Patents by Inventor Jonathan Melman

Jonathan Melman 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: 11041119
    Abstract: A Europium beta-diketonate molecule comprises Europium with ligands dibenzoylmethane, 1,10-phenanthroline, and methoxide. The molecule is photoluminescent, absorbing light from the ultraviolet region through the blue region and emitting red light characteristic of trivalent europium. The molecule may be used, for example, as a phosphor in a phosphor-converted light-emitting diode.
    Type: Grant
    Filed: November 29, 2018
    Date of Patent: June 22, 2021
    Inventor: Jonathan Melman
  • Patent number: 10600939
    Abstract: A photoluminescent composition (“phosphor ink”) comprises a suspension of particles of at least one blue light (380 nm to 480 nm) excitable phosphor material in a light transmissive liquid binder in which the weight loading of at least one phosphor material to binder material is in a range 40% to 75%. The binder can be U.V. curable, thermally curable, solvent based or a combination thereof and comprise a polymer resin; a monomer resin, an acrylic, a silicone or a fluorinated polymer. The composition can further comprise particles of a light reflective material suspended in the liquid binder. Photoluminescence wavelength conversion components; solid-state light emitting devices; light emitting signage surfaces and light emitting signage utilizing the composition are disclosed.
    Type: Grant
    Filed: August 3, 2017
    Date of Patent: March 24, 2020
    Assignee: Intematix, Corporation
    Inventors: Xianglong Yuan, Bing Dai, Jonathan Melman, Charles Edwards
  • Publication number: 20190161674
    Abstract: A Europium beta-diketonate molecule comprises Europium with ligands dibenzoylmethane, 1,10-phenanthroline, and methoxide. The molecule is photoluminescent, absorbing light from the ultraviolet region through the blue region and emitting red light characteristic of trivalent europium. The molecule may be used, for example, as a phosphor in a phosphor-converted light-emitting diode.
    Type: Application
    Filed: November 29, 2018
    Publication date: May 30, 2019
    Inventors: Dino SULEJMANOVIC, Jonathan MELMAN, Robert NORDSELL, Daniel BUGARIS, Julien MAKONGO, Yong Bok GO
  • Patent number: 10236422
    Abstract: Green emitting phosphors have the empirical composition RE1?wAwMxEy, where RE may be one or more Rare Earth elements (for example, Eu or Gd), A may be one or more elements selected from the group Mg, Ca, Sr, or Ba, M may be one or more elements selected from the group Al, Ga, B, In, Sc, Lu or Y, E may be one or more elements selected from the group S, Se, O, or Te, w is greater than or equal to zero, or greater than or equal to 0.01, or greater than or equal to 0.05, and less than or equal to about 0.8, 2?x?4, and 4?y?7.
    Type: Grant
    Filed: May 25, 2018
    Date of Patent: March 19, 2019
    Assignee: EIE MATERIALS, INC.
    Inventors: Robert Nordsell, Evan Thomas, Yong Bok Go, Kristen Baroudi, Jonathan Melman, Yuming Xie
  • Patent number: 10177287
    Abstract: Phosphors emitting green light over a narrow wavelength range may be used to broaden the gamut of display devices. In one aspect, a light emitting device comprises a light emitting solid state device emitting blue or violet light, a first phosphor that absorbs blue or violet light emitted by the light emitting solid state device and in response emits green light in a spectral band having a peak at wavelength ?G and a height of one half its peak on a long wavelength edge of the band at wavelength ?Ghalf; and a second phosphor that absorbs blue or violet light emitted by the light emitting solid state device and in response emits red light in a spectral band having a peak at wavelength ?R and a height of one half its peak on a short wavelength edge of the band at wavelength ?Rhalf. The ratio (?Rhalf??Ghalf)/(?R??G) is greater than 0.70.
    Type: Grant
    Filed: May 17, 2018
    Date of Patent: January 8, 2019
    Assignee: EIE MATERIALS, INC.
    Inventors: Jonathan Melman, Robert Nordsell, Kristen Baroudi, Yong Bok Go, Eric Bretschneider, Alan C. Thomas, Evan Thomas
  • Patent number: 10174242
    Abstract: Thioaluminate phosphor particles having a coating comprising or consisting essentially of a nitride, and methods for making such phosphor particles, are disclosed. Phosphor-converted light emitting diodes may comprise such coated phosphor particles. The nitride coatings on the thioaluminate phosphor particles provide a significantly improved barrier to water compared, to an aluminum oxide coating, and extend the operational lifetime of such a phosphor-converted light emitting diode.
