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Based on the ABB wind power transmission platform, this system employs a single converter design, ensuring high reliability and adaptability to harsh environments (such as high temperature, high humidity, and high altitude). It achieves a maximum efficiency of over 98%, supports a wide DC input range to reduce power loss, has a maximum input voltage of 1500V DC, an MPPT voltage range of 850V-1500V, a maximum input current of ≥30A per MPPT, and supports multiple DC inputs (≥8 channels), making it suitable for large photovoltaic arrays.
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PVS800-57-0630KW-B Other Names:
Solar Inverter PVS800-57-0630KW-B
PVS800-57-0630KW-B Central Inverter
This series is a central inverter designed by ABB specifically for large-scale photovoltaic power plants (such as ground-mounted power plants and commercial/industrial rooftops). Standard power ratings are 100kW, 250kW, and 500kW.
Technical Parameters and Performance
Power Rating: Belongs to the 1000kW version of the PVS800 series, supporting multiple power configurations from 100kW to 1000kW (including derivative models such as 630kW and 875kW).
Efficiency Specifications:
Maximum conversion efficiency up to 98.6%, European efficiency 98.2%, auxiliary power consumption <1000W, standby power consumption <300W.
DC input range 600-850V, maximum DC voltage 1100V, current ripple <3%.
Output Characteristics: AC output 6-36kV, frequency 50/60Hz, harmonics <3%, adjustable power factor (supports reactive power compensation).
Design Features:
Modular and compact design (40-foot high cube container, weight <21 tons), IP43 protection rating (IP54 optional).
Suitable for environments from -15℃ to +45℃, humidity 15-95% non-condensing, altitude ≤2000m (derating required for higher altitudes).
Mature Technology Platform: Based on ABB wind power transmission platform, using a single converter design, high reliability, adaptable to harsh environments (such as high temperature, high humidity, high altitude).
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High Efficiency and Compact Design:
Highest efficiency exceeding 98%, supports a wide DC input range, reducing power loss.
Modular structure, compact size, easy installation, and space-saving.
Input Characteristics: Maximum input voltage 1500V DC, MPPT voltage range 850V-1500V, maximum input current per MPPT ≥30A, supports multiple DC inputs (≥8 channels), suitable for large photovoltaic arrays.
Output Characteristics: Rated frequency 50Hz/60Hz, power factor adjustment range 0.8 (leading) to 0.8 (lagging), supports active/reactive power control and dynamic response (e.g., LVRT/HVRT fault ride-through).
Protection and Communication:
Comprehensive DC/AC side protection (overvoltage, overcurrent, short circuit, etc.), supports power factor compensation.
Integrated industrial-grade communication interfaces (e.g., Ethernet, Modbus, Profinet), supporting remote monitoring and diagnostics.
Global Service Support: Lifecycle maintenance is provided through ABB's global service network, ensuring high availability and rapid response.
Core
Functions and Protection
Grid Adaptability: Supports low voltage ride-through (LVRT), reactive power compensation, and power derating, complying with standards such as IEC 60364 and IEC 61936-1.
Protection Mechanisms:
DC side overvoltage/overcurrent protection, short circuit protection, and reverse polarity protection; AC side overload and frequency anomaly protection.
Integrated SafeRing SF6 insulated switchgear ensures electrical safety and equipment lifespan (design life ≥ 25 years).
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Communication Capabilities: Supports Modbus, PROFIBUS, and Ethernet; optional I/O expansion modules and fieldbus adapters.
Application
Scenarios
Large-scale Photovoltaic Power Plants: Suitable for megawatt-level ground-mounted power plants, connected to medium-voltage power grids (6-36kV), with multiple units allowed to be connected in parallel for capacity expansion.
Commercial and Industrial Rooftop Systems: Compatible with commercial/industrial building photovoltaic systems, supporting containerized deployment, and adaptable to harsh environments (such as high temperature, high humidity, and salt spray).
Special Projects: For areas with high altitudes (e.g., Qinghai, Tibet) and high salt spray conditions (e.g., coastal Fujian, Guangdong), customized anti-corrosion coatings and heat dissipation solutions ensure long-term operation.
Typical Cases: The Peel Business Park microgrid project (5MW) in Australia, the 80MW hybrid photovoltaic power station in Turkey, and the grid connection project of India's first 5MVA inverter, verifying its stability in complex grid environments.
Supporting Solutions:
Optional accessories include combiner boxes, remote monitoring systems, extended warranty services, and solar inverter maintenance contracts.
Integration with ABB dry-type transformers and medium-voltage switchgear forms a complete medium-voltage inverter station solution.
Differences from the ACS series inverters: The PVS800 series is designed specifically for photovoltaics, while the ACS series (e.g., ACS580/ACS380) focuses on industrial motor control; their power ranges and application scenarios differ.
Technical
Features and Innovations
Modular Design: Employs a 4-module parallel architecture, with a single module power of 500kVA. Supports hot-swapping and N+1 redundancy, improving system availability. Electrical isolation between modules ensures fault isolation time ≤10ms, guaranteeing that a single module failure does not affect overall operation.
Intelligent Communication: Supports protocols such as Ethernet, Modbus TCP, Profinet, and IEC 61850, compatible with cloud platform remote monitoring (e.g., ABB Ability™), enabling power dispatching, fault diagnosis, and energy efficiency optimization.

Grid Interaction Capabilities:
Primary Frequency Regulation: Response time ≤100ms, supports ±5% rated power adjustment, meeting the requirements of high-proportion renewable energy grid connection.
Reactive Power Regulation: Dynamic reactive power response time ≤60ms, supports Q-U coordinated control, improving grid voltage stability.
Environmental Adaptability: Passes C3-level salt spray testing and -40℃ low-temperature start-up certification, suitable for extreme environments such as plateaus (altitude ≤5000m), deserts, and coastal areas.
Competitive Advantages:
High efficiency and low operation and maintenance costs, with modular design reducing installation difficulty and space requirements.
A global service network combined with localized production ensures rapid response and cost optimization.
Typical Cases: Since its commissioning in China in 2013, it has secured orders for 10 MW-level projects and is widely used in large-scale photovoltaic power plants and industrial and commercial projects.
Project Cases: Applied to large-scale photovoltaic power plants in Europe (such as Italy and the UK), achieving rapid return on investment through high efficiency and low loss characteristics; stable operation under extreme climatic conditions (such as high temperature and high humidity).
Performance Verification: Third-party test reports show that its power quality (harmonics, voltage fluctuations) is superior to standards such as GB/T 14549 and IEC 61000-3-12, demonstrating strong grid compatibility.
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Please refer to customer service for a specific quote, as the price may not be accurate for new products.
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