Empowering the Future: Inside Electric Power Systems – Logan, Utah’s Manufacturing Giant
Located in the heart of Logan, Utah, Electric Power Systems (EPS) is a premier name in the world of high-reliability power solutions. With over $64.5 million in revenue and decades of experience under its belt, this thriving manufacturing powerhouse is designing, testing, and building some of the world’s most robust energy systems. EPS operates in the growing field of aerospace and defense energy systems, offering both custom and off-the-shelf solutions to meet the exacting demands of its clients.
Electric Power Systems isn’t just another manufacturing company — it’s the kind of business that quietly powers some of the most complicated technologies out there, including electric aircraft, launch systems, and defense-grade power electronics. Their impact stretches well beyond Utah’s borders, helping shape the global shift towards sustainable electric propulsion (e-propulsion) and advanced energy storage systems.
As the world steadily pivots towards greener alternatives and electric innovation, EPS stands strong at the center of this shift. Let’s take an insider look at what makes Electric Power Systems not only a leader in Logan’s business ecosystem but a global innovator in energy technology.
Understanding Electric Power Systems: What They Do
At its core, Electric Power Systems is deeply involved in building reliable energy sources for high-stakes industries — aerospace, defense, unmanned aerial systems (UAS), and commercial aviation are just a few. Their solutions span power management systems, battery management technology, energy storage systems, and complete electric propulsion powertrains.
But what really sets EPS apart is its adaptability.
Unlike many traditional manufacturers that stick rigidly to standard designs, EPS develops custom power systems tailored to the rigorous demands of its partners. According to their website, EPS builds solutions that can weather vibration, temperature extremes, altitude, and electromagnetic interference — all while keeping weight and power delivery ultra-efficient.
Don’t expect large battery packs sitting idle — these systems are lightweight, complex, and purpose-built. And they’re reshaping how aircraft and defense systems innovate for a cleaner, electric-powered future.
From Prototypes to Production: How EPS Leads in Innovation
One of the most compelling aspects of EPS is its end-to-end solution capability. Many vendors might design lithium-ion battery packs, others might create chargers, and still more specialize in software controls. Electric Power Systems does the full stack:
- Energy Storage: High-power, aerospace-grade lithium battery modules
- Battery Management: Integrated monitoring and protection systems
- Power Distribution: Robust systems to distribute electricity across platforms
- Charging Systems: Custom solutions to interface with renewable and onboard energy sources
It’s this seamless integration that makes EPS a go-to partner for Tier 1 aircraft manufacturers and defense contractors.
In fact, they don’t just design for today — they plan for ten years from now. Future-ready architectures, compliance with FAA Part 33 and Part 25, and collaboration with NASA’s X-57 all make EPS an essential player in tomorrow’s electric aviation infrastructure.
Logan, Utah: A Strategic Innovation Hub
While Logan, Utah may not be the first city that comes to mind for aerospace breakthroughs, it offers a unique blend of resources that play directly into EPS’s success. A stable talent pipeline from Utah State University provides fresh engineering minds. The supportive ecosystem for defense contractors, particularly for organizations tapping into U.S. Department of Defense contracts out West, complements EPS’s client list.
Utah’s low cost of manufacturing, business-friendly policies, and strong infrastructure position EPS to scale efficiently. And this isn’t just theory — EPS has been scaling up for years, securing multimillion-dollar contracts with NASA, Boeing, and the U.S. Air Force.
Electrifying Aerospace: Real-World Applications of EPS Technology
To understand the power of EPS tech, consider the growing eVTOL (electric Vertical Takeoff and Landing) aircraft space. Leaders such as Boeing and Joby Aviation are developing electric taxis that will soon lift passengers across urban centers. But these aircraft need batteries that are both powerful and light. That’s where EPS comes in.
Their energy systems are featured in several running prototypes and test platforms. Electric airplanes, including NASA’s X-57 Maxwell, are extremely weight-sensitive; any additional grams could destroy performance. EPS’s solutions maximize energy density (how much energy a unit can store) without compromising safety. Their battery systems have built-in fire suppression, thermal shielding, and fail-safe layers. In many ways, this tech is the foundation aircraft manufacturers build their concepts upon.
