Cambridge EnerTech’s

Battery Technologies for Military and Aerospace Applications

Powering Defense and Aerospace Innovation with Energy Solutions Built for Extreme Conditions

March 25 - 26, 2026 ALL TIMES EDT



With rising energy demands across land, sea, air, space, and commercial aerospace, both military missions and civilian operations are increasingly reliant on high-performance, reliable battery technologies. This track explores the latest advances in battery systems engineered for defense and aerospace applications—from soldier-worn power solutions and unmanned platforms to hybrid combat vehicles, submarine systems, and next-generation aircraft. Topics include durable cell chemistries, thermal management, safety, performance under extreme conditions, and cutting-edge integration strategies. Join leading researchers, defense contractors, aerospace manufacturers, and technology developers working to meet the unique energy challenges of the modern battlefield and the evolving aerospace sector.

Wednesday, March 25

12:35 pmRegistration Open

12:35 pmNetworking Luncheon

1:20 pmDessert Break in the Exhibit Hall with Poster Viewing (Sponsorship Opportunity Available)

APPLICATION-DRIVEN DEVELOPMENT

1:50 pm

Chairperson's Remarks

Tyler Andrews, Vice President Business Development, Echion Technologies Ltd.

1:55 pm

Battery Standardization for Unmanned Systems

Lisa King, Director, Advanced Battery Strategy, LEAP Manufacturing

Developing standardized battery systems for small uncrewed aerial vehicles (UAVs) is essential to enable interoperability, safety, and scalability across civilian and defense applications. This presentation explores the creation of unified battery standards for dual-use Group 1 UAVs, highlighting how standardization fosters reliability and lifecycle efficiency while driving aggregated demand for high-performance pouch cells. Harmonized specifications can unlock cost reductions, enhance supply resilience, and accelerate adoption across both commercial and military UAV sectors.

2:25 pm

Which Battery Technologies Will Lead the Defense and Aerospace Markets in 2026

Moshiel Biton, PhD, CEO, Addionics

As defense and aerospace systems demand higher power, faster charging, and greater mission reliability, the battery technologies leading the market in 2026 will be shaped not only by chemistry, but by intelligent design, AI-driven optimization, and architecture.For these rapidly evolving sectors, mass-produced, one-size-fits-all batteries are no longer sufficient. As the industry enters a new era of application-specific energy storage, batteries can be optimized around mission requirements at a level not achievable through mass production. This talk will explore the battery technologies expected to lead defense and aerospace applications in 2026, and examine how advances in battery architecture, particularly 3D Porous Current Collectors, enable this shift while supporting scalable manufacturing and broad chemistry compatibility.

2:55 pm Custom Electrolyte Manufacturing in the USA

Carl Thoemmes, Business Development Director, Orbia

This presentation will explore recent progress in electrolyte raw materials, advanced formulations, and scalable manufacturing solutions in the USA supporting advanced defense applications and their often-extreme use-case requirements.

3:25 pmRefreshment Break in the Exhibit Hall with Poster Viewing (Sponsorship Opportunity Available)

3:55 pm

Domestic Manufacturing of Lithium-ion Battery Cells and Packs for UAS Applications: Challenges and Opportunities

Tan Nguyen, PhD, Battery Cell Plant Director, Engineering, Packet Digital

Establishing a domestic lithium-ion battery cell factory is a complex endeavor, particularly for Uncrewed Aircraft System (UAS) applications that demand various cell formats, extreme performance, and specialized chemistries. This presentation outlines key considerations - including capital investment, regulatory compliance, facility design, equipment selection, technology scale-up, and customers acquisition. We will also highlight Packet Digital’s factory building progress and cell testing results from its U.S.-based high-performance pouch cell manufacturing initiative.
  • Challenges in domestic lithium-ion cell manufacturing for UAS applications.
  • Factory design, equipment selection, and process scale-up considerations.
  • Lessons learned from Packet Digital’s Fargo-based facility development and pilot production.
  • Performance validation and implications for U.S. defense and commercial supply chains.
4:25 pm

Battery Chemistry Developments for Military and Aerospace Applications

Xilin Chen, PhD, Senior Scientist, SAFT SA

This presentation explores how advances in battery technology are transforming aerospace and related industries. Covering high-energy-density chemistries, safety and thermal management, and system integration, it highlights how these innovations enable lighter, more efficient, and sustainable power solutions. Attendees will gain insight into selecting and optimizing battery technologies to meet the demanding performance and reliability needs of aerospace and beyond.

