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Microstrip fed printed dipole with an integral balun and 180 degree phase shift bit

  • US 4,800,393 A
  • Filed: 08/03/1987
  • Issued: 01/24/1989
  • Est. Priority Date: 08/03/1987
  • Status: Expired due to Fees
First Claim
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1. In combination, a microstrip fed printed dipole with an integral balun and 180°

  • phase shift bit, fabricated by patterning a first and a second metallized layer disposed respectively on the under and upper surface of a planar dielectric substrate, said combination comprising;

    (1) an unbalanced first microstrip transmission line including a first strip conductor and a first ground plane, said transmission line having a branch at which a second and a third microstrip transmission line are formed, the second transmission line including a second strip conductor and a second ground plane, and the third transmission line including a third strip conductor and a third ground plane with the three said ground planes being formed from said first metallized layer and the three said strip conductors being formed from said second metallized layer,(2) a pair of switches, the first switch connected between said second strip conductor and said second ground plane, and said second switch connected between said third strip conductor and said third ground plane, each switch being positioned at an electrical length approximately equal to one-fourth wavelength from said branch, each switch having a first state in which the strip conductor, to which it is connected, is connected to the ground plane, to which it is connected, and a second state in which the strip conductor, to which it is connected, is disconnected from the ground plane to which it is connected to respectively prevent and permit r.f. transmission in the transmission line,(3) control means coupled to said switches to achieve a first control state in which said first switch is conductive and said second switch is non-conductive or a second control state in which said first switch is non-conductive and said second switch is conductive,(4) a dipole radiating element formed from said first metallized layer, and(5) a transition in which a continuation of the ground plane of said unbalanced transmission lines is bifurcated by a central slot into a first and a second ground plane, said first and second ground planes of said transition forming a balanced transmission line, andcontinuations of the strip conductors of said second and third transmission lines form a three part "U" shaped strip conductor with the base of the "U" remote from said branch, said "U" shaped conductor continuing over said bifurcated ground planes to provide propagation between said three parts and said bifurcated ground planes, propagation proceeding in one consecutive order or the reverse consecutive order, depending upon which of said two control states is present,a first of said three parts, which forms a portion of said second transmission line, being disposed between said branch and said dipole,a second of said three parts, which forms a crossover extending across said slot over said dipole from one bifurcated ground plane to the other bifurcated ground plane, andthe third of said three parts, which forms a portion of said third transmission line, being disposed between said branch and said dipole,said dipole radiating element being formed as a diverging extension of said first and second bifurcated ground planes, the inner portions of the arms of said dipole underlying and being strongly coupled to said second part, and the outer portions of said arms extending beyond said second part for efficient radiation.

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