STAR X Outdoor All-in-One Liquid-Cooled Container 2.8MW/5.64MWh
STAR T Outdoor Liquid Cooling Cabinet 1000~1725kW/ 1896~4073kWh
STAR H-MAX Outdoor All-in-One Liquid-Cooled ESS 220kW/440kWh
STAR Q-PLUS Hybrid Outdoor All-in-one Cabinet 125kW 250kWh
STAR H All-in-one Liquid Cooling Cabinet 100kW/232kWh
STAR H-PLUS All-in-One Liquid-Cooled ESS 125kW/254kWh (306Ah) 125kW/261kWh(314Ah)
STAR Q Hybrid Outdoor All-in-one Cabinet 50kW 109kWh
Nimbus EV Supercharging Station 180kW/824kWh
MIX Series
NOVA Series
Y3000 Portable Power Station 3000W/2.3kWh
Y1600 Off-Grid Energy Storage 1600W/1.1kWh
T3600 Off-Grid Energy Storage 1000W/3.5kWh
T4600 Off-Grid Energy Storage 3600W/4.6kWh
T14K Off-Grid Energy Storage 6000W/14.3kWh
ODM/OEM Service
Within the stationary energy storage sector, Lithium Iron Phosphate (LFP) has long served as the dominant electrochemical baseline. However, as global smart grid deployments scale into the gigawatt-
For more than a decade, Lithium Iron Phosphate (LFP) has served as the undisputed foundation of the stationary energy storage market. However, as global demand for renewable energy integration escal
Global energy transition mandates robust, scalable, and thermally stable energy storage architectures. Commercial and industrial facilities, paired with utility-scale power installations, require el
Battery pack engineering heavily dictates the performance, range, and operational profile of electric power platforms and large-scale storage arrays. The transition from heavily modularized designs
Large-scale energy storage relies on reliable electrochemistry to support grid stability, commercial peak shaving, and renewable energy integration. The adoption of lithium iron phosphate (LiFePO4)
The transition of the global power sector toward decentralized, sustainable energy infrastructure has highlighted the need for robust battery storage. High-capacity battery energy storage systems (B
Large-scale energy storage requires robust, stable, and long-lasting battery chemistries to handle the daily demands of grid stabilization, peak shaving, and renewable energy integration. Prismatic
Modern commercial and industrial facilities face growing pressure to manage energy costs, stabilize local power quality, and reduce carbon emissions. To address these demands, energy storage system
Energy infrastructure within the commercial and industrial (C&I) sectors is undergoing a structural transition. Rising grid tariffs, volatile energy markets, and grid capacity constraints force ente
The global transition toward renewable energy sources requires robust infrastructure capable of balancing supply and demand variations. Solar and wind power generate clean electricity, but their int
Modern electrical grids face unprecedented pressure from fluctuating supply and demand patterns. As commercial facilities, industrial complexes, and utility substations transition toward decentraliz
Modern manufacturing and production operations face unprecedented challenges regarding power reliability, fluctuating energy tariffs, and carbon reduction mandates. To navigate these challenges, lar