Buyers in off-grid and unstable-grid areas often face mismatched components when assembling a solar hybrid system. Panels, inverters, controllers and batteries from different suppliers may not work together on site.
Get A Custom SolutionBuyers in off-grid and unstable-grid areas often face mismatched components when assembling a solar hybrid system. Panels, inverters, controllers and batteries from different suppliers may not work together on site. WeBright Solar delivers a pre-configured hybrid energy storage system with matched components, including the LiFePO4 battery pack, hybrid inverter, MPPT controller, combiner box, cable and mounting structure, all tested and packed for export as one shipment.
The amber line is the failure this stage usually produces. The line under it is what we do instead.
The system is sized based on roof area or a target kW without considering actual daily load or peak demand.
We request the appliance list, daily running hours and largest starting load to size the battery, inverter and solar array together.
Battery capacity, inverter rating and solar array output are selected independently, leading to imbalance.
The battery, inverter and solar array are sized against each other on a common DC bus voltage to ensure compatibility.
Battery type (LiFePO4 vs GEL), controller type (MPPT vs PWM), and inverter mode (hybrid vs off-grid) are chosen without site impact analysis.
We evaluate each option’s impact on system performance and cost, then fix the configuration before quoting.
The mounting structure arrives cut for flat roofs when the site has a pitched tile roof.
Mounting is drawn from CAD to match the actual roof or ground condition and confirmed with the buyer before production.
A mismatched controller or faulty inverter is discovered only during on-site commissioning.
The inverter, controller and battery are tested together in the lab, and the packing list is verified before crating.
Components arrive split across multiple shipments or damaged during transit.
Inverter, solar panels, mounting bracket and battery are packed in wooden boxes for export loading in one shipment.
Buyers must coordinate sourcing, consolidation and shipping across multiple suppliers.
OEM, design, sourcing and shipment are handled from one place, so the buyer receives one set of export documents.
A technical issue during installation has no clear point of contact.
Enquiries are answered within 12 hours over WhatsApp or email, with the configuration table as the shared reference.

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Nominal Volt: 51.2V Nominal Capacity: 200Ah Energy Storage: 10kWh With MBS Maximum Batteries in Series * 15 Re
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Nominal Volt: 48V Nominal Capacity: 200Ah Energy Storage: 9600Wh With MBS Maximum Batteries in Series * 15 Rec
View product →Yes. Send the appliances, daily running hours and largest starting load, and we will return a configuration with the inverter, battery, controller and solar array sized to your load.
Yes. We supply rack-mounted and cabinet-type LiFePO4 battery packs with capacities from 5kWh to 15kWh, DC voltages of 48V or 51.2V, and life cycles exceeding 6000 cycles at 80% depth of discharge.
Yes. Battery capacity, voltage, mounting type and enclosure are all set at order stage to match your system requirements.
Solar modules, hybrid inverter, MPPT charge controller, LiFePO4 battery pack, combiner box, PV cable, MC4 connectors and an installation tool bag.
The life cycle of the 10kWh LiFePO4 Powerwall battery pack is over 6000 cycles at 80% depth of discharge.
The rack-mounted LiFePO4 battery packs are available with DC voltages of 48V and 51.2V.
Send the load list, the site conditions and any drawing you have. The configuration comes back with every item in the shipment listed.