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The Communication Parallel Use Solar Inverter is a cutting-edge device designed to optimize solar energy conversion and utilization. This inverter features parallel communication capabilities, enabling seamless integration and coordination with other solar components within a system. Here's a brief overview of its key attributes:
Parallel Communication: The inverter's parallel communication functionality allows for the seamless integration of multiple inverters within a solar power system. This ensures synchronized operation and optimal power output, maximizing the overall efficiency of the system.
High Efficiency: The Communication Parallel Use Solar Inverter converts solar energy into usable AC power with remarkable efficiency. Its advanced design minimizes energy losses, ensuring that the maximum amount of harvested solar energy is converted into useful electricity.
Intelligent Control: Equipped with intelligent control features, the inverter can automatically adjust its operation based on the varying conditions of the solar panels and the power demand. This intelligent control ensures optimal performance under different scenarios, enhancing the reliability and durability of the system.
Flexible Configuration: The inverter offers flexibility in its configuration, allowing it to be tailored to the specific needs of each solar power system. Whether it's a small residential setup or a large-scale commercial installation, the Communication Parallel Use Solar Inverter can be configured to meet the requirements efficiently.
User-Friendly Interface: The inverter comes with a user-friendly interface that allows for easy monitoring and control. Users can access real-time data on power output, system status, and other critical parameters, enabling informed decision-making and optimized performance.
Robust and Reliable: Constructed with high-quality materials and components, the Communication Parallel Use Solar Inverter is designed to withstand harsh outdoor conditions. Its robust construction ensures reliable operation even in extreme weather conditions, providing long-term performance and durability.
In summary, the Communication Parallel Use Solar Inverter is a sophisticated device that offers parallel communication capabilities, high efficiency, intelligent control, flexible configuration, user-friendly interface, and robust reliability. It's the perfect choice for harnessing solar energy and converting it into clean, efficient AC power for a wide range of applications.
The Communication Parallel Use Solar Inverter finds widespread application in various scenarios where solar energy conversion and utilization are critical. Here are some key application scenarios for this inverter:
Residential Rooftop Systems: The Communication Parallel Use Solar Inverter is an excellent choice for residential rooftop solar panel systems. It allows homeowners to harness the power of the sun and convert it into clean, renewable energy for their homes. The inverter's parallel communication capabilities enable seamless integration with multiple solar panels, maximizing the system's overall efficiency.
Commercial Installations: For larger-scale commercial solar power projects, the inverter's ability to handle high-power loads and its parallel communication functionality make it a suitable choice. It can be integrated into commercial rooftops, parking lots, or other open spaces, contributing to the overall energy efficiency of the building or facility.
Off-Grid Applications: In remote or off-grid locations where traditional power grids are unavailable or unreliable, the Communication Parallel Use Solar Inverter provides a reliable source of energy. It can be used in cabins, RVs, boats, and other off-grid settings, enabling users to generate and use their own solar power independently.
Microgrids: Microgrids are localized energy systems that can operate independently or in parallel with the main power grid. The Communication Parallel Use Solar Inverter plays a crucial role in such systems, converting solar energy into usable electricity and contributing to the overall stability and resilience of the microgrid.
Utility-Scale Solar Farms: For large-scale solar farms that generate megawatts of power, the inverter's scalability and parallel communication capabilities are paramount. It allows for the efficient integration of multiple inverters and solar arrays, ensuring smooth power generation and distribution to the grid.
In summary, the Communication Parallel Use Solar Inverter is a versatile solution that can be applied in a wide range of scenarios, from residential rooftops to commercial installations, off-grid applications, microgrids, and utility-scale solar farms. Its advanced features and capabilities make it a reliable and efficient choice for harnessing solar energy and converting it into useful electricity.
PARAMETER | |||
Model | PC5000plus | PW5000plus | |
Rated power | 5000W | ||
Standard voltage | 48 V DC | ||
Installation | Cabinet/rack installation | Wall mount installation | |
PVPARAMETER | |||
Working model | MPPT | ||
Rated PV input voltage | 360VDC | ||
MPPT tracking voltage range | 120-430V | ||
Max input voltage (VOC) at lowest temperature | 450V | ||
Max input power | 5500W | ||
Number of MPPT tracking paths | 1 Path | ||
INPUT | |||
DC input voltage range | 42-60VDC | ||
Rated mains power input voltage | 208/220/230/240VAC | ||
Grid power input voltage range | 90~280VAe(UPS model)/170-280VAC(inverter model) | ||
Grid input frequency range | 40-70HZ | ||
OUTPUT | |||
Inverter | Output efficiency | 94% | |
Output voltage | 208VAC±2%/220VAC±2%/230VAC±2%/240VAC±2%(lnverter model) | ||
Output frequency | 50Hz±0.5 or 60Hz±0.5(lnverter model) | ||
Grid | Output efficiency | >99% | |
Output voltage range | Following input | ||
Output frequency range | Following input | ||
Battery mode no-load loss | W1 %(At rated power) | ||
Grid mode no-load loss | <0.5% Rated power(the charger of grid power doesn't work) | ||
BATTERY | |||
Battery type | Lead acid battey | Equal charging voltage 56.6V Float voltage 54V | |
Customized battery | The parameter canbe set according to customers* requirement (Use different types of battery by setting the panel) | ||
Max mains charging current | 60A | ||
Max PV charging current | 80A | ||
Max charging current(Grid*PV) | 80A | ||
Charging method | Three-stage (constant current, constant voltageJloat charge) | ||
PROTECTED MODE | |||
Battery low voltage alarm | Factory default setting: 44V | ||
Battery low voltage protection | Factory default setting: 42V | ||
Battery Over voltage Protection | 61VDC | ||
Overload power protection | Automatic protection (battery mode), circuit breaker or fuse (mains mode) | ||
Inverter output short circuit protection | Automatic protection (battery mode), circuit breaker or fuse (mains mode) | ||
Temperature protection | >90*C off output | ||
PERFORMANCE PARAMETERS | |||
Parallel quantity | 9PCS | ||
Conversion time | 为4ms | ||
Cooling method | Intelligent cooling fan | ||
Working temperature | -1 0-40℃ | ||
Storage temperature | -1 5〜60℃ | ||
Altitude | 2000m(>2000m altitude need derating) | ||
Humidity | 0-95% (No condensation) | ||
Product Size | 420>290e110mm | 46(T304ri0mm | |
Package Size | 486e370ft198mm | 526a384#198mm | |
Net weight | 8.5 kg | 9.5kg | |
Gross weight | 9.5kg | 10.5kg |