Vikram Solar Unveiled SURYAVA, Its First HJT Based Module



 Vikram Solar Unveiled SURYAVA, Its First HJT Based Module

 

One of the leading solar module manufacturers of India, Vikram Solar Limited has launched its latest innovation, the Brand SURYAVA which is a high-performance bifacial module incorporating Heterojunction technology (HJT).

Inspired by the Sanskrit word ‘Surya’, SURYAVA was officially launched at the company’s Advisory Board Meeting, graced by Chairman of the Advisory Board Dr. Alok Srivastava (Retd. IAS), Independent Director K. Subramanya, and other members of the Advisory Board including Dr. S.P. Gon Chaudhuri, J.P. Dua, Pankaj Agarwal and Suresh Menon.

‘SURYAVA’ hopes to deliver higher solar efficiency with its bifacial module design and Heterojunction technology (HJT). The approach is unlike traditional solar cells. HJT comprises both crystalline and amorphous silicon layers, creating a synergistic effect that boosts energy generation. This allows SURYAVA, 20 Busbar modules to achieve efficiency levels exceeding 23% with G12 cells, delivering superior performance and durability compared to conventional solar modules.

‘SURYAVA’ offers a complete package of benefits, including an extended lifespan, superior power output, enhanced safety, exceptional low-light performance, zero negative power tolerance, along with bi-facility for optimized yield and long-term

“We are thrilled to introduce our new brand, SURYAVA, equipped with Heterojunction technology. This product is a testament to Vikram Solar’s commitment to innovation and to contribute towards driving the renewable energy sector forward. SURYAVA’s performance metrics, developed in our NABL-accredited R&D lab—including lower degradation, enhanced weather resistance and superior efficiency is expected to position it as an industry leader. We are confident that SURYAVA will be a game-changer and will contribute in achieving India’s and the world’s solar energy goals”, said Gyanesh Chaudhary, Chairman & Managing Director, Vikram Solar Limited