IP Library Granted Patent US 11,145,994
Granted Patent B2
US 11,145,994 · App. 16/758,094 · Granted Oct 12, 2021

Low cost high performance multiband cellular antenna with cloaked monolithic metal dipole

Inventors: Niranjan Sundararajan (Liverpool, NY); Charles Buondelmonte (Baldwinsville, NY); Andrew Litteer (Clay, NY); Wengang Chen (Liverpool, NY)
Assignee: JOHN MEZZALINGUA ASSOCIATES, LLC
H01Q21/26H01Q9/28H01Q19/10H01Q19/108H01Q21/062
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Quick Facts
Patent No.
US 11,145,994
App. No.
16/758,094
Granted
Oct 12, 2021
Kind
B2
Abstract

Disclosed is a high performance low cost multiband antenna configuration that has a low band dipole having dipole arms formed of stamped sheet metal that has a plurality of slots. Some of the slots are oriented along a longitudinal axis of the low band dipole arm, and others are oriented orthogonal to the longitudinal axis. The presence of the slots creates a plurality of inductor structures, which act has cloaking structures that make the low band dipole substantially transparent to high band RF energy without inhibiting the performance of the dipole in the low band.

Claims (38)

1. A multiband antenna, comprising:

a reflector plate;

a plurality of high band dipoles configured to radiate RF energy in a high band; and

a plurality of low band dipoles configured to radiate RF energy in a low band,

wherein each of the low band dipoles has a plurality of low band dipole arms, each low band dipole arm being formed of a single piece of metal and having a plurality of slots, the plurality of slots defining a plurality of inductor structures in the low band dipole arm, the inductor structures each having a dimension that makes the inductor structure hinder the low band dipole from re-radiating RF energy in the high band, and that enables the inductor structure to radiate RF energy in the low band.

2. The multiband antenna of claim 1 , wherein the plurality of slots comprises a sawtooth form.

3. The multiband antenna of claim 1 , wherein the plurality of slots comprises:

a first subset of slots oriented parallel to a longitudinal axis of the corresponding low band dipole arm; and

a second subset of slots oriented orthogonal to the longitudinal axis of the corresponding low band dipole arm.

4. The multiband antenna of claim 3 , wherein each low band dipole arm is stamped from a single piece of one of aluminum, sheet metal, and brass.

5. The multiband antenna of claim 3 , wherein each low band dipole arm has a tubular shape, wherein the tubular shape as a cylindrical axis that is parallel to the longitudinal axis of the low band dipole arm.

6. The multiband antenna of claim 5 , wherein the tubular shape has a longitudinal gap defined by longitudinal edges of the low band dipole arm.

7. The multiband antenna of claim 6 , wherein the tubular shape as a diameter of substantially 0.5″.

8. The multiband antenna of claim 5 , wherein each low band dipole arm comprises a metal tube having a cylindrical axis that is parallel to the longitudinal axis.

9. The multiband antenna of claim 1 , further comprising a passive parasitic reflector that acts in conjunction with the plurality of low band dipoles.

10. The multiband antenna of claim 8 , wherein the passive parasitic reflector as a fence shape.

11. The multiband antenna of claim 1 , wherein each low band dipole has a support pedestal, wherein each low band dipole arm is mechanically coupled to the support pedestal and to a low band dipole stem.

12. The multiband antenna of claim 1 , wherein the plurality of low band dipoles are arranged in a single row along a pitch axis.

13. The multiband antenna of claim 1 , wherein the plurality of low band dipoles are arranged in an alternating sequence of a first unit block configuration and a second unit block configuration along a pitch axis, wherein the first unit block configuration has a single low band dipole, and the second unit block configuration has two low band dipoles arranged side by side along an azimuth axis.

14. The multiband antenna of claim 3 , wherein each low band dipole arm has a length of substantially 3.15″.

15. The multiband antenna of claim 14 , wherein each low band dipole arm has a width of substantially 1.575″.

16. The multiband antenna of claim 3 , wherein the first subset of slots comprises four slots.

17. The multiband antenna of claim 16 , wherein each of the first subset of slots comprises a width of substantially 0.157″ and a length of substantially 0.787″.

18. The multiband antenna of claim 3 , wherein the second subset of slots comprises six slots.

19. The multiband antenna of claim 18 , wherein each of the second subset of slots comprises a width of substantially 0.197″ and a length of substantially 0.748″.

20. The multiband antenna of claim 1 , wherein each of the plurality of low band dipoles comprises:

a vertical dipole stem having a first and second dipole stem plate, each of the first and second dipole stem plates having a balun circuit on a first side and a capacitor plate on a second side; and

a support pedestal,

wherein the plurality of low band dipole arms has a first pair of low band dipole arms that are configured to radiate in a first polarization state and a second pair of low band dipole arms that are configured to radiate in a second polarization state, the second polarization state being orthogonal to the first polarization state, and wherein the first pair of low band dipoles are mechanically coupled to the both the support pedestal and the first dipole stem plate and electrically coupled to the first dipole stem plate, and wherein the second pair of low band dipoles are mechanically coupled to both the support pedestal and the second dipole stem plate and electrically coupled to the second dipole stem plate.

21. A multiband antenna, comprising:

a reflector plate;

a plurality of high band dipoles configured to radiate RF energy in a high band; and

a plurality of low band dipoles configured to radiate RF energy in a low band,

wherein each of the low band dipoles has a plurality of low band dipole arms, each low band dipole arm being formed of a single piece of metal and having a plurality of slots, the plurality of slots defining a plurality of inductor structures in the low band dipole arm, wherein the inductor structures hinder induced current corresponding to RF energy radiated by at least one of the plurality of high band dipoles.

22. The multiband antenna of claim 21 , wherein the plurality of slots comprises:

a first subset of slots oriented parallel to a longitudinal axis of the corresponding low band dipole arm; and

a second subset of slots oriented orthogonal to the longitudinal axis of the corresponding low band dipole arm.

23. The multiband antenna of claim 21 , wherein the plurality of slots comprises a sawtooth structure.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 22, 2020
From: SUNDARARAJAN, NIRANJAN; BUONDELMONTE, CHARLES; LITTEER, ANDREW; CHEN, WENGANG
To: JOHN MEZZALINGUA ASSOCIATES, LLC D/B/A JMA WIRELESS
Reel/Frame 052466/0162 →
Continuity (2)
Provisional Application 62577407 · Oct 26, 2017
Related Publication 20200328533A1 · Oct 15, 2020
Cited By (2)
US 12,620,725 US 12,731,897