Patents by Inventor Tamer Mohamed
Tamer Mohamed 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: 11970462Abstract: An ethyl 3-[4,4-bis(4-chlorophenyl)-2,5-dioxoimidazolidin-1-yl]propanoate compound, its synthesis, and its use as an antimicrobial agent.Type: GrantFiled: January 3, 2024Date of Patent: April 30, 2024Assignee: KING FAISAL UNIVERSITYInventors: Mai Mostafa Khalaf Ali, Mohamed Gouda, Hany Mohamed Abd El-Lateef Ahmed, Tamer Mohamed Abdelghani Ibrahim, Antar Ahmed Abdelhamid Ahmed
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Patent number: 11966169Abstract: A system includes a radiation source, first and second phased arrays, and a detector. The first and second phased arrays include optical elements, a plurality of ports, waveguides, and phase modulators. The optical elements radiate radiation waves. The waveguides guide radiation from a port of the plurality of ports to the optical elements. Phase modulators adjust phases of the radiation waves. One or both of the first and second phased arrays form a first beam and/or a second beam of radiation directed toward a target structure based on the port coupled to the radiation source. The detector receives radiation scattered by the target structure and generates a measurement signal based on the received radiation.Type: GrantFiled: September 23, 2020Date of Patent: April 23, 2024Assignee: ASML Holding N.V.Inventors: Mohamed Swillam, Tamer Mohamed Tawfik Ahmed Elazhary, Stephen Roux, Yuxiang Lin, Justin Lloyd Kreuzer
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Patent number: 11923819Abstract: Disclosed herein are embodiments of a wide bandwidth attenuator circuit having a tunable gain and tunable input impedance. In some embodiments, the wideband attenuator circuit comprises a serial capacitor shunted to ground by a plurality of circuit slices that are connected in parallel and switchably coupled to the output node of the attenuator. Each circuit slice has a tunable resistor that can be set to a conductive state (“enabled”) or a high impedance state (“disabled”) The number of enabled circuit slices that are connected in parallel may be used to program the attenuator gain and the attenuator impedance.Type: GrantFiled: May 13, 2022Date of Patent: March 5, 2024Assignee: MEDIATEK Singapore Pte. Ltd.Inventors: Henry Arnold Park, Tamer Mohammed Ali
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Patent number: 11894956Abstract: A continuous time linear equalizer (CTLE) includes a first circuit path having a step response that increases from an first initial value to a steady state value higher than the first initial value. The CTLE also includes a second circuit path in parallel with the first circuit path, the second circuit path having a step response that increases from a second initial value to a peak and subsequently falls to second steady state value that is approximately equal to the second initial value. The CTLE is configured to combine an output of the first circuit path and an output of the second circuit path.Type: GrantFiled: February 18, 2022Date of Patent: February 6, 2024Assignee: MEDIATEK Singapore Pte. Ltd.Inventors: Henry Arnold Park, Qaiser Nehal, Tamer Mohammed Ali
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Patent number: 11789368Abstract: A system (500) includes an illumination system (502), a lens element (506), and a detector (504). The illumination system generates a beam of radiation (510) having a first spatial intensity distribution (800) at a pupil plane (528) and a second spatial intensity distribution (900) at a plane of a target (514). The first spatial intensity distribution comprises an annular intensity profile (802) or an intensity profile corresponding to three or more beams. The lens element focuses the beam onto the target. The second spatial intensity distribution is a conjugate of the first intensity distribution and has an intensity profile corresponding to a central beam (902) and one or more side lobes (904) that are substantially isolated from the central beam. The central beam has a beam diameter of approximately 20 microns or less at the target. The detector receives radiation scattered by the target and generates a measurement signal based on the received radiation.Type: GrantFiled: September 14, 2020Date of Patent: October 17, 2023Assignee: ASML Holding N.V.Inventors: Yuxiang Lin, Joshua Adams, Tamer Mohamed Tawfik Ahmed Mohamed Elazhary, Krishanu Shome
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Patent number: 11744919Abstract: Provided herein are meniscus implant compositions, as well as method for making and using the same. The subject meniscus implants find use in repairing and/or replacing damaged or diseased meniscal tissue in a mammalian subject.Type: GrantFiled: June 16, 2017Date of Patent: September 5, 2023Inventors: Sam Wadsworth, Simon Beyer, Tamer Mohamed, Konrad Walus
