The report presented below is to appear in ''Electrochemistry at the Nanoscale'', Patrik Schmuki, Ed. Springer-Verlag, (ca. 2005). The history of the LIGA process, used for fabricating dimensional precise structures for microsystem applications, is briefly reviewed, as are the basic elements of the technology. The principal focus however, is on the unique aspects of the electrochemistry of LIGA through-mask metal deposition and the generation of the fine and uniform microstructures necessary to ensure proper functionality of LIGA components. We draw from both previously published work by external researchers in the field as well as from published and unpublished studies from within Sandia
UV-LIGA is a versatile technique which allows the fabrication of metal parts with high aspect ratio ...
This video, created by Support Center for Microsystems Education (SCME), provides an overvi...
UV-LIGA is a versatile technique which allows the fabrication of metal parts with high aspect ratio ...
The steps of the LIGA process (deep-etch synchrotron X-ray radiation lithography, electroforming and...
Abstract-The LIGA technique which is being developed at the Research Center Karlsruhe offers the pos...
RevueInternational audienceThe by far leading technology for manufacturing MEMS devices is Si-microm...
Research work in 1993 was concentrated on the further development of microsystem techniques with spe...
Electrochemical deposition is capable of producing high strength Ni- based alloys for micrometer to ...
The LIGA microfabrication process can be used to produce high aspect ratio metal microstructures wit...
The manufacturing of metallic microstructures by electroforming is an important step within the LIGA...
The LIGA technique (German acronym for lithographie, galvanoformung, abformung) is a powerful tool f...
LIGA fabricated materials and components exhibit several processing issues affecting their metallurg...
Micro-components have become increasingly important to meet the demand of miniaturization and have a...
The LIGA technique (German acronym for lithographie, galvanoformung, abformung) is a powerful tool f...
Micro-components have become increasingly important to meet the demand of miniaturization and have a...
UV-LIGA is a versatile technique which allows the fabrication of metal parts with high aspect ratio ...
This video, created by Support Center for Microsystems Education (SCME), provides an overvi...
UV-LIGA is a versatile technique which allows the fabrication of metal parts with high aspect ratio ...
The steps of the LIGA process (deep-etch synchrotron X-ray radiation lithography, electroforming and...
Abstract-The LIGA technique which is being developed at the Research Center Karlsruhe offers the pos...
RevueInternational audienceThe by far leading technology for manufacturing MEMS devices is Si-microm...
Research work in 1993 was concentrated on the further development of microsystem techniques with spe...
Electrochemical deposition is capable of producing high strength Ni- based alloys for micrometer to ...
The LIGA microfabrication process can be used to produce high aspect ratio metal microstructures wit...
The manufacturing of metallic microstructures by electroforming is an important step within the LIGA...
The LIGA technique (German acronym for lithographie, galvanoformung, abformung) is a powerful tool f...
LIGA fabricated materials and components exhibit several processing issues affecting their metallurg...
Micro-components have become increasingly important to meet the demand of miniaturization and have a...
The LIGA technique (German acronym for lithographie, galvanoformung, abformung) is a powerful tool f...
Micro-components have become increasingly important to meet the demand of miniaturization and have a...
UV-LIGA is a versatile technique which allows the fabrication of metal parts with high aspect ratio ...
This video, created by Support Center for Microsystems Education (SCME), provides an overvi...
UV-LIGA is a versatile technique which allows the fabrication of metal parts with high aspect ratio ...