TL;DR
Kyrgyzstan has activated the first phase of its 1.9 GW solar project, adding 175 MW to its renewable energy capacity. This development makes it the country’s largest operational solar site, with full project completion expected by 2028.
Kyrgyzstan has officially commissioned the first phase of its 1.9 GW solar project, activating a 175 MW solar plant in the Issyk-Kul region. This milestone, announced by the government, represents the country’s largest operational solar capacity to date and is a key step toward diversifying its energy mix.
The first phase of the ROX Issyk-Kul solar power plant, developed by Vietnam’s Rox Energy Global and RECA LLC, began construction in July 2025 following a deal with Kyrgyzstan’s Ministry of Energy. The project includes a 175 MW solar array, a 110 kV high-voltage substation, and associated transmission infrastructure. The initial investment in this phase is reported at $130 million, involving over 250 Kyrgyz citizens in construction activities.
The entire project, with a planned capacity of 1.9 GW, is expected to be completed by the end of 2028, with a total investment of approximately $1.4 billion. Once finished, it will be the largest solar installation in Central Asia, according to Kyrgyz officials and PV Magazine sources.
Prior to this development, Kyrgyzstan had deployed only 100 MW of solar capacity by the end of 2025, up from zero at the end of 2024, with a 100 MW facility inaugurated last December in the northern Chui region. Several other solar projects are in progress, including a 300 MW project developed in partnership with Hungary’s Electron Holding and a 250 MW project with Chinese investors, targeted for completion by 2027.
Impact of the 175 MW Solar Activation on Kyrgyzstan’s Energy Sector
The commissioning of this 175 MW solar plant marks a major milestone for Kyrgyzstan’s renewable energy sector, significantly increasing the country’s clean energy capacity and reducing reliance on imported fossil fuels. It demonstrates the country’s commitment to diversifying its energy sources and aligns with regional efforts to expand renewable infrastructure. The project also has economic implications, creating jobs and boosting local development in the Issyk-Kul region.

ECO WORTHY 10000W Output Complete Off-Grid Solar Panel Kit for Home| 10KW 120V/240V Output Split Phase Inverter| 48V 314Ah16.1kWh High Capacity Energy Storage| 2950W Solar Panel PV| Whole House System
- Power Output: 10kW with split-phase support
- Solar Panels: 5 × 590W panels, 2950W capacity
- Energy Storage: 48V 314Ah LiFePO₄ battery
As an affiliate, we earn on qualifying purchases.
As an affiliate, we earn on qualifying purchases.
Kyrgyzstan’s Renewable Energy Expansion Timeline and Future Projects
Prior to this milestone, Kyrgyzstan had minimal solar capacity, with only 100 MW deployed by the end of 2025. The country’s first large-scale solar plant was inaugurated in December 2025, and several projects are currently under development, including a 300 MW solar project with Hungary’s Electron Holding and a 250 MW project with Chinese firms. The overall goal is to reach 1.9 GW of solar capacity by 2028, supported by increasing investment and regional cooperation.
“This is a historic step for Kyrgyzstan, marking our largest operational solar project to date and a significant move toward sustainable energy independence.”
— an anonymous Kyrgyz government official

SUMRY Hybrid Solar Inverter, 4000W DC24V to AC120V Pure Sine Wave Power
- Glass Cover Design: Tempered glass with LCD and touch buttons
- High Power Output: 4000W rated, 8000W peak power
- Pure Sine Wave: Stable, interference-free power output
As an affiliate, we earn on qualifying purchases.
As an affiliate, we earn on qualifying purchases.
Remaining Challenges and Uncertainties in Project Completion
It is not yet clear when the remaining phases of the 1.9 GW project will be completed or how funding will be secured for the full development. Details about operational integration, grid capacity, and regional cooperation are still emerging, and potential delays or technical issues are possible.

Electrical Power Substations Engineering: A Practical Guide to Design, Protection, Automation, and Smart Grid Applications
As an affiliate, we earn on qualifying purchases.
As an affiliate, we earn on qualifying purchases.
Next Steps Toward Full 1.9 GW Solar Capacity
The focus now shifts to completing the remaining phases of the project by 2028, with ongoing construction and investment efforts. Monitoring how the project integrates into Kyrgyzstan’s national grid and assessing its impact on energy prices and regional cooperation will be critical in the coming months.

30FT 10AWG Solar Panel Extension Cable, Bateria Power 6mm² Solar Extension Cable Wire with Female & Male Waterproof Connectors for RV, Photovoltaic Systems
- Set Includes Two 30FT Cables: Black and red, waterproof connectors, zip ties
- 10AWG Tinned Copper Wire: Enhanced conductivity and oxidation resistance
- IP68 Waterproof Protection: Suitable for outdoor use in harsh conditions
As an affiliate, we earn on qualifying purchases.
As an affiliate, we earn on qualifying purchases.
Key Questions
When will the entire 1.9 GW solar project be completed?
The project is scheduled for completion by the end of 2028, with phased commissioning expected over the next two years.
How much of Kyrgyzstan’s energy will this solar plant supply?
The 175 MW plant supplies a significant portion of Kyrgyzstan’s renewable energy, with the full 1.9 GW project expected to substantially increase the country’s clean energy capacity.
What are the economic benefits of this project?
The project is creating over 250 local jobs during construction and is expected to boost regional development and reduce energy import costs.
Are there any environmental concerns associated with the project?
As a solar project, environmental concerns are minimal, primarily related to land use and construction impacts, which are being managed according to standard practices.
What are the next major developments in Kyrgyzstan’s renewable energy sector?
Further projects include a 300 MW solar development with Hungary’s Electron Holding and a 250 MW project with Chinese investors, both aiming for completion by 2027.
Source: PV Magazine