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Patent number: 11746333Abstract: Provided herein are synthetic living tissue structures comprising multiple layers of fibers deposited in solidified form from a 3D bioprinter, together with kits and methods of use related thereto. The fibers comprise a plurality of mammalian cells dispensed within a solidified biocompatible matrix. The structural integrity of the fiber is maintained upon and after deposition without any additional crosslinking. The fiber is continuously bioprinted through at least two layers of the structure. In one aspect, synthetic muscle tissue structures exhibit a readily assayable contractile functionality.Type: GrantFiled: June 16, 2016Date of Patent: September 5, 2023Inventors: Simon Beyer, Tamer Mohamed, Sheng Pan, Sam Wadsworth
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Patent number: 11738501Abstract: A system and method for additive manufacturing of three-dimensional structures, including three-dimensional cellular structures, are provided. The system comprises at least one print head for receiving and dispensing materials, the materials comprising a sheath fluid and a hydrogel, the print head comprising an orifice for dispensing the materials, microfluidic channels for receiving and directing the materials, fluidic switches corresponding to one of the microfluidic channels in the print head and configured to allow or disallow fluid flow in the microfluidic channels; a receiving surface for receiving a first layer of the materials dispensed from the orifice; a positioning unit for positioning the orifice of the print head in three dimensional space; and a dispensing means for dispensing the materials from the orifice of the print head.Type: GrantFiled: June 25, 2021Date of Patent: August 29, 2023Inventors: Simon Travis Beyer, Konrad Walus, Tamer Mohamed, Anas Amjad Mohammad Bsoul
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Patent number: 11724450Abstract: Aspects of the invention include systems and methods for producing fiber structures, and for producing three-dimensional (3D) biological structures from digital files. In some embodiments, the printed fibers comprise living cells. Aspects of the invention further include a print head for producing the fiber structure, the print head comprising: a dispensing channel comprising a distal and proximal end; a dispensing orifice located at the distal end of the dispensing channel; one or more material channels converging with the dispensing channel at its proximal end; a buffer solution channel converging with the one or more material channels at the proximal end of the dispensing channel; and a sheath solution channel converging with the dispensing channel at a position located between the proximal and distal ends of the dispensing channel.Type: GrantFiled: March 15, 2018Date of Patent: August 15, 2023Inventors: Simon Beyer, Tamer Mohamed
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Patent number: 11675192Abstract: A multi-functional diffractive optical element (DOE) for redirecting light into a waveguide and providing higher order aberration correction is described. The multi-functional DOE may be positioned on, connected to, adjacent to, or within a waveguide, and in some examples is positioned at, or near, the exit pupil of the projector lens. In an example, a head-mounted display (HMD) is configured to output artificial reality content, comprising a waveguide configured to receive input light and configured to output the received input light to an eyebox. The HMD further comprises a projector configured to input light into the waveguide, the projector comprising a display, a projection lens, and a multi-functional diffractive optical element (DOE) configured to redirect light from the projector into the waveguide and provide higher order aberration correction of the light from the display.Type: GrantFiled: February 25, 2020Date of Patent: June 13, 2023Assignee: META PLATFORMS TECHNOLOGIES, LLCInventors: Tamer Mohamed Tawfik Ahmed Mohamed Elazhary, Michael Patrick Schaub, Byron Taylor
