Patents by Inventor Wen Fan

Wen Fan 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: 20040182317
    Abstract: A process for preparing particles of zinc sulfide-based electroluminescent phosphor having a moisture resistant coating thereon which comprises the steps of selecting a reaction vessel having a given height and a porous disc at the bottom thereof; charging the reaction vessel with phosphor particles and fluidizing the particles by introducing an inert gas into the vessel through the porous disc; heating the reaction vessel to a reaction temperature; introducing a coating precursor into the reaction vessel at a position adjacent the bottom of the vessel but above the disc; introducing a co-reactant into the reaction vessel at a position substantially mid-way of the given height; and maintaining the inert gas flow, the precursor flow and the co-reactant flow for a time sufficient for a reaction to occur and coat the phosphor with the moisture resistant coating. Apparatus for carrying out the process is also disclosed.
    Type: Application
    Filed: January 29, 2004
    Publication date: September 23, 2004
    Inventors: Chen-Wen Fan, Dale E. Benjamin
  • Patent number: 6733826
    Abstract: A process for preparing particles of zinc sulfide-based electroluminescent phosphor having a moisture resistant coating thereon which comprises the steps of selecting a reaction vessel having a given height and a porous disc at the bottom thereof; charging the reaction vessel with phosphor particles and fluidizing the particles by introducing an inert gas into the vessel through the porous disc; heating the reaction vessel to a reaction temperature; introducing a coating precursor into the reaction vessel at a position adjacent the bottom of the vessel but above the disc; introducing a co-reactant into the reaction vessel at a position substantially mid-way of the given height; and maintaining the inert gas flow, the precursor flow and the co-reactant flow for a time sufficient for a reaction to occur and coat the phosphor with the moisture resistant coating. Apparatus for carrying out the process is also disclosed.
    Type: Grant
    Filed: September 26, 2001
    Date of Patent: May 11, 2004
    Assignee: Osram Sylvania Inc.
    Inventors: Chen-Wen Fan, Dale E. Benjamin
  • Patent number: 6722209
    Abstract: A Coriolis force type flow meter uses an optical interferometer as the measuring device. When a tube that a fluid flows through experiences a bending vibration caused by an external stimulating source, the tube also has a twist vibration due to the action of the Coriolis force. The optical interferometer is then employed to measure the tiny angular change in the amplitude of the tube vibration. From such a measurement, one can determine the flux of the fluid in the tube.
    Type: Grant
    Filed: November 27, 2002
    Date of Patent: April 20, 2004
    Assignee: Industrial Technology Research Institute
    Inventors: Cheng-Wen Fan, Chin-Chung Nien, Tsung-Tu Gwo, Kao-Hone Chu
  • Patent number: 6702959
    Abstract: A long-life, white-emitting phosphor blend is provided which comprises about 75 wt. % of a first electroluminescent phosphor having an x color coordinate of about 0.530 and a y color coordinate of about 0.455; about 10 wt. % of a second electroluminescent phosphor having an x color coordinate of about 0.185 and a y color coordinate of about 0.440, said second electroluminescent phosphor containing about 600 ppm copper; and about 15 wt. % of a third electroluminescent phosphor having an x color coordinate of about 0.160 and a y color coordinate of about 0.175, said third electroluminescent phosphor containing about 300 ppm copper.
    Type: Grant
    Filed: June 14, 2002
    Date of Patent: March 9, 2004
    Assignee: Osram Sylvania Inc.
    Inventors: Chen-Wen Fan, Richard G. W. Gingerich
  • Patent number: 6686043
    Abstract: A method of coating phosphor particles comprises introducing an inert gas into a reaction vessel and charging phosphor particles into the reaction vessel. The reaction vessel is then heated to a reaction temperature and a coating precursor is introduced while the temperature is maintained for a time sufficient to saturate the phosphor particles with the precursor. Thereafter, continuous precursor is introduced into the reaction vessel, along with an oxygen/ozone mixture. The inert gas flow, oxygen/ozone mixture flow and further precursor are supplied for a time sufficient to coat the phosphor particles.
    Type: Grant
    Filed: October 17, 2000
    Date of Patent: February 3, 2004
    Assignee: Osram Sylvania Inc.
    Inventors: Chen-Wen Fan, Richard G. W. Gingerich, Dale E. Benjamin
  • Patent number: 6682664
    Abstract: An orange-yellow-emitting zinc sulfide-based electroluminescent phosphor is described wherein the phosphor has a brightness of greater than 10 foot-Lamberts. More particularly, the phosphor has a brightness of at least about 13 foot-Lamberts and an x color coordinate from about 0.51 to about 0.56 and a y color coordinate from about 0.42 to about 0.48. The zinc sulfide phosphor is activated with manganese, copper, chlorine, and a metal selected from gold and antimony.
    Type: Grant
    Filed: September 5, 2002
    Date of Patent: January 27, 2004
    Assignee: Osram Sylvania Inc.
