Product Overview
The NV3P2HP-220V is part of a family of solar pump inverters manufactured by specialized power electronics companies, commonly associated with industrial automation and renewable energy equipment. The model designation "NV3P2HP" indicates a three-phase output (3P) with a 2 horsepower (2HP) capacity, while "220V" refers to the nominal AC output voltage. The inverter accepts a variable DC input from solar panels, typically ranging from 150V to 450V or similar, depending on the series configuration of the modules. It then converts this DC power into a variable-frequency, variable-voltage three-phase AC supply to drive standard induction motors or permanent magnet motors used in centrifugal pumps, submersible pumps, and surface pump
7. Performance Benefits and Economic Impact
The primary benefit of the SN2200 is energy cost reduction. In a typical solar-rich region, the inverter can run the pump on solar energy alone for 6-8 hours per day, offsetting 70-85% of grid electricity consumption. For off-grid sites, the hybrid feature eliminates the oversizing of solar panels, as the grid/battery acts as a reliable backup rather than sizing the array for worst-case condition
In conclusion, the "ราคา" or price of hybrid solar pump inverters is not a single number but a spectrum determined by power rating, hybrid functionality, brand, and geographical market conditions. While the initial investment is substantial, especially when compared to conventional pumping alternatives, the long-term savings, environmental benefits, and operational flexibility make it a compelling choice for modern irrigation. Prospective buyers should obtain multiple quotations from reputable suppliers, clearly specify their backup power requirements, and evaluate total system costs, including installation and insurance. With continued technological progress and supportive policies, these systems are becoming more accessible, promising a sustainable future for agriculture in sun-rich countries.
Installation of the GD100-01 is straightforward. The DC input is connected directly to the PV array through a DC breaker and fuse. The output connects to the pump motor. The commissioning process involves setting only a few key parameters, such as the rated motor voltage, current, frequency, and maximum operating frequency. For advanced features, users can enable "dry pump" detection and set limiting parameters. An optional DC pre-charging circuit prevents the inrush current when connecting the PV panels. The inverter also offers an "auto-restart" function, which resets the system and resumes operation after a short-duration fault, ensuring unmonitored operation in remote locations is trouble-fre
Key Technical Specifications
Typical specifications for the Apollo SPN-216T include a maximum PV array power of around 3.0 to 3.5 kWp, depending on the solar panel configuration and climate. The DC input voltage range is commonly between 200 V and 500 V, with an absolute maximum open-circuit voltage of about 450–500 V. This wide MPPT voltage window provides flexibility in solar panel string sizing, allowing installers to use either higher-voltage arrays to reduce cable losses or lower-voltage arrays for smaller installation
The GD100-01 is a solar-powered VFD that converts direct current (DC) from photovoltaic panels into three-phase alternating current (AC) to drive standard induction or permanent magnet motors. Its core architecture combines an MPPT (Maximum Power Point Tracking) controller, a DC-to-AC inverter stage, and a motor control unit. The MPPT algorithm continuously adjusts the electrical operating point of the solar array to extract maximum available power under varying irradiance and temperature conditions. The inverter then synthesizes a variable-frequency, variable-voltage output to control the speed of the pump motor. When solar irradiance is low, the drive automatically reduces the output frequency, allowing the pump to operate at lower speeds; when irradiance increases, the frequency is elevated, increasing pump speed and flow. This direct coupling eliminates the need for batteries or grid connection, making the system highly cost-effective and simple to maintai
Product Overview and Positioning
The SPN-216T is part of Leonics' Apollo line of solar pumping solutions, which eliminate the need for batteries by using the generated solar energy in real time. The inverter acts as an intelligent interface between the solar panels and the pump motor, converting variable DC voltage and current from the PV array into a stable, variable-frequency AC output. This allows the pump to operate at variable speeds depending on the intensity of sunlight, ensuring that as much hydraulic energy as possible is extracted during the da
Hybrid Energy Management: The inverter can run on 100% solar power, 100% grid power, or a combination of both. When solar is insufficient, it seamlessly supplements from the grid. An optional battery port allows stored energy usage, maximizing solar self-consumption and providing resilience during power outages.
Maximum Power Point Tracking (MPPT): The unit boasts a high-precision MPPT controller with a tracking efficiency exceeding 99%. It continuously adjusts the electrical operating point of the PV array to harvest maximum power under changing sunlight, temperature, and shading conditions.
Built-in PID Protection: Protection against Potential Induced Degradation extends the lifespan of the connected solar panels by preventing voltage leaks that cause power loss.
Smart Start & Stop: The inverter detects insufficient sunlight and automatically enters standby mode. When irradiance returns, it restarts the pump smoothly. It also features auto-restart after grid failure or under-voltage conditions.
No Phase Loss / Dry-Run Protection: Integrated sensors and current monitoring detect dry running or phase failure, shutting down the pump to prevent motor damage. This is essential for protecting borehole pumps.
Full LCD Display & Remote Monitoring: A multi-touch LCD panel shows real-time voltage, current, frequency, power, and fault codes. Optional WiFi/RS485 modules enable smartphone app monitoring and parameter adjustments.
Soft Start: Reduces mechanical stress on the pump by gradually ramping up the motor speed, eliminating water hammer and surge current
If you have just about any questions concerning exactly where along with how to make use of simply click the up coming web site, you possibly can email us on our webpage.
