SD100
IFIND
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As a leading manufacturer and supplier of advanced renewable energy solutions, we present the high-performance Three Phase Solar Panel Pump Inverter designed specifically for submersible well pumps. Engineered to optimize agricultural irrigation and industrial water networks, this drive eliminates the reliance on chemical battery storage by directly converting solar energy into stable kinetic power. It is the ideal component for large-scale project integration and bulk procurement.
Supports an expansive power range from 0.4kW to 400kW.
Features seamless AC-DC simultaneous access and switching.
Delivers Maximum Power Point Tracking (MPPT) efficiency up to 99%.
Equipped with built-in sensorless waterless protection.
Step into the future of fluid management with our premium Three Phase Solar Panel Pump Inverter, meticulously engineered for submersible deep well pumps. The moment you handle the robust, sleek, dark-grey industrial chassis, you can feel the heavy-duty craftsmanship designed to withstand harsh outdoor environments. Operating with a quiet, reassuring hum from its intelligent internal cooling fan, this inverter breathes life into off-grid water networks. By capturing direct current generated from photovoltaic modules and instantly transforming it into precise alternating current, it drives massive volumes of water without the financial burden of battery banks. The tactile, responsive LCD keyboard allows operators to configure parameters with satisfying precision, while the internal circuitry works tirelessly to track the sun's maximum power point. Whether deployed in sprawling agricultural fields or remote industrial water supply stations, this controller acts as the central brain of your fluid delivery system. It elegantly solves the challenge of intermittent solar energy by offering seamless hybrid power integration, automatically drawing from the grid when sunlight fades. The result is a continuous, reliable flow of water that enhances operational efficiency, slashes energy expenditures, and delivers a rapid return on investment for large-scale infrastructure projects.
Specification Parameter | 400V Motor Application | 220V Motor Application |
|---|---|---|
Pump Type Compatibility | Three-phase 380V submersible deep well pump | Single-phase 220V submersible deep well pump |
Power Range | 0.4kW - 400kW | |
Maximum Input Voltage (Voc) | 900 VDC | 440 VDC |
Minimum Input Voltage | 250 VDC | 150 VDC |
Recommended Voltage DC (VMPP) | 300-750 VDC | 200-400 VDC |
Nominal Input Voltage AC | 3ph 380-450 V, 50/60 Hz | 3ph 200-240 V, 50/60 Hz |
Nominal Output Voltage AC | 3ph 400V | 3ph 200V |
Output Frequency | 0-400 Hz | |
MPPT Tracking Efficiency | Up to 99% | |
Efficiency (Inverter) | 97-98% | |
Ambient Temperature Range | -10°C to 50°C | |
Cooling Mechanism | Natural / by means of internal fan | |
Recommended Input Power | 1.2 times the pump capacity (minimum) | |
Protection Functions | Waterless protection (without sensors), Auto start and sleep | |
Communication & Monitoring | Support for LCD keyboard, Optional WIFI/GPRS module | |
AC-DC Switching | AC-DC simultaneous access seamless switching | |
Output Reactor | Optional (same power as inverter power, for distance over 70 m) | |
Warranty | 1.5 years | |
Our sophisticated drive system is packed with innovative features tailored to optimize fluid extraction and distribution. By focusing on automation and energy maximization, this device transforms conventional pumping setups into highly autonomous, self-sustaining networks.
Synchronous Pump Integration: Flawlessly connects with various synchronous water pumps, ensuring smooth, vibration-free operation that significantly extends the mechanical lifespan of your pumping equipment.
Intelligent Automation: Engineered to start and sleep automatically based on real-time solar intensity. This eliminates the need for manual daily interventions, freeing up valuable labor resources for other operational tasks.
Sensorless Dry-Run Prevention: Utilizes advanced algorithmic monitoring to detect dry-run conditions instantly without relying on fragile physical sensors submerged in the well, preventing catastrophic motor burnouts.
Expansive Configuration Options: Available in a full range of large volume and high configuration builds, allowing project managers to scale their infrastructure effortlessly from small agricultural plots to massive industrial complexes.
Built-in Timing Functionality: An optional built-in timer permits precise scheduling of irrigation or reservoir filling cycles, aligning perfectly with specific operational timetables and water management strategies.
Understanding the rigorous demands of large-scale water procurement and infrastructure development, this inverter is built upon six foundational pillars of excellence. Each dimension is crafted to solve critical pain points regarding energy costs, system compatibility, and long-term reliability.
