On Grid Solar Inverter GS3600S-UK
- Loading Port:
- Shanghai
- Payment Terms:
- TT OR LC
- Min Order Qty:
- 10 unit
- Supply Capability:
- 100 unit/month
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GW3600S-UK
The SS series is widely and flexibly used in domestic units because of its wide range of voltage and current inputs. It features very high conversion efficiency and reliability. SS series provides long-term and stable generating benefits. The powerful, intelligent, user friendly interface and sleek stylish design make it most suitable for domestic applications.
DC Input Data | Max.PV-generator power[W] | 4200 |
Max.DC voltage[V] | 580 | |
MPPT voltage range[V] | 125~550 | |
Turn on DC voltage[V] | 125 | |
Max.DC work current[A] | 20 | |
Number of inputs/MPP trackers | 3/1 | |
DC connector | MC IV Connector | |
Self-energy consumption[W] | <5< td=""> | |
AC Output Data | Nominal AC power[W] | 3600 |
Max.AC power[W] | 4000 | |
Max.output current[A] | 16 | |
Nominal output voltage range | G83/1; VDE0126-1-1/AI | |
AC grid frequency | G83/1; VDE0126-1-1/A1 | |
THDi | 〈1% | |
Power factor | ~1 | |
AC connection | Single phase with clamps | |
Efficiency | Max.efficiency | 97.6% |
European efficiency | >97.4% | |
MPPT adaptation efficiency | >99.5% | |
Safty Equipment | Leakage current monitoring unit | Integrated |
DC switch disconnector | Optional | |
Islanding protection | AFD | |
Grid monitoring | G83/1; VDE0126-1-1/A1 | |
Normative Reference | EMC compliance | EN 61000-6-1,EN 61000-6-2, EN 61000-6-3,EN 61000-6-4 |
Safety compliance | According to IEC 62109-1 | |
General Data | Dimensions(W*H*D) [mm] | 390*417*142 |
Net weight [kg] | 18 | |
Housing | For outdoor and indoor | |
Mounting information | Wall bracket | |
Operating temperature range | -20~60℃(up 45℃ derating) | |
Relative humidity | 0 ~ 95% | |
Site altitude[m] | 2000 | |
IP proection class | IP65 | |
Topology | Transformerless | |
Cooling | Nature convection | |
Noise level[dB] | 〈25 | |
Display | 4" LCD | |
Communication | USB2.0;RS485(Wireless/Bluetooth optional) | |
Standard warranty[years] | 5/10/15/20/25 (optional) |
- Q:How is the efficiency of a solar inverter measured?
- The efficiency of a solar inverter is typically measured by comparing the amount of direct current (DC) power produced by the solar panels to the alternating current (AC) power delivered by the inverter. This measurement is known as the inverter efficiency and is expressed as a percentage. The higher the efficiency, the more effectively the inverter converts DC power into usable AC power, resulting in greater overall energy production from the solar system.
- Q:How does a solar inverter handle variations in battery charge levels?
- A solar inverter typically handles variations in battery charge levels by constantly monitoring the charge level of the battery. It adjusts the energy flow from the solar panels to the battery based on its charge level. When the battery charge is low, the inverter increases the energy flow from the solar panels to charge the battery. Conversely, when the battery charge is high, the inverter reduces the energy flow to prevent overcharging. This dynamic control ensures efficient use of the available solar energy and optimal charging of the battery.
- Q:What is the role of a solar inverter in anti-islanding protection?
- The role of a solar inverter in anti-islanding protection is to detect when there is a loss of utility power and to disconnect the solar system from the grid. This is important to prevent the system from continuing to generate power during a power outage, which could pose a safety risk to utility workers who may be working on the grid. The solar inverter ensures that the solar system is synchronized with the grid and only operates when there is a stable utility power supply, thus providing a reliable and safe connection to the grid.
- Q:What is the role of capacitors in a solar inverter?
- The role of capacitors in a solar inverter is to store and release electrical energy. They help to stabilize the voltage and current, ensuring a smooth and continuous flow of power. Capacitors also help to filter out any unwanted noise or fluctuations in the electrical signal, thus improving the overall performance and efficiency of the solar inverter.
- Q:How does a solar inverter handle harmonic distortion?
- A solar inverter handles harmonic distortion by incorporating various filtering and control mechanisms. These mechanisms help to minimize and mitigate the impact of harmonic distortion caused by the non-linear loads associated with solar panels. The inverter typically employs filters and algorithms that actively monitor and adjust the output waveform to reduce harmonics. This ensures that the generated electricity is of high quality and meets the required standards for grid connection.
- Q:Can a solar inverter be used for commercial-scale solar installations?
- Yes, a solar inverter can be used for commercial-scale solar installations. Solar inverters are essential components of any solar PV system, converting the DC electricity generated by solar panels into AC electricity suitable for commercial use. They are available in various sizes and capacities, allowing them to accommodate the power requirements of large-scale commercial installations. Additionally, advanced features like grid-tie functionality and monitoring capabilities make solar inverters suitable for integration into commercial-scale solar installations.
- Q:What is the role of a solar inverter in reactive power control?
- The role of a solar inverter in reactive power control is to regulate and manage the flow of reactive power in a solar power system. It helps to maintain the power factor within an acceptable range, ensuring efficient and stable operation of the system. By adjusting the voltage and reactive power outputs, the solar inverter can compensate for any reactive power imbalances and maintain a balanced grid voltage. This helps to prevent power quality issues and ensures optimal performance and integration of solar energy into the grid.
- Q:What is the role of transformerless design in a solar inverter?
- The role of transformerless design in a solar inverter is to eliminate the use of a bulky and costly transformer, which helps reduce the overall size, weight, and cost of the inverter. Additionally, a transformerless design allows for higher efficiency and improved performance of the solar inverter.
- Q:What are the key features to consider when purchasing a solar inverter?
- When purchasing a solar inverter, some key features to consider are the capacity and efficiency of the inverter, its compatibility with your solar panel system, the type of inverter technology used (such as string or microinverters), the warranty and reliability of the brand, and any additional features or smart capabilities offered by the inverter.
- Q:How does the efficiency of a solar inverter affect the overall system performance?
- The efficiency of a solar inverter plays a crucial role in the overall system performance. A higher efficiency inverter converts a greater percentage of the solar energy into usable electricity, resulting in increased energy production. This means that a more efficient inverter allows the system to generate more power, maximizing the overall performance and output of the solar system. Additionally, a higher efficiency inverter reduces energy losses, which can lead to improved system reliability and cost-effectiveness. Therefore, the efficiency of a solar inverter directly impacts the overall performance and effectiveness of the entire solar energy system.
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On Grid Solar Inverter GS3600S-UK
- Loading Port:
- Shanghai
- Payment Terms:
- TT OR LC
- Min Order Qty:
- 10 unit
- Supply Capability:
- 100 unit/month
OKorder Service Pledge
Quality Product, Order Online Tracking, Timely Delivery
OKorder Financial Service
Credit Rating, Credit Services, Credit Purchasing
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