The NV3P2HP-220V is part of a family of solar pump inverters manufactured by specialized power electronics companies, commonly associated with industrial automation and renewable energy equipment. The model designation "NV3P2HP" indicates a three-phase output (3P) with a 2 horsepower (2HP) capacity, while "220V" refers to the nominal AC output voltage. The inverter accepts a variable DC input from solar panels, typically ranging from 150V to 450V or similar, depending on the series configuration of the modules. It then converts this DC power into a variable-frequency, variable-voltage three-phase AC supply to drive standard induction motors or permanent magnet motors used in centrifugal pumps, submersible pumps, and surface pump
7. Performance Benefits and Economic Impact
The primary benefit of the SN2200 is energy cost reduction. In a typical solar-rich region, the inverter can run the pump on solar energy alone for 6-8 hours per day, offsetting 70-85% of grid electricity consumption. For off-grid sites, the hybrid feature eliminates the oversizing of solar panels, as the grid/battery acts as a reliable backup rather than sizing the array for worst-case condition
In conclusion, the "ราคา" or price of hybrid solar pump inverters is not a single number but a spectrum determined by power rating, hybrid functionality, brand, and geographical market conditions. While the initial investment is substantial, especially when compared to conventional pumping alternatives, the long-term savings, environmental benefits, and operational flexibility make it a compelling choice for modern irrigation. Prospective buyers should obtain multiple quotations from reputable suppliers, clearly specify their backup power requirements, and evaluate total system costs, including installation and insurance. With continued technological progress and supportive policies, these systems are becoming more accessible, promising a sustainable future for agriculture in sun-rich countries.
Installation of the GD100-01 is straightforward. The DC input is connected directly to the PV array through a DC breaker and fuse. The output connects to the pump motor. The commissioning process involves setting only a few key parameters, such as the rated motor voltage, current, frequency, and maximum operating frequency. For advanced features, users can enable "dry pump" detection and set limiting parameters. An optional DC pre-charging circuit prevents the inrush current when connecting the PV panels. The inverter also offers an "auto-restart" function, which resets the system and resumes operation after a short-duration fault, ensuring unmonitored operation in remote locations is trouble-fre
Key Technical Specifications
Typical specifications for the Apollo SPN-216T include a maximum PV array power of around 3.0 to 3.5 kWp, depending on the solar panel configuration and climate. The DC input voltage range is commonly between 200 V and 500 V, with an absolute maximum open-circuit voltage of about 450–500 V. This wide MPPT voltage window provides flexibility in solar panel string sizing, allowing installers to use either higher-voltage arrays to reduce cable losses or lower-voltage arrays for smaller installation
The GD100-01 is a solar-powered VFD that converts direct current (DC) from photovoltaic panels into three-phase alternating current (AC) to drive standard induction or permanent magnet motors. Its core architecture combines an MPPT (Maximum Power Point Tracking) controller, a DC-to-AC inverter stage, and a motor control unit. The MPPT algorithm continuously adjusts the electrical operating point of the solar array to extract maximum available power under varying irradiance and temperature conditions. The inverter then synthesizes a variable-frequency, variable-voltage output to control the speed of the pump motor. When solar irradiance is low, the drive automatically reduces the output frequency, allowing the pump to operate at lower speeds; when irradiance increases, the frequency is elevated, increasing pump speed and flow. This direct coupling eliminates the need for batteries or grid connection, making the system highly cost-effective and simple to maintai
Product Overview and Positioning
The SPN-216T is part of Leonics' Apollo line of solar pumping solutions, which eliminate the need for batteries by using the generated solar energy in real time. The inverter acts as an intelligent interface between the solar panels and the pump motor, converting variable DC voltage and current from the PV array into a stable, variable-frequency AC output. This allows the pump to operate at variable speeds depending on the intensity of sunlight, ensuring that as much hydraulic energy as possible is extracted during the da
Hybrid Energy Management: The inverter can run on 100% solar power, 100% grid power, or a combination of both. When solar is insufficient, it seamlessly supplements from the grid. An optional battery port allows stored energy usage, maximizing solar self-consumption and providing resilience during power outages.
Maximum Power Point Tracking (MPPT): The unit boasts a high-precision MPPT controller with a tracking efficiency exceeding 99%. It continuously adjusts the electrical operating point of the PV array to harvest maximum power under changing sunlight, temperature, and shading conditions.
Built-in PID Protection: Protection against Potential Induced Degradation extends the lifespan of the connected solar panels by preventing voltage leaks that cause power loss.
Smart Start & Stop: The inverter detects insufficient sunlight and automatically enters standby mode. When irradiance returns, it restarts the pump smoothly. It also features auto-restart after grid failure or under-voltage conditions.
No Phase Loss / Dry-Run Protection: Integrated sensors and current monitoring detect dry running or phase failure, shutting down the pump to prevent motor damage. This is essential for protecting borehole pumps.
Full LCD Display & Remote Monitoring: A multi-touch LCD panel shows real-time voltage, current, frequency, power, and fault codes. Optional WiFi/RS485 modules enable smartphone app monitoring and parameter adjustments.
Soft Start: Reduces mechanical stress on the pump by gradually ramping up the motor speed, eliminating water hammer and surge current
If you have just about any questions concerning exactly where along with how to make use of simply click the up coming web site, you possibly can email us on our webpage.