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Enertis Applus+ Study: LONGi BC Modules Outperform TOPCon in LCOE, Driving Higher Commercial Value
Enertis Applus+ Study: LONGi BC Modules Outperform TOPCon in LCOE, Driving Higher Commercial Value

Malaysian Reserve

time2 days ago

  • Business
  • Malaysian Reserve

Enertis Applus+ Study: LONGi BC Modules Outperform TOPCon in LCOE, Driving Higher Commercial Value

SEVILLE, Spain, June 10, 2025 /PRNewswire/ — Global technical engineering consultancy Enertis Applus+ has released a comprehensive analysis of a 47MW single-axis tracker PV project in Seville, Spain, comparing the commercial performance of back-contact (BC) and tunnel oxide passivated contact (TOPCon) technologies. Energy Yield Assessments (EYA) were conducted based on module data provided by LONGi. The results confirm that LONGi's HPBC2.0 modules Hi-MO 9 significantly outperform TOPCon alternatives in power generation efficiency, cost control, and levelized cost of electricity (LCOE), providing robust technical validation for utility-scale solar deployments worldwide. Key Findings: 3.4% Higher Energy Yield per Watt: Hi-MO 9 generated 2,209 hours of first-year operation – 2.4%-3.4% more than TOPCon equivalents, directly increasing project revenue. Cost Parity Despite Premium Pricing: With Hi-MO 9 priced just 0.7¢/W higher than TOPCon, total CAPEX remained comparable through optimized system design and cost structures. Industry-Leading LCOE Reduction: Hi-MO 9 achieved an LCOE of €0.02706/kWh – 3.92-4.47% lower than TOPCon modules. Cost advantages stem from: Reduced fixed cost allocation per unit energy via higher yield; Variable cost compression through enhanced tracker compatibility and reduced electrical losses. The study confirms BC technology's unique capacity to maximize lifetime return on investment through synergistic 'efficiency gains + cost control' effects. By significantly lowering electricity production costs, Hi-MO 9 enables solar assets to compete more effectively in global energy markets while accelerating decarbonization efforts.

Enertis Applus+ Study: LONGi BC Modules Outperform TOPCon in LCOE, Driving Higher Commercial Value
Enertis Applus+ Study: LONGi BC Modules Outperform TOPCon in LCOE, Driving Higher Commercial Value

Korea Herald

time2 days ago

  • Business
  • Korea Herald

Enertis Applus+ Study: LONGi BC Modules Outperform TOPCon in LCOE, Driving Higher Commercial Value

SEVILLE, Spain, June 10, 2025 /PRNewswire/ -- Global technical engineering consultancy Enertis Applus+ has released a comprehensive analysis of a 47MW single-axis tracker PV project in Seville, Spain, comparing the commercial performance of back-contact (BC) and tunnel oxide passivated contact (TOPCon) technologies. Energy Yield Assessments (EYA) were conducted based on module data provided by LONGi. The results confirm that LONGi's HPBC2.0 modules Hi-MO 9 significantly outperform TOPCon alternatives in power generation efficiency, cost control, and levelized cost of electricity (LCOE), providing robust technical validation for utility-scale solar deployments worldwide. Key Findings: The study confirms BC technology's unique capacity to maximize lifetime return on investment through synergistic "efficiency gains + cost control" effects. By significantly lowering electricity production costs, Hi-MO 9 enables solar assets to compete more effectively in global energy markets while accelerating decarbonization efforts.

