For numerous devices such as OLEDs, solar cells or heated windows conducting paths are needed for collecting or distributing electricity on poorly or non-conducting surfaces. With established techniques the metallic paths can only be produced with a great deal of effort, incurring high costs for plant, equipment and energy. A new laser based process to manufacture conducting paths allows for writing narrow paths (down to 35m width) of Al, Cu, Ag or similar materials onto flat surfaces of glass (plain or coated with ITO) and silicon wafers by melting and vaporizing a metal foil through optical energy at high speeds of up to 2.5 m/s
Nowadays, the market for electrical vehicles grows due to government funded projects. Consequently, ...
Part 3: Additive ManufacturingInternational audienceIn the field of Laser Additive Manufacturing, mo...
With the increasing demand for integration of electronics embedded within devices there has been a c...
AbstractFor numerous devices such as OLEDs, solar cells or heated windows conducting paths are neede...
Large-scale OLEDs, solar cells or heated windows have in common that they all are in need of conduct...
In this work we present a laser-based metallization process, using commercial silver pastes, of pote...
Laser processes have penetrated into the crystalline silicon solar cell production market some time ...
The ever-growing demand for electric vehicles in the world and Europe will result in a significant s...
Glass is a very stable material at room temperature and has good resistance to gas, bacteria, and or...
In the field of Laser Additive Manufacturing, modern wire-based laser deposition techniques offer ad...
The Westinghouse Electric Corporation has undertaken to investigate, develop, and characterize laser...
The vast majority of today's solar modules are produced using screen printing of silver pastes, whic...
The selective deposition of metals on dielectric materials is widely used in the electronic industry...
In the field of laser additive manufacturing, modern hybrid technologies offer advantageous solution...
Recently, there has been an increasing development and progress of additive technologies, especiall...
Nowadays, the market for electrical vehicles grows due to government funded projects. Consequently, ...
Part 3: Additive ManufacturingInternational audienceIn the field of Laser Additive Manufacturing, mo...
With the increasing demand for integration of electronics embedded within devices there has been a c...
AbstractFor numerous devices such as OLEDs, solar cells or heated windows conducting paths are neede...
Large-scale OLEDs, solar cells or heated windows have in common that they all are in need of conduct...
In this work we present a laser-based metallization process, using commercial silver pastes, of pote...
Laser processes have penetrated into the crystalline silicon solar cell production market some time ...
The ever-growing demand for electric vehicles in the world and Europe will result in a significant s...
Glass is a very stable material at room temperature and has good resistance to gas, bacteria, and or...
In the field of Laser Additive Manufacturing, modern wire-based laser deposition techniques offer ad...
The Westinghouse Electric Corporation has undertaken to investigate, develop, and characterize laser...
The vast majority of today's solar modules are produced using screen printing of silver pastes, whic...
The selective deposition of metals on dielectric materials is widely used in the electronic industry...
In the field of laser additive manufacturing, modern hybrid technologies offer advantageous solution...
Recently, there has been an increasing development and progress of additive technologies, especiall...
Nowadays, the market for electrical vehicles grows due to government funded projects. Consequently, ...
Part 3: Additive ManufacturingInternational audienceIn the field of Laser Additive Manufacturing, mo...
With the increasing demand for integration of electronics embedded within devices there has been a c...