Patents by Inventor Feras Eid

Feras Eid 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).

  • Publication number: 20190141456
    Abstract: Embodiments of the invention include an acoustic transducer device having a base structure that is positioned in proximity to a cavity of an organic substrate, a piezoelectric material in contact with a first electrode of the base structure, and a second electrode in contact with the piezoelectric material. In one example, for a transmit mode, a voltage signal is applied between the first and second electrodes and this causes a stress in the piezoelectric material which causes a stack that is formed with the first electrode, the piezoelectric material, and the second electrode to vibrate and hence the base structure to vibrate and generate acoustic waves.
    Type: Application
    Filed: July 1, 2016
    Publication date: May 9, 2019
    Inventors: Georgios C. DOGIAMIS, Feras EID, Adel A. ELSHERBINI, Johanna SWAN, Shawna M. LIFF, Thomas L. SOUNART, Sasha N. OSTER
  • Publication number: 20190140158
    Abstract: Piezoelectric devices are described fabricated in packaging buildup layers. In one example, a package has a plurality of conductive routing layers and a plurality of organic dielectric layers between the conductive routing layers. A die attach area has a plurality of vias to connect to a microelectronic die, the vias connecting to respective conductive routing layers. A piezoelectric device is formed on an organic dielectric layer, the piezoelectric device having at least one electrode coupled to a conductive routing layer.
    Type: Application
    Filed: March 28, 2014
    Publication date: May 9, 2019
    Inventors: Feras Eid, Shawna M. Liff
  • Patent number: 10282965
    Abstract: Techniques are disclosed for using synthetic jet technology as an air delivery device for sensing applications. In particular, a synthetic jet device is used to deliver a controlled airflow or other fluidic flow to a sensor measurement area. Such a sensing system can be used to detect accurate concentration of target features present in the ambient surroundings, such as gases, particles, solutions, mixtures, and any other environmental features that can be sensed from a controlled airflow. An example application is air quality monitoring by using one or more synthetic jet devices to deliver a known or otherwise controlled airflow to a sensing area, thereby allowing for detection of harmful or otherwise unacceptable concentrations of particulate matter, gases, or air pollutants. In some embodiments, a synthetic jet device is operatively coupled with a sensor via a flow channel in a common housing, so as to provide a controlled flow sensing system.
    Type: Grant
    Filed: December 11, 2014
    Date of Patent: May 7, 2019
    Assignee: INTEL CORPORATION
    Inventors: Jessica Gullbrand, Melissa A. Cowan, Chytra Pawashe, Feras Eid
  • Publication number: 20190121038
    Abstract: Embodiments of the invention include an optoelectronic package that allows for in situ alignment of optical fibers. In an embodiment, the optoelectronic package may include an organic substrate. Embodiments include a cavity formed into the organic substrate. Additionally, the optoelectronic package may include an actuator formed on the organic substrate that extends over the cavity. In one embodiment, the actuator may include a first electrode, a piezoelectric layer formed on the first electrode, and a second electrode formed on the piezoelectric layer. According to an additional embodiment of the invention, the actuator may include a first portion and a second portion. In order to allow for resistive heating and actuation driven by thermal expansion, a cross-sectional area of the first portion of the beam may be greater than a cross-sectional area of the second portion of the beam.
    Type: Application
    Filed: July 1, 2016
    Publication date: April 25, 2019
    Inventors: Johanna M. SWAN, Aleksandar ALEKSOV, Sasha N. OSTER, Feras EID, Baris BICEN, Thomas L. SOUNART, Shawna M. LIFF, Valluri R. RAO
  • Publication number: 20190113545
    Abstract: Embodiments of the invention include a current sensing device for sensing current in an organic substrate. The current sensing device includes a released base structure that is positioned in proximity to a cavity of the organic substrate and a piezoelectric film stack that is positioned in proximity to the released base structure. The piezoelectric film stack includes a piezoelectric material in contact with first and second electrodes. A magnetic field is applied to the current sensing device and this causes movement of the released base structure and the piezoelectric stack which induces a voltage (potential difference) between the first and second electrodes.
    Type: Application
    Filed: July 1, 2016
    Publication date: April 18, 2019
    Inventors: Georgios C. DOGIAMIS, Adel A. ELSHERBINI, Shawna M. LIFF, Johanna M. SWAN, Jelena CULIC-VISKOTA, Thomas L. SOUNART, Feras EID, Sasha N. OSTER
  • Patent number: 10264671
    Abstract: Embodiments of the invention include a microelectronic device that includes a plurality of organic dielectric layers, a cavity formed in at least one organic dielectric layer of the plurality of organic dielectric layers and a modular structure having first and second ports and a conductive member that is formed within the cavity. The conductive member provides modularity by being capable of connecting the first and second ports and also disconnecting the first and second ports.
