Global Solid State Thin Film Battery Market Will Reach $6 Billion by 2019: MarketResearchReports

New Market Research Report Added in MarketResearchReports.Biz Reports Database Solid State Thin Film Battery: Market Shares, Strategies, and Forecasts, Worldwide, Nanotechnology, 2013 to 2019.

Albany, NY, January 23, 2013 --( WinterGreen Research announces that it has a new study on Solid State Thin Film Battery, Market Shares and Forecasts, Worldwide, 2013-2019. The 2013 study has 344 pages, 151 tables and figures.

Batteries are changing. Solid state batteries permit units to be miniaturized, standalone, and portable. Solid-state batteries have advantages in power and density: low-power draw and high-energy density. They have limitations in that there is difficulty getting high currents across solid-solid interfaces.

Power delivery is different in solid state thin film batteries - there is more power per given weight. The very small and very thin size of solid state batteries helps to reduce the physical size of the sensor or device using the battery. Units can stay in the field longer. Solid state batteries can store harvested energy. When combined with energy harvesting solid state batteries can make a device stay in the field almost indefinitely, last longer, power sensors better.

Various power factors have impinged on the advancement and development of micro devices. Power density, cell weight, battery life and form factor all have proven significant and cumbersome when considered for micro applications. Markets for solid state thin-film batteries at $65.9 million in 2012 are anticipated to reach $5.95 billion by 2019. Market growth is a result of the implementation of a connected world of sensors.

Companies Profiled

Market Leaders

Infinate Power Solutions

Market Participants

MIT Solid State Battery Research
Johnson Research & Development / Excellatron
Planar Energy Devices
Balsara Research Group, UC Berkley
Watchdata Technologies

Check Out These Key Topics

Thin Film Battery
Thin Film Solid State
Solid State Battery
Printed Battery
Sensor Battery
Smarter Computing
Cloud Computing
Integrated Supply Chain
Smart SOA
Polymer Film Substrate
Flexible Thin Battery
Smarter Computing
Intelligent Systems
Polymer Film Substrate
Printed Electronics
Remote Sensors
Smart Card Battery
RFID and Small Thin Film
Battery-Assisted Passive and Active RFID
Medical Batteries
Solid State Energy Storage
Energy Harvesting
Rechargeable EnerChips
SRAM Backup
Manganese Dioxide Nanotechnology
Radio Tags
Organic Radical Battery (ORB)
Polymer Film Substrate
Lithium Air Battery
Battery Anode
Battery Cathode
Thin Film Battery Timescales

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Hemendra Parmar