Energy Technology Specifications
Technical documentation, performance metrics, and engineering parameters for Aevum Zenth's commercial and industrial energy generation, distribution, and storage systems.
Model Series
Zenth-FX Series
Commercial Grade
Net Thermal Output
350–1,200 MW
ISO 14001 Certified
Fuel Cycle
Deuterium-Tritium / Helium-3 Hybrid
Availability Factor
≥ 94.2%
24/7 Baseline
| Parameter | FX-350 | FX-750 | FX-1200 |
|---|---|---|---|
| Plasma Confinement | Tokamak Hybrid | Tokamak Hybrid | Spherical Tokamak |
| Magnetic Field Strength | 12.5 T | 14.2 T | 16.8 T |
| Q-Factor (Energy Gain) | ≥ 15.0 | ≥ 22.4 | ≥ 28.1 |
| Neutron Flux | 2.1 × 10¹⁴ n/cm²/s | 3.4 × 10¹⁴ n/cm²/s | 4.7 × 10¹⁴ n/cm²/s |
| Decay Heat Management | Passive Helium Loop | Passive Helium Loop | Active + Passive Redundant |
| Footprint (Excl. Aux) | 42,000 m² | 68,000 m² | 95,000 m² |
| Grid Sync Latency | < 8 ms | < 6 ms | < 4 ms |
Engineering Notes
- All FX models utilize superconducting Nb₃Sn and HTS (REBCO) coil architecture for optimized magnetic confinement.
- Tritium breeding blankets employ lithium-lead (LiPb) eutectic with pebble bed divertor cooling.
- Remote handling systems rated for >500 kGy cumulative radiation exposure without core component replacement.
Panel Series
Aevum HelioMax v4
Utility Scale
Cell Technology
Perovskite-Silicon Tandem
Standard Efficiency
31.8% (STC)
IEC 61215 Compliant
Degradation Rate
< 0.25% / year
| Parameter | HelioMax v4-U | HelioMax v4-C | HelioMax v4-Agri |
|---|---|---|---|
| Peak Power (Pmax) | 420 Wp | 435 Wp | 380 Wp (Semi-Translucent) |
| Dimensions | 2278 × 1134 × 30 mm | 2278 × 1134 × 30 mm | 2278 × 1134 × 35 mm |
| Voltage @ Pmax (Vmp) | 41.2 V | 38.5 V | 39.8 V |
| Current @ Pmax (Imp) | 10.19 A | 11.30 A | 9.55 A |
| Operating Temp Range | -40°C to +85°C | -40°C to +85°C | -35°C to +75°C |
| Tracking Compatibility | Single/Dual Axis | Single/Dual Axis | Fixed / Elevated Canopy |
Engineering Notes
- Tandem architecture stacks a 1.75 eV perovskite top cell with a 1.18 eV silicon bottom cell for broad spectral absorption.
- Anti-reflective nanocoating reduces soiling accumulation by 34% in arid environments.
- Micro-inverter and string optimizer variants available for partial shading mitigation.
System Name
ZenthGrid Nexus
Distribution & Transmission
Voltage Classes
11 kV – 765 kV AC / ±500 kV DC
Control Latency
< 2 ms (Edge)
IEEE C37.238
Fault Ride-Through
150 ms (Low/High Voltage)
| Parameter | Node Controller | Substation Gateway | Regional Orchestrator |
|---|---|---|---|
| Processing Cores | 16 ARM Cortex-A78AE | 32 x86-64 + FPGA | Custom ASIC + GPGPU Cluster |
| Telemetry Points | Up to 2,048 | Up to 16,384 | Up to 500,000+ |
| Protocol Support | IEC 61850, DNP3, Modbus | IEC 61850, GOOSE, MMS | Full IEC 61970/61968 CIM |
| Redundancy | Hot-Standby Dual CPU | N+1 Power + Cross-Linked Switches | Geographically Distributed Active-Active |
| Encryption | AES-256-GCM / TLS 1.3 | AES-256-GCM / FIPS 140-3 | Quantum-Resistant Lattice KEM + TLS 1.3 |
Engineering Notes
- AI-driven dynamic line rating (DLR) adjusts thermal limits in real-time based on ambient conditions and historical loading.
- Microgrid islanding capability ensures critical load continuity during main grid disturbances.
- Compatible with DERMS (Distributed Energy Resource Management Systems) for bidirectional power flow optimization.
Battery Platform
Aevum VoltStack LFP / NMC
Grid-Scale BESS
Cycle Life
6,000–12,000 cycles
UL 9540A
Round-Trip Efficiency
93.5–96.2%
Thermal Management
Liquid-Cooled Plate + PCM
| Parameter | VoltStack 250 kWh | VoltStack 1 MWh Pod | VoltStack 10 MWh Block |
|---|---|---|---|
| Chemistry | LFP (Prismatic) | LFP / NMC 811 (Modular) | Configurable Rack Array |
| Max C-Rate (Discharge) | 2.0C | 1.5C | 1.0C |
| Max C-Rate (Charge) | 1.5C | 1.0C | 0.8C |
| Energy Density | 185 Wh/kg | 165 Wh/kg | 152 Wh/kg (System) |
| Self-Discharge | < 3% / month | < 2.5% / month | < 2% / month |
| Response Time | < 20 ms | < 15 ms | < 10 ms (Aggregated) |
Engineering Notes
- BMS architecture features cell-level monitoring with active balancing up to 5A per module.
- Fire suppression uses aerosol generation + inert gas flooding with early warning CO₂/NOx detection.
- Scalable micro-inverter topology allows degraded mode operation during partial array faults.
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