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Monolithic silicon temperature sensors challenge thermistors, RTDs, and thermocouplesGOODENOUGH, R.Electronic design. 1997, Vol 45, Num 22, pp 54-64, issn 0013-4872, 5 p.Article

Full-wave analysis and design of a new double-sided branch-line coupler and its complementary structureCHUNG-YI LEE; ITOH, T.IEEE transactions on microwave theory and techniques. 1995, Vol 43, Num 8, pp 1895-1901, issn 0018-9480Article

10-Gbit/s Wireless Communications Technology Using Sub-terahertz WavesHIRATA, Akihiko; NAGATSUMA, Tadao; NISHIKAWA, Hiroshi et al.Proceedings of SPIE, the International Society for Optical Engineering. 2007, pp 67720B.1-67720B.11, issn 0277-786X, isbn 978-0-8194-6932-8, 1VolConference Paper

Combining indirect microfluidic systems with polymer components manufactured from photocurable perfluoropolyethersRAPP, Bastian E; WORGULL, M.Symposium on design, test, integration and packaging of MEMS/MOEMS. 2010, pp 299-300, isbn 978-2-35500-011-9, 1Vol, 2 p.Conference Paper

An integrable nozzle for monolithic microfluidic devicesJAFAR HAJI BABAEI; CHEE YEE KWOK; RUEY SHING HUANG et al.Sensors and actuators. A, Physical. 1998, Vol 65, Num 2-3, pp 221-227, issn 0924-4247Article

Optoelectronic phase tracking and electrooptic sampling of free-running microwave signals up to 20 GHz in a laser-diode-based systemHSIAO-HUA WU; GONG-RU LIN; CI-LING PAN et al.IEEE photonics technology letters. 1995, Vol 7, Num 6, pp 670-672, issn 1041-1135Article

Special Issue on the 2011 IEEE International Solid-State Circuits ConferenceIEEE journal of solid-state circuits. 2012, Vol 47, Num 1, issn 0018-9200, 354 p.Conference Proceedings

Méthodologie de conception des circuits monolithiques hyperfréquences sur Arséniure de Gallium = Design methodology of AsGa microwave monolithic integrated circuitsDUEME, P; APERCE, G.Onde électrique. 1989, Vol 69, Num 2, pp 22-28, issn 0030-2430, 7 p.Article

A MONOLITHIC LEAD SULFIDE-SILICON MOS INTEGRATED-CIRCUIT STRUCTUREJHABVALA MD; BARRETT JR.1982; IEEE TRANSACTIONS ON ELECTRON DEVICES; ISSN 0018-9383; USA; DA. 1982; VOL. 29; NO 12; PP. 1900-1905; BIBL. 9 REF.Article

MMIC Technology for Spectroscopy ApplicationsKALLFASS, Ingmar; TESSMANN, Axel; HUELSMANN, A et al.Proceedings of SPIE, the International Society for Optical Engineering. 2010, Vol 7837, issn 0277-786X, isbn 978-0-8194-8355-3, 783703.1-783703.11Conference Paper

Millimeter-Wave Monolithic Integrated Circuits for Imaging and Remote Sensing at 140, 200 and 300 GHzKALLFASS, Ingmar; TESSMANN, Axel; LEUTHER, Arnulf et al.Proceedings of SPIE, the International Society for Optical Engineering. 2009, Vol 7485, issn 0277-786X, isbn 978-0-8194-7791-0 0-8194-7791-5, 1Vol, 74850L.1-74850L.10Conference Paper

Microstructures of the monomorph piezoelectric ceramic actuators with functional gradientsXINHUA ZHU; JIANMIN ZHU; SHUNHUA ZHOU et al.Sensors and actuators. A, Physical. 1999, Vol 74, Num 1-3, pp 198-202, issn 0924-4247Conference Paper

A high-speed fuzzy co-processor implemented in analogue/digital techniqueGUO, S; PETERS, L.Computers & electrical engineering. 1998, Vol 24, Num 1-2, pp 89-98, issn 0045-7906Article

Novel techniques for millimeter-wave packagesHERMAN, M. I; LEE, K. A; KOLAWA, E. A et al.IEEE transactions on microwave theory and techniques. 1995, Vol 43, Num 7, pp 1516-1523, issn 0018-9480, 1Article

The design of active floating positive and negative inductors in NMIC technologyEL KHOURY, S.IEEE microwave and guided wave letters. 1995, Vol 5, Num 10, pp 321-323, issn 1051-8207Article

MMIC transmitter for a commercial search and rescue radar transponderVINCENT, J. B; VAN DER MERWE, D. G.IEEE transactions on microwave theory and techniques. 1995, Vol 43, Num 7, pp 1699-1702, issn 0018-9480, 2Article

Micromechanics compatible with an 0.8 μm CMOS processBIEBL, M; SCHEITER, T; HIEROLD, C et al.Sensors and actuators. A, Physical. 1995, Vol 47, Num 1-3, pp 593-597, issn 0924-4247Conference Paper

Experimental demonstration of a 16-channel DFB laser array based on nanoimprint technologyJIANYI ZHAO; XIN CHEN; NING ZHOU et al.Semiconductor science and technology. 2013, Vol 28, Num 5, issn 0268-1242, 055015.1-055015.6Article

Monolithic fabrication of millimeter-scale machinesSREETHARAN, P. S; WHITNEY, J. P; STRAUSS, M. D et al.Journal of micromechanics and microengineering (Print). 2012, Vol 22, Num 5, issn 0960-1317, 055027.1-055027.6Article

MSM waveguide photodetectors optimized for monolithic integration with high electron mobility transistorsLEARY, M. H; BALLANTYNE, J. M.Journal of lightwave technology. 1995, Vol 13, Num 7, pp 1514-1520, issn 0733-8724Article

Calibration of the device simulation program suitable for low temperature applicationLU, W.-L; HO, J.-H; TSENG, K.-F et al.SPIE proceedings series. 1998, pp 128-135, isbn 0-8194-2809-4Conference Paper

Surface micromachining for microelectromechanical systemsBUSTILLO, J. M; HOWE, R. T; MULLER, R. S et al.Proceedings of the IEEE. 1998, Vol 86, Num 8, pp 1552-1574, issn 0018-9219Article

Next-generation satellite components using MCM technologyKOREEDA, S; KOYAMA, R; OGAWA, B et al.NEC research & development. 1997, Vol 38, Num 3, pp 347-352, issn 0547-051XArticle

104GHz signals measured by high frequency scanning force microscope test systemLEYK, A; BÖHM, C; VAN DER WEIDE, D. W et al.Electronics Letters. 1995, Vol 31, Num 13, pp 1046-1047, issn 0013-5194Article

44-GHz monolithic plane wave amplifiersHIGGINS, J. A; SOVERO, E. A; HO, W. J et al.IEEE microwave and guided wave letters. 1995, Vol 5, Num 10, pp 347-348, issn 1051-8207Article

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