
Mojave 7 Newstar:
The Future of Solar Energy.
Complete, vertically integrated U.S. manufacturing portfolio covering solar cells, solar modules, legacy panels, energy storage, wafers, glass, crystal growth systems, and GW-scale production equipment.
The National Academy of Energy Dynamics (NAED) proudly unveils the Mojave 7 Newstar Tandem Cell, a breakthrough in next-generation photovoltaic technology. Building upon years of pioneering work in advanced solar architectures, this innovation merges the strengths of perovskite and silicon layers to achieve unprecedented conversion efficiency and stability.

As illustrated above, the Mojave 7 Newstar features a tandem (perovskite-silicon) design—a sophisticated multi-layer structure where a high-bandgap perovskite layer captures high-energy photons, while a crystalline silicon base efficiently absorbs lower-energy light. This optimized spectral utilization significantly surpasses the efficiency of traditional heterojunction solar cells, making it a milestone in sustainable energy generation.
Key structural highlights include:
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Perovskite Top Cell for enhanced light absorption
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Electron Transport Layer (ETL) and Hole Transport Layer (HTL) for seamless charge flow
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TCO (Transparent Conductive Oxide) coatings ensuring minimal optical loss
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Silicon Bottom Cell providing long-term stability and scalability
The Mojave 7 Newstar is not just an evolution—it’s a revolution in solar technology, embodying NAED’s mission to redefine global energy efficiency standards.
Exclusive Nuvex Premium HJT Bifacial Solar Modules & Q12 Mojave 7 Energy Storage Solutions.
Welcome to the pinnacle of solar innovation. At Nuvex, we deliver world-leading Heterojunction (HJT) bifacial technology combined with next-generation containerized battery storage engineered for maximum efficiency, durability, and performance in the world’s most demanding environments.
Our products stand apart with superior energy yield, ultra-low degradation, and exceptional reliability, making them the ideal choice for utility-scale farms, commercial installations, agrivoltaics, coastal projects, and grid-stabilizing hybrid systems.
Here are stunning examples of high-efficiency HJT bifacial solar arrays in action, showcasing real-world utility-scale deployments in high-irradiation desert environments.

The Mojave Energy Ecosystem now incorporates strategic integration pathways with SpaceX and NASA for orbital deployment and technology validation, leveraging their expertise in reusable heavy-lift launch (Starship) and space-based solar power (SBSP) research. This positions NAED as a key player in the emerging SBSP ecosystem, with Mojave 7 Astra™ tiles and Mojave 7 Terra™ receivers designed for compatibility with Starship-scale deployment and NASA-derived safety/standards frameworks.
SpaceX Integration for Mojave 7 Astra™ Deployment.
SpaceX’s Starship system (fully reusable, 100–150+ t to LEO, targeting <$10–100/kg at scale) is the enabling launch vehicle for Mojave 7 Astra™ orbital arrays. Key synergies include:
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Massive Payload Capacity: Starship enables single-flight deployment of hundreds of modular hexagonal energy tiles (MHE-300) or pre-assembled array segments, reducing on-orbit assembly complexity. For GW-class SBSP constellations, Starship could handle the required upmass (thousands of tonnes) in dozens of flights vs. hundreds with legacy vehicles.
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Reusability & Cost Reduction: Projected $100/kg or lower LEO costs make orbital SBSP economically viable (target LCOE $30–80/MWh by 2050, competitive with terrestrial renewables).
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In-Orbit Assembly Support: Starship’s large fairing supports robotic assembly demonstrations (e.g., self-assembling tiles, as in Virtus Solis concepts) and potential refueling for higher orbits.
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Strategic Role: Mojave 7 Astra™ tiles are engineered for Starship compatibility (hexagonal form factor, lightweight composites, radiation-tolerant cells). Initial pilots (2027–2030) could ride on Starship test flights or dedicated missions, scaling to multi-GW by 2035–2040.
This partnership accelerates the orbital evolution, turning Mojave 7 Astra™ into a practical, Starship-enabled path to continuous clean energy.
