of Patent: June 15, 2021Assignee: SAINT-GOBAIN PERFORMANCE PLASTICS CORPORATIONInventors: Joseph G. Sargent, Gerard T. Buss, Michael P. Cushman, Timothy P. Pollock, Helen K. Bergstrom
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Patent number: D924100Type: GrantFiled: February 26, 2020Date of Patent: July 6, 2021Assignee: Polestar Performance ABInventor: Örjan Sterner
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Patent number: D924273Type: GrantFiled: December 4, 2017Date of Patent: July 6, 2021Assignee: Holley Performance Products, Inc.Inventors: Laura Shehan, Amy Gieske, Jonathan Sams, Adam Layman
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Patent number: D924538Type: GrantFiled: September 16, 2019Date of Patent: July 13, 2021Assignee: Performance Fabrics, Inc.Inventors: Federico Mauro Castro, Jr., Danielle E. Bullinger
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Patent number: D924730Type: GrantFiled: February 26, 2020Date of Patent: July 13, 2021Assignee: Polestar Performance ABInventor: Örjan Sterner