    Inventors: Xianzhong Chen, Robert L. Stevens, Judy A. Belinski-Wolfe, Fuqiang Huang, Chen Wen Fan, Michael A. Maxwell
  • Publication number: 20030230741
    Abstract: A long-life, white-emitting phosphor blend is provided which comprises about 75 wt. % of a first electroluminescent phosphor having an x color coordinate of about 0.530 and a y color coordinate of about 0.455; about 10 wt. % of a second electroluminescent phosphor having an x color coordinate of about 0.185 and a y color coordinate of about 0.440, said second electroluminescent phosphor containing about 600 ppm copper; and about 15 wt. % of a third electroluminescent phosphor having an x color coordinate of about 0.160 and a y color coordinate of about 0.175, said third electroluminescent phosphor containing about 300 ppm copper.
    Type: Application
    Filed: June 14, 2002
    Publication date: December 18, 2003
    Applicant: OSRAM SYLVANIA Inc.
    Inventors: Chen-Wen Fan, Richard G.W. Gingerich
  • Publication number: 20030211398
    Abstract: A method of correcting a mask layout is provided. The mask layout includes a plurality of element patterns. An inspection program is executed to classify the element patterns of the mask layout into a plurality of element pattern types according to a pattern density of the element patterns. Following this, each of the element pattern types is corrected so as to prevent a plasma micro-loading effect.
    Type: Application
    Filed: May 12, 2002
    Publication date: November 13, 2003
    Inventors: Kay Ming Lee, Cheng-Wen Fan, Jiunn-Ren Hwang, Chih-Chiang Liu
  • Patent number: 6562260
    Abstract: A method of recovering a base phosphor from encapsulated phosphors, which comprises the steps of selecting a recovery vessel including a magnetic stir bar; adding to the recovery vessel, deionized water, a first batch of concentrated hydrochloric acid and encapsulated phosphor to form a stirred suspension; heating the stirred suspension to about 90° C. for about 2 hours; settling the stirred suspension; decanting the mother liquor and slurrying the remaining solids with a second batch of hydrochloric acid and water; decanting and washing the remaining solids with deionized water; filtering the remaining solids to form a filter cake; heating the filter cake at 110° C. in air for a time sufficient to form a dried filter cake; and screening the dried filter cake through a −325 mesh screen to yield a recovered base phosphor.
    Type: Grant
    Filed: September 26, 2001
    Date of Patent: May 13, 2003
    Assignee: Osram Sylvania Inc.
    Inventors: Richard G. W. Gingerich, Chen-Wen Fan, Keith A. Klindinst
  • Publication number: 20030080676
    Abstract: A long-life, high-brightness, moisture-resistant electroluminescent phosphor comprising a base phosphor having the general formula ZnS;Qu,Cl,Au and having a moisture-resistant coating thereon, said coating being selected from the group consisting of a metal nitrides or metal oxide/hydroxides.
    Type: Application
    Filed: September 29, 2001
    Publication date: May 1, 2003
    Inventors: Butchi Reddy Vaddi, Chen-Wen Fan
  • Publication number: 20030057399
    Abstract: A method of recovering a base phosphor from encapsulated phosphors, which comprises the steps of selecting a recovery vessel including a magnetic stir bar; adding to the recovery vessel, deionized water, a first batch of concentrated hydrochloric acid and encapsulated phosphor to form a stirred suspension; heating the stirred suspension to about 90° C. for about 2 hours; settling the stirred suspension; decanting the mother liquor and slurrying the remaining solids with a second batch of hydrochloric acid and water; decanting and washing the remaining solids with deionized water; filtering the remaining solids to form a filter cake; heating the filter cake at 110° C. in air for a time sufficient to form a dried filter cake; and screening the dried filter cake through a −325 mesh screen to yield a recovered base phosphor.
    Type: Application
    Filed: September 26, 2001
    Publication date: March 27, 2003
    Inventors: Richard G.W. Gingerich, Chen-Wen Fan, Keith A. Klinedinst
  • Patent number: 6426115
    Abstract: A method of coating phosphor particles by chemical vapor deposition. The phosphors are coated by introducing an inert gas into a reaction vessel; charging phosphor particles into the reaction vessel; heating the reaction vessel to a reaction temperature; introducing a coating precursor which includes carbon into the reaction vessel for a time sufficient to saturate the phosphor particles with the precursor; continuing precursor flow into the reaction vessel; introducing an oxygen/ozone mixture into the reaction vessel, the oxygen/ozone mixture comprising less than 4.4 wt. % ozone; and maintaining the inert gas flow, oxygen/ozone mixture flow and further precursor supply for a time sufficient to coat the phosphor particles. The process produces phosphors having from 2200 to 6300 ppm of carbon on the coating and provides lamp efficacy's of greater than 6.1 lm/watt.
    Type: Grant
    Filed: May 15, 2000
    Date of Patent: July 30, 2002
    Assignee: OSRAM SYLVANIA Inc.