Enertis Applus+ Study: LONGi BC Modules Outperform TOPCon in LCOE, Driving Higher Commercial Value
Enertis Applus+ Study: LONGi BC Modules Outperform TOPCon in LCOE, Driving Higher Commercial Value

Cision Canada

time2 days ago

  • Business
  • Cision Canada

Enertis Applus+ Study: LONGi BC Modules Outperform TOPCon in LCOE, Driving Higher Commercial Value

SEVILLE, Spain, June 10, 2025 /CNW/ -- Global technical engineering consultancy Enertis Applus+ has released a comprehensive analysis of a 47MW single-axis tracker PV project in Seville, Spain, comparing the commercial performance of back-contact (BC) and tunnel oxide passivated contact (TOPCon) technologies. Energy Yield Assessments (EYA) were conducted based on module data provided by LONGi. The results confirm that LONGi's HPBC2.0 modules Hi-MO 9 significantly outperform TOPCon alternatives in power generation efficiency, cost control, and levelized cost of electricity (LCOE), providing robust technical validation for utility-scale solar deployments worldwide. Key Findings: 3.4% Higher Energy Yield per Watt: Hi-MO 9 generated 2,209 hours of first-year operation – 2.4%-3.4% more than TOPCon equivalents, directly increasing project revenue. Cost Parity Despite Premium Pricing: With Hi-MO 9 priced just 0.7¢/W higher than TOPCon, total CAPEX remained comparable through optimized system design and cost structures. Industry-Leading LCOE Reduction: Hi-MO 9 achieved an LCOE of €0.02706/kWh – 3.92-4.47% lower than TOPCon modules. Cost advantages stem from: Reduced fixed cost allocation per unit energy via higher yield; Variable cost compression through enhanced tracker compatibility and reduced electrical losses. The study confirms BC technology's unique capacity to maximize lifetime return on investment through synergistic "efficiency gains + cost control" effects. By significantly lowering electricity production costs, Hi-MO 9 enables solar assets to compete more effectively in global energy markets while accelerating decarbonization efforts.

LONGi BC Tech Gains Traction in Europe: 10GW Deployed, 20GW Pipeline
LONGi BC Tech Gains Traction in Europe: 10GW Deployed, 20GW Pipeline

Cision Canada

time16-05-2025

  • Business
  • Cision Canada

LONGi BC Tech Gains Traction in Europe: 10GW Deployed, 20GW Pipeline

MUNICH, Germany, May 16, 2025 /CNW/ -- On the last day of Intersolar Europe, LONGi, a global leader in solar innovation, announced a landmark achievement in its mission to redefine Europe's renewable energy landscape. With over 10GW of its back contact (BC) modules now deployed across the continent, Europe has emerged as the global epicenter for high-efficiency solar adoption. Supported by a robust 20GW order reserve pipeline, this milestone underscores LONGi's pivotal role in advancing BC technology as the definitive solution for utility-scale, commercial, and industrial solar projects. Europe's BC Leadership: A Catalyst for Global Change Since its European launch, LONGi's Hi-MO 9 module has revolutionized the region's solar market, combining 24.8% module efficiency and 670W power output to deliver unmatched energy yields across diverse climates—from the sun-soaked Mediterranean to Northern Europe's variable weather. The continent's rapid embrace of BC technology has propelled LONGi's global leadership, contributing to over 40GW in worldwide BC order reserves and reinforcing Europe's reputation as a trailblazer in sustainable energy innovation. The region's 10GW deployment milestone aligns with surging global demand, including 17GW of BC modules shipped in 2024 and 4.32GW delivered in Q1 2025. Europe's success story is rooted in Hi-MO 9's ability to outperform conventional technologies, achieving 8-10% higher energy yields while minimizing land use—a critical advantage for nations balancing ecological preservation with decarbonization goals. Recently, LONGi has secured a series of strategic agreements in Southern Europe, including over 580MW deployment of its Hi-MO 9 modules across multiple utility-scale solar projects. Hi-MO 9's back contact architecture eliminates front-grid shading losses, enabling near-limitless light absorption, and setting a new benchmark for real-world performance. Its future-proof design ensures compatibility with Europe's evolving energy infrastructure, from hybrid systems to smart grids, while the 30-year linear power warranty and industry-leading temperature coefficient (-0.29%/°C) provide developers with unparalleled bankability. Post-Intersolar Momentum: Europe's Renewable Horizon Building on its showcase at Intersolar Europe 2025, LONGi is accelerating the continent's BC revolution. The event highlighted Hi-MO 9's role in addressing grid modernization and land scarcity—challenges central to Europe's net-zero ambitions. With 20GW in order reserves, LONGi Europe is scaling production and logistics to meet demand, ensuring timely delivery for projects spanning Iberia's solar farms to Eastern Europe's industrial hubs. LONGi Europe remains committed to pioneering advancements that solidify solar as the backbone of the continent's energy mix. Upcoming initiatives include AI-driven optimization tools for BC systems and partnerships to advance circular-economy practices, ensuring every watt generated aligns with Europe's vision for a sustainable, equitable future.

