6kW Single Phase High Voltage Hybrid Inverter
Catalog/Part Number:: GW6000-EH
Description
• Achieve real-time load status monitoring with GoodWe’s smart meter.
• Adjustable export power limit function integrated.
The "Battery Ready" Concept
Integrating the "Battery Ready" concept, the GoodWe EH inverter works as a conventional on-grid inverter. However, this inverter is designed so that the user, once he has decided to increase his level of self-consumption, can convert the EH into an energy storage system by only acquiring an activation code. GoodWe offers an economical option for all those users who at the beginning is still undecided about whether or not to acquire an energy storage system.
• Consumption Monitoring (Optional)
As illustrated in the diagram, the EH Series counts with an option to carry out monitoring in real time through the use of an intelligent meter. With the assistance of the GoodWe monitoring platform, the EH Series can also calculate self-consumption levels per day, month or year, providing a comprehensive overview of the consumption of the loads, and the general efficiency achieved in the use of solar energy.
GoodWe HomeKit Application
• 24 Hours Real-time Consumption MonitoringWeather Monitoring (Optional)
The
GoodWe HomeKit is a solution designed to monitor load energy consumption in
real-time for 24 hours. Based on the best design principles, the HomeKit is
tailored to the needs of the home and requires only an internet connection. An
additional advantage of this system is that it is compatible with different
brands of inverters, contributing in an important way to maintain a record of
the load consumption. The data collected is stored in the cloud by Wi-Fi or
LAN. The end-users benefit by achieving a better understanding of their
electricity consumption and the source from which it is generated.
• Weather Monitoring (Optional)
By connecting to temperature, irradiation and wind speed sensors, the HomeKit has the ability to monitor weather conditions in real-time. In combination with SEMS, the system can also predict solar generation and cross-check data, also analyzing the inconsistencies of information to anticipate problems that may affect the solar system
" autofocus>The GoodWe EH series consists of a single-phase hybrid inverter with a section exclusively designed for energy storage. It is introduced as a conventional on-grid inverter, but from the hardware point of view, this contraption is a hybrid inverter.
• Achieve real-time load status monitoring with GoodWe’s smart meter.
• Adjustable export power limit function integrated.
The "Battery Ready" Concept
Integrating the "Battery Ready" concept, the GoodWe EH inverter works as a conventional on-grid inverter. However, this inverter is designed so that the user, once he has decided to increase his level of self-consumption, can convert the EH into an energy storage system by only acquiring an activation code. GoodWe offers an economical option for all those users who at the beginning is still undecided about whether or not to acquire an energy storage system.
• Consumption Monitoring (Optional)
As illustrated in the diagram, the EH Series counts with an option to carry out monitoring in real time through the use of an intelligent meter. With the assistance of the GoodWe monitoring platform, the EH Series can also calculate self-consumption levels per day, month or year, providing a comprehensive overview of the consumption of the loads, and the general efficiency achieved in the use of solar energy.
GoodWe HomeKit Application
• 24 Hours Real-time Consumption MonitoringWeather Monitoring (Optional)
The
GoodWe HomeKit is a solution designed to monitor load energy consumption in
real-time for 24 hours. Based on the best design principles, the HomeKit is
tailored to the needs of the home and requires only an internet connection. An
additional advantage of this system is that it is compatible with different
brands of inverters, contributing in an important way to maintain a record of
the load consumption. The data collected is stored in the cloud by Wi-Fi or
LAN. The end-users benefit by achieving a better understanding of their
electricity consumption and the source from which it is generated.
• Weather Monitoring (Optional)
By connecting to temperature, irradiation and wind speed sensors, the HomeKit has the ability to monitor weather conditions in real-time. In combination with SEMS, the system can also predict solar generation and cross-check data, also analyzing the inconsistencies of information to anticipate problems that may affect the solar system
Technical Specifications
| Technical Data | GW6000-EH |
| Battery Input Data* | |
| Battery Type | Li-Ion |
| Battery Voltage Range(V) | 85~450 |
| Start-up Voltage (V) | 90 |
| Max. Charging/Discharging Current (A) | 25/25 |
| Max. Charging/Discharging Power (W) | 6000 |
| Battery Ready Optional Function | YES |
| PV STRING DATA | |
| Max. DC Input Power (W) | 8000 |
| Max. DC Input Voltage (V) | 580 |
| MPPT Range (V) | 100~550 |
| Start-up Voltage (V) | 90 |
| MPPT Range for Full Load (V) | 250~550 |
| Nominal DC Input Voltage (V) | 380 |
| Max. Input Current (A) | 12.5/12.5 |
| Max. Short Current (A) | 15.2/15.2 |
| No. of MPP Trackers | 2 |
| No. of Strings per MPP Tracker | 1 |
| AC Output/Input Data (On-grid) | |
| Nominal Apparent Power Output to Utility Grid (VA)*2 | 6000 |
| Max. Apparent Power Output to Utility Grid(VA)*2 | 6000/6600*1 |
| Max. Apparent Power from Utility Grid (VA) | 12000 (Charging 6kw,backup output 6kw) |
| Nominal Output Voltage (V) | 230 |
| Nominal Ouput Frequency (Hz) | 50/60 |
| Max. AC Current Output to Utility Grid (A)*2 | 26.1/28.7*1 |
| Max. AC Current From Utility Grid (A) | 52.2 |
| Output Power Factor | ~1 (Adjustable from 0.8 leading to 0.8 lagging) |
| Output THDi (@Nominal Output) | <3% |
| AC Output Data (Back-up)* | |
| Max. Output Apparent Power (VA) | 6000 |
| Peak Output Apparent Power (VA) | 7200 ,60sec |
| Max. Output Current (A) | 26.1 |
| Automatic Switch Time (ms) | <10 |
| Nominal Output Voltage (V) | 230 (±2%) |
| Nominal Ouput Frequency (Hz) | 50/60 (±0.2%) |
| Output THDv (@Linear Load) | <3% |
| Efficiency | |
| PV Max. Efficiency | 97.60% |
| PV European Efficiency | 97.00% |
| PV Max. MPPT Efficiency | 99.90% |
| Battery Charged By PV Max. Efficiency | 98% |
| Battery Charge/discharge From/To AC Max. Efficiency | 96.60% |
| Protection | |
| Anti-Islanding Protection | Integrated |
| Battery Input Reverse Polarity Protection | Integrated |
| Insulation Resistor Detection | Integrated |
| Residual Current Monitoring Unit | Integrated |
| Output Over Current Protection | Integrated |
| Grid Output Short Protection | Integrated |
| Output Over Voltage Protection | Integrated |
| General Data | |
| Operating Temperature Range (°C) | -35~60 |
| Relative Humidity | 0~95% |
| Operating Altitude (m) | 4000 |
| Cooling | Natural Convection |
| Noise (dB) | <35 |
| User Interface | LED & APP |
| Communication with BMS*3 | RS485; CAN |
| Communication with Meter | RS485 |
| Communicaiton with Portal | Wi-Fi/Ethernet (Optional) |
| Weight (kg) | 17 |
| Size (Width*Height*Depth mm) | 354*433*147 |
| Mounting | Wall Bracket |
| Protection Degree | IP65 |
| Standby Self Consumption (W)*4 | <10 |
| Topology |
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