BIVALVE BATTERIES FOR BIOMEDICAL DEVICE Russian patent published in 2018 - IPC H01M10/04 H01M10/6235 H01M2/02 H01M2/08 A61F9/00 

Abstract RU 2670597 C9

FIELD: electrical engineering.

SUBSTANCE: invention relates to the field of electrical engineering, in particular to biocompatible bivalve batteries, in the manufacture of which sealed sealing layers are used, which reliably protect the chemical composition of the battery, increasing its biocompatibility, which allows the use of such a battery in a contact lens. Bivalve configuration essentially refers to forms with recesses and a protrusion along the edge, which can be joined together and sealed along the edge. Improving the tightness and reliability of the battery as part of a biomedical device is the technical result of the invention. Also a convenient and reliable method of forming a sealing layer for the formation of parts of a battery of a bicuspid configuration using different materials is proposed, including metals, ceramics, glass, semiconductor materials, etc., including changes in the conductivity of the material and the creation of contact areas.

EFFECT: improving battery integrity can also be achieved through the use of plastic battery components.

50 cl, 31 dwg, 1 tbl

Similar patents RU2670597C9

Title Year Author Number
BIOMEDICAL ELECTRICAL POWER SUPPLY ELEMENTS WITH POLYMER ELECTROLYTES 2016
  • Muthu, Millburn Ebenezer Jacob
  • Pugh, Randall B.
  • Toner, Adam
RU2668419C2
BATTERIES OF TUBULAR BIOMEDICAL DEVICES WITH CHEMICALLY DEPOSITED SEAL 2017
  • Davis, Stuart Michael
  • Flitsch, Frederick A.
  • Muthu, Millburn Ebenezer
  • Pugh, Randall B.
  • Toner, Adam
  • Weinstein, Lawrence
RU2672572C1
BATTERIES OF BIOMEDICAL DEVICE WITH ELECTRODEPOSITED CATHODES 2017
  • Beyad Yaser
  • Donn Skott
  • Mutu Millbern Ebenezer
  • Pyu Rendall B.
  • Toner Adam
RU2682482C1
FLEXIBLE MICRO BATTERY 2018
  • Audebert, Jean-Francois
  • Flitsch, Frederick A.
  • Kanner, Zachary
  • Muthu, Millburn Ebenezer
  • Pagilaro, Leonard
  • Pugh, Randall B.
  • Weinstein, Lawrence Edward
  • Peterson, Serena
  • Howarth, Jonathan
RU2682724C1
BIOMETRIC POWER SUPPLY ELEMENTS WITH POLYMER ELECTROLYTES 2017
  • Toner, Adam
  • Pugh, Randall, B.
  • Muthu, Millburn Ebenezer
RU2682795C1
METHODS OF MANUFACTURE OF BIOCOMPATIBLE ENERGISATION ELEMENTS FOR BIOMEDICAL DEVICES CONTAINING MULTILAYER COMPOSITES AND OBJECTED DIVISIONS 2015
  • Otts, Daniel B.
  • Pugh, Randall B.
  • Riall, James Daniel
  • Toner, Adam
  • Flitsch, Frederick A.
  • Mahadevan, Shivkumar
RU2670422C1
FLEXIBLE MICRO BATTERY 2018
  • Audebert, Jean-Francois
  • Kanner, Zachary
  • Pagliaro, Leonard
  • Weinstein, Lawrence Edward
  • Peterson, Serena
  • Howarth, Jonathan
RU2683593C1
BIOLOGICAL COMPATIBILITY OF BIOMEDICAL ENERGISATION ELEMENTS 2015
  • Flitsh Frederik A.
  • Otts Deniel B.
  • Pyu Rendall B.
  • Rajell Dzhejms Deniel
  • Toner Adam
RU2675591C2
ELECTROLYTE COMPOSITIONS FOR USE IN BIOCOMPATIBLE ENERGISATION ELEMENTS 2015
  • Flitsh Frederik A.
  • Otts Deniel B.
  • Pyu Rendall B.
  • Rajell Dzhejms Deniel
  • Toner Adam
RU2684170C2
METHODS OF MANUFACTURING THIN-FILM FOOD ELEMENTS FOR BIOCOMPATIBLE DEVICES CONTAINING MULTILAYER COMPOSITES AND PRECIPITATED SEPARATORS 2015
  • Otts Deniel B.
  • Pyu Rendall B.
  • Rajell Dzhejms Deniel
  • Toner Adam
  • Flitsh Frederik A.
  • Makhadevan Shivkumar
RU2631333C2

RU 2 670 597 C9

Authors

Flitsch Frederick A.

Muthu Millburn Ebenezer

Pugh Randall B.

Toner Adam

Weinstein Lawrence

Dates

2018-10-24Published

2017-09-12Filed