Konstantin Tikhonov, Soviet army officer and Hero of the Soviet Union; Mikhail Tikhonov, Soviet soldier and Hero of the Soviet Union; Nikita Tikhonov, suspect in
Konstantin Tikhonov - Pleasanton CA, US Tobias Johnson - Union City CA, US Jesse Chau - Newark CA, US Ka Ki Yip - San Leandro CA, US Marc Juzkow - Livermore CA, US
Disclosed herein are lithium or lithium-ion batteries that employ an aluminum or aluminum alloy current collector protected by conductive coating in combination with electrolyte containing aluminum corrosion inhibitor and a fluorinated lithium imide or methide electrolyte which exhibit surprisingly long cycle life at high temperature.
Marc Juzkow - Livermore CA, US Aakar Patel - Pleasanton CA, US Jun Lui - San Jose CA, US Konstantin Tikhonov - Newark CA, US Michael Erickson - Sunnyvale CA, US Hashmat Haidari - Fremont CA, US Thomas Nagy - San Jose CA, US Hongli Dai - Los Altos CA, US
Assignee:
Leyden Energy, Inc. - Fremont CA
International Classification:
H01M 10/40 H01M 4/66 H01M 4/48 H01M 10/04
US Classification:
429211, 4292311, 4292318, 429245, 429324, 977948
Abstract:
The present invention provides electrochemical cells and batteries having one or more electrically conductive tabs and carbon sheet current collectors, where the tabs are connected to the carbon sheet current collectors; and methods of connecting the tabs to the carbon based current collectors. In one embodiment, the electrically conductive tabs are metallic tabs.
Marc Juzkow - Livermore CA, US Aakar Patel - Pleasanton CA, US Jun Lui - San Jose CA, US Konstantin Tikhonov - Newark CA, US Michael Erickson - Sunnyvale CA, US Hashmat Haidari - Fremont CA, US Thomas Nagy - Fremont CA, US Hongli Dai - Los Altos CA, US
Assignee:
Mobius Power, Inc. - Fremont CA
International Classification:
H01M 2/02 H01M 4/02 H01M 10/14
US Classification:
429163, 429211, 296231
Abstract:
The present invention provides electrochemical cells and batteries having one or more electrically conductive tabs and carbon sheet current collectors, where the tabs are connected to the carbon sheet current collectors; and methods of connecting the tabs to the carbon based current collectors. In one embodiment, the electrically conductive tabs are metallic tabs.
Konstantin Tikhonov - Pleasanton CA, US Tobias Johnson - Union City CA, US Jesse Chau - Newark CA, US Ka Ki Yip - San Leandro CA, US Marc Juzkow - Livermore CA, US
Assignee:
Leyden Energy, Inc. - Fremont CA
International Classification:
H01M 10/052 H01M 4/485 H01M 4/66
US Classification:
429200, 429199
Abstract:
Disclosed herein are lithium or lithium-ion batteries that employ an aluminum or aluminum alloy current collector protected by conductive coating in combination with electrolyte containing aluminum corrosion inhibitor and a fluorinated lithium imide or methide electrolyte which exhibit surprisingly long cycle life at high temperature.
Surface Treatment Of Electrochemically Active Materials For Rechargeable Cells
Anthony Lin Chern - Mountain View CA, US Konstantin Tikhonov - Pleasanton CA, US
Assignee:
LEYDEN ENERGY - Fremont CA
International Classification:
H01M 4/62 H01M 4/13 H01M 4/139 H01M 4/04
US Classification:
429212, 427122
Abstract:
Provided herein are methods for processing electrochemically active materials and resulting active material structures for use in rechargeable batteries. The resulting active materials structures include carbon containing coatings that partially or completely cover the surface of the active material structures. In a typical embodiment, the method includes providing a solution of carbon containing precursor in a solvent, dispersing electrochemically active material in the solution to form a mixture, removing the solvent from the mixture to form electrochemically active material coated with the carbon containing precursor, and heating the electrochemically active material coated with the carbon containing precursor in an inert atmosphere at a temperature sufficient to at least partially convert the carbon containing precursor into a carbon coating. Also provided are an electrochemically active material prepared according to the methods described herein, as well as an electrode and a rechargeable electrochemical cell, each containing such electrochemically active material.
