G.H. Chapman, "Space: the Ideal Place to Manufacture Microchips", Proc. of Inter. Space Development Conf. '91, San Antonio, Texas, 25-32 (1991). sdc-91w.pdf 97KB The electronics industry is dependent ...
Recently, a group led by Prof. Lu Yao from the Dalian Institute of Chemical Physics (DICP) of the Chinese Academy of Sciences, in collaboration with Prof. Zhang Weijia from Fudan University, proposed ...
Femtosecond (fs) laser direct writing (FLDW) is a laser micro/nano manufacturing technology that can focus the laser pulses on the surface or inside the material, causing local changes in material ...
Moore's Law, which says that the number of transistors on a computer chip will double every two years or so, has managed to hold true for decades. But we're starting to bump up against the physical ...
The electronics industry is trending toward the microscale. Consumer devices keep getting smaller, and increasingly popular medical applications require tiny form factors. Addressing those ...
Photolithography is one of the most important and easiest methods of microfabrication, and is used to create detailed patterns in a material. In this method, a shape or pattern can be etched through ...
The controlled coiling of a tiny jet of polymer solution allows the construction of microstructures that resemble the familiar clay pottery of the macro world. The ability to make ever-smaller ...
Bioprinting has been defined as the deposition of biological materials together with living cells layer-by-layer using computer-aided transfer processes. It is an additive manufacturing technology.
Medical device manufacturers need to catch up on the rapidly evolving field of microfabrication to determine which processes and components are right for their product. Bill Evans and Robert Mehalso ...
Boston Micro Fabrication uses projection micro stereolithography (PµSL) for microfabrication in 3D printing. This digital micro-display technology provides stereolithography masks that work as virtual ...
The Microfabrication Core Lab provides resources for micro- and nano-scaled research and development of solid state electronics, microelectromechanical systems (MEMS), lab-on-a-chip, and microsystems ...
The electrification across applications in automotive, defense and aerospace industries is pushing the limits of existing thermal management systems, and future designs will require new engineering ...