RF MEMS Based Tunable Circuit for Wireless
Communication.
S. V.G.Umale. International Journal of Innovations in Engineering and Science, 2 (7):
61-64(2017)
Abstract
Modern wireless systems have an increasing need
for multiband and tunable microwave and millimeter wave
components. The Wireless communication system has
several tunable circuits, which reduces the number of the
circuits, size, and cost of the front-end. The application of
micro electromechanical systems (MEMS) technology to RF
systems enables production of components with low power
consumption, high linearity, low insertion loss and high
isolation. RF MEMS components are particularly attractive
due to their tunable properties. The recent dramatic
developments of personal communication devices forced the
market to acquire miniaturized efficient devices, which is
possible only by the development of radio frequency (RF)
MEMS.
%0 Journal Article
%1 noauthororeditor
%A V.G.Umale, S.N.Ganorkar
%D 2017
%E IJIES,
%J International Journal of Innovations in Engineering and Science
%K (CPW) Coplanar MEMS waveguide
%N 7
%P 61-64
%T RF MEMS Based Tunable Circuit for Wireless
Communication.
%U http://ijies.net/archives/vol-2-no-7
%V 2
%X Modern wireless systems have an increasing need
for multiband and tunable microwave and millimeter wave
components. The Wireless communication system has
several tunable circuits, which reduces the number of the
circuits, size, and cost of the front-end. The application of
micro electromechanical systems (MEMS) technology to RF
systems enables production of components with low power
consumption, high linearity, low insertion loss and high
isolation. RF MEMS components are particularly attractive
due to their tunable properties. The recent dramatic
developments of personal communication devices forced the
market to acquire miniaturized efficient devices, which is
possible only by the development of radio frequency (RF)
MEMS.
@article{noauthororeditor,
abstract = {Modern wireless systems have an increasing need
for multiband and tunable microwave and millimeter wave
components. The Wireless communication system has
several tunable circuits, which reduces the number of the
circuits, size, and cost of the front-end. The application of
micro electromechanical systems (MEMS) technology to RF
systems enables production of components with low power
consumption, high linearity, low insertion loss and high
isolation. RF MEMS components are particularly attractive
due to their tunable properties. The recent dramatic
developments of personal communication devices forced the
market to acquire miniaturized efficient devices, which is
possible only by the development of radio frequency (RF)
MEMS.},
added-at = {2017-06-19T15:03:28.000+0200},
author = {V.G.Umale, S.N.Ganorkar},
biburl = {https://www.bibsonomy.org/bibtex/244a93a23b4c1f8c5c40720b378f42945/journalijies},
editor = {IJIES},
interhash = {a60a4ed5844c4560d0915838169b3e01},
intrahash = {44a93a23b4c1f8c5c40720b378f42945},
issn = {2456-3463},
journal = {International Journal of Innovations in Engineering and Science},
keywords = {(CPW) Coplanar MEMS waveguide},
language = {English},
number = 7,
pages = {61-64},
timestamp = {2017-06-19T15:03:28.000+0200},
title = {RF MEMS Based Tunable Circuit for Wireless
Communication.},
url = {http://ijies.net/archives/vol-2-no-7},
volume = 2,
year = 2017
}