Pascal and Francis Bibliographic Databases

Help

Search results

Your search

kw.\*:("Amplificador hiperfrecuencia")

Document Type [dt]

A-Z Z-A Frequency ↓ Frequency ↑
Export in CSV

Publication Year[py]

A-Z Z-A Frequency ↓ Frequency ↑
Export in CSV

Discipline (document) [di]

A-Z Z-A Frequency ↓ Frequency ↑
Export in CSV

Language

A-Z Z-A Frequency ↓ Frequency ↑
Export in CSV

Author Country

A-Z Z-A Frequency ↓ Frequency ↑
Export in CSV

Results 1 to 25 of 839

  • Page / 34
Export

Selection :

  • and

Broadband amplifier at 28 GHz based on the InP/InGaAs HBT phototransistor for optical-radio interfaceTHURET, J; GONZALEZ, C; BENCHIMOL, J. L et al.OMW : interactions between microwaves and optics. International summer school. 1998, pp 142-143, isbn 2-910986-17-9Conference Paper

Synthèse en structures paramétriques d'amplificateurs hyperfréquences à large bandeTEKSHEV, V.B.Radiotehnika (Moskva). 1989, Num 6, pp 31-32, issn 0033-8486Article

Théorie des amplificateurs à résonance avec une interaction longue durée. IVVAVRIV, D. M; TRET'YAKOV, O. A.Izvestiâ vysših učebnyh zavedenij. Radiofizika. 1986, Vol 29, Num 11, pp 1355-1366, issn 0021-3462Article

Comments on X-band 0.5, 1, and 2 watt power amplifiers with marked improvement in power-added efficiencyBOESCH, R. D.IEEE transactions on microwave theory and techniques. 1991, Vol 39, Num 5, issn 0018-9480, p. 897Article

Cryogenically cooled 20 GHz FET amplifierOHM, G; ALBERTY, M.Space communication and broadcasting. 1987, Vol 5, Num 3, pp 197-206, issn 0167-9368Article

High-power X-band amplification from an overmoded three-cavity gyroklystron with a tunable penultimate cavityTANTAWI, S. G; MAIN, W. T; LATHAM, P. E et al.IEEE transactions on plasma science. 1992, Vol 20, Num 3, pp 205-215, issn 0093-3813Article

Performance characteristics of a high-power X-band two-cavity gyroklystronLAWSON, W; CALAME, J. P; HOGAN, B. P et al.IEEE transactions on plasma science. 1992, Vol 20, Num 3, pp 216-223, issn 0093-3813Article

Numerical modeling of large orbit magnetron-type gyrotron through self-consistent nonlinear theoryYAN YANG; LI HONGFU; DU PINGZHONG et al.IEEE transactions on plasma science. 1994, Vol 22, Num 6, pp 1010-1014, issn 0093-3813Article

High current density nanofilament cathodes for microwave amplifiersSCHNELL, J.-P; MINOUX, E; LACERDA, R et al.International Vacuum Nanoelectronics Conference. 2004, pp 278-279, isbn 0-7803-8397-4, 1Vol, 2 p.Conference Paper

Analysis for the new type long-pulsed and high efficient microwave amplifier-magniconZHANG, H.International journal of infrared and millimeter waves. 1997, Vol 18, Num 6, pp 1381-1391, issn 0195-9271Article

Modélisation de dipositifs microondes non linéaires par réseau d'ondelettes = Modelization of non linear microwave devices using wavelet networksHARKOUSS, Y; REIG, P; ROUSSET, J et al.Journées nationales microondes. 1997, pp 360-361, 2VolConference Paper

Immunodetection of a tumor associated antigen (TAG-12) : comparison of microwave accelerated and conventional methodWERNER, M; VON WASIELEWSKI, R; GEORGII, A et al.Biotechnic & histochemistry. 1991, Vol 1, Num 2, pp 79-81Article

Microwave amplifier based RF optical receiversCOCHRAN, S. R.Electronics Letters. 1987, Vol 23, Num 24, pp 1283-1285, issn 0013-5194Article

94 GHz transistor amplification using an HEMTSMITH, P. M; CHAO, P. C; DUH, JK. H. G et al.Electronics Letters. 1986, Vol 22, Num 15, pp 780-781, issn 0013-5194Article

GHz amplifiers go nanoERON, M; LIN, S; WANG, D et al.Electronics letters. 2011, Vol 47, Num 4, issn 0013-5194, p. 227Article

Rapid microwave-assisted amplification for the spectrophotometric determination of iodineDAS, A. K; CERVERA, M. L; DE LA GUARDIA, M et al.Analytical proceedings. 1994, Vol 31, Num 11, pp 345-347, issn 0144-557XArticle

Feedback in distributed amplifiersRIAZAT, M; BANDY, S; CHING, L. Y et al.IEEE transactions on microwave theory and techniques. 1990, Vol 38, Num 2, pp 212-215, issn 0018-9480Article

Sur le problème de l'amplification hors bande d'ondes superficielles à la frontière en π dans un système à retard de type peigne avec des lamelles mincesVERBITSKIJ, I. L; REUKA, A. G.Radiotehnika i èlektronika. 1988, Vol 33, Num 8, pp 1688-1696, issn 0033-8494Article

A potentially low-noise avalanche diode microwave amplifierBARNES, F. S; WEN-HERNG SU; BRENNAN, K. F et al.I.E.E.E. transactions on electron devices. 1987, Vol 34, Num 5, pp 966-972, issn 0018-9383, 2Article

Aluminum alloy package for microwave amplifierIIKAWA, T; SAKAI, T; OKAMOTO, S et al.IEEE transactions on components, hybrids, and manufacturing technology. 1986, Vol 9, Num 4, pp 513-517, issn 0148-6411Article

Conversion de fréquence dans un dispositif type klystronRODYGIN, L. V; SMORGONSKIJ, A. V.Radiotehnika i èlektronika. 1986, Vol 31, Num 5, pp 973-980, issn 0033-8494Article

A high-efficiency traveling-wave power amplifier topology using improved power-combining techniquesSHAPIRO, E. S; JIAN XU; NAGRA, A. S et al.IEEE microwave and guided wave letters. 1998, Vol 8, Num 3, pp 133-135, issn 1051-8207Article

Firm resurrects low-noise-amplifier lineMicrowaves & RF. 1997, Vol 36, Num 9, issn 0745-2993, p. 186Article

106-GHz electron cyclotron heating system for heliotron-ENAGASAKI, K; SATO, M; IIMA, M et al.Fusion technology. 1994, Vol 25, Num 4, pp 419-427, issn 0748-1896Article

Travelling wave tubes and amplifiers for VSAT systemsSHUKEN, R. E.IEE telecommunications series. 1992, Vol 28, pp 59-74, issn 0263-5852Article

  • Page / 34