Dheya Engineering Technologies PVT LTD
Dheya Engineering Technologies has achieved a groundbreaking feat with the development of India’s first Hydrogen Flex Fuel Micro Turbogenerator. This cutting-edge innovation sets new benchmarks in efficiency and reliability, featuring advanced technologies such as oil-free air foil bearings, a robust control system with remote start and monitoring capabilities, and highly durable materials for the extended life. With a low startup time and exceptional fuel efficiency, DheyaTech’s turbogenerator is also 65% more cost-effective than conventional systems. This breakthrough underscores Dheya’s commitment to sustainable energy solutions and transformative engineering for diverse applications.
60kW
60000 RPM
< 200° C
4.2
Designed to operate on hydrogen and blended fuels, DET 60 enables a cleaner energy transition without compromising performance. This flexibility ensures adaptability across evolving energy infrastructures and sustainability mandates.
Incorporates advanced oil-free air foil bearings, eliminating lubrication systems and reducing maintenance complexity. This results in higher reliability, lower operational costs, and extended service life.
Delivering 60 kW at speeds up to 80,000 RPM within a compact 180 mm diameter package, DET 60 offers exceptional power-to-weight performance. It weighs 6.5 kg and features a lightweight architecture, making it ideal for mobile and distributed power applications.
Equipped with a robust control system featuring remote start and real-time monitoring capabilities. This ensures safe operation, readiness for predictive maintenance, and seamless integration into smart energy systems.
With a low startup time and optimised thermodynamic performance (Pressure Ratio 4.2, TSFC 0.3 kg/kW h), the system enables quick deployment and superior fuel efficiency. Ideal for applications requiring responsive and reliable power generation.
Manufactured using high-temperature resistant materials and precision turbomachinery design philosophy. The system is engineered to be up to 65% more cost-effective than conventional alternatives, significantly reducing lifecycle costs.
Our engineering team is ready to help you find the perfect solution for your specific
requirements.