Patents by Inventor Amalkumar P. Ghosh

Amalkumar P. Ghosh 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).

  • Patent number: 12217668
    Abstract: An OLED display system is provided having visual performance pixel compensation for loss of brightness, including display pixels, where each display pixel has OLED subpixels and pixel drive circuitry; a sensing system having sensors and analog to digital conversion circuitry connected to each of the sensors, and a processor to provide an image data drive signal to each of the display pixels, receive the sensor signal from the ADC circuitry for each sensor, estimate a state of degradation of at least one of the display pixels, determine a drive-signal compensation for each display pixel having an estimated state of degradation and compensate the image data drive signal to each display pixel having an estimated state of degradation. Methods for compensating pixels for an image in a display are also provided.
    Type: Grant
    Filed: February 12, 2024
    Date of Patent: February 4, 2025
    Assignee: eMagin Corporation
    Inventors: Seonki Kim, Amalkumar P. Ghosh, Olivier Prache, Hyuk Sang Kwon
  • Publication number: 20240346998
    Abstract: An OLED display system is provided having visual performance pixel compensation for loss of brightness, including display pixels, where each display pixel has OLED subpixels and pixel drive circuitry; a sensing system having sensors and analog to digital conversion circuitry connected to each of the sensors, and a processor to provide an image data drive signal to each of the display pixels, receive the sensor signal from the ADC circuitry for each sensor, estimate a state of degradation of at least one of the display pixels, determine a drive-signal compensation for each display pixel having an estimated state of degradation and compensate the image data drive signal to each display pixel having an estimated state of degradation. Methods for compensating pixels for an image in a display are also provided.
    Type: Application
    Filed: February 12, 2024
    Publication date: October 17, 2024
    Inventors: Seonki KIM, Amalkumar P. GHOSH, Olivier PRACHE, Hyuk Sang KWON
  • Publication number: 20240130160
    Abstract: A tandem OLED display is provided, including a substrate backplane, an anode layer, at least two stacked OLED layers, each OLED layer comprising a plurality of pixels, at least one charge generation layer (CGL), wherein each CGL is disposed between two adjacent stacked OLED layers, and a cathode layer. At least one of the CGLs is patterned wherein a pattern provides gaps between each of the plurality of pixels.
    Type: Application
    Filed: October 10, 2023
    Publication date: April 18, 2024
    Inventors: Fangchao ZHAO, Howard LIN, Ilyas I. KHAYRULLIN, Kerry TICE, Timothy CONSIDINE, Laurie SZIKLAS, Amalkumar P. GHOSH
  • Publication number: 20240121977
    Abstract: A tandem OLED device is provided, including an anode, a cathode, at least two electroluminescent units disposed between the anode and the cathode, and an alloy thin film disposed between the two electroluminescent units.
    Type: Application
    Filed: October 5, 2023
    Publication date: April 11, 2024
    Inventors: Fangchao ZHAO, Howard LIN, Ilyas I. KHAYRULLIN, Kerry TICE, Timothy CONSIDINE, Laurie SZIKLAS, Amalkumar P. GHOSH
  • Patent number: 11955072
    Abstract: An OLED display system is provided having visual performance pixel compensation for loss of brightness, including display pixels, where each display pixel has OLED subpixels and pixel drive circuitry; a sensing system having sensors and analog to digital conversion circuitry connected to each of the sensors, and a processor to provide an image data drive signal to each of the display pixels, receive the sensor signal from the ADC circuitry for each sensor, estimate a state of degradation of at least one of the display pixels, determine a drive-signal compensation for each display pixel having an estimated state of degradation and compensate the image data drive signal to each display pixel having an estimated state of degradation. Methods for compensating pixels for an image in a display are also provided.