4:55 pm

Extending Mission Endurance: Silicon-Anode Batteries for Next-Generation Aviation and Defense

Ionel C. Stefan, PhD, CTO, Amprius, Inc.

Amprius Technologies is powering a new era of aviation and defense performance with silicon-anode batteries delivering record energy and power density. Reaching up to 450 Wh/kg and 10C discharge, Amprius cells extend mission range and endurance by 50–100%, recharge rapidly, and sustain high output under extreme conditions. From uncrewed aircraft to electric propulsion, Amprius enables greater payloads, longer missions, and faster readiness for next-generation aerospace and defense systems.

5:30 pmVolta Foundation Battery Social*

Join Volta Foundation for an Battery Social at International Battery Seminar & Exhibit in Orlando! Connect with fellow battery professionals, exchange ideas, build valuable relationships, and stay ahead in the rapidly evolving battery industry as the Volta Foundation Battery Social is the perfect place to engage with the brightest minds in the industry.

*separate registration required, please click here for details: https://learn.volta.foundation/ibse-2026

8:30 pmClose of Day

Thursday, March 26

INTERACTIVE LEADERSHIP BREAKFAST

7:25 AM -

Powering Impact: An Interactive Session on Technology, Market Strategy, and Execution in the Battery Economy

PANEL MODERATOR:

Christina Lampe-Önnerud, PhD, Founder and CEO, Cadenza Innovation

Battery innovation succeeds when technology, business strategy, and disciplined execution move in sync. In this one-hour plenary dialogue led by tech innovator made market shaper and global executive Dr. Christina Lampe-Onnerud, brings together engineers, marketers, project managers, emerging leaders and mentors to focus on advancing ideas in the high-growth battery industry. The session will center on three practical dimensions: how to position technical concepts in terms of customer value and cost-performance; how to communicate with credibility to executives, investors, and commercial partners; and how project leadership translates vision into milestones that matter. 

Come join us for this new initiative with coffee/tea and bagels around small tables with young professionals, mentors, managers, and senior executives—not as observers, but as active participants with a courageous commitment to sponsor talent, open doors, and strengthen execution cultures. The call to action is clear: bridge science and market reality, expand your network with intention, and help shape a battery industry that advances through both technical excellence and commercial clarity.

PANELISTS:

Marianne Meins, CTO & Executive Vice President, Emerging Technologies, Curtis Stout

Dee Strand, PhD, CSO, R&D, Wildcat Discovery Technologies, Inc.

Celina Mikolajczak, Advisor to the Battery Industry

Lucy Li, PhD, Senior Technical Program Manager, Cell, Peak Energy; Program Manager, Women in Batteries, Volta Foundation

Paige Johnson, Founder & CEO, Ten-Nine Technologies LLC

Mykela DeLuca, PhD, Program Dir, Battery Business Directory, Volta Foundation

8:00 amRegistration Open and Morning Coffee

APPLICATION-DRIVEN DEVELOPMENT (CONT.)

8:25 am

Chairperson's Remarks

Eric Darcy, PhD, former Battery Technical Discipline Lead, NASA-JSC; Private Consultant, Darcy Batt Consulting, LLC

8:30 am

Mission Critical Energy: Creating Resilient and High-Performance Systems Utilizing Novel Battery Technology

Tyler Andrews, Vice President Business Development, Echion Technologies Ltd.

Explore the evolution of mission-critical energy solutions, leveraging novel battery technology to enhance the survivability and performance of next-gen defense systems, including hybrid vehicle powertrains and directed-energy applications. This forum focuses on high TRL solutions that can be implemented into current development projects and operate reliably across all global theaters. These advancements improve survivability through reduced noise, minimized heat signatures, and enhanced power redundancy, offering strategic advantages in contested environments.

