300W-110V 22-50V 15A Grid Tie Micro Inverter Waterproof-IP67
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Product Specifications
Type
DC/AC Inverters
Product Description
Wvc 300W-110V DCto AC Grid Tie Micro Converter WaterProof-IP67
WVC300 Using IP65 waterproof streamline design, Can effectively prevent rainwater on the surface erosion, Built-in high-performance Maximum Power Point Tracking(MPPT)Function,Better able to track changes in the solar luminosity and control different output power, Effectively capture and collect sunlight. AC electric power transmission using the reverse transmission technology, Is one of our patented technology, The inverter output power can provide load priority use, Extra electricity to the grid, Efficient use of the inverter to the power emitted, Electricity transmission rate of up to 99%.
Ground
AC output
PV panel positive input
PV panel positive output
Inverter fixed point
Inverter Iabel
LED Display
WVC300 Using IP65 waterproof streamline design, Can effectively prevent rainwater on the surface erosion, Built-in high-performance Maximum Power Point Tracking(MPPT)Function,Better able to track changes in the solar luminosity and control different output power, Effectively capture and collect sunlight. AC electric power transmission using the reverse transmission technology, Is one of our patented technology, The inverter output power can provide load priority use, Extra electricity to the grid, Efficient use of the inverter to the power emitted, Electricity transmission rate of up to 99%.
Communication using two modes, Between the inverter and Collector Using power line carrier communication signals, Collector with a PC or other devices to communicate Using RS232 serial port/ WIFI wireless communication. Intelligent monitoring systems, The inverter can collect real-time data, Inverter can be controlled startup / shutdown / power regulation.
Features:
High performance maximum power point tracking (MPPT)
Reverse power transmission
Intelligent monitoring management
Input /output is fully isolated to protect the electrical safety
Multiple parallel stacking
Digital control system
Simplify maintenance (user serviceable)
Operation and maintenance costs low
WVC300 Parameters
| Input Data | WVC300-120VAC/230VAC | |||
| Recommended input power | 300Watt | |||
| Recommend the use of PV modules | 300W/Vmp>34V/Voc<50V | |||
| Maximum input DC voltage | 50V | |||
| Peak power tracking voltage | 22-50V | |||
| Operating Voltage Range | 17-50V | |||
| Min / Max start voltage | 22-50V | |||
| Maximum DC short current | 15A | |||
| Maximum Input Current | 9.8A | |||
| Output Data | @120VAC | @230VAC | ||
| Peak power output | 260Watt | 260Watt | ||
| Rated output power | 250Watt | 250Watt | ||
| Rated output current | 2.08A | 0.92A | ||
| Rated voltage range | 80-160VAC | 180-260VAC | ||
| Rated frequency range | 57-62.5Hz | 47-52.5Hz | ||
| Power factor | >96% | >96% | ||
| Maximum units per branch circuit | 15PCS(Single-phase) | 30PCS(Single-phase) | ||
| Output Efficiency | @120VAC | @230VAC | ||
| Static MPPT efficiency | 99.5% | 99.5% | ||
| Maximum output efficiency | 94.6% | 94.6% | ||
| Night time power consumption | <50mW Max | <70mW Max | ||
| THD | <5% | <5% | ||
| Exterior | ||||
| Ambient temperature | -40ºC to +60ºC | |||
| Operating temperature range (inverter inside) | -40ºC to +82ºC | |||
| Dimensions (WxHxD) | 191mm×130mm×38mm | |||
| Weight | 0.83kg | |||
| Waterproof Rating | IP67 | |||
| Cooling | Self-cooling | |||
| Feature | ||||
| Communication Mode | Power Line | |||
| Power transmission mode | Reverse transfer, load priority | |||
| Monitoring System | Lifetime free | |||
| Electromagnetic compatibility | EN50081.part1 EN50082.part1 | |||
| Grid disturbance | EN61000-3-2 Safety EN62109 | |||
| Grid detection | DIN VDE 1026 UL1741 | |||
| Certificate | CEC,CE National patent technology | |||
Note: The monitoring software can monitor multiple threads simultaneously 6 PCS power line acquisition
simultaneously monitor 600 inverters.
Each WVC Power Line Modem monitoring 100 inverters
Monitoring system simultaneously collect real-time data from 6 WVC power line Modem by 6 threads
PV micro-inverter system components
System Block Diagram
System Description
Why is the use of micro-inverter?
The transition from a centralized to a distributed inverter optimizes energy collection.
The converter module integrated into the solar panels can reduce installation costs.
By reducing the temperature of the converter and remove the fan, you can enhance system reliability from 5 years to 20 years.
Soft switch technology to replace hard-switching technology can improve efficiency and reduce heat dissipation.
From cottage industry to mass production, standardized design (hardware and software) to improve reliability and reduce costs.
Using a special capacitor (due to the high failure rate). Design requires a higher voltage to reduce the current, we use a special electrolytic capacitors.
The converter can be connected to the grid to eliminate the need for many battery applications. The high price of batteries, require maintenance, life expectancy is shorter.
Work required micro-inverter power increasingly smaller (only a few hundred watts), which can reduce the internal temperature and improve reliability.
Micro-inverter solar inverter system needs to deal with a lot of a particular power level, in order to increase production, thereby reducing costs.
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