LIGA DATA

Brand Owner Address Description
LIGADATA Ligadata, Inc. #13A-257 855 El Camino Real Palo Alto CA 94301 LIGA DATA;Software as a Service (SaaS) services, namely, providing computer software for big data analytics and database management; Software as a Service (SaaS) services, namely, providing computer software for extracting, cleansing, standardizing, and distributing data; Software as a Service (SaaS) services, namely, providing computer software for loading, viewing, searching and browsing data from multiple sources and for creating searchable databases of information and data; Software as a Service (SaaS) services, namely, providing computer software for monitoring real-time online business transactions to detect and prevent data and identity fraud and unauthorized trading activity; computer software development; computer software design and updating;
 

Where the owner name is not linked, that owner no longer owns the brand

   
Technical Examples
  1. Performance and reliability of microelectromechanical system (MEMS) components enhanced dramatically through the incorporation of protective thin film coatings. Current-generation MEMS devices prepared by the LIGA technique employ transition metals such as Ni, Cu, Fe, or alloys thereof, and hence lack stability in oxidizing, corrosive, and/or high temperature environments. Fabrication of a superhard, self-lubricating coating based on a ternary boride compound AlMgB14 is described in this letter as a potential breakthrough in protective coating technology for LIGA microdevices. Nanoindentation tests show that hardness of AlMgB14 films prepared by pulsed laser deposition ranges from 45 GPa to 51 GPa, when deposited at room temperature and 573 K, respectively. Extremely low friction coefficients of 0.04-0.05, which are thought to result from a self-lubricating effect, have also been confirmed by nanoscratch tests on the AlMgB14 films. Transmission electron microscopy studies show that the as-deposited films are amorphous, regardless of substrate temperature; however, analysis of FTIR spectra suggests that the higher substrate temperature facilitates formation of the B12 icosahedral framework, therefore leading to the higher hardness.