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Waaree Transpower, a transformer manufacturing and power equipment company within the Waaree Group, has achieved a major milestone by securing IDT orders exceeding INR 100 crore within the first month of launch. The orders, aggregating 1275 MVA (1.27 GW), have been placed by a Solar EPC company for deployment across high-capacity solar projects nationwide.
High Demand for Modern Infrastructure
This achievement comes at a time when India is witnessing its fastest-ever renewable expansion, having added over 20+ GW of solar capacity in FY25 alone and targeting 50 GW annual renewable additions to meet the 500 GW non-fossil capacity goal by 2030. As developers scale aggressively, demand for high-efficiency, grid-resilient electrical infrastructure has surged- placing Waaree Transpower at the forefront of critical national capacity building.
Waaree Transpower’s Inverter Duty Transformers (IDTs) is engineered to withstand high-frequency switching, harmonic-rich environments, and variable irradiation conditions, as per the official statement.
Ankit Doshi, Director, Waaree Transpower, said, “Crossing the 1.27 GW mark in transformer orders within a month is a strong endorsement of Waaree Transpower’s capability to support India’s fast-growing solar ecosystem. This milestone reflects our team’s engineering excellence, disciplined execution, and customer centricity. As India expands its renewable capacity at record speed, we are committed to delivering reliable, grid-resilient electrical infrastructure that meets the evolving needs of developers and strengthens the nation’s clean energy transition.”
Nationwide Deployment for Utility-Scale Projects
The transformers will be deployed across multiple states to support India’s growing utility-scale renewable pipeline, which currently stands at over 70 GW under development. Waaree Transpower’s IDTs are designed for long-term performance - engineered to meet the demands of advanced string and central inverter architectures.
The company insists that the transformers deliver lower energy losses, improved thermal management, superior durability in high-temperature environments, and enhanced system uptime for developers, ensuring dependable operation for the next generation of solar projects.
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