9:00 am

Integration of Batteries and Power Management Electronics for Next Generation More-Electric-Aircraft (MEA)

Roger Brewer, Technical Fellow, Lockheed Martin Corp.

​This presentation will highlight integration aspects that influence, and challenge, even the most advanced batteries.  Topics of relevance include temperature variations within aircraft compartments in combination with MEA loads that impose stress on batteries.  Also discussed will be influences such as high voltage and temperature ranges imposed on components forming battery regulating electronics (“Battery As A System”).  Capacitors as surge power support at temperature extremes will be orally discussed.

9:00 amCoffee Break in the Exhibit Hall

9:30 am

Army In-House Munitions Power Source Prototyping and Testing Capabilities

Giuseppe Di Benedetto, PhD, Power Team Lead / Chemical Engineer, U.S. Army DEVCOM Armaments Center

Department of War (DoW) missile and munition fuzing and subcomponents continue to advance in design and capability to meet the current and future ammunition and munitions system requirements. These advanced requirements include extreme environments and temperatures, while maintaining high reliability. Advanced fuze and munitions power sources are vital to provide increased power and capacity for the overall systems. U.S. Army DEVCOM Armaments Center has established leading laboratory, power source prototyping, and testing capabilities for the development and evaluation of next generation munition power sources. The expanded prototyping capabilities include the ability to integrate novel materials into in-house fabricated prototype power sources, such as thermal reserve batteries. Unique testing facilities are then utilized to evaluate the thermal reserve battery prototypes under representative gun-launch environments enabling the ability to raise the technology from TRL 2 to TRL 6 and beyond. This presentation will highlight the exclusive laboratory, prototyping, and testing capabilities, as well as offer opportunities to partner on collaborative projects with the goal to innovate fuze and munitions power sources.

10:00 amBattery Booth Crawl with Bagels in the Exhibit Hall with Last Chance for Poster Viewing

10:45 am

Design Principles for Flexible Batteries for Wearable Applications

Candace K. Chan, PhD, Professor, Materials Science & Engineering, Arizona State University

As demand for flexible, lightweight wearable electronics grows, development of robust, flexible lithium-ion batteries is essential. We conducted a systematic study of failure modes in conventional and flexible batteries under repeated mechanical deformation, focusing on key components like current collectors, electrodes, interconnections, and packaging. Our research elucidates how repeated flexing impacts battery reliability and identifies mitigation strategies for enhancing the performance and durability of high energy density, wearable power sources.

11:05 am

Scalable "Liquid-to-Solid" Phase Change Electrolytes Enable Ruggedized, Energy-Dense Batteries

David Mackanic, PhD, Co-Founder and CEO, Anthro Energy

Anthro Proteus is a new class of injectable phase change electrolytes that allows for the production of high-performance batteries while using existing manufacturing processes. The liquid-to-solid phase transition stabilizes high-energy-density silicon anodes by forming an elastic binder network and improves cell ruggedness, mechanical strength, and safety. This presentation details the performance advantages of cells fabricated using Anthro Proteus in DoD relevant cell chassis and test conditions.

11:25 am Infinity Technology: Safe and Long-Lasting Li-Ion Batteries for Defense 

Trevor Grant, Director, Research, Electrovaya

Electrification of defense and heavy‑duty applications demands battery technologies that deliver exceptional safety, stability, and longevity under extreme conditions. Electrovaya’s Infinity Technology leverages proprietary ceramic separator design to resist thermal runaway and enhance mechanical, electrical, and thermal resilience compared with conventional lithium‑ion systems. With over eight years of continuous field data and more than 30,000 batteries deployed, Infinity batteries demonstrate remarkable real‑world reliability and cycle life. Electrovaya's North American‑based manufacturing further strengthens supply chain resilience and supports defense‑relevant quality and regulatory compliance. This proven combination of advanced safety, durability, and domestic production makes Infinity Technology a compelling solution for safe, long‑lasting Li‑ion power in defense applications.