    Type: Grant
    Filed: June 2, 2022
    Date of Patent: April 9, 2024
    Assignee: eMagin Corporation
    Inventors: Seonki Kim, Amalkumar P. Ghosh, Olivier Prache, Hyuk Sang Kwon
  • Publication number: 20240081136
    Abstract: Systems and methods for performing direct patterning of a material on a substrate with high fidelity to a desired pattern are presented. A pattern of apertures of a shadow mask is compensated to accommodate a range of propagation angles in a vapor plume used to deposit material onto the substrate through the shadow mask. A shadow mask in accordance with the present disclosure includes an aperture pattern in which aperture position is shifted inward toward the center of the shadow mask by an amount based on the distance of the aperture from the center of the shadow mask. As a result, vaporized material passing through an aperture at a non-normal angle deposits onto the substrate at its proper desired location.
    Type: Application
    Filed: September 1, 2023
    Publication date: March 7, 2024
    Inventors: Ilyas I. KHAYRULLIN, Howard LIN, Fangchao ZHAO, Timothy CONSIDINE, Laurie SZIKLAS, Kerry TICE, Amalkumar P. GHOSH
  • Publication number: 20240081135
    Abstract: A direct patterning deposition mask for OLED deposition is provided where the mask includes a sapphire substrate; and a Silicon Nitride (SiN) membrane. The sapphire substrate thickness may be between 0.7 and 2 mm. The sapphire substrate may have a diameter in the range of 200 mm diameter to 300 mm diameter. Warpage of the substrate is preferably less than <10 um.
    Type: Application
    Filed: August 21, 2023
    Publication date: March 7, 2024
    Inventors: Amalkumar P. GHOSH, Howard LIN, Fridrich VAZAN, Ilyas I. KHAYRULLIN, Fangchao ZHAO, Kerry TICE, Timothy CONSIDINE, Laurie SZIKLAS
  • Patent number: 11905590
    Abstract: The present disclosure enables high-resolution direct patterning of a material on a substrate by establishing and maintaining a separation between a shadow mask and a substrate based on the thickness of a plurality of standoffs. The standoffs function as a physical reference that, when in contact between the substrate and shadow mask determine the separation between them. Embodiments are described in which the standoffs are affixed to an element selected from the shadow mask, the substrate, the mask chuck, and the substrate chuck.
    Type: Grant
    Filed: May 28, 2021
    Date of Patent: February 20, 2024
    Assignee: eMagin Corporation
    Inventors: Evan P. Donoghue, Fridrich Vazan, Kerry Tice, Ilyas I. Khayrullin, Tariq Ali, Qi Wang, Laurie Sziklas, Amalkumar P. Ghosh
  • Publication number: 20240042482
    Abstract: A system for deposition of evaporated material on a substrate is provided. The substrate has a central axis. The system includes an evaporation vacuum chamber, at least one nozzle assembly, and a shadow mask. The nozzle assembly has a three-point plurality of point evaporation sources disposed adjacent to the central axis of the substrate and at a distance from the substrate whereby the nozzle assembly provides for molecules of evaporated material to arrive at the substrate at an incident angle of less than or equal to 5 degrees.
    Type: Application
    Filed: August 3, 2023
    Publication date: February 8, 2024
    Inventors: Fridrich VAZAN, Ilyas I. KHAYRULLIN, Howard LIN, Fangchao ZHAO, Kerry TICE, Timothy CONSIDINE, Laurie SZIKLAS, Maxim FRAYER, Amalkumar P. GHOSH, Tim BRAUN
  • Patent number: 11862095
    Abstract: An OLED display system having compensation or loss of brightness is provided, including OLED-based display pixels, a sensing system having sensors, a processor having an LIA, an LPF, and analog to digital circuitry connected to each sensor and for providing a sensor signal for each sensor. The processor is adapted to apply a drive signal having a periodic signal to at least one OLED pixel in the display, receive the sensor signal, provide a primary frequency component from the sensor signals using the LIA based on the periodic signal, provide secondary frequency components from the sensor signals using the LPF, convert the secondary frequency components to a digital signal using the ADC, provide the digital signal to the processor as a sensing signal, and determine compensation for the drive signal. A method is also provided.