NASA Integration & Research Alignment
NASA’s ongoing SBSP studies (e.g., 2024 OTPS report, SPS-ALPHA concepts) and partnerships (e.g., with X-Arc/Ascent Solar on ultralight thin-film arrays) provide validation frameworks for Mojave systems. Key alignments:
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Reference Designs & Safety Standards: Mojave 7 Astra™/Terra™ incorporate NASA-derived representative designs (e.g., mature planar arrays, retrodirective beaming, 85–90%+ RF-DC efficiency targets). Beam intensity and safety protocols follow NASA/ICNIRP guidelines.
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Technology Maturation: NASA’s focus on lightweight arrays, in-space assembly, and beamed-power demos (e.g., MAPLE/Caltech, ARACHNE/AFRL) directly supports Mojave 7 Astra™ tile development (self-assembling, AI-driven nodes).
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Potential Collaboration: Mojave 7 Terra™ rectennas align with NASA’s dual-use land concepts (agriculture/solar co-location). Early demos could integrate with NASA test beds or use Starship for joint orbital validation.
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Long-Term Vision: By 2050, SBSP could supply baseload power with low GHG emissions (3,600–4,200 gCO2e/MWh lifecycle), complementing terrestrial renewables — exactly the end-to-end ecosystem NAED is building.
These integrations position NAED for potential public-private partnerships, accelerating TRL advancement and commercialization.
Expanded Mojave 7 Fusion Series™ – Experimental Hybrid Photonic–Electrochemical Storage Modules
Where Light Meets Chemistry – Next-Gen Energy Storage
The Fusion series represents NAED’s cutting-edge R&D into hybrid photonic-electrochemical storage, combining photovoltaic light harvesting with electrochemical conversion/storage in a single integrated module. This goes beyond traditional batteries by enabling direct solar-to-chemical energy storage (e.g., photo-assisted charging, solar-rechargeable hybrids), higher energy densities, and potential for grid-scale or space applications.
Core Technology & Advancements (2026 Context)
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Hybrid Mechanism: Photonic component (e.g., integrated thin-film PV or photoelectrodes) harvests light to drive electrochemical reactions (e.g., photo-assisted lithium intercalation, redox flow, or hydrogen evolution). This reduces overpotential, improves charge efficiency, and enables “solar-charging” without separate panels.
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Key Innovations:
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Photoelectrochemical cells with nanostructured electrodes (e.g., perovskite or quantum-dot sensitized) for enhanced light absorption and charge separation.
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Solid-state or hybrid electrolytes (glass-based or gel-polymer) for safety and wide temp range.
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AI-optimized control for dynamic light/charge balancing.
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Performance Targets (Prototype Phase):
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Energy Density: 500–800 Wh/kg (2–3x conventional Li-ion)
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Efficiency: 15–25% solar-to-chemical conversion
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Cycle Life: 5,000–10,000+ (photo-stabilized)
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Charging: Direct solar input + grid fallback
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Applications:
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Space (radiation-tolerant, low-temp operation for Astra integration)
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Grid-scale solar-rechargeable storage
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Portable/hybrid devices with self-charging
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R&D Roadmap:
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2026–2028: Lab prototypes (100–500 Wh modules)
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2028–2030: Pilot arrays (kW-scale)
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2030+: Commercial hybrid systems
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Model / Variant | Capacity / Scale | Description | Estimated Pricing (2026 USD, approx) | Key Specifications | Warranty / Life (Prototype) |
|---|---|---|---|---|---|
Mojave 7 Fusion Lab™ | 100–500 Wh/module | Benchtop prototype for photo-electrochemical testing | $5,000–$15,000/unit | Integrated PV + electrochemical cell; 15–20% solar-to-chemical; Nanostructured electrodes | 5–10 years (lab) |
Mojave 7 Fusion Proto™ | 1–10 kWh | Scaled hybrid module for pilot integration | $500–$1,200/kWh | Photo-assisted charging; Solid-state electrolyte; AI control; Wide temp (-40 to +70°C) | 10–15 years |
Mojave 7 Fusion Space™ | 5–50 kWh (radiation-tolerant) | Aerospace variant for orbital storage | $1,000–$2,500/kWh | Radiation-hardened; Low-temp operation; Compatible with Astra Tile | 15+ years |
Mojave 7 Fusion Grid™ | 100 kWh–1 MWh (array) | Grid-scale photo-rechargeable hybrid | $300–$800/kWh (scale) | Modular arrays; Solar + grid charging; High cycle life | 15–20 years |

Premium MJ7-HB Series HJT Bifacial Solar Modules.
