The Problem: High Power Demand, High Costs EV charging infrastructure often requires significant grid upgrades, especially at high-power locations. This leads to high grid connection fees, long installation lead times, and expensive peak-demand charges. Rebaba helps solve this by delivering modular battery systems that buffer the grid, optimize power usage, and speed up deployment. How Rebaba Creates Value Peak Shaving and Load Balancing Batteries reduce spikes in power demand by storing energy and releasing it during high-load periods. This keeps grid connection costs down and allows CPOs to operate more charging points without overloading the infrastructure. Learn more in our post on peak shaving with second-life batteries . Faster Rollouts with Lower Grid Requirements By installing a battery on-site, CPOs can avoid lengthy and costly grid reinforcements. This means quicker time to market and the ability to deploy charging stations in places previously considered too weak for high-power charging. Resilience and Energy Management Rebaba batteries can be integrated with energy management systems to optimize charging profiles, respond to dynamic pricing, or even participate in grid services. Our batteries turn a charger into a flexible energy node. Sustainable Advantage through Circularity Our systems are built from second-life EV battery modules, giving existing resources a new life. For EV charger manufacturers looking to align with ESG goals or meet sustainability reporting