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Completed HORIZON European Commission

Piloting novel cost-competitive bifacial IBC technology for vertical integrated European GW scale PV production value chain

€17M EUR

Funder European Commission
Recipient Organization International Solar Energy Researchcenter Konstanz Isc Ev
Country Germany
Start Date Nov 01, 2022
End Date Oct 31, 2025
Duration 1,095 days
Number of Grantees 22
Roles Participant; Coordinator; Associated Partner; Third Party
Data Source European Commission
Grant ID 101084259
Grant Description

The IBC4EU project will develop cost effective and sustainable bifacial interdigitated back contact (IBC) solar cell and module technology on pilot line level.

Based on business cases from the whole value chain – ingot, wafer, cell and module – we will demonstrate that IBC technology is the most promising choice for a fast launch of GW scale PV production in the EU.

Cost competitiveness not only against future heterojunction (HJT) and Tunnel oxide passivated contact (TOPCon) technology but also present-day PERC and PERC technology will be demonstrated for the polyZEBRA and POLO IBC cell designs.

To reach this goal, cost-effective production equipment will be developed and eco-design approaches will be employed to reduce the need for scarce materials such as silicon metal and silver and to maintain indium-free design.

Pilot lines, interlinked on all levels of production, will help to reach GW scale mass production not only on cell but also on ingot, wafer and module level until 2030. The advantage of the chosen IBC technology is that it is based on existing production technology.

Thus, the project will focus on improving existing processing steps on already available equipment, introducing some novel equipment to reduce the cost of ownership, and employing Industry 4.0 solutions for predictive maintenance, quality control and traceability.

The feasibility of the chosen technologies and the innovative products will be evaluated by business-related parameters as well as performance characteristics which will be tested according to the relevant standards and in demo sites.

The environmental impact will be monitored closely and eco-design approaches will be used to reduce the CO2 footprint, increase the resource efficiency and recyclability and improve in terms of circularity potential.

All Grantees

Wirtschaft Und Infrastruktur Gmbh & Co Planungs Kg; Copprint Technologies Ltd; Icares Consulting; International Solar Energy Researchcenter Konstanz Isc Ev; Nederlandse Organisatie Voor Toegepast Natuurwetenschappelijk Onderzoek Tno; Norsun As; Lpkf Laser & Electronics Se; Energyra Europe Bv; Commissariat A L Energie Atomique Et Aux Energies Alternatives; Interuniversitair Micro-Electronica Centrum; Rena Gmbh; Toyo Aluminium K.K.; Kalyon Gunes Teknolojileri Uretim As; Uab Valoe Cells; Institut Fur Solarenergieforschung Gmbh; Highline Technology Gmbh; Futurasun S.R.L.; Perspektyviniu Technologiju Taikomuju Tyrimu Institutas; Luxchemtech Gmbh; Valoe Oyj; Becquerel Institute France; Centrotherm International Ag

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