BASE STATION ANTENNAS HAVING AN ACTIVE ANTENNA MODULE AND RELATED DEVICES AND METHODS
Base station antennas include an externally accessible active antenna module releasably coupled to a recessed segment that is over a chamber in the base station antenna and that is longitudinally and laterally extending along and across a rear of a base station antenna housing. The base station antenna housing has a passive antenna assembly that cooperates with the active antenna module.
1 . A base station antenna comprising:
a housing of a base station antenna;
a first column of radiating elements in the housing;
a second column of radiating elements in the housing, laterally spaced apart from the first column of radiating elements; and
a multiple column array of radiating elements provided in an active antenna module with at least some columns of the multiple column array behind and between the first column of radiating elements and the second column of radiating elements.
2 . The base station antenna of claim 1 , wherein the housing comprises a back wall with a recess, wherein the recess is configured to extend laterally and longitudinally between right and left sides of the housing along a sub-length of an overall length of the housing, and wherein the active antenna module is positioned to be aligned with the recess.
3 . The base station antenna of claim 1 , wherein a portion of a back wall of the housing comprises an aperture extending laterally and longitudinally between right and left sides of the housing along a sub-length of an overall length of the housing, and wherein the active antenna module is positioned so that at least a forward portion thereof is inside the aperture.
4 . The base station antenna of claim 1 , further comprising a reflector in the housing behind the first column of radiating elements and the second column of radiating elements, wherein the reflector comprises a portion with a longitudinally extending right side reflector strip and a laterally spaced apart longitudinally extending left side reflector strip.
5 . The base station antenna of claim 1 , wherein the first column of radiating elements and the second column of radiating elements comprise cross-dipole radiating elements.
6 . The base station antenna of claim 5 , wherein at least some of the cross-dipole radiating elements in the first column of radiating elements comprise respective feed stalks that have portions that angle laterally inward, and wherein at least some of the cross-dipole radiating elements in the second column of cross-dipole radiating elements comprise respective feed stalks with portions that angle laterally inward.
7 . The base station antenna of claim 1 , wherein the first column of radiating elements comprises at least some radiating elements with respective feed stalks comprising a first portion and a second portion with the first portion behind the second portion, wherein the second portion extends laterally inward relative to the first portion, and wherein the second column of radiating elements comprises at least some radiating elements with respective feed stalks comprising a first portion and a second portion with the first portion behind the second portion, wherein the second portion extends laterally inward relative to the first portion.
8 . The base station antenna of claim 4 , wherein the reflector has an opening between the right side reflector strip and the left side reflector strip, and wherein the opening is sized and configured to receive at least some columns of the multiple column array of radiating elements of the active antenna module.
9 . The base station antenna of claim 1 , further comprising a frequency selective surface and/or substrate (FSS) in the housing, wherein the FSS extends a first length in a longitudinal direction that is less than an overall length of the housing in the longitudinal direction.
10 . The base station antenna of claim 9 , wherein the active antenna module is positioned behind the FSS.
11 . The base station antenna of claim 9 , wherein a primary reflector is in the housing and extends a second length in the longitudinal direction, wherein the second length is greater than the first length.
12 . The base station antenna of claim 11 , wherein the primary reflector is below the FSS.
13 . The base station antenna of claim 1 , further comprising a frequency selective surface and/or substrate “FSS” attached directly to a surface of a radome of the housing.
14 . The base station antenna of claim 1 , further comprising a frequency selective surface and/or substrate (FSS), wherein the housing comprises a radome, and wherein the FSS is on the radome.
15 . The base station antenna of claim 1 , further comprising a frequency selective surface and/or substrate (FSS) in the housing, wherein the FSS is on or adjacent a rear wall of the housing.
16 . The base station antenna of claim 9 , wherein the FSS is configured to reflect RF energy at a low frequency band and pass RF energy at a higher frequency band.
17 . The base station antenna of claim 2 , wherein the length of the recess in the longitudinal direction is in a range of about 20%-60% of the overall length of the housing and the recess extends laterally at least about 30% of a width of the housing.
18 . The base station antenna of claim 1 , further comprising a laterally extending seal cap coupled to a rear wall of the housing between a top portion and a bottom portion of the housing, wherein the active antenna module is above the seal cap.
19 . A base station antenna comprising:
a housing comprising a passive antenna assembly in the housing, wherein the passive antenna assembly comprises a first linear array of radiating elements and a second linear array of radiating elements laterally spaced apart from the first linear array of radiating elements, and wherein the first and second linear array of radiating elements extend along a longitudinal direction of the housing; and
a frequency selective surface and/or substrate (FSS) in and/or on the housing behind at least some of the radiating elements of the first linear array of radiating elements and behind at least some of the radiating elements of the second linear array of radiating elements, wherein the FSS extends laterally and longitudinally a sub-distance of a length of the housing to reside between a top portion and a medial portion of the housing and to reside laterally at least partially between the first linear array of radiating elements and the second linear array of radiating elements, and wherein the first and second linear arrays of radiating elements extend along the longitudinal direction of the housing a greater distance than the FSS.
20 . The base station antenna of claim 19 , wherein the housing has a rear wall that comprises a radome, and wherein the FSS is adjacent the radome.