Figure Reflection coefficient as a function of the frequency and the resolution interpolation conductivity was chosen in order to obtain a normal theoretical reflection coefficient of 0.001% s y100 dB. Results for the reflection coefficient as a function of frequency are presented in Figure . ## 6
Slot-loaded rectangular microstrip antenna for dual-frequency operation
β Scribed by Jui-Han Lu
- Publisher
- John Wiley and Sons
- Year
- 2000
- Tongue
- English
- Weight
- 335 KB
- Volume
- 24
- Category
- Article
- ISSN
- 0895-2477
No coin nor oath required. For personal study only.
β¦ Synopsis
A new design of a slot-loaded rectangular microstrip antenna for single-feed dual-frequency operation is proposed and experimentally studied. The slots loaded in the patch are a pair of bent slots centered in the patch and oriented along the resonant direction, with the spacing between the two slots being about half the patch's radiating-edge length. By Β¨arying the bent angle and horizontal-section length of the slots, the frequency ratio between the two operating frequencies is tunable in a range from about 1.28 to 1.79. The two frequencies are also of the same polarization planes and similar broadside radiation patterns.
π SIMILAR VOLUMES
region W. The effect of the dimensions W and H is practis w Ε½ .x cally negligible Fig. 3 c . A variation of the dimension W with respect to its nominal value, according to whether an increase or decrease can be advantageous or disadvantageous, since it must be remembered that a phase velocity in pra
No¨el dual-frequency operation of a single-feed rectangular microstrip antenna with an embedded reacti¨e loading is presented. The reacti¨e loading is pro¨ided by a structure of two cascaded microstrip-line sections embedded within a rectangular slot cut in the patch. By selecting suitable dimension
By embedding a pair of comb-shaped slots close to the nonradiating edges of a rectangular microstrip antenna, a no¨el dualfrequency operation of microstrip antennas using a single probe feed is proposed and experimentally studied. The two operating frequencies ha¨e the same polarization planes and s