Illustrative pictures on AI factories and super computers HPC centres
This album regroups a selection of illustrative pictures on the AI Factories initiative.
Employees of Bosch testing sensors on a testing conductor board
An employee of Bosch testing sensors on a testing conductor board
Data cables connected to computers
An employee of Bosch inserting a tray with sensors in a measuring station
A machine placing sensors in a measuring station
Inside a storage for 300mm silicon wafers in the SOITEC cleanroom
Inside a storage for 300mm silicon wafers in the SOITEC cleanroom
An operator handling a foup (container for silicon wafers) in the CEA-LETI cleanroom
An operator inside the LBB, a cable car designed specifically to connect two cleanrooms of the CEA-LETI in a continuous clean environment
An operator setting up parameters for the lithography of silicon wafers in the CEA-LETI cleanroom
Examination of a microchip with a dual focus ion beam electron microscope in the Material Analysis Lab
Examination of the finest chip structures with the aid of a transmission electron microscope
Examination of the finest chip structures with the aid of a transmission electron microscope
Operators in the cleanroom for the production of silicon wafers with a photolithography stepper
Operators in the cleanroom for the production of silicon wafers with a photolithography stepper
An operator in the cleanroom for the production of silicon wafers
An operator in the cleanroom for the production of silicon wafers
Cleanroom for the production of silicon wafers with a photolithography stepper
An operator in the cleanroom for the production of silicon wafers with a photolithography stepper
An operator in the cleanroom for the production of silicon wafers with a photolithography stepper
Operators in the cleanroom for the production of silicon wafers with a photolithography stepper
An operator in the cleanroom for the production of silicon wafers with a photolithography stepper
Operators in the cleanroom for the production of silicon wafers with a photolithography stepper
Cleanroom for the production of silicon wafers
Operators in the cleanroom for the production of silicon wafers
Operators in the cleanroom for the production of silicon wafers
Cleanroom for the production of silicon wafers with a photolithography stepper
Cleanroom for the production of silicon wafers with transport containers for silicon wafers
Cleanroom for the production of silicon wafers with a photolithography stepper
Cleanroom for the production of silicon wafers with transport containers for silicon wafers
An operator in the cleanroom for the production of silicon wafers
Operators in the cleanroom for the production of silicon wafers
Operators in the cleanroom for the production of silicon wafers
Subfab for the supply of the cleanroom with all the necessary media for the production of silicon wafer
An operator in the Subfab for the supply of the cleanroom with all the necessary media for the production of silicon wafer
An operator in the Subfab for the supply of the cleanroom with all the necessary media for the production of silicon wafer
An operator in the Subfab for the supply of the cleanroom with all the necessary media for the production of silicon wafer
An operator in the Subfab for the supply of the cleanroom with all the necessary media for the production of silicon wafer
An operator in the Subfab for the supply of the cleanroom with all the necessary media for the production of silicon wafer
An operator in the Subfab for the supply of the cleanroom with all the necessary media for the production of silicon wafer
The robotic Hand CLASH (Compliant Low-cost Antagonistic Servo Hand)
The mobile robot EDAN (EMG-controlled daily assistant)
The mobile robot EDAN (EMG-controlled daily assistant)
Berthold Bäuml, Researcher at the Institute of Robotics and Mechatronics of the German Aerospace Center (DLR), working with the humanoid robot Agile Justin
Berthold Bäuml, Researcher at the Institute of Robotics and Mechatronics of the German Aerospace Center (DLR), working with the humanoid robot Agile Justin
The humanoid robot Agile Justin
The humanoid robot Agile Justin
The humanoid robot Agile Justin
The humanoid robot Rollin' Justin
The "InStance" project of the Center for Human Technologies (CHT) Social cognition in human-robot interaction lab
The "InStance" project of the Center for Human Technologies (CHT) Social cognition in human-robot interaction lab
IT network cabling
IT network cabling
IT network cabling
IT network cabling
Network plug
Network plug
IT network cabling
Modem
IT network cabling
IT network cabling
IT network cabling
The "InStance" project of the Center for Human Technologies (CHT) Social cognition in human-robot interaction lab
Agnieszka Wykowska, Researcher at the Italian Institute of Technology, working on the "InStance" project of the Center for Human Technologies (CHT) Social cognition in human-robot interaction lab
Agnieszka Wykowska, Researcher at the Italian Institute of Technology, working on the "InStance" project of the Center for Human Technologies (CHT) Social cognition in human-robot interaction lab
Agnieszka Wykowska, Researcher at the Italian Institute of Technology, working on the "InStance" project of the Center for Human Technologies (CHT) Social cognition in human-robot interaction lab
