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www.etvenergy.com. Arnold Roth Chief Operating Officer. Advanced battery technology for the emerging electric vehicle opportunity. A call to action. Global warming Environmental pollution Geopolitics Oil prices.
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www.etvenergy.com Arnold Roth Chief Operating Officer Advanced battery technology for the emerging electric vehicle opportunity
A call to action • Global warming • Environmental pollution • Geopolitics • Oil prices
Establishing technology leadership in one of the most valuable segments of today’s global markets Collaboration: Industry Execution Experienced management team Track record of success Science Innovation Collaboration: Academia
Successfully addressing the key challenges calls for focus on energy density and cost (Wh/l) USABC long term target Q1 2014 Volumetric energy density 4.7V (NMS) Battery for UAV Q4 2012 High5ive™ prismatic 1-2Ah 4.7 Volt cell 3.6V - 3.8V Li-ion LCO, LMO NCA, NMC 3.2V 1.2V Li-ion LFP NiMH NiCd Gravimetric specific energy (Wh/kg) Source: ETV Energy; BDG Battery Report - Dec. 2009, Roland Berger Target values are compared to USABC long term goal for EVs. Assumes 30% increase in weight and volume for battery pack and BMS
High performance in key measures: energy density, power rating, safety Cycle life % % capacity C/2 C/5 Cycles High power performance Minimal thermal runaway (safe) V Cell voltage Heat Flow (Wg-1) Temperature (0C) Nominal capacity Graph: High voltage Nickel Manganese Spinel Oxides for Li-ion Batteries - ElectrochimicaActa 53 (2008), CEA France Typical data obtained from ETV Energy 1Ah cell (4.7V) vs. graphite
Elimination of electrolyte oxidation by eliminating Manganese dissolution and deposition on the anode Cathode: Protective layer to minimize dissolution of Mn+2 into electrolyte and electrolyte oxidation Anode: Protective layer to minimize deposition of Mn+2 into anode material Anode Cathode Separator: Scavenging membrane minimizes the transfer of Mn+2 to anode without affecting Lithium conductivity IP secured by patent strategy Manganese ion Lithium ion
High5ive™ cell chemistry: outstanding performance • ETV’s goal is an enabling high voltage (>4.5V) technology platform, engineered to be ready for future developments and enhancements • NMS chemistry delivers significant customer value: • 50% to 100% higher energy density compared with state-of-the-art • As much as 30% lower cost of production and use of inexpensive materials • Power rating as good as the very best • Inherently as safe as the safest competitor
Validation in relevant market segments Underway Dec’10 Approved Collaboration with industry $Mn Addressable Market 100,000 10,000 >$50B 1,000 $500M 100 + Cycle life + Operating temp + Storage $100M 10 Energy density + Power density 1 Focused Medium Broad Technology requirement
Partnering with industry leaders for mass markets, addressing niches directly Production Aviation Price kW/h Superbikes Licensing Defense High Up to $2,000/kWh Telecommunication JV Cars, trucks, buses Hand tools Mobile Electronics Low <$500/ kWh Electric bicycles and motorcycles 1 10 100 1,000 10,000 100,000 Market size
So in summary… • Team has proven track record of bringing new electrochemical systems to market and succeeding • A truly game-changing high-voltage electrochemistry • Strong patent position • Twice the energy density of state-of-the-art batteries • 30% lower cost of production and inexpensive materials • Blended go-to-market model : Licensing into highly competitive markets, with in-house production of own-brand cells/batteries in high-profit niche markets • Once proven in market, High5ive line will strongly support ETV’s global technology licensing revenue stream • Exceptionally capital efficient – first revenues within 3 years of inception • Expecting to achieve break-even by 2013
One of the company’s labs on the Bar Ilan University campus Comments and questions are welcome Arnold Roth • President and Chief Operating Officer•arnold.roth@etvenergy.com Toll-free from the US • 1-888-875-5766 Herzliya, Israel +972-9-951-7277