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Publication number: 20230059471Abstract: A compact sensor apparatus having an illumination beam, a beam shaping system, a polarization modulation system, a beam projection system, and a signal detection system. The beam shaping system is configured to shape an illumination beam generated from the illumination system and generate a flat top beam spot of the illumination beam over a wavelength range from 400 nm to 2000 nm. The polarization modulation system is configured to provide tenability of linear polarization state of the illumination beam. The beam projection system is configured to project the flat top beam spot toward a target, such as an alignment mark on a substrate. The signal detection system is configured to collect a signal beam comprising diffraction order sub-beams generated from the target, and measure a characteristic (e.g., overlay) of the target based on the signal beam.Type: ApplicationFiled: January 21, 2021Publication date: February 23, 2023Applicant: ASML Holding N.V.Inventors: Mohamed SWILLAM, Tamer Mohamed Tawfik Ahmed Mohamed ELAZHARY, Stephen ROUX, Yevgeniy Konstantinovich SHMAREV
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Publication number: 20230025012Abstract: A continuous time linear equalizer (CTLE) includes a first circuit path having a step response that increases from an first initial value to a steady state value higher than the first initial value. The CTLE also includes a second circuit path in parallel with the first circuit path, the second circuit path having a step response that increases from a second initial value to a peak and subsequently falls to second steady state value that is approximately equal to the second initial value. The CTLE is configured to combine an output of the first circuit path and an output of the second circuit path.Type: ApplicationFiled: February 18, 2022Publication date: January 26, 2023Applicant: Media Tek Singapore Pte. Ltd.Inventors: Henry Arnold Park, Qaiser Nehal, Tamer Mohammed Ali
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Patent number: 11561623Abstract: Systems and methods are provided for adjusting point of sale (POS) interfaces. In some embodiments, a POS device includes a display. The display is configured to present a user interface, the user interface having a first interface and a second interface. The first interface has a first set of functionalities that is prevented from being accessible in the second interface.Type: GrantFiled: February 11, 2021Date of Patent: January 24, 2023Assignee: Clover Network, LLC.Inventors: John Daniel Beatty, Leonard Robert Speiser, Angelique Julie Lausier, Tamer Mohamed El Calamawy, Michael Joseph Quinlan
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Patent number: 11552830Abstract: A low power receiver having a feedforward equalization, FFE, based continuous time linear equalizer, CTLE. The FFE CTLE comprises: an input for receiving an input signal; a main first path operably coupled to the input and comprising a source-follower transistor arranged to apply a scaling factor to the received input signal; a second path operably coupled to the input and comprising a delay arranged to apply a delay to the received input signal and a common source transistor common source transistor arranged to apply a scaling factor to the received delayed input signal, wherein the source-follower transistor and the common source, CS, transistor are connected as a single SF-CS stage whose output is arranged to subtract the output of the common source transistor from an output of the source-follower transistor.Type: GrantFiled: September 23, 2021Date of Patent: January 10, 2023Assignee: MediaTek Singapore Pte. LtdInventors: Ahmed Othman Mohamed ElShater, Ramy Awad, Tamer Mohammed Ali
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Publication number: 20220407490Abstract: Disclosed herein are embodiments of a wide bandwidth attenuator circuit having a tunable gain and tunable input impedance. In some embodiments, the wideband attenuator circuit comprises a serial capacitor shunted to ground by a plurality of circuit slices that are connected in parallel and switchably coupled to the output node of the attenuator. Each circuit slice has a tunable resistor that can be set to a conductive state (“enabled”) or a high impedance state (“disabled”) The number of enabled circuit slices that are connected in parallel may be used to program the attenuator gain and the attenuator impedance.Type: ApplicationFiled: May 13, 2022Publication date: December 22, 2022Applicant: MEDIATEK Singapore Pte. Ltd.Inventors: Henry Arnold Park, Tamer Mohammed Ali