    Type: Grant
    Filed: May 30, 2018
    Date of Patent: January 8, 2019
    Assignee: EIE MATERIALS, INC.
    Inventors: Alan C. Thomas, Yuming Xie, Jonathan Melman, Robert Nordsell
  • Patent number: 10056530
    Abstract: In one aspect, a phosphor converted white light LED comprising a narrow green phosphor rather than a conventional broad green phosphor may simultaneously exhibit high R9, and high Luminance Efficacy of Radiation, optionally without use of a deep red phosphor to maintain desired red color rendering. In another aspect, a phosphor converted white light LED comprising a narrow green phosphor rather than a conventional broad green phosphor may provide an emission spectrum exhibiting a significant dip in the yellow region of the spectrum and thereby provide high red-green contrast without use of a filter. The yellow dip may be shallower than in conventional devices, and the device may therefore be brighter, while maintaining desired CRI and R9.
    Type: Grant
    Filed: August 16, 2017
    Date of Patent: August 21, 2018
    Assignee: EIE MATERIALS, INC.
    Inventors: Jonathan Melman, Robert Nordsell, Kristen Baroudi, Evan Thomas, Yong Bok Go
  • Publication number: 20180233632
    Abstract: A photoluminescent composition (“phosphor ink”) comprises a suspension of particles of at least one blue light (380 nm to 480 nm) excitable phosphor material in a light transmissive liquid binder in which the weight loading of at least one phosphor material to binder material is in a range 40% to 75%. The binder can be U.V. curable, thermally curable, solvent based or a combination thereof and comprise a polymer resin; a monomer resin, an acrylic, a silicone or a fluorinated polymer. The composition can further comprise particles of a light reflective material suspended in the liquid binder. Photoluminescence wavelength conversion components; solid-state light emitting devices; light emitting signage surfaces and light emitting signage utilizing the composition are disclosed.
    Type: Application
    Filed: August 3, 2017
    Publication date: August 16, 2018
    Applicant: Intematix Corporation
    Inventors: Xianglong Yuan, Bing Dai, Jonathan Melman, Charles Edwards
  • Publication number: 20180207525
    Abstract: A computer-implemented card game played between two computer devices in communication via a server, wherein the server randomly deals to each computer device a plurality of cards one at a time from a deck of cards comprising a 53-card deck, one of which has a designated value and can represent any suit during play to form multiple pairs of competing hands each having a predetermined number of cards wherein at least one of each player's hands is a semi-revealed hand some of whose cards are revealed and some hidden to an opponent. During dealing, the server places each successive card in one of the hands such that once placed the associated computer device cannot move the card to another hand and once a card is placed in a hand, the server cannot place a successive card in the same hand until all of the hands are equally populated.
    Type: Application
    Filed: August 15, 2017
    Publication date: July 26, 2018
    Inventors: Yaakov Israel Amar, Jonathan Melman
  • Patent number: 10017396
    Abstract: A luminescent composition of matter is characterized by the formula REM2+xEy, where RE may be one or more Rare Earth elements (for example, Eu or Gd), M may be one or more elements selected from the group Al, Ga, B, In, Sc, Lu, and Y; E is one or more elements selected from the group S, Se, O, and Te; x is greater than zero; and y has the value that achieves charge balance in the formula assuming that E has a charge of ?2.
    Type: Grant
    Filed: May 10, 2017
    Date of Patent: July 10, 2018
    Assignee: EIE MATERIALS, INC.
    Inventors: Evan Thomas, Kristen Baroudi, Yong Bok Go, Robert Nordsell, Jonathan Melman
  • Publication number: 20160064622
    Abstract: A photoluminescent composition (“phosphor ink”) comprises a suspension of particles of at least one blue light (380 nm to 480 nm) excitable phosphor material in a light transmissive liquid binder in which the weight loading of at least one phosphor material to binder material is in a range 40% to 75%. The binder can be U.V. curable, thermally curable, solvent based or a combination thereof and comprise a polymer resin; a monomer resin, an acrylic, a silicone or a fluorinated polymer. The composition can further comprise particles of a light reflective material suspended in the liquid binder. Photoluminescence wavelength conversion components; solid-state light emitting devices; light emitting signage surfaces and light emitting signage utilizing the composition are disclosed.
