DejaBlue offers a unified electrification platform that automates EV charging to align with peak solar production and low‑price electricity, helping commercial site owners and fleet operators cut energy costs and increase renewable usage.
Funding
$8M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.
1OFounders
Product
Problem
Businesses with EV charging stations often face high electricity costs and underutilized on‑site solar generation because charging is uncontrolled and grid‑dependent, leading to expensive, inefficient operations.
Solution
DejaBlue provides a unified electrification platform that integrates real‑time EV charging control, smarter tariff selection, and distributed energy management. The system automatically shifts charging to periods of peak solar output and low‑price electricity, reducing reliance on the grid and lowering energy expenses. It also offers turnkey design, permitting, and installation services, giving customers a single point of contact from project conception through operation. Users can monitor site performance, access optimized energy contracts, and manage large charger portfolios through a cloud‑based dashboard, enabling scalable, greener electrification.
Target Audience
Primary customers are commercial site owners, fleet operators, and installers who need to deploy and manage EV charging infrastructure while minimizing energy costs and maximizing solar utilization.
Features
- Real‑time charging orchestration that aligns EV load with peak solar production and negative‑price periods
- Intelligent tariff optimization to secure the lowest electricity rates for charging operations
- Integrated solar self‑consumption management to maximize on‑site renewable usage
- Turnkey project delivery including design, permitting, and installation with a single point of contact
- Cloud dashboard for site monitoring, portfolio management, and performance analytics
- Scalable architecture supporting small sites to large, multi‑site charger networks