Latest MNRE List: Approved Solar Module Manufacturers
Latest MNRE List: Approved Solar Module Manufacturers
The Ministry of New and Renewable Energy (MNRE) has made updates to the Approved List of Models and Manufacturers (ALMM) by adding five new entrants. These manufacturers, namely SAEL, Rhine Solar, Spark Solar, Genus Innovation, and Fujiyama Power Systems, have a combined module manufacturing capacity of 343 MW. With these additions, the ALMM now consists of 82 module manufacturers with a total listed module capacity of 19.19 GW. Notably, there are no Chinese manufacturers on the list.
The ALMM only includes models with a module efficiency of 19% or higher in List-1. Manufacturers whose model validity expired on March 9, 2023, and did not apply for renewal have been delisted. The ministry recently revised the ALMM guidelines, allowing exceptions to the qualification criteria for modules produced under agreements between original equipment manufacturers and brand owners. The revised rules state that if an applicant has multiple manufacturing sites or sources finished products from other manufacturers under their own brand name, all manufacturing sites must be inspected unless an exception applies.
The government had initially put the implementation of the ALMM order for the financial year 2023-24 on hold, but later modified the rules. Consequently, solar projects commissioned by March 31, 2024, will be exempted from the requirement of procuring modules listed under the ALMM.
Furthermore, the MNRE clarified last October that open access and net metering renewable energy projects that had applied for approval before October 1, 2022, would not be subject to the ALMM. Additionally, the ALMM mandate does not apply to behind-the-meter solar power projects used for captive consumption by individual consumers or groups of consumers.
Suggested Articles

Solar Inverter Troubleshooting Guide for Solar PV Systems
A complete guide to troubleshooting charge controllers in solar PV systems, including fault diagnosis, electrical testing, error identification, and corrective maintenance for reliable system performance.

What Is an Array Junction Box in Solar PV Modules? | Complete Guide
The Array Junction Box (AJB) is a critical component in solar PV systems, connecting multiple solar modules and ensuring safe flow of electricity to the inverter. This blog explains what an AJB is, its key features, types, and why it is essential for both residential and commercial solar installations. Understand how AJBs protect your system from overload, short circuits, and environmental factors while maintaining optimal performance.

OPEX Industrial Solar Provider in India: How It Works, Cost & ROI
An OPEX industrial solar provider installs and owns the solar plant while industries pay only for energy used. Learn cost, benefits, and ROI in India.

Is Your Solar PV Rooftop System Safe & Protected?
Worried about the safety of your solar rooftop system? Explore key tips, maintenance practices, and protection strategies to keep your Solar PV system secure and efficient

Should You Replace Solar Panels with Solar Shingles?
Discover how solar batteries store excess energy, maximize your solar system’s efficiency, and provide reliable power during outages. Learn about the types, benefits, lifespan, and maintenance tips to make the most of your solar investment.

Cable and Conduit Labeling in Solar PV Systems
A complete guide to cable termination in solar installations, including tools, step-by-step methods, and best practices for safe connections.

Safe Access and Tool Safety at Solar PV Sites
A complete guide to safely accessing solar PV sites and minimizing tool-related hazards through proper planning, equipment inspection, handling, storage, and safe work practices.

100 kW Solar Power Plant in Indore – Latest Cost, Subsidy & Payback Period
A 100 kW solar plant in Indore costs around ₹40–55 lakh in, offering annual savings of up to ₹10 lakh and a payback period of 4–6 years. Learn about installation, maintenance, and ROI to make your solar investment worthwhile.