Maximize Returns, Minimize Impact
With its remarkable efficiency, PHIMS helps lower operational costs and boosts profitability—while reducing the environmental footprint.
Win-Win for Suppliers and Users
Fuel suppliers benefit from consistent demand for this cutting-edge technology, and end users enjoy higher performance at lower energy consumption rates.
Global Sustainability in Action
By recycling CO₂ and maintaining nature’s balance, PHIMS answers the call for responsible energy solutions that appeal to markets worldwide.
Seeing Is Believing
Interest sparks action. Whenever potential partners request a prototype demonstration, it means they’re intrigued. We have a portable demonstration unit ready to showcase the power and efficiency of PHIMS in person—fostering trust and confidence that leads to solid, long-term investments.
Your Next Move
Invest Directly: Secure your position in the future of sustainable energy.
Share the Vision: If you’re not ready to invest now, pass the word along. Every introduction helps our mission to evolve global energy usage.
At PHIMS, we’re driven by a mission to transform energy consumption and protect our planet—all while delivering outstanding returns for our partners. We’re excited to discuss how PHIMS can help you seize new opportunities in the energy sector.
Call or Text: 304-395-0840
Email dan@amtwv.net
Home Generator
Wind Turbine (optional label)
Scaled-Down (1/10) Internal Combustion Engine
Electric Generator ⚡
PHIMS (Patent‐Protected Technology)
Supercapacitor: 20× Power Boost
Nuclear Energy
Electric Power → (EV, Aerospace, Machinery, Drone, Farming, Home, Factory, Train, Inverter 120–480 V AC)
[YouTube icon] “Watch Demo”
Demo Call or Text: 304-395-0840 or Email dan@amtwv.net
Electric airplanes are finally finding practical applications after many decades of research and development. When compared with normal jet engine airplanes, electric airplanes stand out in the field of quick response, less noise, better handling of crosswind situations, and the ability to produce differential thrust. Let’s take a look at all the recent breakthroughs in the electric aviation field by understanding the technology behind Eviation Alice which is the most advanced electric airplane so far.
Now, imagine replacing the traditional battery system with PHIMS — the Power Hybrid Integrated Management System — combined with a small (1/10 size) internal combustion engine, an electric generator, PHIMS controller, and a supercapacitor bank.
This innovative system eliminates the need for heavy battery packs by integrating lightweight, fast-charging supercapacitors made from coal or other carbon sources.
The result? Up to 20× boosted power and 90% fuel efficiency, all while reducing the aircraft's weight and improving safety by removing the risks associated with conventional batteries (such as fire or degradation).
Instead of adding another diesel engine to build a new locomotive head, integrate PHIMS with the existing system and traction motors connected to the wheels. This hybrid upgrade uses just 10% of the original fuel, while the PHIMS + Supercapacitor system delivers up to 20× boosted power with near-zero emissions. It’s a cost-effective, lighter, and cleaner solution — avoiding the need for bulky battery packs or additional combustion engines.
Below is an illustrative “top-down” scenario showing how one might estimate PHIMS’s potential market revenue across various segments. These figures are not predictions or guarantees, but demonstrate one approach to sizing a market opportunity by applying a notional adoption rate and an assumed per-unit revenue to each segment.
Context: The U.S. alone had over 278 million registered vehicles in 2022 (Federal Highway Administration).
Approximately 15 million new vehicles are sold annually in
the U.S. Globally, annual light-vehicle sales exceed 80 million.
Hypothetical PHIMS Adoption: Assume PHIMS is integrated into
1–5% of new global vehicle sales over time.
Illustrative per-unit revenue (licensing + hardware): $1,000
At 1% of 80M = 800,000 vehicles × $1,000 = $800 million per year.
At 5% of 80M = 4M vehicles × $1,000 = $4 billion per year
Context: The global UTV market was valued at approximately $5.36 billion in 2021, expected to reach $7.98 billion by 2027 (Allied Market Research).