    Type: Grant
    Filed: June 30, 2017
    Date of Patent: April 16, 2019
    Assignee: Intel Corporation
    Inventor: Feras Eid
  • Patent number: 10251272
    Abstract: Embodiments of the invention include a microelectronic device that includes a plurality of organic dielectric layers and a capacitor that is integrated with a first organic dielectric layer of the plurality of organic dielectric layers. The capacitor includes first and second conductive electrodes and an ultra-high-k dielectric layer that is positioned between the first and second conductive electrodes.
    Type: Grant
    Filed: June 30, 2017
    Date of Patent: April 2, 2019
    Assignee: Intel Corporation
    Inventors: Aleksandar Aleksov, Feras Eid, Thomas L. Sounart, Georgios C. Dogiamis, Johanna M. Swan
  • Publication number: 20190096798
    Abstract: Aspects of the embodiments are directed to an IC chip that includes a substrate comprising a first metal layer, a second metal layer, and a ground plane residing on the first metal layer. The second metal layer can include a first signal trace, the first signal trace electrically coupled to a first signal pad residing in the first metal layer by a first signal via. The second metal layer can include a second signal trace, the second signal trace electrically coupled to a second signal pad residing in the first metal layer by a second signal via. The substrate can also include a ground trace residing in the second metal layer between the first signal trace and the second signal trace, the ground trace electrically coupled to the ground plane by a ground via. The vias coupled to the traces can include self-aligned or zero-misaligned vias.
    Type: Application
    Filed: September 28, 2017
    Publication date: March 28, 2019
    Applicant: Intel Corporation
    Inventors: Aleksandar Aleksov, Arnab Sarkar, Arghya Sain, Kristof Darmawikarta, Henning Braunisch, Prashant D. Parmar, Sujit Sharan, Johanna M. Swan, Feras Eid
  • Patent number: 10215164
    Abstract: A device for harvesting energy from fabric or clothing includes a piece of fabric or clothing. One or more piezoelectric harvesters are coupled with the piece of fabric or clothing. The piezoelectric harvesters are capable of producing electric energy in response to the movement of the piece of fabric or clothing. Additionally, the device includes one or more energy storage mediums coupled to the one or more piezoelectric harvesters. The energy storage mediums are capable of storing the energy produced by the one or more piezoelectric harvesters. Further, the method for harvesting energy from fabric or clothing involves moving a piece of fabric such that one or more piezoelectric harvesters generate electricity. The method for harvesting energy from fabric or clothing also involves storing the generated electricity in one or more energy storage mediums.
    Type: Grant
    Filed: December 7, 2015
    Date of Patent: February 26, 2019
    Assignee: Intel Corporation
    Inventors: Nadine L. Dabby, Feras Eid, Adel A. Elsherbini, Braxton Lathrop, Aleksandar Aleksov, Sasha Oster
  • Publication number: 20190038170
    Abstract: Sensing patch systems are disclosed herein. A sensing patch system includes a flexible substrate and a sensor node. The flexible substrate includes one or more substrate sensors configured to provide sensor data, one or more substrate conductors electrically coupled to a corresponding substrate sensor to conduct the sensor data provided by the corresponding substrate sensor, and a node interface. The sensor node includes a substrate interface configured to receive the node interface of the flexible substrate. The sensor node is configured to receive the sensor data provided by the substrate sensors, process the sensor data, and communicate the processed sensor data to a remote device.
    Type: Application
    Filed: December 11, 2017
    Publication date: February 7, 2019
    Inventors: Amit Baxi, Adel Elsherbini, Vincent Mageshkumar, Sasha Oster, Aleksandar Aleksov, Feras Eid
  • Publication number: 20190033576
    Abstract: Embodiments of the invention include a display formed on an organic substrate and methods of forming such a device. According to an embodiment, an array of pixel mirrors may be formed on the organic substrate. For example, each of the pixel mirrors is actuatable about one or more axes out of the plane of the organic substrate. Additionally, embodiments of the invention may include an array of routing mirrors formed on the organic substrate. According to an embodiment, each of the routing mirrors is actuatable about two axes out of the plane of the organic substrate. In embodiments of the invention, a light source may be used for emitting light towards the array of routing mirrors. For example, light emitted from the light source may be reflected to one or more of the pixel mirrors by one of the routing mirrors.
