A mathematical modelling, and a derivation of the main parameters of the Magneto – Dielectric materials (substrate) and their effect on microstrip patch antenna design is shown. The Magneto – Dielectric materials (substrate) is shown to miniaturize the antenna size and enhance the bandwidth when used in the design of the microstrip patch antenna. The progression of the foundational modelling starts with laying out the concepts of the ferrimagnetic materials in terms of their permeability and permittivity, the components of antenna miniaturization. First, a ground free elliptical microstrip patch antenna (GFDSEPA) is simulated for miniaturization purposes at the 900MHz cellular band. A size reduction of almost 50% as well as bandwidth enhanc...
There is an increasing interest in developing miniaturized antennas for ultra-low power applications...
IEEE Antennas and Propagation Society, AP-S International Symposium (Digest)1433-1436IAPS
This study explores the properties and potential of magneto-dielectric (MD) material Ni0.25Cu0.25Zn0...
A mathematical modelling, and a derivation of the main parameters of the Magneto – Dielectric materi...
none3noAn increasing interest is arising in developing miniaturized antennas in the microwave range....
An increasing interest is arising in developing miniaturized antennas in the microwave range. Howeve...
An increasing interest is arising in developing miniaturized antennas in the microwave range. Howeve...
Key Contributions: Antenna miniaturization with enhanced bandwidth and radiation characteristics is ...
An electrically small microstrip patch antenna based on high permittivity dielectric and magnetodiel...
An electrically small microstrip patch antenna based on high permittivity dielectric and magnetodiel...
An increasing interest is arising in developing miniaturized antennas in the microwave range. Howeve...
An increasing interest is arising in developing miniaturized antennas in the microwave range. Howeve...
There is an increasing interest in developing miniaturized antennas for ultra-low power applications...
There is an increasing interest in developing miniaturized antennas for ultra-low power applications...
In the present paper we discuss the effect of artificial magneto-dielectric substrates on the impeda...
There is an increasing interest in developing miniaturized antennas for ultra-low power applications...
IEEE Antennas and Propagation Society, AP-S International Symposium (Digest)1433-1436IAPS
This study explores the properties and potential of magneto-dielectric (MD) material Ni0.25Cu0.25Zn0...
A mathematical modelling, and a derivation of the main parameters of the Magneto – Dielectric materi...
none3noAn increasing interest is arising in developing miniaturized antennas in the microwave range....
An increasing interest is arising in developing miniaturized antennas in the microwave range. Howeve...
An increasing interest is arising in developing miniaturized antennas in the microwave range. Howeve...
Key Contributions: Antenna miniaturization with enhanced bandwidth and radiation characteristics is ...
An electrically small microstrip patch antenna based on high permittivity dielectric and magnetodiel...
An electrically small microstrip patch antenna based on high permittivity dielectric and magnetodiel...
An increasing interest is arising in developing miniaturized antennas in the microwave range. Howeve...
An increasing interest is arising in developing miniaturized antennas in the microwave range. Howeve...
There is an increasing interest in developing miniaturized antennas for ultra-low power applications...
There is an increasing interest in developing miniaturized antennas for ultra-low power applications...
In the present paper we discuss the effect of artificial magneto-dielectric substrates on the impeda...
There is an increasing interest in developing miniaturized antennas for ultra-low power applications...
IEEE Antennas and Propagation Society, AP-S International Symposium (Digest)1433-1436IAPS
This study explores the properties and potential of magneto-dielectric (MD) material Ni0.25Cu0.25Zn0...