LONGi BC Tech Gains Traction in Europe: 10GW Deployed, 20GW Pipeline
LONGi BC Tech Gains Traction in Europe: 10GW Deployed, 20GW Pipeline

Yahoo

time16-05-2025

  • Business
  • Yahoo

LONGi BC Tech Gains Traction in Europe: 10GW Deployed, 20GW Pipeline

MUNICH, Germany, May 16, 2025 /CNW/ -- On the last day of Intersolar Europe, LONGi, a global leader in solar innovation, announced a landmark achievement in its mission to redefine Europe's renewable energy landscape. With over 10GW of its back contact (BC) modules now deployed across the continent, Europe has emerged as the global epicenter for high-efficiency solar adoption. Supported by a robust 20GW order reserve pipeline, this milestone underscores LONGi's pivotal role in advancing BC technology as the definitive solution for utility-scale, commercial, and industrial solar projects. Europe's BC Leadership: A Catalyst for Global Change Since its European launch, LONGi's Hi-MO 9 module has revolutionized the region's solar market, combining 24.8% module efficiency and 670W power output to deliver unmatched energy yields across diverse climates—from the sun-soaked Mediterranean to Northern Europe's variable weather. The continent's rapid embrace of BC technology has propelled LONGi's global leadership, contributing to over 40GW in worldwide BC order reserves and reinforcing Europe's reputation as a trailblazer in sustainable energy innovation. The region's 10GW deployment milestone aligns with surging global demand, including 17GW of BC modules shipped in 2024 and 4.32GW delivered in Q1 2025. Europe's success story is rooted in Hi-MO 9's ability to outperform conventional technologies, achieving 8-10% higher energy yields while minimizing land use—a critical advantage for nations balancing ecological preservation with decarbonization goals. Recently, LONGi has secured a series of strategic agreements in Southern Europe, including over 580MW deployment of its Hi-MO 9 modules across multiple utility-scale solar projects. Hi-MO 9's back contact architecture eliminates front-grid shading losses, enabling near-limitless light absorption, and setting a new benchmark for real-world performance. Its future-proof design ensures compatibility with Europe's evolving energy infrastructure, from hybrid systems to smart grids, while the 30-year linear power warranty and industry-leading temperature coefficient (-0.29%/°C) provide developers with unparalleled bankability. Post-Intersolar Momentum: Europe's Renewable Horizon Building on its showcase at Intersolar Europe 2025, LONGi is accelerating the continent's BC revolution. The event highlighted Hi-MO 9's role in addressing grid modernization and land scarcity—challenges central to Europe's net-zero ambitions. With 20GW in order reserves, LONGi Europe is scaling production and logistics to meet demand, ensuring timely delivery for projects spanning Iberia's solar farms to Eastern Europe's industrial hubs. Looking Ahead: Innovation Without Compromise LONGi Europe remains committed to pioneering advancements that solidify solar as the backbone of the continent's energy mix. Upcoming initiatives include AI-driven optimization tools for BC systems and partnerships to advance circular-economy practices, ensuring every watt generated aligns with Europe's vision for a sustainable, equitable future. View original content to download multimedia: SOURCE LONGi View original content to download multimedia: Error in retrieving data Sign in to access your portfolio Error in retrieving data Error in retrieving data Error in retrieving data Error in retrieving data

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