Potential PHIMS Use Case: Lightweight internal combustion engine (ICE) plus supercapacitor system to boost power while reducing fuel consumption in off-road vehicles.
Hypothetical Adoption: 10% of the forecasted market by 2027.
Illustrative Market: $800 million annually
Context: Estimated $8 billion market in 2023, growing over 5% annually (Statista).
Potential PHIMS Use Case: Replace or supplement battery systems in golf and light utility carts, simplifying charging and extending runtime.
Hypothetical Adoption: 5% of $8B market.
Illustrative Market: $300 million annually
Context: Residential and commercial generator markets combined were valued at approximately $16 billion in 2022 (Statista Energy Reports).
Potential PHIMS Use Case: Hybrid generator sets using small ICE + supercapacitor to drastically reduce fuel consumption and runtime.
Hypothetical Adoption: 10% of $16B total.
Illustrative Market: $1.6 billion annually
Potential PHIMS Use Case: Auxiliary power units or partial propulsion solutions for smaller aircraft.
Hypothetical Adoption: 2% of $22.9B.
Illustrative Market: $458 million annually
Context: The U.S. boating and recreational marine sector generated about $52.6 billion in total expenditures in 2022 (Statista Recreational Boating) .
Potential PHIMS Use Case: Fuel savings for marine engines in mid-size recreational vessels.
Hypothetical Adoption: 1% of $52.6B.
Illustrative Market: $52.6 million annually
Context: Thousands of distribution utilities exist worldwide. The U.S. alone has over 1,200 utility companies, each responsible for large-scale energy infrastructures.
Potential PHIMS Use Case: Stationary hybrid systems for backup generation, microgrids, and grid-stabilization.
Hypothetical Adoption: Highly variable, based on scale.
Illustrative Market: Could range from a few hundred million to billions annually, depending on adoption.
Assuming modest adoption across segments — 1–5% for vehicles, 10% for side-by-sides and generators, and 2–5% for other categories — PHIMS could plausibly reach several billion dollars in annual revenue once the technology gains traction.
A rough "back-of-the-envelope" estimate could look like:
Segment Illustrative Revenue
On-Road Vehicles (1%) $800M
Side-by-Side (10%) $800M
Golf & Utility Carts (5%) $300M
Generators (10%) $1.6B
Airplanes (2%) $458M
Ships (1%) $676M
Total Potential Market: $4–8+ billion annually
(Deeper adoption in utilities could expand this total even further.)
▶️ Standard Hybrid EV (HEV)
Open this to learn why hybrid EVs are still complicated.
Uses: 8/10 size internal combustion engine
Includes a transmission system
Requires a large high-voltage battery with cooling/heating modules
Controlled by multiple power electronics and modules
Takes up space, adds weight, and needs charging infrastructure
⚠️ Hybrid EVs improve efficiency but still rely on complex and costly systems.
▶️ Traditional Internal Combustion Engine (ICE)
A look at the outdated system PHIMS replaces.
Uses a full-size engine
Directly connected to transmission
No energy storage or optimization
Always running at full load
🔥 High fuel consumption, low efficiency, and no assist or control.
▶️ PHIMS System
Why PHIMS is the simplest, most powerful solution.
Uses: 1/10 size internal combustion engine
Drives an electric generator controlled by PHIMS
Powers a supercapacitor, delivering instant 20× boost
Supplies power to any electrical load:
🚗 Cars, ✈️ planes, 🚁 drones 🚜 Agriculture & 🏭 industry
🏠 Homes and ⚡ AC loads (120–480V)
✅ Only 1/10 the fuel used. No batteries. Fewer moving parts. Lightweight. Adaptable.
🧠 Why PHIMS Is Better : The smarter alternative to hybrids and traditional engines.
🧩 Modular: fits any application — transportation, home, factory ⚙️ Fewer parts: less to maintain, lighter to install
💡 Patented System: delivers high power on demand, not wasted energy