IP Library Patent Application 17619169
Patent Application
App. No. 17/619,169

ANTENNA FEED NETWORKS AND RELATED ANTENNAS AND METHODS

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Quick Facts
Patent No.
US None
App. No.
17/619,169
Filed
Dec 14, 2021
Examiner
TAN, VIBOL
Art Unit
2844
USPC
343/702
Abstract

An antenna comprises an array of radiating elements including a first column located at a side portion of the antenna and a second column located at a middle portion of the antenna. A feed network for the antenna comprises a filter at least partially filtering out a signal within the first sub-band of an operating frequency band of the antenna, such that the signal strength of a first sub-component of the signal within the first sub-band for the first column is smaller than the signal strength of a second sub-component of the signal within the first sub-band for the second column, and the signal strength of a first sub-component of the signal within a second sub-band of the operating frequency band of the antenna for the first column is not smaller than the signal strength of a second sub-component of the signal within the second sub-band for the second column.

Claims (39)

1 . A feed network for an antenna, the operating frequency band of the antenna comprising a first sub-band and a second sub-band that is at lower frequencies than the first sub-band, wherein

the antenna comprises an array of radiating elements, the array of radiating elements including a first column of radiating elements that is located at a side portion of the array of radiating elements and a second column of radiating elements that is located at a middle portion of the array of radiating elements,

the feed network comprises a first filter configured to at least partially filter out a signal within the first sub-band, and

the feed network is configured to feed the first column of radiating elements via the first filter and to not feed the second column of radiating elements via the first filter, such that the signal strength of a first sub-component of the signal within the first sub-band that is fed to the first column of radiating elements is smaller than the signal strength of a second sub-component of the signal within the first sub-band that is fed to the second column of radiating elements, and the signal strength of a first sub-component of a signal within the second sub-band that is fed to the first column of radiating elements is not smaller than the signal strength of a second sub-component of the signal within the second sub-band that is fed to the second column of radiating elements.

2 . The feed network of claim 1 , wherein the feed network further comprises a second filter that is configured to at least partially filter out the signal within the first sub-band, and

the feed network is configured to feed a third column of radiating elements that is located at a second side portion of the array of radiating elements via the second filter and to not feed the second column of radiating elements via the second filter, such that the signal strength of a third sub-component of the signal within the first sub-band that is fed to the third column of radiating elements is smaller than the signal strength of the second sub-component of the signal within the first sub-band that is fed to the second column of radiating elements, and the signal strength of a third sub-component of the signal within the second sub-band that is fed to the third column of radiating elements is not smaller than the signal strength of the second sub-component of the signal within the second sub-band that is fed to the second column of radiating elements.

3 . The feed network of claim 2 , wherein the first filter and the second filter are configured such that the first and third sub-components of the signal within the first sub-band that are fed to the first column of radiating elements and the third column of radiating elements via the first filter and the second filter, respectively, have the same signal strength.

4 . The feed network of claim 1 , wherein the ratio of the signal strength of the first sub-component of the signal within the first sub-band that is fed to the first column of radiating elements to the signal strength of the second sub-component of the signal within the first sub-band that is fed to the second column of radiating elements is in the range of 0.2:1 to 0.7:1.

5 . The feed network of claim 1 , wherein the ratio of the signal strength of the first sub-component of the signal within the first sub-band that is fed to the first column of radiating elements to the signal strength of the second sub-component of the signal within the first sub-band that is fed to the second column of radiating elements is 0.3:1.

6 . The feed network of claim 2 , wherein the ratio of the signal strengths of the respective first, second and third sub-components of the signal within the first sub-band that are respectively fed to the first column of radiating elements, the second column of radiating elements and the third column of radiating elements is 0.3:1:0.3.

7 . The feed network of claim 1 , wherein

the feed network further comprises a third filter that is configured to at least partially filter out a signal within the second sub-band, and

the feed network is further configured to feed the second column of radiating elements via the third filter and to not feed the first column of radiating elements via the third filter, such that the signal strength of the second sub-component of the signal within the second sub-band that is fed to the second column of radiating elements is smaller than the signal strength of the first sub-component of the signal within the second sub-band that is fed to the first column of radiating elements.

8 . The feed network of claim 7 , wherein the array of radiating elements further comprises a fourth column of radiating elements that is located at a middle portion of the array of radiating elements.

