IP Library Granted Patent US 10,148,015
Granted Patent B2
US 10,148,015 · App. 15/455,505 · Granted Dec 4, 2018

Dipole-shaped antenna element arrangement

Inventors: Wolfgang Heyde (Tuntenhausen, DE); Markus Quitt (Rohrdorf, DE); Johannes Kellerer (Tuntenhausen, DE)
Assignee: Kathrein-Werke KG
H01Q9/285H01Q1/246H01Q19/30H01Q21/24
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Quick Facts
Patent No.
US 10,148,015
App. No.
15/455,505
Granted
Dec 4, 2018
Kind
B2
Abstract

A dipole-shaped antenna element arrangement comprises two pairs of radiator halves which are arranged so as to be rotated by 90° to one another and are oriented in a radiator plane at a distance in front of a reflector and in parallel therewith. The radiator halves are arranged on a balancing and/or support arrangement. There is a passive beam-shaping frame which is arranged at a distance from the radiator halves towards the reflector. The passive beam-shaping frame has at the corners thereof a broadening of the peripheral frame web thereof, said broadening of the frame web extending in parallel with the radiator plane and/or transversely to the radiator plane.

Claims (70)

1. Dipole-shaped antenna element arrangement comprising:

two pairs of radiator halves which are arranged so as to be rotated by 90° to one another, in such a way that the dipole-shaped antenna element arrangement transmits and/or receives in two polarisation planes which are arranged perpendicularly to one another;

the radiator halves configured to be arranged in a radiator plane at a distance in front of a reflector and in parallel therewith;

a balancing and/or support arrangement comprising a first end and a base which is arranged at a second end which is opposite the first end, the radiator halves being arranged at the first end of the balancing and/or support arrangement and thereon, and the base being able to be arranged on a base body; and

a passive beam-shaping frame which is arranged at a distance from the radiator halves towards the base;

the passive beam-shaping frame comprising a plurality of frame sides which form a peripheral frame web which defines an opening;

the passive beam-shaping frame being oriented in parallel with the radiator plane;

wherein the passive beam-shaping frame has, in the region of the corners thereof, a broadening of the peripheral frame web thereof, said broadening of the frame web extending in parallel with the radiator plane and/or transversely to the radiator plane.

2. Dipole-shaped antenna element arrangement according to claim 1 , wherein:

the broadenings of the frame web occur on the inner peripheral wall thereof so that, in the region of the corners thereof, the frame web extends closer to a longitudinal axis through the dipole-shaped antenna element arrangement; and/or

the broadenings of the frame web occur on the outer peripheral wall thereof.

3. Dipole-shaped antenna element arrangement according to claim 2 , wherein:

the outer peripheral wall of the frame web is bevelled in the region of the corners thereof, the broadening being configured transversely to the radiator plane on said bevel;

the broadening extends transversely to the radiator plane towards the base of the balancing and/or support arrangement or extends in the direction of the radiator plane.

4. Dipole-shaped antenna element arrangement according to claim 1 , wherein:

the broadenings of the frame web in parallel with the radiator plane

a) extend over a partial length of the individual frame sides of the peripheral frame web, the partial length corresponding to less than 30%, preferably less than 20% of the length of the individual frame sides; and/or

b) are greater than 10%, preferably greater than 20%, more preferably greater than 25% but less than 40%, more preferably less than 35% of the width of the peripheral frame web at the non-broadened points thereof and correspond more preferably to 35% of the width of the peripheral frame web at the non-broadened points thereof.

5. Dipole-shaped antenna element arrangement according to claim 1 , wherein:

the peripheral frame web of the passive beam-shaping frame has interruptions or is configured without interruptions; and/or

the passive beam-shaping frame is configured in one piece.

6. Dipole-shaped antenna element arrangement according to claim 1 , wherein:

the passive beam-shaping frame is rectangular, in particular square; and/or

the radiator halves comprise a rectangular, in particular square, radiator frame.

7. Dipole-shaped antenna element arrangement according to claim 1 , wherein:

a plurality of frame sides of the passive beam-shaping frame each comprise at least one vane in the middle thereof;

the vanes extend approximately in parallel with the radiator plane or transversely to the radiator plane.

8. Dipole-shaped antenna element arrangement according to claim 1 , wherein:

a director, the director being oriented in parallel with the radiator plane;

the radiator halves are arranged closer to the base than the director;

the outer sides of the director are arranged so as to be rotated by an angle of between 30° and 60°, preferably by 45° to the outer sides and/or inner sides of the radiator halves.

9. Dipole-shaped antenna element arrangement according to claim 8 , wherein:

the radiator halves are arranged between the passive beam-shaping frame and the director;

the director is rectangular, in particular square;

the outer sides of the director are arranged so as to be rotated by 45° to the frame sides of the frame web and/or rotated by 45° to the outer sides and/or inner sides of the radiator halves.

10. Dipole-shaped antenna element arrangement according to claim 9 , wherein:

the director comprises a recess in the centre thereof.

11. Dipole-shaped antenna element arrangement according to claim 10 , wherein:

the recess of the director is square, the inner sides of the recess of the director being in parallel with the outer sides of the director.

12. Dipole-shaped antenna element arrangement according to claim 9 , wherein:

the director comprises, on each outer side, a tongue protruding outwardly in parallel with the radiator plane;

the protruding tongue is preferably provided in the middle of each outer side of the director.

