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H2020

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HORIZON-CL5-2021-D3-02-10
HORIZON-CL5-2021-D3-02-10: Demonstration of advanced Power Electronics for application in the energy sector
ExpectedOutcome:Wide Bandgap-based (WBG) semiconductors such as Silicon Carbide (SiC) enable higher power density, operation voltages, temperatures, and frequencies while reducing heat dissipation of power electronics. This enables the development of more efficient and smaller size converter stations affecting considerably on grid distribution generally and logistics, cost, etc. and the deployment of the offshore energy grid. Right now SiC allows for sufficient reduction on converter footprint, but it is far too expensive, and its cost has a negative impact on overall system cost.
Sólo fondo perdido 0 €
Europeo
Esta convocatoria está cerrada Esta línea ya está cerrada por lo que no puedes aplicar. Cerró el pasado día 05-01-2022.
Se espera una próxima convocatoria para esta ayuda, aún no está clara la fecha exacta de inicio de convocatoria.
Por suerte, hemos conseguido la lista de proyectos financiados!
Presentación: Consorcio Consorcio: Esta ayuda está diseñada para aplicar a ella en formato consorcio..
Esta ayuda financia Proyectos:

ExpectedOutcome:Wide Bandgap-based (WBG) semiconductors such as Silicon Carbide (SiC) enable higher power density, operation voltages, temperatures, and frequencies while reducing heat dissipation of power electronics. This enables the development of more efficient and smaller size converter stations affecting considerably on grid distribution generally and logistics, cost, etc. and the deployment of the offshore energy grid. Right now SiC allows for sufficient reduction on converter footprint, but it is far too expensive, and its cost has a negative impact on overall system cost.

Project results are expected to contribute to all of the following expected outcomes:

Production, test and validation of WBG-based switching semiconductors such as Silicon Carbide (SiC) for HVDC – MVDC converter applications in converter stations.Reduced size of components and equipment for offshore / onshore applications.Reduced cost of WBG-based semiconductors such as Silicon Carbide (SiC).
Scope:The activities are intended to produce, test and validate WBG-based based switching semiconductors such as Silicon Carbide (SiC) for converter station application.

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ExpectedOutcome:Wide Bandgap-based (WBG) semiconductors such as Silicon Carbide (SiC) enable higher power density, operation voltages, temperatures, and frequencies while reducing heat dissipation of power electronics. This enables the development of more efficient and smaller size converter stations affecting considerably on grid distribution generally and logistics, cost, etc. and the deployment of the offshore energy grid. Right now SiC allows for sufficient reduction on converter footprint, but it is far too expensive, and its cost has a negative impact on overall system cost.

Project results are expected to contribute to all of the following expected outcomes:

Production, test and validation of WBG-based switching semiconductors such as Silicon Carbide (SiC) for HVDC – MVDC converter applications in converter stations.Reduced size of components and equipment for offshore / onshore applications.Reduced cost of WBG-based semiconductors such as Silicon Carbide (SiC).
Scope:The activities are intended to produce, test and validate WBG-based based switching semiconductors such as Silicon Carbide (SiC) for converter station application.

The activities include, but are not limited to:

Production of SiC based semiconductors for HVDC – MVDC converter applications (example for HVDC: MMC cells with SiC 3.3 kV and above, 1,5 kA and above with optimal increased switching frequency to reduce losses).Converter board design and production (power and control parts installation and soldering of all components, hardware and software testing, etc.).Simulation and analysis of the impact of the actual passive components used in WBG components circuitry in the above mentioned conditions; development of strategies and innovative techniques to upgrade them for better adaptation to the afore-mentioned working conditions.Analysis of the impact of fast transients from power electronics on other electrical components that were not originally designed to endure such stresses.Series modules assembly for converter application.Simulation and real time testing and validation of the converter with WBG-based switching semiconductor.Technical-economic assessment of the benefits provided by WBG-based compared to Silicon-based switching semiconductor of converters. The consortium is expected to involve the European Commission and ECSEL JU where considered relevant.

The selected projects are expected to contribute to relevant BRIDGE[1] activities.


Specific Topic Conditions:Activities are expected to achieve TRL 5-6 by the end of the project – see General Annex B.




Cross-cutting Priorities:Digital AgendaArtificial Intelligence


[1]https://www.h2020-bridge.eu/

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Temáticas Obligatorias del proyecto: Temática principal:

Características del consorcio

Ámbito Europeo : La ayuda es de ámbito europeo, puede aplicar a esta linea cualquier empresa que forme parte de la Comunidad Europea.
Tipo y tamaño de organizaciones: El diseño de consorcio necesario para la tramitación de esta ayuda necesita de:

Características del Proyecto

Requisitos de diseño: Duración:
Requisitos técnicos: ExpectedOutcome:Wide Bandgap-based (WBG) semiconductors such as Silicon Carbide (SiC) enable higher power density, operation voltages, temperatures, and frequencies while reducing heat dissipation of power electronics. This enables the development of more efficient and smaller size converter stations affecting considerably on grid distribution generally and logistics, cost, etc. and the deployment of the offshore energy grid. Right now SiC allows for sufficient reduction on converter footprint, but it is far too expensive, and its cost has a negative impact on overall system cost. ExpectedOutcome:Wide Bandgap-based (WBG) semiconductors such as Silicon Carbide (SiC) enable higher power density, operation voltages, temperatures, and frequencies while reducing heat dissipation of power electronics. This enables the development of more efficient and smaller size converter stations affecting considerably on grid distribution generally and logistics, cost, etc. and the deployment of the offshore energy grid. Right now SiC allows for sufficient reduction on converter footprint, but it is far too expensive, and its cost has a negative impact on overall system cost.
¿Quieres ejemplos? Puedes consultar aquí los últimos proyectos conocidos financiados por esta línea, sus tecnologías, sus presupuestos y sus compañías.
Capítulos financiables: Los capítulos de gastos financiables para esta línea son:
Personnel costs.
Subcontracting costs.
Purchase costs.
Other cost categories.
Indirect costs.
Madurez tecnológica: La tramitación de esta ayuda requiere de un nivel tecnológico mínimo en el proyecto de TRL 6:. Representa un paso importante en demostrar la madurez de una tecnología. Se construye un prototipo de alta fidelidad que aborda adecuadamente las cuestiones críticas de escala, que opera en un entorno relevante, y que debe ser a su vez una buena representación del entorno operativo real. + info.
TRL esperado:

Características de la financiación

Intensidad de la ayuda: Sólo fondo perdido + info
Fondo perdido:
0% 25% 50% 75% 100%
Para el presupuesto subvencionable la intensidad de la ayuda en formato fondo perdido podrá alcanzar desde un 70% hasta un 100%.
The funding rate for IA projects is 70 % for profit-making legal entities and 100 % for non-profit legal entities. The funding rate for IA projects is 70 % for profit-making legal entities and 100 % for non-profit legal entities.
Garantías:
No exige Garantías
No existen condiciones financieras para el beneficiario.

Información adicional de la convocatoria

Efecto incentivador: Esta ayuda no tiene efecto incentivador. + info.
Respuesta Organismo: Se calcula que aproximadamente, la respuesta del organismo una vez tramitada la ayuda es de:
Meses de respuesta:
Muy Competitiva:
No Competitiva Competitiva Muy Competitiva
No conocemos el presupuesto total de la línea
Minimis: Esta línea de financiación NO considera una “ayuda de minimis”. Puedes consultar la normativa aquí.

Otras ventajas

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