High Standards and Certifications that Speak Volumes
To be trusted by aerospace giants, you need more than a promise — you need proof.
EPS operates under strict quality, safety, and environmental standards, including:
- AS9100 Certification: Aerospace-grade quality assurance
- DO-311 Compliance: Ensures battery systems meet FAA safety expectations
- FADEC Integration: Full Authority Digital Engine Control support for next-generation electric aircraft
Additionally, EPS is working closely with the FAA and other regulatory bodies to help define tomorrow’s battery standards for commercial flight.
Their Logan facility includes state-of-the-art test labs, environmental stress chambers, and hardware-in-the-loop simulation platforms that mimic real-world flight conditions. This testing environment ensures that technology is not only designed to spec but survives the intense unpredictability of real operations.
Culture of Innovation: People Behind the Power
Strong technology can only go so far without the right minds building it. The people behind EPS come from a mix of aerospace, automotive, and high-tech sectors, bringing together a range of philosophies to tackle a difficult problem: how to safely electrify some of the world’s most demanding machines.
EPS values agility, precision, and systems thinking. Their teams are not siloed — engineers talk directly with testing crews, software experts collaborate with battery designers. It’s an all-hands-on-deck approach that allows them to bring new solutions to market in record time.
In interviews with company executives, they emphasize that innovation isn’t a top-down order — it’s baked into every project meeting and prototype build. This manufacturing ethos fuels their edge over much larger — but slower-moving — competitors.
Funding, Customers, and Future Growth
With $64.5 million in revenue and a strong pipeline of defense and aerospace partnerships, EPS is well-positioned for explosive growth. They’ve recently been awarded several federal grants to further develop resilient energy systems applicable in the air and on the battlefield.
Key customers include:
- NASA
- Lockheed Martin
- Boeing
- Several branches of the U.S. Department of Defense
Additionally, EPS continues to expand its commercial footprint, with plans to deploy modular energy systems for airport ground support equipment and disaster-response vehicles.
Take a look at the projected market size for electric aviation and defense-related battery systems in the next decade:

The electric aircraft market is expected to exceed $20 billion by 2030, and EPS is already deeply embedded in its infancy stages. Positioned strategically, they have the experience, certification, and product depth to grow as this segment explodes.
Behind the Numbers: Financial Snapshot
While revenue figures can suggest success, let’s break it down to understand what makes a company like EPS resilient and valuable. Here’s a simplified view of financial factors that support their stability and scalability:
| Metric | Current Estimate | Insights |
|---|---|---|
| Annual Revenue | $64.5 million | Driven by defense & aerospace contracts |
| R&D Investment | $12 million+ | Focused heavily on propulsion & AI monitoring systems |
| # of Employees | 200–250 | Small and agile core team with high specialization |
| Customer Retention Rate | 90%+ | High due to custom-built solutions & regulatory integration |
This operational framework ensures EPS isn’t just surviving in a technical market — it’s leading.
Taking the Leap: Why It’s Time Business Developers Should Know EPS
For B2B developers, aerospace investors, or government buyers, EPS represents more than a top-notch supplier. They’re a strategic asset. Their tight vertical integration means fewer vendors and suppliers to manage, and fewer risks linked to component failure or miscommunication.
They bridge a critical gap: from traditional legacy energy sources to modular, intelligent, and CO2-neutral systems. They’re ESG-aligned, regulation-ready, and FAA-engaged — checks that make procurement teams breathe a little easier.
For companies looking to explore electrification paths without the burden of developing an in-house solution, EPS is an accelerator — not a drag.
The Bottom Line
Electric Power Systems, based in Logan, Utah, represents the future of smart energy in aerospace and defense. Their track record, deep technical diversity, and commitment to reliable manufacturing solutions position them well to not only meet but shape the future of electrification. They are not just keeping pace with innovation — they’re powering it.
Whether you’re an aerospace contractor, a government agency, or a sustainability venture capitalist hunting for next-generation partners, EPS is more than worth a look. For more information, check out their website directly at www.ep-sys.net.
Still unheard by many in the public eye, companies like EPS are the silent engines behind a cleaner, more efficient tomorrow.
And tomorrow? It’s coming faster than you think.
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