    Type: Application
    Filed: November 9, 2015
    Publication date: March 3, 2016
    Applicant: INTEMATIX CORPORATION
    Inventors: Xianglong Yuan, Bing Dai, Jonathan Melman, Charles Edwards
  • Publication number: 20150308635
    Abstract: A solid-state light emitting device comprises a light transmissive thermally conductive circuit board; an array of solid-state light emitters (LEDs) mounted on, and electrically connected to, at least one face of the circuit board; and a photoluminescence wavelength conversion component. The wavelength conversion component comprises a mixture of particles of at least one photoluminescence material (phosphor) and particles of a light reflective material. The emission product of the device comprises the combined light generated by the LEDs and the photoluminescence material. The wavelength conversion component can comprise a layer of the phosphor material and particles of a light reflective material applied directly to the array of LEDs in the form of an encapsulant. Alternatively the photoluminescence component is a separate component and remote to the array of LEDs such as tubular component that surrounds the LEDs.
    Type: Application
    Filed: February 17, 2015
    Publication date: October 29, 2015
    Applicant: INTEMATIX CORPORATION
    Inventors: Yi-Qun Li, Jonathan Melman, Xianglong Yuan, Bing Dai, Gang Wang, Charles Edwards
  • Patent number: 8957585
    Abstract: A solid-state light emitting device comprises a light transmissive thermally conductive circuit board; an array of solid-state light emitters (LEDs) mounted on, and electrically connected to, at least one face of the circuit board; and a photoluminescence wavelength conversion component. The wavelength conversion component comprises a mixture of particles of at least one photoluminescence material (phosphor) and particles of a light reflective material. The emission product of the device comprises the combined light generated by the LEDs and the photoluminescence material. The wavelength conversion component can comprise a layer of the phosphor material and particles of a light reflective material applied directly to the array of LEDs in the form of an encapsulant. Alternatively the photoluminescence component is a separate component and remote to the array of LEDs such as tubular component that surrounds the LEDs.
    Type: Grant
    Filed: December 26, 2013
    Date of Patent: February 17, 2015
    Assignee: Intermatix Corporation
    Inventors: Yi-Qun Li, Jonathan Melman, Xianglong Yuan, Bing Dai, Gang Wang, Charles Edwards
  • Publication number: 20140217427
    Abstract: A solid-state light emitting device comprises a solid-state light emitter (LED) operable to generate excitation light and a wavelength conversion component including a mixture of particles of a photoluminescence material and particles of a light reflective material. In operation the phosphor absorbs at least a portion of the excitation light and emits light of a different color. The emission product of the device comprises the combined light generated by the LED and the phosphor. The wavelength conversion component can be light transmissive and comprise a light transmissive substrate on which the mixture of phosphor and reflective materials is provided as a layer or homogeneously distributed throughout the volume of the substrate. Alternatively the wavelength conversion component can be light reflective with the mixture of phosphor and light reflective materials being provided as a layer on the light reflective surface.
    Type: Application
    Filed: December 16, 2013
    Publication date: August 7, 2014
    Applicant: INTEMATIX CORPORATION
    Inventors: Xianglong Yuan, Jonathan Melman, Bing Dai, Gang Wang, Charles Edwards
  • Patent number: 8610340
    Abstract: A solid-state light emitting device having a solid-state light emitter (LED) operable to generate excitation light and a wavelength conversion component including a mixture of particles of a photoluminescence material and particles of a light reflective material. In operation the phosphor absorbs at least a portion of the excitation light and emits light of a different color. The emission product of the device comprises the combined light generated by the LED and the phosphor. The wavelength conversion component can be light transmissive and comprise a light transmissive substrate on which the mixture of phosphor and reflective materials is provided as a layer or homogeneously distributed throughout the volume of the substrate. Alternatively the wavelength conversion component can be light reflective with the mixture of phosphor and light reflective materials being provided as a layer on the light reflective surface.
    Type: Grant
    Filed: October 4, 2011
    Date of Patent: December 17, 2013
    Assignee: Intematix Corporation
    Inventors: Xianglong Yuan, Jonathan Melman, Bing Dai, Gang Wang, Charles Edwards
  • Patent number: 8597963
    Abstract: A method of manufacturing a light emitting device: an LED wafer having an array of LEDs formed on a surface thereof, the method comprises: a) fabricating a sheet of phosphor/polymer material comprising a light transmissive polymer material having at least one phosphor material distributed throughout its volume and in which the polymer material is transmissive to light generated by the LEDs and to light generated by the at least one phosphor material; b) selectively making apertures through the phosphor/polymer sheet at positions corresponding to electrode contact pads of the LEDs of the LED wafer; c) attaching the sheet of phosphor/polymer material to the surface of the LED wafer such that each aperture overlies a respective electrode contact pad; and d) dividing the wafer into individual light emitting devices. The method can further comprise, prior to dividing the LED wafer, cutting slots through the phosphor/polymer material that are configured to pass between individual LEDs.
