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2015 IEEE MTT-S International Microwave Symposium (IMS2015)
The IEEE MTT-S International Microwave Symposium (IMS) is the premier conference covering basic technologies, to passives and actives components to system over a wide range of frequencies including VHF, UHF, RF, microwave, millimeter-wave, terahertz, and optical. The conference will encompass the latest in RFIC, MIC, MEMS and filter technologies, advances in CAD, modeling, EM simulation, wireless systems, RFID and related topics. The IMS includes technical sessions, both oral and interactive, worksh
The conference will cover the entire scope of microwave engineering, including passive and active microwave components, devices, circuits and modules, MMICs, RFICs, EMC/EMI, antennas and propagation, and any other microwave related topics.
Published monthly with the purpose of providing fast publication of original and significant contributions relevant to all aspects of microwave/millimeter-wave technology. Emphasis is on devices, components, circuits, guided-wave structures, systems and applications covering the frequency spectrum from microwave and beyond, including submillimeter-waves and infrared.
Microwave theory, techniques, and applications as they relate to components, devices, circuits, and systems involving the generation, transmission, and detection of microwaves.
Konishi, Y.; Konno, K.; Awai, I. Broadcasting, IEEE Transactions on, 1988
A variety of resonators and bandpass, notch, lowpass, and highpass filters are described that use dielectric materials of high permittivity and are based on conventional waveguide technology. The devices are reasonably small, of high Q, and low loss tangent (tan δ). The various configurations presented include the use of posts, inductive strips, waveguide resonator-filters, and re- entrant resonators. Also examined ...
Swegle, J.A.; Anderson, R.A.; Camacho, J.F.; Poole, B.R.; Rhodes, M.A.; Rosenbury, E.T.; Shaeffer, D.L. Plasma Science, IEEE Transactions on, 1993
A relativistic backward-wave oscillator (BWO) operating at a frequency near 8 GHz has been built. The parameters of the 60-ns electron beam driving this microwave source are varied over the ranges 0.8-1.5 MV and 2-10 kA. Several different annular cathodes for launching the electron beam are tried, varying the outer radius and shape. The axial magnetic field guiding the beam ...
Hirono, T.; Kobayashi, H.; Asai, H.; Yokoyama, K. Selected Topics in Quantum Electronics, IEEE Journal of, 1996
All-optical switching performance of waveguide-type device utilizing intersubband transition is investigated by analyzing the position-dependent change of optical power densities and carrier densities in the waveguide. In the device, the three lowest energy-level subbands in the conduction band structure of asymmetric coupled quantum wells are used. The optical excitation pulse excites the electrons in the first subband to the third ...
Llorente-Romano, S.; Dorta-Naranjo, B.P.; Perez-Martinez, F.; Salazar-Palma, M. Antennas and Propagation Society International Symposium, 2002. IEEE, 2002
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Valois, R.; Baillargeat, D.; Verdeyme, S.; Lahti, M.; Jaakola, T. Microwave Theory and Techniques, IEEE Transactions on, 2005
This paper reports on research on two generic shielded vertical transitions in low-temperature cofired ceramic technology. These interconnections are simulated and optimized by three-dimensional electromagnetic simulations. The first circuit, a coplanar waveguide (CPW) or microstrip-to-stripline transition, presents great experimental performances from dc up to 50 GHz, and the second, a CPW-to-waveguide transition, is defined for Q-band applications.
IMS 2011 Microapps - Time Domain Measurements in Waveguide
MicroApps: Connectors to Antennas to Waveguide: User-Confgurable and Parameterized 3D EM Model Libraries (AWR)
Micro-Apps 2013: Precision RF/MW Cable and Antenna Test in the Field
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