Patents Assigned to Oak Ridge Micro-Energy, Inc.
  • Patent number: 8815450
    Abstract: A low-voltage, thin film battery and methods for making a low voltage battery. The battery includes a ceramic substrate having a first surface and a second surface. A cathode current collector is disposed adjacent to at least a portion of the first surface of the substrate. The current collector has a titanium layer and a gold layer. A high temperature annealed cathode is disposed adjacent to at least a portion of the gold cathode current collector and an electrolyte layer disposed adjacent to the annealed cathode. An annealed anode is disposed adjacent to at least a portion of the electrolyte, wherein the anode is electrically insulated from the cathode and the cathode current collectors by the electrolyte. An anode current collector is disposed adjacent to at least a portion of the anode.
    Type: Grant
    Filed: January 28, 2008
    Date of Patent: August 26, 2014
    Assignee: Oak Ridge Micro-Energy, Inc.
    Inventor: John B. Bates
  • Patent number: 7553582
    Abstract: A method for improving the useful life of a thin film lithium-ion battery containing a solid electrolyte and an anode that expands on charging and long life batteries made by the method. The method includes providing a hermetic barrier package for the thin film battery that includes an anode expansion absorbing structure and at least one film getter.
    Type: Grant
    Filed: September 20, 2006
    Date of Patent: June 30, 2009
    Assignee: Oak Ridge Micro-Energy, Inc.
    Inventor: John B. Bates
  • Patent number: 7524577
    Abstract: A method for improving the useful life of a thin film lithium-ion battery containing a solid electrolyte and an anode that expands on charging and long life batteries made by the method. The method includes providing a hermetic barrier package for the thin film battery that includes an anode expansion absorbing structure.
    Type: Grant
    Filed: September 6, 2005
    Date of Patent: April 28, 2009
    Assignee: Oak Ridge Micro-Energy, Inc.
    Inventor: John B Bates
  • Patent number: 7410730
    Abstract: A solid amorphous electrolyte composition for a thin-film battery. The electrolyte composition includes a lithium phosphorus oxynitride material containing an aluminum ion dopant wherein the atomic ratio of aluminum ion to phosphorus ion (Al/P) in the electrolyte ranges greater than zero up to about 0.5. The composition is represented by the formula: LitPxAlyOuNvSw, where 5x+3y=5, 2u+3v+2w=5+t, t ranges from about 2.9 to about 3.3, x ranges from about 0.94 to about 0.85, y ranges from about 0.094 to about 0.26, u ranges from about 3.2 to about 3.8, v ranges from about 0.13 to about 0.46, and w ranges from zero to about 0.2. Thin film batteries containing such electrolyte films have less tendency to fail prematurely.
    Type: Grant
    Filed: September 28, 2004
    Date of Patent: August 12, 2008
    Assignee: Oak Ridge Micro-Energy, Inc.
    Inventor: John B. Bates
  • Publication number: 20080003492
    Abstract: A method for improving the useful life of a thin film lithium-ion battery containing a solid electrolyte and an anode that expands on charging and long life batteries made by the method. The method includes providing a hermetic barrier package for the thin film battery that includes an anode expansion absorbing structure.
    Type: Application
    Filed: September 6, 2005
    Publication date: January 3, 2008
    Applicant: OAK RIDGE MICRO-ENERGY, INC.
    Inventor: John Bates
  • Patent number: 6994933
    Abstract: A thin film battery including an anode layer, a cathode layer and a solid electrolyte layer. The battery also includes, a planarization layer applied to the thin film battery. The planarization layer has a surface roughness of no more than about 1.0 nanometers root mean square and a flatness no larger than about 0.005 cm/inch. A barrier layer is applied to the planarization layer. The barrier layer is provided by one or more layers of material selected from the group consisting of polymeric materials, metals and ceramic materials. The planarization layer and barrier layer are sufficient to reduce oxygen flux through the barrier layer to the anode layer to no more than about 1.6 ?mol/m2-day, and H2O flux through the barrier layer to the anode layer to less than about 3.3 ?mol/m2-day thereby improving the life of the thin film battery.
    Type: Grant
    Filed: September 16, 2002
    Date of Patent: February 7, 2006
    Assignee: Oak Ridge Micro-Energy, Inc.
    Inventor: John B. Bates
  • Patent number: 6818356
    Abstract: A solid amorphous electrolyte composition for a thin-film battery. The electrolyte composition includes a lithium phosphorus oxynitride material containing a sulfide ion dopant wherein the atomic ratio of sulfide ion to phosphorus ion (S/P) in the electrolyte ranges greater than 0 up to about 0.2. The composition is represented by the formula: LiwPOxNySz, where 2x+3y+2z=5+w, x ranges from about 3.2 to about 3.8, y ranges from about 0.13 to about 0.46, z ranges from greater than zero up to about 0.2, and w ranges from about 2.9 to about 3.3. Thin-film batteries containing the sulfide doped lithium oxynitride electrolyte are capable of delivering more power and energy than thin-film batteries containing electrolytes without sulfide doping.
    Type: Grant
    Filed: July 9, 2002
    Date of Patent: November 16, 2004
    Assignee: Oak Ridge Micro-Energy, Inc.
    Inventor: John B Bates