9 . The feed network of claim 8 , further comprising a fourth filter that is configured to at least partially filter out a signal within the second sub-band, wherein the feed network feeds the fourth column radiating elements via the fourth filter and to not feed the first column of radiating elements via the fourth filter, such that the signal strength of a fourth sub-component of the signal within the second sub-band that is fed to the fourth column of radiating elements is smaller than the signal strength of the first sub-component of the signal within the second sub-band that is fed to the first column of radiating elements.

10 . The feed network of claim 9 , wherein the third filter and the fourth filter are configured such that the second and fourth sub-components of the signal within the second sub-band that are fed to the second column of radiating elements and the fourth column of radiating elements via the third filter and the fourth filter, respectively, have the same signal strength.

11 . The feed network of claim 7 , wherein the ratio of the signal strength of the first sub-component of the signal within the second sub-band that is fed to the first column of radiating elements to the signal strength of the second sub-component of the signal within the second sub-band that is fed to the second column of radiating elements is in the range of 1:0.5 to 1:0.9.

12 . The feed network of claim 7 , wherein the second filter is configured to completely filter out signals within the second sub-band.

13 . The feed network of claim 2 , wherein the array of radiating elements further comprises a fourth column of radiating elements that is located at a middle portion of the array of radiating elements, and

wherein ratio of the signal strengths of the respective first through fourth sub-components of the signal within the first sub-band that are respectively fed to the first to fourth columns of radiating elements is 0.3:1:0.3:1.

14 . (canceled)

15 . A feed network for an antenna, the operating frequency band of the antenna comprising a first sub-band and a second sub-band that is at lower frequencies than the first sub-band, wherein

the antenna comprises an array of radiating elements, the array of radiating elements including a first column of radiating elements that is located at a side portion of the array of radiating elements and a second column of radiating elements that is located at a middle portion of the array of radiating elements,

the feed network comprises a first attenuator that attenuates signals within the first sub-band, and

the feed network is configured to feed the first column of radiating elements via the first attenuator and to not feed the second column of radiating elements via the first attenuator, such that the signal strength of a first sub-component of the signal within the first sub-band that is fed to the first column of radiating elements is smaller than the signal strength of a second sub-component of the signal within the first sub-band that is fed to the second column of radiating elements, and the signal strength of a first sub-component of a signal within the second sub-band that is fed to the first column of radiating elements is not smaller than the signal strength of a second sub-component of the signal within the second sub-band that is fed to the second column of radiating elements.

16 . The feed network of claim 15 , wherein the feed network further comprises a second attenuator that attenuates signals within the first sub-band, and

the feed network is configured to feed a third column of radiating elements that is located at a second side portion of the array of radiating elements via the second attenuator and to not feed the second column of radiating elements via the second attenuator, such that the signal strength of a third sub-component of the signal within the first sub-band that is fed to the third column of radiating elements is smaller than the signal strength of the second sub-component of the signal within the first sub-band that is fed to the second column of radiating elements, and the signal strength of a third sub-component of the signal within the second sub-band that is fed to the third column of radiating elements is not smaller than the signal strength of the second sub-component of the signal within the second sub-band that is fed to the second column of radiating elements.

17 . The feed network of claim 16 , wherein the first attenuator and the second attenuator are configured such that the first and third sub-components of the signal within the first sub-band that are fed to the first column of radiating elements and the third column of radiating elements via the first attenuator and the second attenuator, respectively, have the same signal strength.

18 . The feed network of claim 15 , wherein

the feed network further comprises a third attenuator that attenuates signals within the second sub-band,

the feed network is further configured to feed the second column of radiating elements via the third attenuator and to not feed the first column of radiating elements via the third attenuator, such that the signal strength of the second sub-component of the signal within the second sub-band that is fed to the second column of radiating elements is smaller than the signal strength of the first sub-component of the signal within the second sub-band that is fed to the first column of radiating elements.

19 . The feed network of claim 18 , wherein the array of radiating elements further comprises a fourth column of radiating elements.

20 . The feed network of claim 19 , further comprising a fourth attenuator that attenuates signals within the second sub-band, and wherein the feed network feeds the second column of radiating elements via the third attenuator and feeds the fourth column of radiating elements via the fourth attenuator.

