ACE Solar 29.9~50K Advanced Hybrid Inverter with SiC Technology and Smart Grid Management
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ACE Solar 29.9~50K Advanced Hybrid Inverter with SiC Technology and Smart Grid Management

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·Multiple MPPTs and battery input 
·Support DG input and smart load function 
·Support UPS function and black start function 
·Support multi-system operation in parallel in off-grid mode 
·Intelligent air cooling, no derating at 50°C ambient temperature 
·100% three-phase unbalanced output and 150% off-grid overload capacity 
·Strong power grid adaptability, supporting weak grid environments with SCR<1.2
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1. Redefining Solar Energy Conversion

The 29.9~50K by ACE Solar represents a paradigm shift in hybrid inverter technology, engineered to bridge high-efficiency energy conversion with industrial-scale reliability. Designed for commercial and utility-scale installations, this inverter integrates Silicon Carbide (SiC) semiconductor modules—a breakthrough in power electronics—to achieve unprecedented efficiency and thermal stability. Its modular architecture supports grid-tied, off-grid, and hybrid operations, making it a cornerstone for modern renewable energy systems seeking grid independence and sustainability.


2. Core Technologies and Innovations

2.1 SiC MOSFET Power Modules

At the heart of the WIT_29.9~50K-XHU lies a 30 mΩ/1200V SiC MOSFET 6-PACK module, optimized for solar inverters and energy storage systems. Unlike traditional silicon-based transistors, SiC technology reduces switching losses by 70% and operates at temperatures up to 200°C, enabling:

  • 98.6% Peak Efficiency: Minimizes energy waste during DC-AC conversion.

  • Compact Heat Dissipation: Eliminates bulky cooling systems, reducing footprint by 40%.

  • High-Frequency Operation: Supports 50kHz switching for smoother output and reduced harmonic distortion.

2.2 HyperYield N-Type Compatibility

The inverter seamlessly pairs with ACE Solar’s HyperYield N-Type solar panels (695–720W Tier-1 modules), leveraging monocrystalline cells with >22.5% efficiency. Key synergies include:

  • MPPT Dynamic Tracking: Dual 550V MPPT controllers adapt to shading or panel degradation, maintaining >99% tracking efficiency.

  • Partial Shade Resilience: Even under 50% shade, power loss is capped at 15% via distributed bypass diodes.

2.3 Intelligent Energy Management
  • Hybrid Operation Modes:

    • Grid-Tied with Zero Export: Feed surplus energy to storage without grid injection.

    • Off-Grid Microgrid: Power critical loads during outages via integrated STACK200A batteries.

  • AI-Powered Forecasting: Analyzes weather and consumption patterns to optimize battery charge/discharge cycles, extending lifespan by 20%.


3. System Integration and Compatibility

3.1 Storage Integration

The inverter natively supports ACE Solar’s NASA Series Liquid-Cooled Storage (20–50T capacity) and STACK200A modular batteries, featuring:

  • 1C Charge/Discharge Rate: Fully recharge in 1 hour, ideal for peak-shaving.

  • Plug-and-Play Scalability: Expand capacity from 10kWh to 1MWh without reconfiguration.

3.2 EV Charging Synergy

Integrated with C&I EVDS Charging Stations, the inverter enables:

  • Solar-Powered EV Charging: Direct DC coupling cuts conversion losses by 30%.

  • Dynamic Load Balancing: Allocates surplus solar to EVs while prioritizing building loads.

3.3 Universal Connectivity
  • Protocol Support: Modbus TCP, CAN 2.0B, and SunSpec IEEE 1547 compliance.

  • Cloud Monitoring: Real-time analytics via ACE Solar’s platform, including fault diagnostics and CO₂ savings reports.


4. Performance Metrics and Reliability

4.1 Efficiency and Output
Parameter Specification Advantage
Efficiency (Peak) 98.6% Highest in class, reduces LCOE
Input Voltage Range 550–850V Compatible with high-power PV strings
Output Power 29.9–50kW Scalable for factories, data centers
THD (Grid Mode) <1.5% Ensures grid compliance and stable loads
4.2 Durability and Protection
  • IP66 Rating: Dust/water-resistant for outdoor deployment.

  • Grid Fault Ride-Through: Maintains operation during voltage sags (down to 50% nominal).

  • Arc-Fault Detection: Meets UL 1699B safety standards.


5. Applications and Case Studies

5.1 Commercial Rooftop Installations

A textile factory in Guangdong, China, deployed 12 units of WIT_50K-XHU with 2.4MW solar panels and 500kWh storage, achieving:

  • 40% Energy Cost Reduction: Via peak shaving and time-of-use optimization.

  • 3-Year ROI: Accelerated by government green subsidies.

5.2 Microgrids for Remote Sites

In Southwest China’s agrivoltaic farms, the inverter powers irrigation and processing units while adapting to PV shade variations—boosting kiwifruit yield by 18% through optimized water-energy synergy.


6. Sustainability and Economic Impact

  • Carbon Footprint Reduction: Each 50kW system offsets 75 tons of CO₂ annually.

  • Lifecycle Durability: 10-year warranty, extendable to 25 years, with <0.5% annual degradation.

  • Smart Grid Services: Participate in demand response programs for revenue generation.


7. Technical Specifications

Category Details
Dimensions 650 × 350 × 180 mm (compact CEB form factor)
Weight 28 kg
Operating Temp. -35°C to 60°C (suitable for extreme climates)
Certifications CE, UL 1741, IEC 62109, CGC/GV
Warranty 10 years

8. Ordering and Support

  • Custom Configurations: Tailor AC/DC ratios or grid profiles via ACE Solar’s engineering team.

  • Global Service: Remote firmware updates + on-site maintenance within 48 hours.

  • Contact: Admin@ahacetech.com | +86-17309668315


The Future-Proof Energy Hub

The ACE Solar WIT_29.9~50K-XHU transcends conventional inverters by fusing SiC efficiency with AI-driven energy orchestration. It empowers industries to harness renewable energy with military-grade reliability while pioneering grid independence. As solar technology evolves, this inverter stands as a scalable, eco-conscious nucleus for tomorrow’s smart cities.

For technical documents or partnership inquiries, visit ACE Solar’s official portal or contact the innovation team directly.






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