Technical PMMA
PMMA for electronics and microelectronics
PMMA for electronics and microelectronics: electron-beam lithography, dielectrics, integrated optics, microfluidics, prototypes and precision transparent components. PMMA for electronics and microelectronics must be treated as an engineering design subject: it is not enough to select a standard semi-finished material; material, geometry, thickness, transparency, stability and final function have to be controlled together.
Technical role
PMMA for electronics and microelectronics must be treated as an engineering design subject: it is not enough to select a standard semi-finished material; material, geometry, thickness, transparency, stability and final function have to be controlled together.
Critical variables
For pmma for electronics and microelectronics, the decisive variables include polymerization history, internal stress, filler dispersion, heat sensitivity, optical absorption, surface finish and repeatability. Any one of them can change the quality and reliability of the finished component.
Process route, machining and finishing
The manufacturing route has to connect polymer development, block or casting production, CAD/CAM toolpaths, CNC manufacturing, turning, polishing, bonding or lamination when needed, and final microscopic inspection.
Relevant applications
- non-standard transparent components
- PMMA blocks, castings and special geometries
- technical prototypes and small batches
- CNC parts with manual finishing
- microscopic inspection and part traceability
Where LMS contributes
LMS can handle pmma for electronics and microelectronics as a complete technical project: material research, in-house production, precision machining, manual finishing and traceability part by part and batch by batch.
Technical references and literature
- Technical source 1: DOI 10.1016/j.mee.2020.111238
- Technical source 2: DOI 10.1016/j.tsf.2006.10.121
- Technical source 3: DOI 10.1016/j.orgel.2009.09.007
- Technical source 4: DOI 10.1021/acsomega.7b00552
- Technical source 5: DOI 10.1016/j.matlet.2006.06.022
- Technical source 6: https://pmc.ncbi.nlm.nih.gov/articles/PMC7570108/