Decentralized Power at Building, Campus & Factory Scale
Patent-pending magnetic inertia units engineered for sustained output, ultra-low noise, and adaptive controls. The platform spans condo, commercial, and factory-grade deployments with integrated cooling, storage, and redundancy. All figures represent internal test statistics; field pilots are pending.
Fast Load Response
Operational Efficiency
Acoustic Profile
Deployment Visual Gallery
Product Portfolio & Scale
Ioncore C (Condo / Mid-rise)
- Daily Output: ~470 kWh
- Storage: 300 kWh Li-ion
- Self-Sufficiency: 85–95% (usage dependent)
- Noise: <40–50 dB typical
Ioncore X (Commercial / Campus)
- Daily Output: ~1,900 kWh
- Storage: 1,000 kWh bank
- Redundancy: Dual-core failover
- Grid Mode: Island / Tie-in / Black Start
Ioncore F (Factory / Industrial)
- Peak Output: ~5 MW per housing
- Daily Output: ~85–95 MWh
- Storage: 20 MWh (Li-ion + solid-state)
- Redundancy: Dual inertia chambers + N+1 subsystems
Note: Operational figures are based on internal hardware testing and simulation. Real-world performance may vary during pilot deployments.
Observed Performance (Internal Tests)
Continuity & Stability
- 72+ hours non-stop runtime observed
- Energy recovery factor >88%
- Autonomous recalibration ~every 4 hours
Thermal & Acoustic
- Integrated liquid cooling + cryogenic options
- Thermal stability under heavy load
- <55 dB exterior at 10 m (factory housing)
Intelligence
- Predictive load tuning (ML models)
- Adaptive surge response <120 ms
- SCADA & remote supervisory control
Key Engineering Systems
Magnetic Bearings & Flywheels
- Hybrid ceramic / magnetic bearings for ultra-low drag
- Carbon-composite rotors in vacuum chambers
- Tuned mass damping & vibration isolation
- Ballistic-rated liners for rotor containment
Electromagnetic Drive & Harvest
- High-density copper coils; superconducting option
- 3,000–5,000 RPM operating window
- Dual-core redundancy with live failover
Cryogenic Cooling Expansion
- Primary Cryo Loop: LN₂ / LHe for superconducting coils
- Secondary Loop: Glycol / fluorocarbon for inverters, bus bars, chambers
- Phase-Change Buffers: Surge absorption tanks
- Safety: O₂ monitoring, vent stacks, auto nitrogen refill
Energy Storage & Power Electronics
- Li-ion (long duration) + solid-state (surge) hybrids
- Smart BMS (cell-level predictive balancing)
- MV switchgear (10–15 kV), N+1 inverters/rectifiers
- Island, grid-tie, and black-start modes
Bill of Materials – Highlights (by Model)
| Subsystem | Condo (C) | Commercial (X) | Factory (F) |
|---|---|---|---|
| Magnetic bearings / flywheels | 10 bearings, 4 rotors (15 kg) | 20 bearings, 6 rotors (50 kg) | 40 bearings, 8 rotors (500 kg) |
| Electromagnets (drive/harvest) | 5 modules | 8 modules | 24 modules |
| Cooling | Liquid loop + radiators | Dual loops + radiators | Cryo primary + secondary loop + radiators |
| Storage | 300 kWh Li-ion | 1,000 kWh Li-ion | 20 MWh (Li-ion + solid-state) |
| Power electronics | 3-phase inverter, PLC | N+1 inverter bank, PLC/SCADA | MV switchgear, N+1 inverter/rectifier stacks |
| Housing & acoustics | Acoustic enclosure | Noise-damped frame | Industrial housing with mezzanine & crane access |
Detailed line-item BOM available upon NDA for partners and pilot customers.
Pricing & Economics (Indicative)
Ioncore C — Condo
- Estimated Build Cost: ~$165k
- Indicative MSRP (installed): ~$229k
- Gross Margin: ~28%
- ROI: ~6–7 years (usage & tariff dependent)
Ioncore X — Commercial
- Estimated Build Cost: ~$328k
- Indicative MSRP: ~$455k
- Gross Margin: ~28%
- ROI: ~4.5–6 years
Ioncore F — Factory
- Estimated Build Cost: ~$21.2M
- Indicative MSRP: ~$29.0M
- Gross Margin: ~27%
- Payback: ~4–5 years (industrial OPEX deltas)
All pricing is indicative and subject to scope, incentives, and supply conditions. Field performance to be verified during pilots.
Deployment Roadmaps
Condo (C)
- Design & interconnect: 4–6 weeks
- Procurement & build: 8–10 weeks
- Install & commission: 3–4 weeks
Commercial (X)
- Site modeling & permits: 6–8 weeks
- Build & FAT: 12–16 weeks
- Site install & SAT: 4–6 weeks
Factory (F)
- Engineering & grid studies: 10–12 weeks
- Subsystem fab & integration: 24–32 weeks
- Install, commission, ramp: 10–14 weeks
Why Ioncore
Resilience First
Island operation, black-start capability, and dual-core redundancy (X/F) make outages survivable with minimal operational disruption.
Predictive Intelligence
ML-trained models forecast demand and auto-tune RPM, storage dispatch, and cooling to minimize loss and extend system life.
Quiet, Compact, Local
Acoustic dampening and compact housings enable placement in buildings, campuses, and factory bays without external structures.
Important Notes
- Technology is patent-pending and currently untested in live field deployments. Data herein reflects internal lab hardware tests and simulations.
- All performance, cost, and ROI figures are estimates and will vary by site, tariff, regulation, and usage profile.
- Detailed engineering packages, protection studies, and conformance documentation are available under NDA for pilot partners.
Partner, Pilot, or Procure
Next Steps
- Request the technical whitepaper & product SOO
- Share site load profiles for custom modeling
- Scope a pilot with measurement & verification
Contact
Email: ioncoreenergy@gmail.com
Subject: Ioncore – Pilot Inquiry
We prioritize healthcare, data, industrial, and multifamily pilot sites.
Schedule a pilot briefing