Energy loss is a major concern for extensive solar arrays. This unit boasts a Maximum Power Point Tracking (MPPT) efficiency of up to 99%, coupled with a stellar inverter conversion rate of 97-98%. This means nearly every drop of captured sunlight is translated into kinetic pumping power, maximizing the yield of your photovoltaic investment and directly lowering operational overhead.
Designed to be the universal translator for fluid systems, it offers an ultra-wide power spectrum from 0.4kW up to a massive 400kW. Whether you are outfitting a single-phase 220V setup or a heavy-duty three-phase 380V deep well submersible pump, this controller provides unmatched compatibility for diverse project scales.
Embrace the true 24-hour unattended operational model. The system intelligently wakes and sleeps with the sun. Furthermore, by integrating the optional WIFI or GPRS modules alongside the crisp LCD interface, facility managers can monitor performance metrics, adjust parameters, and diagnose issues remotely, drastically cutting down on physical site visits and maintenance costs.
Outdoor installations face brutal elemental challenges. Built to thrive in ambient temperatures ranging from -10°C to 50°C, and utilizing a combination of natural and internal fan cooling, the thermal management is exceptional. Paired with the innovative sensorless waterless protection, the system guarantees stability and longevity even in the most unforgiving environments.
By adopting a store water, not electricity philosophy, this system completely bypasses the need for expensive, degradation-prone chemical batteries. This slashes initial capital expenditure. Additionally, the AC-DC simultaneous access allows for seamless switching to grid power during overcast days or nighttime, ensuring uninterrupted water delivery.
Sourced directly from a premier manufacturing facility with deep expertise in frequency control and renewable energy instruments, buyers receive direct-to-source pricing and customization capabilities. Backed by a solid 1.5-year warranty, clients are assured of top-tier quality control and dedicated technical support for their global deployments.
Selecting the right equipment manufacturer is critical for the success of extensive infrastructure and agricultural projects. We stand as a beacon of reliability and technological advancement in the renewable energy sector, offering unparalleled advantages to our global procurement partners.
Deep Industry Expertise: With years of dedicated research and development in electromechanical devices and frequency inverters, we possess the technical acumen to solve complex fluid dynamic challenges efficiently.
Stringent Quality Control: Every unit undergoes rigorous stress testing before leaving our facility. From thermal cycling to high-voltage endurance, we ensure that the product you receive performs flawlessly right out of the box.
Global Reach & Local Understanding: Our products are highly sought after worldwide. We understand the nuanced regulatory and environmental requirements of different regions, ensuring our equipment meets diverse international standards.
Comprehensive Customization: We recognize that no two projects are identical. Our engineering team is fully equipped to provide tailored modifications, ensuring the hardware perfectly aligns with your specific architectural and electrical requirements.
Dedicated After-Sales Support: Beyond the standard warranty period, our technical support team provides rapid-response troubleshooting and guidance, minimizing downtime and protecting your operational continuity.
To assist our professional clients in making informed procurement decisions, we have compiled the most technical and operational inquiries regarding our solar pumping solutions.
The inverter utilizes advanced motor current and voltage signature analysis. When the pump runs dry, the motor load drops significantly. The internal algorithm detects this specific electrical variance and instantly halts operation to prevent overheating and mechanical damage, entirely eliminating the need for physical, prone-to-failure float switches inside the well.
Yes, the device features AC-DC simultaneous access. It prioritizes solar DC input to maximize energy savings. If solar irradiation drops below the required threshold during heavy clouds or nightfall, the system seamlessly transitions to the AC grid input without interrupting the water flow, ensuring a constant supply.
The standard configuration efficiently supports typical well depths. However, for installations where the cable distance exceeds 70 meters, we highly recommend utilizing our optional output reactor. This component mitigates voltage spikes and capacitive leakage currents, protecting the motor insulation over long transmission lines.
By installing the optional WIFI or GPRS modules, facility operators can connect the inverter to a centralized digital dashboard. This allows for real-time tracking of water output, energy consumption, fault alarms, and operational status. It drastically reduces the need for manual site inspections and enables proactive, predictive maintenance.
Solar panel output fluctuates based on ambient temperature, slight shading, and natural degradation over time. Recommending a photovoltaic array capacity that is at least 1.2 times the motor's rated power ensures that the pump operates at peak efficiency for a longer duration throughout the day, compensating for system losses and suboptimal weather conditions.