    Type: Application
    Filed: April 1, 2016
    Publication date: January 31, 2019
    Inventors: Sasha N. OSTER, Feras EID, Johanna M. SWAN, Thomas L. SOUNART, Aleksandar ALEKSOV, Shawna M. LIFF, Baris BICEN, Valluri R. RAO
  • Publication number: 20190033500
    Abstract: Embodiments of the invention include an optical grating switch integrated into an organic substrate and methods of forming such devices. According to an embodiment, the optical grating switch may include a cavity formed into an organic substrate. Additionally, the optical grating switch may include an array of moveable beams anchored to the organic substrate and suspended over the cavity. In an embodiment of the invention, each of the moveable beams in the optical grating switch may include a piezoelectric region formed over end portions of the moveable beam and a top electrode formed over a top surface of each of the piezoelectric regions. In order to reflect or diffract light, embodiments of the invention may include moveable beams that include a reflective surface formed over a central portion of the moveable beam.
    Type: Application
    Filed: April 1, 2016
    Publication date: January 31, 2019
    Inventors: Thomas L. SOUNART, Baris BICEN, Feras EID, Sasha N. OSTER, Aleksandar ALEKSOV, Shawna M. LIFF, Valluri R. RAO, Johanna M. SWAN
  • Publication number: 20190036002
    Abstract: Embodiments of the invention include piezoelectrically driven switches that are used for modifying a background color or light source color in display systems, and methods of forming such devices. In an embodiment, a piezoelectrically actuated switch for modulating a background color in a display may include a photonic crystal that has a plurality of blinds oriented substantially perpendicular to a surface of the display. In an embodiment, the blinds include a black surface and a white surface. The switch may also include an anchor spaced away from an edge of the photonic crystal and a piezoelectric actuator formed on the surface of the anchor and a surface of the photonic crystal. Some embodiments may include a photonic crystal that is a multi-layer polymeric structure or a polymer chain with a plurality of nanoparticles spaced at regular intervals on the polymer chain.
    Type: Application
    Filed: April 1, 2016
    Publication date: January 31, 2019
    Inventors: Shawna M. LIFF, Feras EID, Aleksandar ALEKSOV, Sasha N. OSTER, Baris BICEN, Thomas L. SOUNART, Johanna M. SWAN, Adel A. ELSHERBINI, Valluri R. RAO
  • Publication number: 20190036774
    Abstract: Embodiments of the invention include a physiological sensor system. According to an embodiment the sensor system may include a package substrate, a plurality of sensors formed on the substrate, a second electrical component, and an encryption bank formed along a data transmission path between the plurality of sensors and the second electrical component. In an embodiment the encryption bank may include a plurality of portions that each have one or more switches integrated into the package substrate. In an embodiment each sensor transmits data to the second electrical component along different portions of the encryption bank. In some embodiments, the switches may be piezoelectrically actuated. In other embodiments the switches may be actuated by thermal expansion. Additional embodiments may include tri- or bi-stable mechanical switches.
    Type: Application
    Filed: October 4, 2018
    Publication date: January 31, 2019
    Inventors: Shawna M. LIFF, Adel A. ELSHERBINI, Sasha N. OSTER, Feras EID, Georgios C. DOGIAMIS, Thomas L. SOUNART, Johanna M. SWAN
  • Publication number: 20190033575
    Abstract: Embodiments of the invention include a piezo-electric mirror in an microelectronic package and methods of forming the package. According to an embodiment the microelectronic package may include an organic substrate with a cavity formed in the organic substrate. In some embodiments, an actuator is anchored to the organic substrate and extends over the cavity. For example, the actuator may include a first electrode and a piezo-electric layer formed on the first electrode. A second electrode may be formed on the piezo-electric layer. Additionally, a mirror may be formed on the actuator. Embodiments allow for the piezo-electric layer to be formed on an organic package substrate by using low temperature crystallization processes. For example, the piezo-electric layer may be deposited in an amorphous state. Thereafter, a laser annealing process that includes a pulsed laser may be used to crystallize the piezo-electric layer.
    Type: Application
    Filed: April 1, 2016
    Publication date: January 31, 2019
    Inventors: Sasha N. OSTER, Feras EID, Johanna M. SWAN, Shawna M. LIFF, Aleksandar ALEKSOV, Thomas L. SOUNART, Baris BICEN, Valluri R. RAO
  • Publication number: 20190032272
    Abstract: Embodiments of the invention include an active fiber with a piezoelectric layer that has a crystallization temperature that is greater than a melt or draw temperature of the fiber and methods of forming such active fibers. According to an embodiment, a first electrode is formed over an outer surface of a fiber. Embodiments may then include depositing a first amorphous piezoelectric layer over the first electrode. Thereafter, the first amorphous piezoelectric layer may be crystallized with a pulsed laser annealing process to form a first crystallized piezoelectric layer. In an embodiment, the pulsed laser annealing process may include exposing the first amorphous piezoelectric layer to radiation from an excimer laser with an energy density between approximately 10 and 100 mJ/cm2 and pulse width between approximately 10 and 50 nanoseconds. Embodiments may also include forming a second electrode over an outer surface of the crystallized piezoelectric layer.
