Strategic
- Optimal Configuration Selection: Recommending system designs that balance site constraints (shadow, tilt, orientation) with maximum energy generation.
- Technological Integration: Leveraging industry-standard software (PVsyst, AutoCAD) to provide accurate long-term energy generation forecasts.
- Regulatory Alignment: Ensuring all designs strictly adhere to DISCOM requirements and local standards to mitigate legal and operational risks.
- Feasibility Insight: Providing the high-level technical assessment that determines whether a project is viable for the company to pursue.
Financial
- BOQ Preparation: Developing the Bill of Quantities to provide accurate cost estimations and prevent budget overruns during procurement.
- System Sizing & Performance Analysis: Maximizing the "yield-to-cost" ratio by selecting the right inverter, string, and cable sizes to minimize energy loss.
- Asset Protection: Designing earthing and lightning protection systems to safeguard the financial investment from environmental damage.
- Efficiency Simulation: Using performance analysis to justify project ROI to stakeholders or clients.
Process
- Standardized Documentation: Preparing SLDs, wiring diagrams, and cable schedules to ensure a smooth transition from design to construction.
- Technical Validation: Conducting short-circuit, load flow, and voltage drop analyses to verify the safety and stability of the engineering process.
- Site Surveys: Managing the standardized procedure for site assessment and feasibility studies.
- Cross-Functional Coordination: Acting as the technical bridge between procurement and execution teams to resolve on-site issues and support commissioning.
- Enable capability development of self by overseeing implementation of appropriate systems and policies
- Actively participate in HR initiatives to drive overall employee engagement and motivation
- Training & Development - 24 Hours/Year
Internal Interfaces
External Interfaces
- Sales & Business Development
- Procurement/Supply Chain
- Project Management & Execution
- Finance Team
- Clients/Customers
- DISCOMs & Electrical Inspectors
- Vendors & Manufacturers
F. RoleRequirements / Specifications
Desired Qualifications
- Primary Degree: A Bachelor’s degree (B.E./B.Tech) in Electrical Engineering or Electrical & Electronics Engineering (EEE) is standard, as the core of the role involves AC/DC design and power systems.
- Secondary Option: A degree in Renewable Energy Engineering or Civil/Mechanical Engineering (provided there is a strong focus on structural design or solar technology).
- Post-Graduation (Optional): An M.Tech in Renewable Energy or Power Systems can be a significant advantage for utility-scale roles.
Desired Experience
- 3 to 6 years of core experience in Solar PV design.
- Project Variety: Hands-on experience across different segments:
- Rooftop: Commercial, Industrial (C&I), and Residential net-metering.
- Utility-Scale/Ground-Mounted: Large-capacity plants (MW scale), involving complex terrain and transmission line design.
- Segment Exposure: Knowledge of EPC (Engineering, Procurement, and Construction) workflows is highly valued, as it shows the candidate understands how designs translate into real-world builds.
- Proven track record of generating bankable energy yield reports using PVsyst and Helioscope.
Knowledge & Skills
- Solar Photovoltaic (PV) Principles: Deep understanding of how sunlight converts to electricity, including the impact of irradiance, temperature coefficients, and degradation.
- Electrical Engineering Fundamentals: Mastery of Ohm’s Law, power factor, AC/DC circuit theory, and the mechanics of transformers and switchgears.
- System Components: In-depth knowledge of the latest technology in Bifacial vs. Monofacial modules, String vs. Central inverters, and Battery Energy Storage Systems (BESS).
- Regulatory & Safety Standards: Knowledge of national and international codes (e.g., IEC, NEC, IS) and local DISCOM regulations for net-metering and grid-interconnection.
- Geographical & Structural Constraints: Understanding of tilt, azimuth, shadow analysis, and wind-loading requirements for mounting structures.
Skills Required
- Bachelor’s degree in Electrical Engineering or Electrical and Electronics Engineering
- Alternatively, a degree in Renewable Energy Engineering, Civil Engineering, or Mechanical Engineering with relevant structural design or solar technology focus
- 3 to 6 years of core experience in Solar PV design
- Hands-on experience with commercial, industrial, and residential rooftop solar PV projects
- Experience with utility-scale or ground-mounted solar plants, including complex terrain and transmission line design
- Knowledge of EPC workflows
- Experience generating bankable energy yield reports using PVsyst and Helioscope
- Deep understanding of solar photovoltaic principles, irradiance, temperature coefficients, and degradation
- Mastery of electrical engineering fundamentals, including AC/DC circuits, power factor, transformers, and switchgear
- Knowledge of bifacial and monofacial modules, string and central inverters, and battery energy storage systems
- Knowledge of IEC, NEC, IS, and local DISCOM regulations for net metering and grid interconnection
- Understanding of tilt, azimuth, shadow analysis, and wind-loading requirements for mounting structures
- M.Tech in Renewable Energy or Power Systems
What We Do
VSL RE Power is an India-based solar engineering, procurement, and construction (EPC) company delivering open-access, ground-mounted, and rooftop solar solutions for commercial, industrial, and utility-scale clients. It provides end-to-end project services spanning feasibility, design, engineering, procurement, construction, commissioning, and liaisoning, alongside asset-management and operations-and-maintenance support. The company offers CAPEX and OPEX models to help organizations reduce costs, improve energy resilience, and decarbonize operations.

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