Manoj Joseph
Cochin University of Science and Technology
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Publication
Featured researches published by Manoj Joseph.
IEEE Transactions on Antennas and Propagation | 2006
Rohith K. Raj; Manoj Joseph; C. K. Aanandan; K. Vasudevan; P. Mohanan
A novel compact microstrip fed dual-band coplanar antenna for wireless local area network is presented. The antenna comprises of a rectangular center strip and two lateral strips printed on a dielectric substrate and excited using a 50 Omega microstrip transmission line. The antenna generates two separate resonant modes to cover 2.4/5.2/5.8 GHz WLAN bands. Lower resonant mode of the antenna has an impedance bandwidth (2:1 VSWR) of 330 MHz (2190-2520 MHz), which easily covers the required bandwidth of the 2.4 GHz WLAN, and the upper resonant mode has a bandwidth of 1.23 GHz (4849-6070 MHz), covering 5.2/5.8 GHz WLAN bands. The proposed antenna occupy an area of 217 mm2 when printed on FR4 substrate (epsivr=4.7). A rigorous experimental study has been conducted to confirm the characteristics of the antenna. Design equations for the proposed antenna are also developed
IEEE Transactions on Antennas and Propagation | 2007
V Deepu; Rohith K. Raj; Manoj Joseph; Suma M.N; P. Mohanan
A compact asymmetric coplanar strip fed monopole antenna for multiband applications is presented. The antenna exhibits three resonances around 1.8, 2.4, and 5.6 GHz covering the DCS/PCS/UMTS/IEEE 802.11b/g/IEEE802.11a/HIPERLAN2 bands. The multiband characteristic of the antenna is due to the various meandered current paths excited in the radiating structure. The antenna has an overall dimension of only 2830 when printed on a substrate of dielectric constant 4.4. The uniplanar design, simple feeding technique and compactness make it easy for the integration of the antenna into circuit boards. Details of the antenna design, experimental and simulated results are presented and discussed.
IEEE Microwave and Wireless Components Letters | 2006
M. N. Suma; Rohith K. Raj; Manoj Joseph; P. C. Bybi; P. Mohanan
A compact dual band planar antenna for a digital communication system (DCS)/2.4-GHz WLAN application is presented. The two resonant modes of the proposed antenna are associated with various length of the monopoles, in which a longer arm contributes for the lower resonant frequency and a shorter arm for higher resonant frequency. The experimental results show that the designed antenna can provide excellent performance for DCS/2.4-GHz WLAN systems, including sufficiently wide frequency band, moderate gain, and nearly omnidirectional radiation coverage. The outcome of the experimental results along with the design criteria are presented in this letter.
Journal of Elastomers and Plastics | 2008
K. H. Prema; Philip Kurian; M. R. Anantharaman; M. N. Suma; Manoj Joseph
Fine particles of nickel ferrite are synthesized by the sol-gel technique and characterized by the X-ray diffraction method. These materials are incorporated in ethylene propylene diene rubber (EPDM) according to a specific recipe for various loadings. The rubber ferrite composites (RFCs) thus obtained have several applications, such as microwave absorbers, EMI shielding materials, etc. In the present study, microwave attenuation and dielectric properties of RFCs are studied in the X- and S-band frequencies. Real and imaginary parts of the dielectric permittivity are determined by cavity perturbation method. Dielectric permittivity in X-band frequency, based on Maxwell—Garnet equation is calculated and presented here.
International Journal on Wireless & Optical Communications | 2007
Manoj Joseph; Rohith K. Raj; M. N. Suma; C. K. Aanandan; K. Vasudevan; P. Mohanan
A compact dual band folded dipole antenna printed on either side of a substrate and excited by a 50 Ω microstrip line with a truncated ground plane covering DCS/PCS/2.4 GHz WLAN bands is presented. In the proposed design, a microstrip-fed folded monopole antenna is first designed and then modified it to a microstrip-fed folded dipole by placing another folded arm on the opposite side of the substrate extending from the ground plane, for achieving dual resonance. The antenna resonating at 1.87 GHz and 2.46 GHz has 2:1 VSWR bandwidth of 17% and 9% respectively. The proposed antenna offers 53% area reduction compared to a standard rectangular microstrip antenna. Details of the antenna design and experimental results are presented.
ieee antennas and propagation society international symposium | 2005
Rohith K. Raj; Manoj Joseph; C. K. Aanandan; K. Vasudevan; P. Mohanan
In this paper we propose a compact coplanar antenna (CCPA) configuration with excellent radiation coverage, good reflection characteristics and comparatively good bandwidth. The antenna offers 75% area reduction compared to a standard rectangular patch for the same frequency. It can be easily incorporated in any compact wireless gadget. Antenna design and experimental results are discussed.
ieee antennas and propagation society international symposium | 2005
Manoj Joseph; Rohith K. Raj; Binu Paul; P. Mohanan
In this paper a compact multiband planar antenna for GPS (1575.4 MHz), DCS (1800 MHz), 2.4 GHz (2400-2485 MHz) and 5.8 GHz (5725-5825 MHz) WLAN is presented. The proposed antenna of dimensions 38 mm times 3 mm times 1.6 mm with three wide 2:1 VSWR bands around 1.8 GHz, 2.4 GHz and 5.8 GHz successfully covers the above bands with good radiation and reflection characteristics. Details of the proposed antenna design and experimental results are presented and discussed
Journal of the American Ceramic Society | 2007
Ganesanpotti Subodh; Manoj Joseph; P. Mohanan; Mailadil Thomas Sebastian
Electronics Letters | 2005
Rohith K. Raj; Manoj Joseph; Binu Paul; P. Mohanan
Electronics Letters | 2004
Manoj Joseph; Binu Paul; Rohith K. Raj; P. Mohanan