ChargeRevive provides modular stationary and mobile battery energy storage systems integrated with AI‑driven energy management, IoT monitoring, and digital‑twin technology. Their solutions enable real‑time optimization of charge/discharge cycles, predictive maintenance, and seamless integration with on‑site solar or wind generation, delivering peak‑shaving, grid‑service revenue, and enhanced battery safety for commercial and industrial energy users.
Funding
Funding not disclosed
Founders
Product
Problem
Industrial and commercial facilities often rely on intermittent renewable generation and unstable grid supply, leading to high energy costs, limited resilience, and difficulty integrating large-scale solar or wind assets. Traditional battery storage solutions can be bulky, lack real‑time optimization, and provide limited safety or lifecycle management.
Solution
ChargeRevive offers a portfolio of modular stationary and mobile battery energy storage systems combined with AI‑driven energy management, IoT monitoring, and digital‑twin technology. Their solutions enable real‑time optimization of charge/discharge cycles, predictive maintenance, and seamless integration with on‑site solar or wind generation. Advanced analytics provide peak‑shaving, frequency regulation, and grid‑service revenue opportunities while enhancing battery safety through liquid‑cooling and thermal management. Customers receive end‑to‑end support from system design and supply chain logistics to deployment, commissioning, and lifecycle management.
Target Audience
Primary customers are commercial and industrial energy users, such as manufacturing plants, logistics facilities, agricultural operations, and renewable project developers seeking reliable, scalable battery storage and intelligent energy management.
Features
- Modular containerised BESS units ranging from 120 kWh to 6.7 MWh with options for air‑cooled, liquid‑cooled, and string‑type cooling technologies
- Integrated MPPT modules and AI‑powered energy management system for optimal solar‑battery coordination and peak‑valley arbitrage
- Real‑time IoT sensors and digital‑twin models that enable predictive analytics, automated fault detection, and extended battery lifespan
- Scalable capacity expansion allowing customers to add modules for additional grid services or backup power
- Mobile ESS units (30 kW–120 kW) for rapid on‑site deployment, fast EV charging, and remote power support
- Safety‑focused design with liquid‑cooling for improved thermal management and higher operational safety standards