Experience unmatched efficiency with our flagship MJ7-HB line featuring 132-144 half-cut HJT cells, up to 26% module efficiency, 85%+ bi-faciality, and less than 0.25% annual degradation.
Key highlights:
Power range: 550W to 770W (132/144 half-cut configurations)
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Ultra-low temperature coefficient for superior hot-climate performance
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Advanced features: Anti-soiling coatings, PID-free, salt mist/hail resistance (up to 45mm), high-voltage 1500V compatibility, and frameless/lightweight options
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Designed for: Mega-scale solar parks, desert/high-wind areas, coastal utilities, floating installations, BIPV, and agrivoltaics

Q13 Mojave 7 Containerized Battery Energy Storage Systems (BESS).
Our Q13 Mojave 7 series redefines energy storage with prismatic LFP cells delivering 350 Wh/kg energy density, 15,000 cycles to 80% capacity, wide operating range (-50°C to +80°C), and ultra-fast 2.5-minute charge time (10-80%).
Available in scalable container formats:
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5FT: 312 kWh (compact entry-level)
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10FT: 625 kWh
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20HC: 1.25 MWh (most popular for utility hybrids)
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40HC: 2.5 MWh (high-capacity mega-scale)
These turnkey systems include integrated BMS, PCS, cooling, fire suppression, and grid-ready controls perfect for solar + storage hybrids, peak shaving, grid support, and renewable integration.
Explore real-world containerized BESS installations paired with solar rugged, weatherproof, and ready for deployment.

Why Choose Nuvex.
Best-in-Class Performance: Highest efficiency HJT bifacial modules + longest-life BESS on the market
Proven Reliability: Extreme temperature tolerance, low degradation, and superior safety (thermal runaway onset +35% higher than competitors)
Scalable & Future-Proof: From individual modules to full GW-scale deployments with integrated manufacturing support
Exclusive Advantage: Break free from commodity imports partner with Nuvex for premium, high-yield technology that maximizes ROI

High-efficiency Heterojunction (HJT) cells – the foundation of our premium modules.
Solar Cell Products:
SC7-HJT1: 25.5% Efficiency, 182×182 mm, Bifacial, Low recombination
SC7-HJT2: 26% Efficiency, 210×210 mm, Shingled compatible
SC7-HJT3: 25% Efficiency, 182×182 mm, Cost-optimized
SC7-HJT4: 26.2% Efficiency, 210×210 mm, Enhanced low-light

Our premium Heterojunction bifacial modules deliver unmatched yield, low degradation (<0.25%/year), and superior durability for demanding environments.
MJ7-550HB to MJ7-590HB Series (132 half-cut)
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Power: 550–590 W
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Efficiency: 23–23.8%
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Key Features: High bifaciality (85%), low degradation, smart monitoring, hail/salt mist resistance
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Applications: Ground-mount farms, agrivoltaics, coastal projects
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CTA: View Details | Request Quote
MJ7-600HB to MJ7-680HB Series (144 half-cut)
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Power: 600–680 W
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Efficiency: 24–25.6%
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Key Features: Ultra-low temp coefficient, anti-soiling, frameless/lightweight options, high mechanical load
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Applications: Commercial rooftops, floating solar, dusty/high-humidity, snow-heavy areas
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CTA: View Details | Request Quote
MJ7-770HB Premium (144 half-cut)
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Power: 770 W
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Efficiency: 26%
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Key Features: Maximum output, advanced encapsulation
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Applications: Mega-scale solar parks
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CTA: View Details | Request Quote
Note: Legacy Fusion Q7 Series – Available upon request (limited information; contact for specs).
MOJAVE SOLAR SERIES™ – Power Generation
High-Efficiency HJT Bifacial Solar Modules
Harvest the Sun. Command the Spectrum.
This is the flagship generation line, now fully expanded with tiered models from ultra-compact balcony to record-breaking premiere utility-scale. All models use advanced HJT bifacial technology for superior efficiency, low degradation, and excellent temperature performance.