13. Dipole-shaped antenna element arrangement according to claim 11 , wherein:

the inner sides of the recess of the director have a length that is 10% to 25% of the length of the outer sides of the director; and/or

the tongues are formed over a length on the outer sides of the director and thereon, which is more than 10%, preferably more than 20%, preferably more than 30%, preferably more than 40%, but less than 55%, preferably less than 45%, more preferably less than 35%, more preferably less than 25% and more preferably less than 15% of the length of an outer side of the director; and/or

the tongues are formed over a width on the outer sides of the director, which is more than 1%, preferably more than 4%, preferably more than 6%, preferably more than 8%, but less than 12%, preferably less than 9%, more preferably less than 7%, more preferably less than 5% and more preferably less than 3% of the length of an outer side of the director.

14. Dipole-shaped antenna element arrangement according to claim 12 , wherein:

in a plan view of the director, the outer side of each tongue extends in parallel with a diagonal through each radiator half.

15. Dipole-shaped antenna element arrangement according to claim 1 , wherein:

a plurality of metal strips, the metal strips being oriented in parallel with the radiator plane;

the radiator halves are arranged lying closer to the base than the metal strips;

in a plan view, the metal strips are arranged on the dipole-shaped antenna element arrangement preferably in the region of the outer sides of the radiator halves.

16. Dipole-shaped antenna element arrangement according to claim 15 , wherein:

each metal strip extends approximately in parallel with in each case two outer sides of two adjacent radiator halves; and/or

each metal strip extends in parallel with in each case one frame side of the frame web; and/or

each metal strip is arranged in such a way that it does not overlap with a recess situated within the radiator halves.

17. Dipole-shaped antenna element arrangement according to claim 15 , wherein:

in a plan view of the dipole-shaped antenna element arrangement, at least a partial width of at least one metal strip overlaps two outer sides of two adjacent radiator halves; or

in a plan view of the dipole-shaped antenna element arrangement, at least one metal strip directly abuts two outer sides of two adjacent radiator halves without overlap, the at least one metal strip being arranged at a distance from the radiator halves towards the longitudinal axis; or

in a plan view of the dipole-shaped antenna element arrangement, at least one metal strip is arranged at a distance relative to the two outer sides of two adjacent radiator halves without overlap towards the longitudinal axis, in a plan view, a gap still being formed between the metal strip and the two adjacent radiator halves, and the at least one metal strip being further away from the longitudinal axis than the radiator halves; or

the at least one metal strip is arranged in such a way that it does not overlap the radiator halves and the beam-shaping frame and in such a way that, in a plan view of the dipole-shaped antenna element arrangement, the at least one metal strip directly abuts the respective outer peripheral wall of the frame web of the beam-shaping frame.

18. Dipole-shaped antenna element arrangement according to claim 15 , wherein:

a distance between the metal strips and the radiator halves is smaller than a distance between the radiator halves and the passive beam-shaping frame; and/or

each metal strip comprises one or more metal strip elements or consists of one or more of said metal strip elements; and/or

each metal strip is rectangular and has a length that is approximately a quarter of the wavelength of the centre frequency.

19. Dipole-shaped antenna element arrangement according to claim 15 , wherein:

the metal strips are all arranged in the same plane; or

the metal strips are arranged in at least two different planes which extend in parallel with the radiator plane but are at different distances therefrom, at least two or exactly two metal strips being arranged in each of said planes.

20. Dipole-shaped antenna element arrangement according to claim 9 , wherein:

the passive beam-shaping frame is held, together with the director or the metal strips, galvanically separated via at least one combined holding and spacing element, supported on one or all of the radiator halves and at a distance therefrom.

Assignments (6)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 17, 2020
From: KATHREIN SE
To: ERICSSON AB
Reel/Frame 053798/0470 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 17, 2020
From: ERICSSON AB
To: TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)
Reel/Frame 053816/0791 →
RELEASE OF SECURITY INTEREST Recorded Oct 24, 2019
From: COMMERZBANK AKTIENGESELLSCHAFT
To: KATHREIN SE; KATHREIN INTELLECTUAL PROPERTY GMBH
Reel/Frame 050817/0146 →
MERGER AND CHANGE OF NAME Recorded Oct 22, 2018
From: KATHREIN-WERKE KG; KATHREIN SE
To: KATHREIN SE
Reel/Frame 047290/0614 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 17, 2018
From: HEYDE, WOLFGANG; QUITT, MARKUS; KELLERER, JOHANNES
To: KATHREIN-WERKE KG
Reel/Frame 047200/0985 →
CONFIRMATION OF GRANT OF SECURITY INTEREST IN U.S. INTELLECTUAL PROPERTY Recorded Sep 20, 2018
From: KATHREIN SE (SUCCESSOR BY MERGER TO KATHREIN-WERKE KG)
To: COMMERZBANK AKTIENGESELLSCHAFT, AS SECURITY AGENT
Reel/Frame 047115/0550 →
Priority Claims (2)
DE 10 2016 104 611 · Mar 14, 2016 · national
DE 10 2016 112 280 · Jul 5, 2016 · national
Continuity (1)
Related Publication 20170264021A1 · Sep 14, 2017