Trinity Cleantech is developing a bioethanol-powered generator set with an integrated electric vehicle charging system, targeting locations where grid connectivity is limited, unreliable or unavailable. The proposed solution is designed as a mobile energy platform that combines electricity generation and EV charging in a single system.
The technology remains under development as the company evaluates potential commercial applications. The proposed generator is designed to use bioethanol to produce electricity on demand, offering an alternative to conventional diesel-powered generator systems.
By integrating an EV charger into the generator platform, Trinity Cleantech aims to provide both electricity and vehicle charging through the same mobile asset. The approach could support locations where establishing separate power-generation and charging infrastructure is difficult, expensive or impractical.
Potential applications for the platform include construction sites, mining operations, industrial facilities, defence installations, disaster-response operations and temporary field locations. The system could also support logistics activities and other use cases that require mobile electricity and EV charging capabilities.
According to the company, flexibility is expected to be a key advantage of the proposed platform, allowing operators to deploy the generator and charging system where power and mobility requirements arise. Trinity Cleantech is also exploring a lease-based deployment model that could reduce upfront investment while enabling the company to manage maintenance, monitoring and related operational requirements.
The generator and EV charging platform forms part of Trinity Cleantech’s broader clean-energy technology roadmap, supported by its manufacturing and technology operations at Jadcherla Green Industrial Park in Telangana. The project is currently in the development stage, with the company working towards commercialisation of a mobile solution combining power generation, EV charging and bioethanol utilisation.




