Ultrabroadband light absorbing Fe/polymer flexible metamaterial for soft opto-mechanical devices
Ultrabroadband light absorbers are attracting increasing interest for applications in energy harvesting, photodetection, self-regulated devices or soft robotics.
Engineering Tissue Barrier Models on Hydrogel Microfluidic Platforms
Tissue barriers play a crucial role in human physiology by establishing tissue compartmentalization and regulating organ homeostasis.
Gut-on-a-chip: Mimicking and monitoring the human intestine
Over the last few years, the intestine has been extensively studied using in vitro microfluidic systems, commonly known as gut-on-a-chip (GOC) devices.
i-ELPHOS: Integrated Electrophotonic Sensor
https://www.imb-cnm.csic.es/ca/node/558i-ELPHOS: Integrated Electrophotonic Sensor
The i-ELPHOS project has received funding from the European Union's Horizon 2020 research and innovation programme under Marie Skłodowska-Curie grant agreement No. 801342 (Tecniospring INDUSTRY) and the Government of Catalonia's Agency for Business Competitiveness (ACCIÓ).
Laboratori de Caracterització Elèctrica de Dispositius de Potència
El Laboratori de Caracterització Elèctrica de Dispositius de Potència cobreix les principals necessitats del grup de recerca de Dispositius i Sistemes de Potència de l’IMB-CNM en termes d’avaluació elèctrica dels dispositius de potència desenvolupats a la Sala B
Power Devices Electrical Characterization Laboratory
The Power Devices Electrical Characterization Laboratory covers the main needs of the Power Devices and Systems research group of IMB-CNM in terms of electrical assessment of the power devices developed in the Clean Room.
Laboratorio de Caracterización Eléctrica de Dispositivos de Potencia
El Laboratorio de Caracterización Eléctrica de Dispositivos de Potencia cubre las principales necesidades del grupo de investigación de Dispositivos y Sistemas de Potencia del IMB-CNM en términos de evaluación eléctrica de los dispositivos de poten
Flux de disseny del projecte DRAC
La lògica i la síntesi física darrere del projecte DRAC s’explica ara a través d’un flux de disseny, inclosos els passos dels processadors basats en l’arquitectura RISC-V.
Design flow of the DRAC project
The logic and physical synthesis behind the DRAC project is explained now through a design flow, including the steps of the processors based on the RISC-V architecture.