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The use of thin films and coatings obtained by Chemical Vapor Deposition (CVD) expands continuously. Nowadays it includes rather different technological applications such as tribological applications, microelectronics or biotechnologies. [Pg.45]

High-performance coatings in consumer and industrial applications Microelectronics. [Pg.618]

Martin-Pahna RJ, Torres-Costa V, Arroyo-Hemandez M, Manso M, Perez-Rigueiro J, Martinez-Duart JM (2004) Porous silicon multilayer stacks for optical biosensing applications. Microelectron J 35 45 8... [Pg.106]

Shacham-Diamand Y, Sverdlov Y (2000) Electrochemically deposited thin film alloys for ULSI and MEMS applications. Microelectron Eng 50 525-531... [Pg.220]

Arshak, K., Mihov, M., Arshak, A., McDonagh, D., and D. Sutton. 2004. Novel dry-developed focused ion beam lithography scheme for nanostructure applications. Microelectronic Engineering 73-74 144—151. [Pg.443]

Rasul JS. Chip on paper technology utilizing anisotropically conductive adhesive for smart label applications. Microelectronics Reliability. Jan 2004 Vol. 44(Issue 1). Holmberg M, Lenkkeri J, Lahti M, Wiik B. Reliability of Adhesive Joints in Dual Interface Smart Cards. Proc. 2nd Inti. IEEE Conf. on Polymers and Adhesives in Microelectronics and Photonics, Zalaegerszeg, Hungary. Jun. 2002 23-26. [Pg.288]

Scholer L, Lange B, Seibel K, Schafer H, Walder M, Friedrich N, Ehrhardt D, Schonfeld F, Zech G, Bohm M (2005) Monolithically integrated micro flow sensor for lab-on-chip applications. Microelectron Eng 78-79 164-170... [Pg.1174]

Major Applications Microelectronics,5 power transmission fluid, insulators for electronicdevices, photoresists,8 display device, imaging process,semiconductors, diesel fuel additives, 12 battery,i3 adhesive,w paints,is inks,i chalk,ii leather,is textiles,is dye synthesis,i5soil products Safety/Toxicity Carcinogenicity i. cytotoxicity, 3 genotoxicity,23 mutagenicity,24 tumorigenicity s... [Pg.256]

Defforge T, Coudron L, Menard O, Grimal V, Gautier G, Tran-Van F (2013) Copper electrodeposition into macroporous silicon arrays for through silicon via applications. Microelectron Eng 106 160-163... [Pg.279]

Pagonis DN et al (2006) Free-standing macroporous silicon membranes over a large cavity for filtering and lab-on-chip applications. Microelectron Eng 83 1421 Palavicini A et al (2013) Infrared transmission in porous silicon multilayers. Opt Photonic J 3 20-25... [Pg.710]

Fischer LM, Tenje M, Heiskanen AR, Masuda N, Castillo J, Bentien A, Emneus J, Jakob-sen MH, Boisen A. Gold cleaning methods for electrochemical detection applications. Microelectron Eng 2009 86(4—6) 1282—1285. [Pg.172]

Applications microelectronics, optics, clear coatings, semiconductors, dielectric materials, release materials, fiber optics, impiantabie medical devices, photolithography ... [Pg.592]

Hainberger, R., Bruck, R., Kataeva, N., Heer, R., KOck, A., Czepl, R, Kaiblinger, K., Pipelka, F., Bilenberg, B., 2010. Nanopatterned polymethylpentene substrates fabricated by injection molding for biophotonic applications. Microelectronic Engineering 87 (5-8), 821-823. [Pg.92]

Characterization of Direct Patterned Ag Circuits for RF Applications. Microelectronic Engineering, Vol. 87, pp. 379-382. [Pg.337]

M.G. Perichaud et al.. Reliability Evaluation of Adhesive Bonded SMT Components in Industrial Applications, Microelectronics Reliability, Vol 40, 2000, p 1227-1234... [Pg.274]

C. Y. Yin et al., The Effect of Reflow Process on the Contact Resistance and Reliability of Anisotropic Conductive Film Interconnection for Rip Chip on Rex Applications, Microelectronics Reliability, Vol 43, 2003, p 625-633... [Pg.275]

Fujii, T., 2002. PDMS-based microfluidic devices for biomedical applications. Microelectron. Eng. 61-62, 907-914. [Pg.359]


See other pages where Applications microelectronic is mentioned: [Pg.5]    [Pg.382]    [Pg.299]    [Pg.356]    [Pg.926]    [Pg.12]    [Pg.343]   
See also in sourсe #XX -- [ Pg.295 ]




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Microelectronic

Microelectronics

Microelectronics applications

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