The iCub Production Lab of the Center for Robotics and Intelligent Systems (CRIS)
The "Ergo-Lean" and “SOFIA” projects of the Center for Robotics and Intelligent Systems (CRIS) Human-Robot Interfaces and physical Interaction lab
The "Ergo-Lean" and “SOFIA” projects of the Center for Robotics and Intelligent Systems (CRIS) Human-Robot Interfaces and physical Interaction lab
The "Soft Hand" project of the Center for Robotics and Intelligent Systems (CRIS) SoftRobotics for Human Cooperation and Rehabilitation lab
The "Soft Hand" project of the Center for Robotics and Intelligent Systems (CRIS) SoftRobotics for Human Cooperation and Rehabilitation lab
A "ARI V2" robot manipulated by an engineer
A "ARI V2" robot manipulated by an engineer
A "ARI V2" robot manipulated by an engineer
A "ARI V2" robot face
A "ARI V2" robot manipulated by an engineer
A "ARI V2" robot manipulated by an engineer
The JRC Experimental Platform for Internet Contingencies is a large Cyber-Range initially developed, in collaboration with the U.S. Department of Homeland Security, to run realistic cyber-exercises targeting critical infrastructures. Today, the platform is used also to test and analyse large scale new emerging digital technologies and paradigms (such as Distributed Ledgers and Blockchain), next generation Internet protocols and related vulnerabilities, privacy enhancing technologies, effects of distributed cyber-attacks against next generation Industrial Control Systems, and techniques to mitigate cyber-threats.
The JRC Experimental Platform for Internet Contingencies is a large Cyber-Range initially developed, in collaboration with the U.S. Department of Homeland Security, to run realistic cyber-exercises targeting critical infrastructures. Today, the platform is used also to test and analyse large scale new emerging digital technologies and paradigms (such as Distributed Ledgers and Blockchain), next generation Internet protocols and related vulnerabilities, privacy enhancing technologies, effects of distributed cyber-attacks against next generation Industrial Control Systems, and techniques to mitigate cyber-threats.
The JRC Experimental Platform for Internet Contingencies is a large Cyber-Range initially developed, in collaboration with the U.S. Department of Homeland Security, to run realistic cyber-exercises targeting critical infrastructures. Today, the platform is used also to test and analyse large scale new emerging digital technologies and paradigms (such as Distributed Ledgers and Blockchain), next generation Internet protocols and related vulnerabilities, privacy enhancing technologies, effects of distributed cyber-attacks against next generation Industrial Control Systems, and techniques to mitigate cyber-threats.
The JRC Experimental Platform for Internet Contingencies is a large Cyber-Range initially developed, in collaboration with the U.S. Department of Homeland Security, to run realistic cyber-exercises targeting critical infrastructures. Today, the platform is used also to test and analyse large scale new emerging digital technologies and paradigms (such as Distributed Ledgers and Blockchain), next generation Internet protocols and related vulnerabilities, privacy enhancing technologies, effects of distributed cyber-attacks against next generation Industrial Control Systems, and techniques to mitigate cyber-threats.
The JRC Experimental Platform for Internet Contingencies is a large Cyber-Range initially developed, in collaboration with the U.S. Department of Homeland Security, to run realistic cyber-exercises targeting critical infrastructures. Today, the platform is used also to test and analyse large scale new emerging digital technologies and paradigms (such as Distributed Ledgers and Blockchain), next generation Internet protocols and related vulnerabilities, privacy enhancing technologies, effects of distributed cyber-attacks against next generation Industrial Control Systems, and techniques to mitigate cyber-threats.
The JRC Experimental Platform for Internet Contingencies is a large Cyber-Range initially developed, in collaboration with the U.S. Department of Homeland Security, to run realistic cyber-exercises targeting critical infrastructures. Today, the platform is used also to test and analyse large scale new emerging digital technologies and paradigms (such as Distributed Ledgers and Blockchain), next generation Internet protocols and related vulnerabilities, privacy enhancing technologies, effects of distributed cyber-attacks against next generation Industrial Control Systems, and techniques to mitigate cyber-threats.
The JRC Experimental Platform for Internet Contingencies is a large Cyber-Range initially developed, in collaboration with the U.S. Department of Homeland Security, to run realistic cyber-exercises targeting critical infrastructures. Today, the platform is used also to test and analyse large scale new emerging digital technologies and paradigms (such as Distributed Ledgers and Blockchain), next generation Internet protocols and related vulnerabilities, privacy enhancing technologies, effects of distributed cyber-attacks against next generation Industrial Control Systems, and techniques to mitigate cyber-threats.