Common Technical Characteristics (All Solis Models)
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Cell Type → Advanced Heterojunction Technology (HJT) bifacial
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Efficiency → 18–24%+ (model-dependent)
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Warranty → 30 years product / 30 years linear performance (≥84.8% at year 30)
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Degradation → <0.35–0.4%/year
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Temperature Coefficient of Pmax → -0.24%/°C
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Bifaciality → Up to 90±5%
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Junction Box → IP68
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Connector → MC4 compatible / MC4-Evo 2 / others
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Operating Temperature → -40°C to +70°C (some to +80°C)
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Max System Voltage → DC1500V (IEC)
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Packaging → 40’ HQ containers, 720–1620 modules/container (varies by size)
Mojave Model Name | Power Range (W) | Cell / Configuration | Dimensions (mm) approx. | Weight (kg) | Key Variant / Feature | Efficiency (%) | Primary Use Case |
|---|---|---|---|---|---|---|---|
Mojave-7-Solis-210R-S-80-BN | 76–84 | 18 (3×6) | 1230 × 420 × 20 | 1230 × 420 × 20 | Ultra-compact balcony | 18.1–19.4 | Residential balcony / portable |
Mojave-7-Solis-210R-S-800-BN | ~800 | 96 (6×16) | 1762 × 1134 × 30 | 1762 × 1134 × 30 | High-output balcony optimized | ~20 | Advanced balcony / micro-commercial |
Mojave-7-Solis-210R-B-290 | 285–295 | 97 (6×16) | 1763 × 1134 × 30 | 1763 × 1134 × 30 | Small bifacial | 14.3–14.8 | Light commercial / residential |
Mojave-7-Solis-210R-B-330 | 325–335 | 72 (4×18) | 1960 × 1134 × 30 | 1960 × 1134 × 30 | Compact commercial | 14.6–15.1 | Rooftop small-scale |
Mojave-7-Solis-210R-B-405 | 400–410 | 88 (4×22) | 2382 × 1134 × 30 | 2382 × 1134 × 30 | Mid-low power bifacial | 14.8–15.2 | Commercial entry |
Mojave-7-Solis-210R-S-410 | 410 | 96 (6×16) | 1762 × 1134 × 30 | 1762 × 1134 × 30 | Specialty small, composite frame | 20.5 | Lightweight specialty |
Mojave-7-Solis-210R-B-450 | 435–460 | 96 (6×16) | 1762 × 1134 × 30 | 1762 × 1134 × 30 | Standard mid-power bifacial | 21.8–23 | Commercial rooftops |
Mojave-7-Solis-210R-B-450-HL | 435–460 | 96 (6×16) | 1762 × 1134 × 30 | 1762 × 1134 × 30 | High-load reinforced | 21.8–23 | Heavy snow/wind zones |
Mojave-7-Solis-210R-S-460 | 445–470 | 96 (6×16) | 1762 × 1134 × 30 | 1762 × 1134 × 30 | Lightweight / shingled | 22.3–23.5 | Efficiency-focused commercial |
Mojave-7-Solis-210R-S-520 | 505–530 | 108 (6×18) | 1960 × 1134 × 30 | 1960 × 1134 × 30 | Advanced mid-power | 22.7–23.9 | Larger commercial rooftops |
Mojave-7-Solis-210R-B-515 | 500–525 | 108 (6×18) | 1960 × 1134 × 30 | 1960 × 1134 × 30 | Versatile mid-power bifacial | 22.5–23.6 | Flexible commercial |
Mojave Solis 500™ | 500 | High-density | ~2.2 × 1.1 m | ~2.2 × 1.1 m | Compact bifacial for residential/light comm | 22.5–23.4 | Residential & light commercial |
Mojave Solis 660™ | 660 | High-density | ~2.3 × 1.1 m | ~2.3 × 1.1 m | High-efficiency for industrial rooftops | 23 | Industrial rooftop & C&I |
Mojave-7-Solis-210R-B-555 | 535–570 | 120 | ~2380 × 1300 × 35 | ~2380 × 1300 × 35 | Large utility-scale entry | 22–23 | Utility ground-mount |
