A broadband planar magic essay




The improved version of a broadband planar magic -T using microstrip slotline transitions is presented. The design implements a small microstrip slotline tee. The design of a compact, low-loss Magic-T is proposed. The flat Magic-T contains the compact microstrip slotline T connection and the small microstrip slotline, Abstract. A new filter magic -T FMT with compact size, wide bandwidth and wide stopband rejection based on the dielectric covered L-shaped groove DCLSG half-mode substrate, the improved version of a broadband planar magic -T using microstrip slotline transitions are presented. The design implements a small microstrip slot line tee. Planar reflectors are generally composed of non-uniform inclusions placed on conductive plates. Limited by a strong dispersion of the inclusions, the reflection from planar reflectors is usually chromatic. In this letter, we first obtain the dispersion relation for planar achromatic anomalous reflector PAAR. The design of a broadband waveguide Magic-T was accomplished using a genetic swarm optimization GSO technique. A multi-step, off-center conducting cone was used to improve the bandwidth performance of the conventional Magic-Ts. The geometric parameters of the stepped cone were optimized by GSO, and the optimized matrices are presented. Directional couplings with linked lines have been used, which allow a wide operational band. A new arrangement of the network has been proposed that allows the creation of a completely planar design with two. A magic wideband T 117, X-band SIW attenuator 118 and circulators 148 were also implemented and experimentally verified. With this transition, a flat magic-T is studied and designed. In this paper, the design of a new magic-T with Pi-shaped microstrip line structure is proposed. The planar magic-T structure using a microstrip-to-slotline MS-to-SL transition is designed as a Wilkinson power divider in the Ka-band, while the difference gate E is terminated with ohm precision loads. In this letter, a broadband planar monopulse antenna array of C-band for the application of monopulse radars is presented. A new broadband monopulse comparator is designed as the sum difference power network, and an antenna array as the radiation section is fabricated. The measurement results,





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