21 - 22 . (canceled)

23 . A feed network for an antenna, the operating frequency band of the antenna comprising a first sub-band and a second sub-band that is at higher frequencies than the first sub-band, wherein

the antenna comprises an array of radiating elements, the array of radiating elements including a first column of radiating elements that is located at a middle portion of the array of radiating elements and a second column of radiating elements that is located at a side portion of the array of radiating elements,

the feed network comprises a first filter that is configured to at least partially filter out a signal within the first sub-band, and

the feed network is configured to feed the first column of radiating elements via the first filter and to not feed the second column of radiating elements via the first filter, such that the signal strength of a first sub-component of the signal within the first sub-band that is fed to the first column of radiating elements is smaller than the signal strength of a second sub-component of the signal within the first sub-band that is fed to the second column of radiating elements, and the signal strength of a first sub-component of a signal within the second sub-band that is fed to the first column of radiating elements is not smaller than the signal strength of a second sub-component of the signal within the second sub-band that is fed to the second column of radiating elements.

24 - 31 . (canceled)

Assignments (12)
RELEASE OF SECURITY INTEREST AT REEL/FRAME 059350/0743 Recorded Jan 12, 2026
From: JPMORGAN CHASE BANK, N.A., AS COLLATERAL AGENT
To: ARRIS ENTERPRISES LLC; COMMSCOPE TECHNOLOGIES LLC; COMMSCOPE NORTH CAROLINA, LLC (F/K/A COMMSCOPE, INC. OF NORTH CAROLINA)
Reel/Frame 074594/0156 →
TERMINATION AND RELEASE OF SECURITY INTEREST IN PATENTS AT REEL/FRAME NO. 59710/0506 Recorded Jan 9, 2026
From: WILMINGTON TRUST, NATIONAL ASSOCIATION, AS COLLATERAL AGENT
To: ARRIS ENTERPRISES LLC; COMMSCOPE TECHNOLOGIES LLC; COMMSCOPE NORTH CAROLINA, LLC (F/K/A COMMSCOPE, INC. OF NORTH CAROLINA)
Reel/Frame 074282/0522 →
RELEASE (REEL 068770 / FRAME 0460) Recorded Feb 7, 2025
From: JPMORGAN CHASE BANK, N.A.
To: OUTDOOR WIRELESS NETWORKS LLC
Reel/Frame 070149/0432 →
RELEASE OF SECURITY INTEREST AT REEL/FRAME 068770/0632 Recorded Dec 19, 2024
From: JPMORGAN CHASE BANK, N.A., AS COLLATERAL AGENT
To: OUTDOOR WIRELESS NETWORKS LLC
Reel/Frame 069743/0264 →
RELEASE OF SECURITY INTEREST AT REEL/FRAME 059350/0921 Recorded Dec 19, 2024
From: JPMORGAN CHASE BANK, N.A., AS COLLATERAL AGENT
To: ARRIS ENTERPRISES LLC (F/K/A ARRIS ENTERPRISES, INC.); COMMSCOPE, INC. OF NORTH CAROLINA; COMMSCOPE TECHNOLOGIES LLC
Reel/Frame 069743/0704 →
PATENT SECURITY AGREEMENT (TERM) Recorded Aug 26, 2024
From: OUTDOOR WIRELESS NETWORKS LLC
To: JPMORGAN CHASE BANK, N.A., AS COLLATERAL AGENT
Reel/Frame 068770/0632 →
PATENT SECURITY AGREEMENT (ABL) Recorded Aug 26, 2024
From: OUTDOOR WIRELESS NETWORKS LLC
To: JPMORGAN CHASE BANK, N.A., AS COLLATERAL AGENT
Reel/Frame 068770/0460 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 3, 2024
From: COMMSCOPE TECHNOLOGIES LLC
To: OUTDOOR WIRELESS NETWORKS LLC
Reel/Frame 068107/0089 →
SECURITY INTEREST Recorded Mar 9, 2022
From: ARRIS ENTERPRISES LLC; COMMSCOPE TECHNOLOGIES LLC; COMMSCOPE, INC. OF NORTH CAROLINA
To: WILMINGTON TRUST
Reel/Frame 059710/0506 →
TERM LOAN SECURITY AGREEMENT Recorded Mar 8, 2022
From: ARRIS ENTERPRISES LLC; COMMSCOPE TECHNOLOGIES LLC; COMMSCOPE, INC. OF NORTH CAROLINA
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 059350/0921 →
ABL SECURITY AGREEMENT Recorded Mar 8, 2022
From: ARRIS ENTERPRISES LLC; COMMSCOPE TECHNOLOGIES LLC; COMMSCOPE, INC. OF NORTH CAROLINA
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 059350/0743 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 14, 2021
From: CHEN, CHANGFU; WEN, HANGSHENG
To: COMMSCOPE TECHNOLOGIES LLC
Reel/Frame 058389/0051 →