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Patent number: 11531280Abstract: An apparatus and system for determining alignment of a substrate in which a periodic alignment mark is illuminated with spatially coherent radiation which is then provided to a compact integrated optical device to create self images of the alignment mark which may be manipulated (e.g., mirrored, polarized) and combined to obtain information on the position of the mark and distortions within the mark. Also disclosed is a system for determining alignment of a substrate in which a periodic alignment mark is illuminated with spatially coherent radiation which is then provided to an optical fiber arrangement to obtain information such as the position of the mark and distortions within the mark.Type: GrantFiled: August 22, 2019Date of Patent: December 20, 2022Assignees: ASML HOLDING N.V., ASML NETHERLANDS B.V.Inventors: Tamer Mohamed Tawfik Ahmed Mohamed Elazhary, Justin Lloyd Kreuzer, Franciscus Godefridus Casper Bijnen, Krishanu Shome
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Patent number: 11526091Abstract: Apparatus for, and method of, measuring a parameter of an alignment mark on a substrate in which an optical system is arranged to receive at least one diffraction order from the alignment mark and the diffraction order is modulated at a pupil or a wafer conjugate plane of the optical system, a solid state optical device is arranged to receive the modulated diffraction order, and a spectrometer is arranged to receive the modulated diffraction order from the solid state optical device and to determine an intensity of one or more spectral components in the modulated diffraction order.Type: GrantFiled: March 25, 2020Date of Patent: December 13, 2022Assignee: ASML Holding N.V.Inventors: Tamer Mohamed Tawfik Ahmed Mohamed Elazhary, Justin Lloyd Kreuzer, Yuxiang Lin, Kirill Urievich Sobolev
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Publication number: 20220373895Abstract: A system (500) includes an illumination system (502), a lens element (506), and a detector (504). The illumination system generates a beam of radiation (510) having a first spatial intensity distribution (800) at a pupil plane (528) and a second spatial intensity distribution (900) at a plane of a target (514). The first spatial intensity distribution comprises an annular intensity profile (802) or an intensity profile corresponding to three or more beams. The lens element focuses the beam onto the target. The second spatial intensity distribution is a conjugate of the first intensity distribution and has an intensity profile corresponding to a central beam (902) and one or more side lobes (904) that are substantially isolated from the central beam. The central beam has a beam diameter of approximately 20 microns or less at the target. The detector receives radiation scattered by the target and generates a measurement signal based on the received radiation.Type: ApplicationFiled: September 14, 2020Publication date: November 24, 2022Applicant: ASML Holding N.V.Inventors: Yuxiang LIN, Joshua ADAMS, Tamer Mohamed Tawfik Ahmed Mohamed ELAZHARY, Krishanu SHOME
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Publication number: 20220350268Abstract: A structure of a semiconductor device with a sub-segmented grating structure as a metrology mark and a method for configuring the metrology mark. The method for configuring a metrology mark may be used in a lithography process. The method may include determining an initial characteristic function of an initial metrology mark disposed within a layer stack. The method also includes perturbing one or more variables of the plurality of subsegments of the metrology mark (e.g., pitch, duty cycle, and/or line width of the plurality of subsegments) and further perturbing a thickness of one or more layers within the layer stack. The method further includes iteratively performing the perturbations until a minimized characteristic function of an initial metrology mark is determined to set a configuration for the plurality of subsegments.Type: ApplicationFiled: September 25, 2020Publication date: November 3, 2022Applicants: ASML HOLDING N.V., ASML NETHERLANDS B.V.Inventors: Tamer Mohamed Tawfik Ahmed Mohamed ELAZHARY, Robert John SOCHA, Stephen ROUX, Simon Reinald HUISMAN
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Patent number: 11469729Abstract: A receiver front-end includes a first variable-gain amplifier that performs attenuation; a continuous time linear equalizer coupled to the input or output of the first variable-gain amplifier, wherein a combination of the first variable-gain amplifier and the continuous time linear equalizer produces a processed signal; a plurality of track-and-hold circuits that sample the processed signal in an interleaved manner; and a plurality of second variable-gain amplifiers receiving input signals from the plurality of track-and-hold circuits respectively.Type: GrantFiled: May 11, 2020Date of Patent: October 11, 2022Assignee: MEDIATEK Singapore Pte. Ltd.Inventors: Ramy Awad, Tamer Mohammed Ali, E-Hung Chen, Miguel Francisco Gandara