11:45 am US-Made Lithium-ion Battery Cells with US-Dominant Supply Chain for Military Applications

Barbara Hughes, Vice President of Energy Storage, Forge Nano

As global supply chains shift and regulatory pressures increase, the U.S. military requires high-performance, domestically sourced battery solutions. This presentation highlights the development of U.S.-made lithium-ion cells with a predominantly domestic supply chain, designed to meet demanding defense requirements. Forge Nano’s Atomic Armor™ technology uses atomic-scale coatings to enhance battery materials, improving energy density, cycle life, safety, and performance in extreme environments . The session will also explore the path to fully U.S.-sourced cells, addressing supply chain traceability, scalability, and compliance with national security mandates. Attendees will gain insight into how advanced materials innovation is enabling more resilient and secure battery technologies for military applications.

12:15 pmEnjoy Lunch on Your Own

SAFETY AND QUALITY

1:40 pm

Chairperson's Remarks

Carl Thoemmes, Business Development Director, Orbia Fluor & Energy Materials

1:45 pm

Isolating Cell Internal Shorts with Polymer Current Collectors in Cylindrical Designs > 265 Wh/kg

Eric Darcy, PhD, former Battery Technical Discipline Lead, NASA-JSC; Private Consultant, Darcy Batt Consulting, LLC

Once cylindrical cell designs exceed >265 Wh/kg, we've found that thermally stable separator designs greatly increase the consistency for nail penetration tolerance. High speed radiography and post test CT imaging provide unique insights into the internal short isolation phenomena provided by thermally unstable metallized polymer current collectors.

2:15 pm

Battery Quality Control via High-Throughput CT Scanning

Peter Attia, PhD, Co-Founder & CTO, Glimpse

Battery quality control is critical for aerospace applications, where safety and reliability are paramount. We supported NASA’s Starliner program by CT scanning 200 cylindrical cell assemblies. Our automated inspection algorithms measured key battery features, identifying both anode overhang defects and metallic particle contaminants and validating these results with teardowns. Our findings demonstrate the value of high-throughput CT scanning for aerospace qualification workflows, reducing defect escape rates and mitigating safety risks.

2:45 pm Solid‑State Batteries at the Intersection of Defense Electrification and Secure Supply Chains 

Raimund Koerver, Vice President Business Development, Business Development, Factorial Inc.

This talk will discuss the substantial market opportunity for solid-state batteries in the defense sector, fueled by policies and strategies directed towards military modernization, platform electrification (in particular, drones and batteries), and secure domestic supply chains. Higher energy density, improved safety margins, and high‑power performance enable extended range and increased payload. Applications include UAVs such as drones, eVTOLs, and spacecraft, while aligning with emerging U.S. and allied supply‑chain and sourcing requirements.

3:15 pmTransition to Closing Plenary

CLOSING PLENARY PANEL DISCUSSION

3:30 pm

Navigating the Global Battery Growth in Harmony with Shifting US Policy, Demanding Energy Security, and Big-Data Requirements

PANEL MODERATOR:

Christina Lampe-Önnerud, PhD, Founder and CEO, Cadenza Innovation

In a world where battery momentum continues to evolve, the industry is facing great uncertainty in policy and energy priorities. In this Plenary Closing Discussion, we are ending the conference with a thought-provoking and insightful panel of experts led by Christina Lampe-Onnerud to help us think through: Where is the US battery market going in the aftermath of the Big Beautiful Bill and how is this different in Europe and Asia? What are the effects on US electricity infrastructure with Energy Security, storage growth and Big Data supercharge? How do we as an industry navigate these uncertain times?

PANELISTS:

Eric Darcy, PhD, former Battery Technical Discipline Lead, NASA-JSC; Private Consultant, Darcy Batt Consulting, LLC

John Warner, DM, Chief Customer Officer, American Battery Solutions

Michael Liu, Director, Research & Insights, Volta Foundation

4:30 pmClose of Conference




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