Mojave-7-Solis-210R-B-610 | 585–630 | 132 | ~2384 × 1303 × 35 | ~2384 × 1303 × 35 | Flagship large utility bifacial | 22–23.5 | Core utility-scale |
Mojave-7-Solis-210R-B-610-AG | 585–615 | 132 | ~2384 × 1303 × 35 | ~2384 × 1303 × 35 | Anti-glare coating | ~22.5 | Airport / urban-sensitive |
Mojave-7-Solis-210R-B-610-AD | 600–630 | 132 | ~2384 × 1303 × 35 | ~2384 × 1303 × 35 | Anti-dust coating | ~23 | Desert / utility optimized |
Mojave-7-Solis-210R-B-610-ST | 600–630 | 132 | ~2384 × 1303 × 35 | ~2384 × 1303 × 35 | Steel frame | ~23 | High-durability sites |
Mojave-7-Solis-210R-B-610-AL | 600–630 | 132 | ~2384 × 1303 × 35 | ~2384 × 1303 × 35 | Alloy steel frame | ~23 | Enhanced strength |
Mojave-7-Solis-210R-B-640-PR | 630–650 | 132 | ~2384 × 1303 × 35 | ~2384 × 1303 × 35 | Premiere high-output | 23–23.7 | Premium utility |
Mojave-7-Solis-210-B-715 | 700–730 | 132 | ~2384 × 1303 × 35 | ~2384 × 1303 × 35 | Ultra-high output flagship | 22–23 | Next-gen flagship utility |
Mojave-7-Solis-210-B-715-CP38 | 700–730 | 132 | ~2384 × 1303 × 35 | ~2384 × 1303 × 35 | Lightweight composite 38.4 kg | ~22.5 | Weight-sensitive installations |
Mojave-7-Solis-210-B-715-CP37 | 700–730 | 132 | ~2384 × 1303 × 35 | ~2384 × 1303 × 35 | Ultra-light composite 37.8 kg | ~22.5 | Portable / utility hybrid |
Mojave-7-Solis-210-B-715-OC | 700–730 | 132 | ~2384 × 1303 × 35 | ~2384 × 1303 × 35 | Marine / ocean composite | ~22.5 | Floating / offshore / marine |
Mojave-7-Solis-210-B-740-PR | 730–750 | 132 | ~2384 × 1303 × 35 | ~2384 × 1303 × 35 | Top premiere class | 23–24+ | Record power future flagship |
Mojave Solis 770 Ultra™ | 770 | High-density | Large-format | Large-format | Flagship dual-glass bifacial 23%+ | 23–24+ | Premium utility-scale |
Mojave Solis Max™ | >770 (Custom) | Custom | Custom | Custom | Custom large-format desert/floating/hybrid | 23–24+ | Project-specific mega-modules |
MOJAVE 7 TERRA SERIES™ – Ground Infrastructure & Beamed-Power Reception
The Terrestrial Endpoint of Orbital Energy Delivery
Receives beamed energy from Astra systems
Primary Function: Captures microwave beamed power from
Mojave 7 Astra™ orbital tiles and converts it to grid-ready DC electricity.
Key Technical Details
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Frequency: 2.45 GHz primary (high atmospheric transparency)
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Beam Intensity: Peak ~230–250 W/m² (core); <10 W/m² perimeter (safety-compliant)
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RF-to-DC Efficiency: 85–92% (Schottky diode rectifiers)
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Control: Retrodirective phased array with pilot signal (auto-defocus on loss)
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Field Design: Semi-transparent mesh (50–70% open), dual-use (agriculture/solar co-location)
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Field Size: 1–3 km (pilot) → 6–10 km (GW-class)
MJ7-HB HJT Bifacial Solar Modules (FULL RANGE)
Exclusive Nuvex Premium HJT Bifacial Solar Modules & Q13 Mojave 7 Energy Storage Solutions
Welcome to the pinnacle of solar innovation. At NUVEX, we deliver world-leading Heterojunction (HJT) bifacial technology combined with next-generation containerized battery storage engineered for maximum efficiency, durability, and performance in the world’s most demanding environments.