    Type: Grant
    Filed: June 14, 2022
    Date of Patent: January 2, 2024
    Assignee: eMagin Corporation
    Inventors: Seonki Kim, Amalkumar P. Ghosh, Olivier Prache, Hyuk Sang Kwon
  • Patent number: 11758751
    Abstract: Aspects of the present disclosure describe systems, methods, and structures that provide organic light-emitting diodes having high luminous efficiency and low electrical dissipation. Embodiments in accordance with the present disclosure include a top electrode normally comprising a single film that includes a pair of metals and one metal compound, where the metals include a precious metal in combination with an alkaline earth metal or rare-earth metal and the metal compound is an alkali metal compound. As a result, such a top electrode has a work function that is better matched for efficient electron injection than magnesium-silver alloy-based transparent electrodes known in the prior art.
    Type: Grant
    Filed: June 14, 2021
    Date of Patent: September 12, 2023
    Assignee: EMAGIN CORPORATION
    Inventors: Fangchao Zhao, Ilyas I. Khayrullin, Chen Dong, Amalkumar P. Ghosh
  • Publication number: 20220415966
    Abstract: Pixels and sub-pixels suitable for high-density displays are disclosed. High-density is realized by forming a top-gate thin-film transistor (TFT) directly on top of a light-emitting diode (LED), thereby reducing the real estate required. To enable the stacked structure, a planarization layer is formed such that its top surface is coplanar with the top surface of the top electrode of the LED. The source and drain of the TFT are then formed on the planarization layer and electrode such that electrical contact is made between the LED and the TFT. In some embodiments, the fabrication includes deposition of an additional planarization layer whose top surface is coplanar with the top surface of the gate of the TFT. This enables formation of a parallel-plate capacitor on the TFT/LED stack, thereby reducing the footprint of the pixel even further.
    Type: Application
    Filed: June 27, 2022
    Publication date: December 29, 2022
    Inventors: Seonki KIM, Amalkumar P. GHOSH
  • Publication number: 20220406862
    Abstract: A large area active-matrix organic light-emitting diode microdisplay and method for fabricating the same is provided which includes a panel having resolution of greater than 2,000 pixels per inch and a size of 1.4 or more inches for supporting the needs of virtual reality and augmented reality application.
    Type: Application
    Filed: August 18, 2022
    Publication date: December 22, 2022
    Inventors: Ihor Wacyk, Amalkumar P. Ghosh, Andrew G. Sculley, Jr., Olivier Prache
  • Publication number: 20220406258
    Abstract: An OLED display system having compensation or loss of brightness is provided, including OLED-based display pixels, a sensing system having sensors, a processor having an LIA, an LPF, and analog to digital circuitry connected to each sensor and for providing a sensor signal for each sensor. The processor is adapted to apply a drive signal having a periodic signal to at least one OLED pixel in the display, receive the sensor signal, provide a primary frequency component from the sensor signals using the LIA based on the periodic signal, provide secondary frequency components from the sensor signals using the LPF, convert the secondary frequency components to a digital signal using the ADC, provide the digital signal to the processor as a sensing signal, and determine compensation for the drive signal. A method is also provided.
    Type: Application
    Filed: June 14, 2022
    Publication date: December 22, 2022
    Inventors: Seonki KIM, Amalkumar P. GHOSH, Olivier PRACHE, Hyuk Sang KWON
  • Publication number: 20220398959
    Abstract: An OLED display system is provided having visual performance pixel compensation for loss of brightness, including display pixels, where each display pixel has OLED subpixels and pixel drive circuitry; a sensing system having sensors and analog to digital conversion circuitry connected to each of the sensors, and a processor to provide an image data drive signal to each of the display pixels, receive the sensor signal from the ADC circuitry for each sensor, estimate a state of degradation of at least one of the display pixels, determine a drive-signal compensation for each display pixel having an estimated state of degradation and compensate the image data drive signal to each display pixel having an estimated state of degradation. Methods for compensating pixels for an image in a display are also provided.
    Type: Application
    Filed: June 2, 2022
    Publication date: December 15, 2022
    Inventors: Seonki KIM, Amalkumar P. GHOSH, Olivier PRACHE, Hyuk Sang KWON
  • Patent number: 11482671
    Abstract: A deposition system that mitigates feathering in a directly deposited pattern of organic material is disclosed. Deposition systems in accordance with the present disclosure include an evaporation source, an electrically conductive shadow mask, and an electrically conductive field plate. The source imparts a negative charge on vaporized organic molecules as they are emitted toward a target substrate. The source and substrate are biased to produce an electric field having field lines that extend normally between them. The shadow mask and field plate are located between the source and substrate and each functions as an electrostatic lens that directs the charged vapor molecules toward propagation directions aligned with the field lines as the charged vapor molecules approach and pass through them.
