AES CABINET: COMMERCIAL BATTERY STORAGE FOR HYBRID INVERTERS
Scalable for <1000V, 100 kWh-4 MWh systems, providing the simplicity of residential solar at scale for the C&I market.
Scalable for <1000V, 100 kWh-4 MWh systems, providing the simplicity of residential solar at scale for the C&I market.

Simple InstallationBy combining critical components into one system and integrating with C&I hybrid inverters, we remove the need for complex microgrid controllers, EMS controllers, and additional transformers—making installation as straightforward as residential setups. | Easily ScalableFrom 100 kWh to 4 MWh, our modular platform is designed to easily expand without the complexity of traditional systems, adapting the solution to varying projects and allowing them to grow without extensive redesigns. |
Cost-Efficient and Faster ROILess required system components translate to reduced installation time and labour, lowering overall project costs, making C&I solar projects more accessible and profitable, even at smaller scales. | Supports Microgrid & Off-Grid FunctionalitySupports demand response, peak shaving, and backup power for grid-tied applications, and provides consistent, grid-independent power for off-grid and microgrid scenarios. |
For more information, see our spec sheet.
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| Product Name | AES 106HV | AES 160HV | AES 210HV | AES 266HV |
|---|---|---|---|---|
| Model Number | CAB-106 | CAB-160 | CAB-210 | CAB-266 |
| Configuration | ![]() 104S1P (2 packs @ 52S1P) |
![]() 156S1P (3 packs @ 52S1P) |
![]() 208S1P (4 packs @ 52S1P) |
260S1P |
| Nominal Energy Capacity | 106 kWh | 160 kWh | 212 kWh | 266 kWh |
| Usable Energy Capacity | 104 kWh | 157 kWh | 209 kWh | 261 kWh |
| Battery Max. Continuous Power | 52 kW | 78 kW | 104 kW | 131 kW |
| System Nominal Voltage | 332.8 V | 499.2 V | 665.6 V | 832.0 V |
| Voltage (Min) | 312 V | 468 V | 624 V | 780 V |
| Voltage (Max) | 358.8 V | 538.2 V | 717.6 V | 897 V |
| Usable Cell Capacity | 314 Ah | |||
| Continuous Current | 157 A | |||
| Nominal Cell Capacity | 320 Ah | |||
| RTE | 94% | |||
| Temperature | −30°C to 55°C (−22°F to 131°F) | |||
| Communication | CAN, RS485 | |||
| Cooling Method | Liquid Cooling | |||
| Protection Level | IP55 (NEMA 3R) | |||
| Product Weight | 1,770 kg (3,900 lb) |
2,130 kg (4,700 lb) |
2,490 kg (5,490 lb) |
2,850 kg (6,285 lb) |
| Dimensions | 1,300 × 1,300 × 2,375 mm (51 × 51 × 93 in) | |||
| Testing & Certifications | UN38.3, UL1973, UL9540A, UL9540, IEC62619, IEC62933, IEC61000 | |||


Discover’s CAB-106 battery cabinet pairs seamlessly with the Sol-Ark 30K-3P-208V and 60K-3P-480V hybrid-inverter.

Discover’s CAB-106 battery cabinet pairs seamlessly with the Solis S6-EH3P (30–60kW) hybrid-inverter series.

Discover’s CAB-106 battery cabinets pair seamlessly with the Solis S6-EH3P(29.9-50)K-H-AU hybrid-inverter series.

Discover’s CAB-160 battery cabinet pairs seamlessly with the Sol-Ark 60K-3P-480V hybrid-inverter.

Discover’s CAB-160 battery cabinet pairs seamlessly with the Solis S6-EH3P (30–60kW) hybrid-inverter series.

Discover’s CAB-160 battery cabinets pair seamlessly with the Solis S6-EH3P(29.9-50)K-H-AU hybrid-inverter series.

Discover's AES 210HV high-voltage outdoor battery cabinet is fully compatible with the Sol-Ark 60K-3P hybrid inverter.

Discover’s AES 210HV battery cabinet pairs seamlessly with the Solis S6-EH3P (30–60kW) hybrid-inverter series.

Discover’s AES 210HV battery cabinets pair seamlessly with the Solis S6-EH3P(29.9-50)K-H-AU hybrid-inverter series.
A Community Grocery Store Trades Diesel for Clean, Reliable Power with Discover AES 210HV and Sol-Ark
Location: Eastern Lancaster County, Pennsylvania
Client: Springville Foods
Installer: CB Solar, LLC
Distributor and Technical Design Support: Zonna
Energy
Storage System: Discover AES 210HV
Inverter Platform: Sol-Ark 60K-3P-480V (x2)
PV Array Size: 75 kW Ground Mount
Commissioned: April 2025
Commercial energy storage systems deliver measurable ROI across diverse applications—from peak shaving and microgrid resilience to critical backup power and off-grid independence.
Cut demand charges • Optimize load profiles • Maximize solar self-consumption
Automatically discharge during peak demand periods to reduce utility bills.
Grid independence • Renewable integration • Disaster resilience
Deploy grid-tied or islanded microgrids for complete energy autonomy
Uninterrupted operations • Protect revenue • Meet compliance
UL 9540-certified systems provide instant backup during grid failures
Avoid demand charges • Buffer peak loads • Enable fast charging
Enable fast-charging infrastructure in limited grid capacity locations
Energy independence • Eliminate diesel dependency • 24/7 operations
Power remote facilities, mining operations, and island communities