Our products stand apart with superior energy yield, ultra-low degradation, and exceptional reliability, making them the ideal choice for utility-scale farms, commercial installations, agrivoltaics, coastal projects, and grid-stabilizing hybrid systems.
Here are stunning examples of high-efficiency HJT bifacial solar arrays in action, showcasing real-world utility-scale deployments in high-irradiation desert environments.
Premium MJ7-HB Series HJT Bifacial Solar Modules
Experience unmatched efficiency with our flagship MJ7-HB line featuring 132-144 half-cut HJT cells, up to 26% module efficiency, 85%+ bi-faciality, and less than 0.25% annual degradation.
Key highlights:
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Power range: 550W to 770W (132/144 half-cut configurations)
-
Ultra-low temperature coefficient for superior hot-climate performance
-
Advanced features: Anti-soiling coatings, PID-free, salt mist/hail resistance (up to 45mm), high-voltage 1500V compatibility, and frameless/lightweight options
-
Designed for: Mega-scale solar parks, desert/high-wind areas, coastal utilities, floating installations, BIPV, and agrivoltaics




Q13 Mojave 7 Containerized Battery Energy Storage Systems (BESS)
Our Q13 Mojave 7 series redefines energy storage with prismatic LFP cells delivering 350 Wh/kg energy density, 15,000 cycles to 80% capacity, wide operating range (-50°C to +80°C), and ultra-fast 2.5-minute charge time (10-80%).
Available in scalable container formats:
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5FT: 312 kWh (compact entry-level)
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10FT: 625 kWh
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20HC: 1.25 MWh (most popular for utility hybrids)
-
40HC: 2.5 MWh (high-capacity mega-scale)
These turnkey systems include integrated BMS, PCS, cooling, fire suppression, and grid-ready controls perfect for solar + storage hybrids, peak shaving, grid support, and renewable integration.


Why Choose Nuvex?
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Best-in-Class Performance: Highest efficiency HJT bifacial modules + longest-life BESS on the market
-
Proven Reliability: Extreme temperature tolerance, low degradation, and superior safety (thermal runaway onset +35% higher than competitors)
-
Scalable & Future-Proof: From individual modules to full GW-scale deployments with integrated manufacturing support
-
Exclusive Advantage: Break free from commodity imports partner with NUVEX for premium, high-yield technology that maximizes ROI
Ready to power the future? Contact our team at (888) 210-5868 or tech@nuvexgroup.com for exclusive project consultations, custom configurations, and detailed specifications. Or, continue on to view the beginning of the new era of power.
Model / Variant | Scale / Output | Description | Estimated Pricing (2026 USD, approx) | Key Specifications | Warranty / Life |
|---|---|---|---|---|---|
Mojave 7 Terra Hybrid™ | 500 MW–3 GW | Co-located with terrestrial PV | $1.5–4M/MW | Transparent mesh over PV; AI switching | 25 years |
Mojave 7 Terra Agile™ | 10–500 MW | Rapid-deployable for defense/disaster | $4–10M/MW | Containerized; Quick mesh; IP67 | 15–20 years |
Mojave 7 Terra Offshore™ | 500 MW–2 GW | Marine-adapted | $2.5–6M/MW | Corrosion-resistant; Floating/fixed | 20–25 years |
Mojave 7 Terra Utility™ | 1–5 GW | Full-scale utility receiver | $1.2–3.5M/MW (scale) | 6–10 km elliptical; 90%+ eff.; HVDC; Dual-use | 25–30 years |
Mojave 7 Terra Core™ | 1–100 MW | Compact pilot/test array | $8–20M/MW | 1–3 km field; 85–90% eff.; Modular dipoles | 20 years |
Remaining Ecosystem Series (Summary – Full Details in Prior Master CSV)
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Mojave 7 Core/Pulse/Terra/Fusion/Edge → Foundational battery/storage lines
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Mojave Vault Series™ → Utility/containerized storage
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Mojave Industrial Series™ → Heavy-duty applications
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Mojave Cell Series™ → Core cell technologies
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Mojave Grid Series™ → Integrated microgrids
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Mojave Astra Series™ → Orbital & aerospace (tiles, relays, links)