    Inventors: Chen-Wen Fan, Richard G. W. Gingerich, Dale E. Benjamin
  • Publication number: 20020076483
    Abstract: A process for preparing particles of zinc sulfide-based electroluminescent phosphor having a moisture resistant coating thereon which comprises the steps of selecting a reaction vessel having a given height and a porous disc at the bottom thereof; charging the reaction vessel with phosphor particles and fluidizing the particles by introducing an inert gas into the vessel through the porous disc; heating the reaction vessel to a reaction temperature; introducing a coating precursor into the reaction vessel at a position adjacent the bottom of the vessel but above the disc; introducing a co-reactant into the reaction vessel at a position substantially mid-way of the given height; and maintaining the inert gas flow, the precursor flow and the co-reactant flow for a time sufficient for a reaction to occur and coat the phosphor with the moisture resistant coating. Apparatus for carrying out the process is also disclosed.
    Type: Application
    Filed: September 26, 2001
    Publication date: June 20, 2002
    Inventors: Chen-Wen Fan, Dale E. Benjamin
  • Patent number: 6364951
    Abstract: A phosphor particle has thereon a moisture resistant treatment of a metallic nitride. By moisture resistant is meant a condition allowing the phosphor particle to function in a humid atmosphere for a significantly longer period of time than an untreated particle. The method of making such phosphors comprises the steps of introducing an inert gas into a reaction vessel; charging phosphor particles into the reaction vessel; heating the reaction vessel to a reaction temperature; introducing a nitride coating precursor into the reaction vessel in a manner to avoid restrictive reactions; introducing a co-reactant into the reaction vessel; and maintaining the inert gas flow, co-reactant flow and precursor supply for a time sufficient to moisture-proof the phosphor particles.
    Type: Grant
    Filed: October 5, 2000
    Date of Patent: April 2, 2002
    Assignee: Osram Sylvania Inc.
    Inventors: Richard G. W. Gingerich, Chen-Wen Fan
  • Patent number: 6361864
    Abstract: A method of coating phosphor particles by chemical vapor deposition. The phosphors are coated by introducing an inert gas into a reaction vessel; charging phosphor particles into the reaction vessel; heating the reaction vessel to a reaction temperature; introducing a coating precursor which includes carbon into the reaction vessel for a time sufficient to saturate the phosphor particles with the precursor; continuing precursor flow into the reaction vessel; introducing an oxygen/ozone mixture into the reaction vessel, the oxygen/ozone mixture comprising less than 4.4 wt. % ozone; and maintaining the inert gas flow, oxygen/ozone mixture flow and further precursor supply for a time sufficient to coat the phosphor particles. The process produces phosphors having from 2200 to 6300 ppm of carbon on the coating and provides lamp efficacy's of greater than 6.1 lm/watt.
    Type: Grant
    Filed: February 2, 1999
    Date of Patent: March 26, 2002
    Assignee: Osram Sylvania Inc.
    Inventors: Chen-Wen Fan, Richard G. W. Gingerich, Dale E. Benjamin
  • Patent number: 6309700
    Abstract: A method of coating phosphor particles that comprises the steps of introducing an inert gas into a reaction vessel; charging phosphor particles into the reaction vessel; heating the reaction vessel to a reaction temperature; introducing a coating precursor into the reaction vessel; introducing an oxygen/ozone mixture into the reaction vessel; and maintaining the agitation, inert gas flow, oxygen/ozone mixture flow and precursor supply for a time sufficient to coat the phosphor particles. This process yields phosphors having a half-life of upwards of 3,100 hours with efficacys of greater than 6 lumens per watt (lm/w).
    Type: Grant
    Filed: June 1, 2000
    Date of Patent: October 30, 2001
    Assignee: Osram Sylvania Inc.
    Inventors: Chen-Wen Fan, Richard G. W. Gingerich, Tuan Anh Dang, Dale E. Benjamin
  • Patent number: 6171650
    Abstract: A phosphor particle has thereon a moisture resistant treatment of a metallic nitride. By moisture resistant is meant a condition allowing the phosphor particle to function in a humid atmosphere for a significantly longer period of time than an untreated particle. The method of making such phosphors comprises the steps of introducing an inert gas into a reaction vessel; charging phosphor particles into the reaction vessel; heating the reaction vessel to a reaction temperature; introducing a nitride coating precursor into the reaction vessel in a manner to avoid restrictive reactions; introducing a co-reactant into the reaction vessel; and maintaining the inert gas flow, co-reactant flow and precursor supply for a time sufficient to moisture-proof the phosphor particles.
    Type: Grant
    Filed: September 28, 1999
    Date of Patent: January 9, 2001
    Assignee: Osram Sylvania Inc.
    Inventors: Richard G. W. Gingerich, Chen-Wen Fan
  • Patent number: 5985175
    Abstract: A method for forming a continuous, conformal non-particulate coating of boron oxide on individual phosphor particles is provided. The method involves reacting a boron-containing precursor with an oxidizing gas in a fluidized bed of phosphor particles. The boron oxide coated phosphor exhibits an increased quantum efficiency under ultraviolet (UV) and vacuum ultraviolet (VUV) excitation.
    Type: Grant
    Filed: August 19, 1998
    Date of Patent: November 16, 1999
    Assignee: Osram Sylvania Inc.
    Inventors: Chen-Wen Fan, Dale E. Benjamin, Franz Kummer, Charles F. Chenot, Richard G. W. Gingerich