    Type: Grant
    Filed: May 19, 2010
    Date of Patent: December 3, 2013
    Assignee: Intematix Corporation
    Inventor: Jonathan Melman
  • Patent number: 8227276
    Abstract: A method of manufacturing a light emitting device comprises: depositing over substantially the entire surface of a LED wafer having a array of LEDs formed on a surface thereof a mixture of at least one phosphor and a polymer material, wherein the polymer material is transmissive to light generated by the LEDs and to light generated by the at least one phosphor material; using laser ablation to selectively make apertures in the phosphor/polymer material corresponding to electrode contact pads of each LED thereby enabling access to each electrode contact pad; and dividing the wafer into individual light emitting devices. The method can further comprise, prior to dividing the wafer, cutting slots in the phosphor/polymer material which are configured to pass between individual LEDs. The slots are configured such that a layer of phosphor/polymer material remains on the edges of each LED after division of the wafer into individual light emitting devices.
    Type: Grant
    Filed: May 19, 2010
    Date of Patent: July 24, 2012
    Assignee: Intematix Corporation
    Inventor: Jonathan Melman
  • Patent number: 8227269
    Abstract: A method of manufacturing a light emitting device comprises: a) depositing over substantially the entire surface of a LED diode wafer having an array of LEDs formed on a surface thereof a mixture of at least one phosphor material and a polymer material, wherein the polymer material is transmissive to light generated by the LEDs and to light generated by the at least one phosphor material; b) mechanically stamping the phosphor/polymer mixture with a stamp having features configured such as to form passages in the phosphor/polymer corresponding to electrode contact pads of each LED thereby enabling access to each electrode contact pad; c) curing the polymer; d) removing the stamp; and e) dividing the LED wafer into individual light emitting devices. The stamp comprises a dissolvable material (polyvinyl alcohol) and the stamp is removed by dissolving it using a solvent (e.g. water).
    Type: Grant
    Filed: May 19, 2010
    Date of Patent: July 24, 2012
    Assignee: Intematix Corporation
    Inventors: Geng Chen, Jonathan Melman
  • Publication number: 20120138874
    Abstract: A photoluminescent composition (“phosphor ink”) comprises a suspension of particles of at least one blue light (380 nm to 480 nm) excitable phosphor material in a light transmissive liquid binder in which the weight loading of at least one phosphor material to binder material is in a range 40% to 75%. The binder can be U.V. curable, thermally curable, solvent based or a combination thereof and comprise a polymer resin; a monomer resin, an acrylic, a silicone or a fluorinated polymer. The composition can further comprise particles of a light reflective material suspended in the liquid binder. Photoluminescence wavelength conversion components; solid-state light emitting devices; light emitting signage surfaces and light emitting signage utilizing the composition are disclosed.
    Type: Application
    Filed: November 30, 2011
    Publication date: June 7, 2012
    Applicant: INTEMATIX CORPORATION
    Inventors: Xianglong Yuan, Bing Dai, Jonathan Melman, Charles Edwards
  • Publication number: 20120086034
    Abstract: A solid-state light emitting device having a solid-state light emitter (LED) operable to generate excitation light and a wavelength conversion component including a mixture of particles of a photoluminescence material and particles of a light reflective material. In operation the phosphor absorbs at least a portion of the excitation light and emits light of a different color. The emission product of the device comprises the combined light generated by the LED and the phosphor. The wavelength conversion component can be light transmissive and comprise a light transmissive substrate on which the mixture of phosphor and reflective materials is provided as a layer or homogeneously distributed throughout the volume of the substrate. Alternatively the wavelength conversion component can be light reflective with the mixture of phosphor and light reflective materials being provided as a layer on the light reflective surface.
    Type: Application
    Filed: October 4, 2011
    Publication date: April 12, 2012
    Applicant: INTEMATIX CORPORATION
    Inventors: Xianglong Yuan, Jonathan Melman, Bing Dai, Gang Wang, Charles Edwards