Electronic Circuits With Directly Integrated Electrochemical Cells
- Alameda CA, US Konstantin Tikhonov - Pleasanton CA, US Christine Ho - Fremont CA, US Alexander Gurr - Berkeley CA, US
Assignee:
Imprint Energy, Inc. - Alameda CA
International Classification:
H01M 4/04 H01M 10/04 H01M 10/42
Abstract:
Provided are electronic circuits, comprising electrochemical cells directly integrated with other devices of the circuits, and methods of manufacturing these circuits. The direct integration occurs during cell manufacturing, which allows sharing components, reducing operation steps and failure points, and reducing cost and size of the circuits. For example, a portion of a cell enclosure may be formed by a circuit board, providing direct mechanical integration. More specifically, the cell is fabricated right on the circuit board. In the same or other examples, one or both cell current collectors extend outside of the cell boundary and used by other devices, providing direct electrical integration without a need for intermediate connections and eliminating additional failure points. Furthermore, printing one or more components of electrochemical cells, such as electrolytes and current collectors, allows achieving higher levels of mechanical and electrical integration that are generally not available in conventional cells.
Intelligent, Adaptable, And Trainable Bot That Orchestrates Automation And Workflows Across Multiple Applications
- Cupertino CA, US Harish Shetty - Sunnyvale CA, US Bhaskar Roy - Los Altos CA, US Konstantin Tikhonov - San Jose CA, US Alexey Pikin - Sunnyvale CA, US
International Classification:
H04L 12/58 G06F 9/50 H04L 29/08 G06N 20/00
Abstract:
The present disclosure relates to an intelligent, adaptable, and trainable bot that orchestrates automation, event data integration, and application programming interfaces across multiple applications. The technology may include receiving event data describing events from distributed software applications and processing the event data describing the events to generate notifications, the event data being received based on execution of a software recipe. The bot may transmit the notifications for display to a user using a conversational interface and receive a command from the user via the conversational interface, the command including a requested operation respective to at least one delivered notification. In response to receiving the command, the method may generate recommendations for additional commands respective to the at least one notification based on metadata associated with an event corresponding to the at least one notification.
Electronic Circuits With Directly Integrated Electrochemical Cells
- Alameda CA, US Konstantin Tikhonov - Pleasanton CA, US Christine Ho - Fremont CA, US Alexander Gurr - Berkeley CA, US
Assignee:
Imprint Energy, Inc. - Alameda CA
International Classification:
H01M 4/04 H01M 10/42 H01M 10/04
Abstract:
Provided are electronic circuits, comprising electrochemical cells directly integrated with other devices of the circuits, and methods of manufacturing these circuits. The direct integration occurs during cell manufacturing, which allows sharing components, reducing operation steps and failure points, and reducing cost and size of the circuits. For example, a portion of a cell enclosure may be formed by a circuit board, providing direct mechanical integration. More specifically, the cell is fabricated right on the circuit board. In the same or other examples, one or both cell current collectors extend outside of the cell boundary and used by other devices, providing direct electrical integration without a need for intermediate connections and eliminating additional failure points. Furthermore, printing one or more components of electrochemical cells, such as electrolytes and current collectors, allows achieving higher levels of mechanical and electrical integration that are generally not available in conventional cells.
Microsoft Aug 2013 - Oct 2014
Senior Development Lead
Workato Aug 2013 - Oct 2014
Software Engineer and Architect
Skype Jan 2011 - Aug 2013
Software Development Engineer
Qik Jun 2010 - Jan 2011
Ruby on Rails Developer
Railsware Sep 2009 - Jun 2010
Ruby on Rails Developer
Education:
Krasnoyrsk State University 2001 - 2006
Masters, Physics
Krasnoyarsk State University 2001 - 2006
Masters, Physics
Skills:
Ruby Ruby on Rails Git Postgresql Javascript Linux Scrum Mysql Python Distributed Systems Scalability Oop Test Driven Development Software Design Jquery .Net Subversion C# Ajax Agile Methodologies Database Design Redis C++ Haml Tdd Twisted Unit Testing Mac Os Object Oriented Programming Rust Rust
Interests:
Yoga and Bouldering Linux Ruby on Rails
Languages:
English Russian
Youtube
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Red Army clip - Tikhonov
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