ILTEKNO Solar, a proud 100% subsidiary of ILTEKNO, is a leading expert in Solar Power Plants and Energy Storage Systems, offering comprehensive turnkey solutions across the globe. With over 33 years of industry experience and operations spanning 4 continents and 24 countries, ILTEKNO Solar is your ideal partner for sustainable energy projects.
Our extensive expertise in EPC (Engineering, Procurement, and Construction) projects allows us to deliver customized solutions that meet the specific needs of our clients. We are actively involved in project development in key regions such as West Africa and CIS countries, bringing cutting-edge technologies and sustainable energy solutions to diverse markets.
ILTEKNO Solar provides a wide range of services, including:
We collaborate with renowned technology suppliers from Europe and Asia to provide reliable and innovative energy storage solutions tailored to the most specialized engineering requirements. Our long-term partnerships ensure access to the latest advancements in solar and energy storage technologies.
With a project portfolio exceeding 2000 MWe of installed capacity, ILTEKNO Solar has demonstrated its expertise in diverse regions, including Turkey, Iraq, United Kingdom, Serbia, Jordan, Egypt, Uzbekistan, Algeria, Tunisia, Ukraine, Georgia, Cyprus, Palestine, Pakistan, Guinea, Nigeria, Mauritania, Guyana, Bonaire, Barbados, and Bulgaria. Our ability to adapt to local requirements and deliver tailor-made solutions has made us a trusted name in the industry.
At ILTEKNO Solar, we are dedicated to creating a greener, more sustainable future. Whether you’re looking to build a solar power plant, integrate energy storage systems, or explore hybrid solutions, our team of experts is ready to help.
Contact us today to discuss your project and discover how ILTEKNO Solar can transform your energy needs into long-term success!
About 1.2 billion people in the world have no access to electricity. 46% of these people are living in rural areas where grid extension is financially ambitious because of high installation costs. Hybrid power systems have enormous potential in electrifying the subject areas with decentralized generation concept.
Electrical Power Stability
Reduced Fuel, Operating and Maintenance Costs
Stable Micro-Grid thru Intelligent Control System
Improved Operational Performance – Immediate Response to Industrial Electricity Demand
Reduced Greenhouse Gas Emissions
Fast Track Modular Systems
Increased Energy Independence
Reduced Risk of Fuel-Price Volatility
Highest Availability & Utmost Renewable Energy Usage
Electrical Power Stability
Generators are mostly used to deliver power to consumers in isolated remote locations or rural communities. At the same time generators provide power stability. On the other hand, integration of renewable energy sources, especially solar PV and wind turbines into generators, can significantly reduce fuel use, operating and maintenance costs. It also helps reducing Greenhouse Gas emissions.
Wherever generators are the main power supply, İLTEKNO Hybrid Solutions will help you to reduce your energy costs. Whether it’s used for industrial plants, cold storage houses, sea water desalination plants, irrigation systems, remote holiday resorts or many others: the ILTEKNO Hybrid Controller can serve individual needs.
The solar PV capex has fallen rapidly within recent years as increasing sales has encouraged large scale low cost manufacture of PV panels and research into producing more efficient and cheaper PV panels. This now makes PV a very promising energy source, as it is climate-friendly and now economically competitive. In addition, PV requires minimum maintenance and is easy to expand to meet growing energy needs. Although the high capex of solar power plants; payback period is between 5 to 6 years of the subject systems.
Energy engineered for every industry. Iltekno delivers customized, efficient, and reliable power solutions
designed to meet sector-specific challenges across industrial, commercial, and utility-scale environments.
The gas engines can be operated with various types of gas, such as natural gas, shale gas, mine gas, biogas,
landfill gas, sewage gas, and syngas. They are designed for maximum electrical and thermal efficiency.
Latest project updates, engineering insights, and industry news from Iltekno — showcasing our global energy
solutions, technological innovations, and the success stories behind the power plants we deliver around the world.
We deliver proven, efficient and customizable technologies—from gas engines and solar-hybrid systems to
automation and advanced control platforms—helping businesses operate cleaner, smarter and more efficiently.
Latest project updates, engineering insights, and industry news from Iltekno — showcasing our global energy
solutions, technological innovations, and the success stories behind the power plants we deliver around the world.
Cogeneration: A method of energy production that generates both electricity and heat within a single system.
Cogeneration System: A system that performs the cogeneration process.
Primary Energy Source: The fuel used in a cogeneration system (natural gas, biomass, coal, etc.).
Thermal Engine: An engine that converts the chemical energy of fuel into mechanical energy.
Generator: A device that converts mechanical energy into electricity.
Heat Recovery System: A system that makes waste heat from the thermal engine useful.
Heating: The process of meeting the heat requirements of buildings and processes.
Cooling: The process of meeting the cooling requirements of buildings and processes.
Efficiency: A measure of how effectively a system converts input into output.
Greenhouse Gas Emission: The release of gases into the atmosphere that cause climate change.
Energy Savings: Doing the same work using less energy.
Cost Savings: Saving money through energy savings.
Return on Investment (ROI): The profit gained from an investment.
Payback Period: The time it takes to recover the cost of an investment.
Government Incentives: Incentives provided by the government to businesses that invest in cogeneration systems.