    Type: Grant
    Filed: September 15, 2020
    Date of Patent: October 25, 2022
    Assignee: eMagin Corporation
    Inventors: Munisamy Anandan, Amalkumar P. Ghosh
  • Patent number: 11437451
    Abstract: A large area active-matrix organic light-emitting diode microdisplay and method for fabricating the same is provided which includes a panel having resolution of greater than 2,000 pixels per inch and a size of 1.4 or more inches for supporting the needs of virtual reality and augmented reality application.
    Type: Grant
    Filed: September 20, 2017
    Date of Patent: September 6, 2022
    Assignee: eMagin Corporation
    Inventors: Ihor Wacyk, Amalkumar P. Ghosh, Andrew G. Sculley, Jr., Olivier Prache
  • Patent number: 11313033
    Abstract: A linear evaporation apparatus, system and method including a conductance chamber including a linear output section configured to emit a linear source deposition flux therethrough, an evaporative vapor communication conduit including an evaporative vapor mixing chamber and a plurality of crucible-receiving apertures at distal ends from the evaporative vapor mixing chamber, wherein the evaporative vapor mixing chamber is in communication with the conductance chamber and configured to transmit the linear source deposition flux therethrough, and a plurality of crucibles, each of the plurality of crucibles corresponding to one of the plurality of crucible-receiving apertures at the distal ends from the evaporative vapor mixing chamber, each of the plurality of crucibles configured to hold a material and heat the material to a corresponding material evaporation temperature, each of the plurality of crucibles further including a vapor pressure activated lid configured to open at a predetermined material vapor press
    Type: Grant
    Filed: September 16, 2020
    Date of Patent: April 26, 2022
    Assignee: eMagin Corporation
    Inventors: Tariq Ali, Ilyas I. Khayrullin, Amalkumar P. Ghosh, Evan P. Donoghue, Qi Wang, Fridrich Vazan, Kerry Tice, Laurie Sziklas
  • Patent number: 11275315
    Abstract: A direct-deposition system forming a high-resolution pattern of material on a substrate is disclosed. Vaporized atoms from an evaporation source pass through a pattern of through-holes in a shadow mask to deposit on the substrate in the desired pattern. The shadow mask is held in a mask chuck that enables the shadow mask and substrate to be separated by a distance that can be less than ten microns. Prior to reaching the shadow mask, vaporized atoms pass through a collimator that operates as a spatial filter that blocks any atoms not travelling along directions that are nearly normal to the substrate surface. Vaporized atoms that pass through the shadow mask exhibit little or no lateral spread after passing through through-holes and the material deposits on the substrate in a pattern that has very high fidelity with the through-hole pattern of the shadow mask.
    Type: Grant
    Filed: July 20, 2017
    Date of Patent: March 15, 2022
    Assignee: eMagin Corporation
    Inventors: Amalkumar P. Ghosh, Fridrich Vazan, Munisamy Anandan, Evan Donoghue, Ilyas I. Khayrullin, Tariq Ali, Kerry Tice
  • Publication number: 20210399252
    Abstract: Aspects of the present disclosure describe systems, methods, and structures that provide organic light-emitting diodes having high luminous efficiency and low electrical dissipation. Embodiments in accordance with the present disclosure include a top electrode normally comprising a single film that includes a pair of metals and one metal compound, where the metals include a precious metal in combination with an alkaline earth metal or rare-earth metal and the metal compound is an alkali metal compound. As a result, such a top electrode has a work function that is better matched for efficient electron injection than magnesium-silver alloy-based transparent electrodes known in the prior art.
    Type: Application
    Filed: June 14, 2021
    Publication date: December 23, 2021
    Inventors: Fangchao ZHAO, Ilyas I. KHAYRULLIN, Chen DONG, Amalkumar P. GHOSH