Madagascar Project Case / SP4037
Madagascar 37kW Solar Pump Inverter Project for a 30HP Pump Station
A Madagascar water supply project used SolarSeeker SP4 control cabinet systems across multiple pump stations. One featured 30HP pump station runs with an SP4037 380V three-phase inverter, 84 x 585W solar panels and on-site commissioning support.
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30HP pump station
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84 x 585W PV panels, 14S6P
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12 SolarSeeker control cabinets in the project
Field Story
The challenge was not only starting one pump. It was making a water plant reliable.
The Madagascar project included six pump stations and twelve SolarSeeker control cabinet systems. The full pump station range covered 4kW to 90kW, so cabinet logic, wiring clarity and commissioning order had to be managed carefully.
For the 30HP pump station shown here, the selected configuration used a SolarSeeker SP4037 inverter with 380V three-phase input and output. The PV array used 84 pieces of 585W panels, arranged as 14 panels in series and 6 parallel strings.
The project recorded strong water output after commissioning. During acceptance, the project manager brought professional engineers to inspect the site, and the team was satisfied with the result.
What made the project practical
- The site team could inspect PV array scale, cabinet position and water route together.
- Control cabinet checks helped confirm inverter operation, wiring clarity and service access.
- Water output and acceptance inspection gave the project team confidence before handover.
Technical Configuration
SP4037 configuration used for the 30HP station
The key selection details are voltage, inverter model, pump power, cabinet quantity and PV string design. These facts are useful before SolarSeeker recommends a model for a similar water supply project.
| Country | Madagascar |
|---|---|
| Application | Water plant and remote community water supply pump station |
| Project range | Six pump stations, 4kW to 90kW range, 12 SolarSeeker control cabinet systems |
| Featured pump station | 30HP pump station |
| Solar pump inverter | SolarSeeker SP4037, 380V, 37kW, 75A, input and output three phase |
| PV array | 84 pieces of 585W panels, 14 in series and 6 parallel strings |
| Observed result | Strong water output after commissioning, followed by professional project acceptance inspection |
| Buyer takeaway | For multi-station water projects, inverter matching, cabinet logic, cable route and service access should be checked together. |
Field Photos
From site scale to water result
For a multi-station water project, buyers need to see more than one cabinet photo. The field views below show the PV array, control equipment, engineer checks and water-side result in a clear sequence.



Control Cabinet Work
The control side needed cabinet-by-cabinet checking
With multiple pump stations and twelve control cabinets, the site work was not only a startup test. SolarSeeker had to check inverter operation, cabinet logic, wiring clarity and how the local team would maintain the system after handover.
If you have a similar project, send pump station data, cable distance, backup power plan, water route and cabinet location before finalizing the quotation.



Water Side And Acceptance
Strong output is the result buyers care about, but acceptance depends on the whole route
The site photos show both the water source side and the discharge result. For a water plant project, commissioning has to confirm more than one running pump: water source behavior, pipe pressure, cable distance, cabinet protection and pump station response all affect the handover.
Professional engineers inspected the project and accepted the running result. SolarSeeker also left practical guidance so the local team could handle future checks faster.



Buyer Takeaway
What SolarSeeker checks before recommending a system
Pump station data
Pump power, rated current, voltage, phase, head, pipe distance and target water volume.
PV and power plan
Panel wattage, string design, installation space, backup power plan and cable route.
Control cabinet needs
Protection level, wiring layout, service access, cabinet quantity and control logic.
Commissioning risk
Water level changes, pipe pressure, pump overload, long cable interference and local maintenance requirements.
Engineering Path
Engineering pages for a similar pump station
Start from the inverter hub, then check the SP4 range, cabinet integration and complete system planning pages for large water-supply work.
Solar Water Pump Inverter
Main hub for SolarSeeker inverter selection, voltage range and project matching.
Open inverter hub
SP4 380V Inverter
For 380V three-phase pump stations and larger water supply projects.
View SP4
Solar Pump Cabinet
For protection, wiring layout and multi-cabinet integration.
View cabinet
Solar Pump Kits
For panel, inverter/controller, pump and accessory package planning.
View kits
FAQ
Questions about the Madagascar water supply project
What was installed in the Madagascar pump station project?
The project included six pump stations, twelve SolarSeeker control cabinets and a 4kW to 90kW pump station range. The featured station used an SP4037 380V 37kW inverter for a 30HP pump station.
How was the PV array configured for the 30HP station?
The project used 84 pieces of 585W solar panels for the featured station, arranged as 14 panels in series and 6 parallel strings.
Why are the control cabinet photos important?
For a multi-station water project, the cabinet layout affects commissioning, protection, troubleshooting and later maintenance. Clear cabinet logic is part of the final project quality.
Can SolarSeeker help check a similar water plant project?
Yes. Send pump station data, water route, lift height, cable distance, PV plan and cabinet location. SolarSeeker can check inverter selection and cabinet integration before quotation.
Planning a multi-station water plant?
Send the pump station data, water source photos, target water volume, PV panel plan and cabinet location. SolarSeeker will check the inverter range, cabinet plan and PV array before quoting.