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Batteries

Technical selection for professionals

How to choose a solar battery for a professional project

Choosing a solar battery takes more than comparing kWh. Check whether the project is new or a retrofit, AC or DC coupling, voltage and BMS, charge and discharge power, phases, backup, communications, scalability and warranty. Plug & Play Energy checks each configuration against real project data and current documentation.

Over 20 years of experienceProfessional distributionSizing and commissioning support
Precise search: Showing only products whose brand, model or reference matches “sigen”.
Sigenergy SigenStor BAT 10 (9kWh) (11130012)
• Capacity: 9kWh, full discharge for maximum efficiency.
• Modular and stackable: Up to 6 modules per stack, scalable to 54kWh.
• Quick installation: Self-pluggable connectors, commissioning in minutes.
• Smart integration: Compatible with SigenStor EC inverters and mySigen app.
Sigenergy SigenStack BAT 12 (12kWh) (11130014)
• High density: 12kWh/module, up to 253kWh/system
• Safety: IP66, fire suppression and thermal cell control
• Compatible and scalable: CAN integration with Sigenergy inverters, 4‑21 modules
• Quick installation: Floor mounting, air cooling, simple commissioning
Sigenergy SigenStor BAT 6 (6kWh) (11130018)
• Capacity: 6kWh.
• Modular and stackable: Up to 6 modules per stack, scalable up to 36kWh.
• Quick installation: Self-pluggable connectors, commissioning in minutes.
• Smart integration: Compatible with SigenStor EC inverters and mySigen app.
Sigenergy SigenStor BAT 5 (5kWh) (11130002)
• Capacity: 5kWh.
• Modular and stackable: Up to 6 modules per stack, scalable up to 30kWh.
• Quick installation: Self-pluggable connectors, commissioning in minutes.
• Smart integration: Compatible with SigenStor EC inverters and mySigen app.
Only 2 Units left in stock.
Sigenergy SigenStack Cover (11180003)
The SigenStack cover serves as a protection for the battery modules inside the tower. Its main function is to safeguard the modules from external elements such as dust, humidity, and adverse environmental conditions, helping to prolong the useful life of the system and maintain the safety of the installation.
Sigenergy SigenStor BC (incluye base) (11180011)
BMS module for Sigenstor Bat 5, 6, 8 and 10 kWh combined with SP2 or TP2
Sigenergy SigenStack Base SUB-0.5C (11180005)
• SUB-0.5C Base: Supports charging/discharging up to 0.5C.
• Modular and stackable: Supports up to 7 battery modules per stack.
• IP66 protection: Dust and water resistant.
Sigenergy SigenStack Base MAIN-0,5C (11180002)
• Modular compatibility: Supports up to 5 SigenStack 0.5C modules
• Stackable design: Compact (770 × 195 × 363mm) and easy to install
• Integrated connectivity: Power and communication interfaces included
• IP66 rating: Dust and water resistant
Sigenergy SigenStack Base SUB-1C (11180007)
• SUB-1C Base: Supports charging/discharging up to 1C.
• Modular and stackable: Supports up to 7 battery modules per stack.
• IP66 protection: Dust and water resistant.
Sigenergy SigenStack BC M2-1C-BST (11140002)
SigenStack Battery Controller M1 - 1C
This is the main controller for the battery modules in the SigenStack series. Its function is to regulate and optimize the performance of the energy storage system in each tower, allowing efficient management of the stored energy. The maximum capacity that can be installed on each tower controller is 252 kWh.
Sigenergy SigenStack Base MAIN-1C (11180006)
• SigenStack Tower Master Controller – coordinates and manages all battery modules
• Optimizes charging, discharging and balance between modules for efficiency and useful life
• Maximum capacity managed per tower: 252kWh
Sigenergy SigenStack BC M2-0.5C (11140001)
SigenStack Battery Controller M1 - 0.5C
This is the main controller for the battery modules in the SigenStack series. Its function is to regulate and optimize the performance of the energy storage system in each tower, allowing efficient management of the stored energy. The maximum capacity that can be installed on each tower controller is 252 kWh.
Decision guide

Which battery fits the project

Project typeArchitecture to assessData to verify
Project typeNew residential systemArchitecture to assessAC or DC depending on ecosystem, functions and planned expansion.Data to verifyConsumption, PV generation, phases, power, battery, BMS and backup loads.
Project typeRetrofit of existing PVArchitecture to assessAC coupling or explicitly documented DC expansion.Data to verifyExact inverter model, voltage, BMS, firmware, metering, export and protection.
Project typeCommercial and industrialArchitecture to assessBESS with EMS according to operating goal and load profile.Data to verifyLoad curve, power, goal, space, grid, protection and control strategy.
Project typeOff-grid or critical loadsArchitecture to assessComplete generation, storage, control and backup system.Data to verifyAutonomy, peaks, simultaneity, generator, reserve, temperature and failure modes.

Is an AC or DC battery better?

It depends on the project. AC coupling often simplifies retrofits and separates ecosystems; DC can provide direct integration in new or hybrid systems. Exact compatibility and losses must be checked using the complete design.

How many kWh of battery does a system need?

Calculate it using hourly consumption and generation, the goal, autonomy, power, depth of discharge and losses. Monthly consumption alone is not enough for correct sizing.

Must the battery use the same brand as the inverter?

Not necessarily. DC requires documented compatibility between inverter, battery and BMS. AC may allow electrical coexistence, but this does not imply functional integration: metering, control, export and backup must be validated.

What distinguishes a C&I BESS from a home battery?

Not just capacity. C&I projects depend on power, load profile, EMS, grid connection, protection, space, operation, maintenance and the economic or operating goal. They require a specific study.

Size the system before quoting

Send us the technical data and we will help define power, capacity, architecture and auxiliary equipment.

Updated 10 September 2026. Final selection is validated against current documentation and real project data.

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