    Type: Application
    Filed: April 1, 2016
    Publication date: January 31, 2019
    Inventors: Shawna M. LIFF, Feras EID, Aleksandar ALEKSOV, Sasha N. OSTER, Baris BICEN, Thomas L. SOUNART, Valluri R. RAO, Johanna M. SWAN
  • Publication number: 20190036004
    Abstract: Embodiments of the invention include a piezoelectric sensor system. According to an embodiment of the invention, the piezoelectric sensor system may include a piezoelectric sensor, a signal conditioning circuit, and a light source each formed on an organic or flexible substrate. In embodiments of the invention, the piezoelectric sensor may be a discrete component or the piezo electric sensor may be integrated into the substrate. According to an embodiment, a piezoelectric sensor that is integrated into the substrate may comprise, a cavity formed into the organic substrate and a moveable beam formed over the cavity and anchored to the organic substrate. Additionally, the piezoelectric sensor may include a piezoelectric region formed over an end portion of the moveable beam and extending at least partially over the cavity. The piezoelectric sensor may also include a top electrode formed over a top surface of the piezoelectric region.
    Type: Application
    Filed: April 1, 2016
    Publication date: January 31, 2019
    Inventors: Feras EID, Sasha N. OSTER, Shawna M. LIFF, Johanna M. SWAN, Thomas L. SOUNART, Aleksandar ALEKSOV, Valluri R. RAO, Baris BICEN
  • Publication number: 20190025573
    Abstract: Embodiments of the invention include maskless imaging tools and display systems that include piezoelectrically actuated mirrors and methods of forming such devices. According to an embodiment, the maskless imaging tool may include a light source. Additionally, the tool may include one or more piezoelectrically actuated mirrors for receiving light from the light source. In an embodiment, the piezoelectrically actuated mirrors are actuatable about one or more axes to reflect the light from the light source to a workpiece positioned to receive light from the piezoelectrically actuated mirror. Additional embodiments of the invention may include a maskless imaging tool that is a laser direct imaging lithography (LDIL) tool. Other embodiments may include a maskless imaging tool that is a via-drill tool. Embodiments of the invention may also include a piezoelectrically actuated mirror used in a projection system. For example, the projection system may be integrated into a pair of glasses.
    Type: Application
    Filed: April 1, 2016
    Publication date: January 24, 2019
    Inventors: Aleksandar ALEKSOV, Feras EID, Sasha N. OSTER, Shawna M. LIFF, Johanna M. SWAN, Thomas L. SOUNART, Baris BICEN, Valluri R. RAO
  • Patent number: 10186465
    Abstract: Embodiments of the invention include package substrates that include microchannels and methods of making such package substrates. In an embodiment, the package substrate may include a first package layer. In some embodiments, a bottom channel wall may be formed over the first package layer. Embodiments may also include a channel sidewall that is formed in contact with the bottom channel wall. An organic dielectric layer may be formed over the first package layer. However, embodiments include a package substrate where the dielectric layer is not present within a perimeter of the channel sidewall. Additionally, a top channel wall may be supported by the channel sidewall. According to an embodiment, the top channel wall, the channel sidewall, and the bottom channel wall define a microchannel.
    Type: Grant
    Filed: September 25, 2015
    Date of Patent: January 22, 2019
    Assignee: Intel Corporation
    Inventors: Feras Eid, Adel A. Elsherbini, Henning Braunisch, Yidnekachew S. Mekonnen, Krishna Bharath, Mathew J. Manusharow, Aleksandar Aleksov, Nathan Fritz
  • Patent number: 10179729
    Abstract: Embodiments of the invention describe hermetic encapsulation for MEMS devices, and processes to create the hermetic encapsulation structure. Embodiments comprise a MEMS substrate stack that further includes a magnet, a first laminate organic dielectric film, a first hermetic coating disposed over the magnet, a second laminate organic dielectric film disposed on the hermetic coating, a MEMS device layer disposed over the magnet, and a plurality of metal interconnects surrounding the MEMS device layer. A hermetic plate is subsequently bonded to the MEMS substrate stack and disposed over the formed MEMS device layer to at least partially form a hermetically encapsulated cavity surrounding the MEMS device layer. In various embodiments, the hermetically encapsulated cavity is further formed from the first hermetic coating, and at least one of the set of metal interconnects, or a second hermetic coating deposited onto the set of metal interconnects.
    Type: Grant
    Filed: January 25, 2016
    Date of Patent: January 15, 2019
    Assignee: Intel Corporation
    Inventors: Sarah K. Haney, Weng Hong Teh, Feras Eid, Sasha N. Oster