IP Library Granted Patent US 11,962,236
Granted Patent B2
US 11,962,236 · App. 18/155,497 · Granted Apr 16, 2024

Apparatuses and methods for averting human harm due to high voltage powerlines

Inventors: Khalid W. Al-Mufti (Sterling, VA); Thomas F. Craft, Jr. (Murphy, TX)
Assignee: CommScope Technologies LLC
H02M1/36G05B9/02H02J1/00H02M3/04
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Quick Facts
Patent No.
US 11,962,236
App. No.
18/155,497
Granted
Apr 16, 2024
Kind
B2
Abstract

Techniques are disclosed that use an alternating current bridge circuit to determine whether an impedance change occurs at an input to DC-DC voltage converter(s). Techniques are also disclosed for a DC power distribution system that utilizes isolation circuitry coupled to an input of DC-DC voltage converter(s).

Claims (62)

1. An electrical power distribution system, comprising:

first isolation circuitry comprising an input and an output, wherein the input of the first isolation circuitry is configured to be electrically coupled to an output of a direct current (DC) power supply, and wherein the output of the first isolation circuitry is configured to be coupled to an input of a first voltage converter;

second isolation circuitry comprising an input and an output, wherein the input of the second isolation circuitry is configured to be electrically coupled to the output of the first isolation circuitry and to an input of the first voltage converter, and wherein the output of the second isolation circuitry is configured to be coupled to an input of a second voltage converter; and

third isolation circuitry comprising an input and an output, wherein the input of the third isolation circuitry is configured to be electrically coupled to the output of the second isolation circuitry and to an input of the second voltage converter;

wherein the first isolation circuitry is configured to detect when a first additional resistance with a first resistance value less than or equal to a resistance threshold level is electrically connected across the output of the first isolation circuitry, and, upon detecting that the first resistance value that is less than or equal to the resistance threshold level, then reduce a DC voltage level supplied at the output of the first isolation circuitry;

wherein the second isolation circuitry is configured to detect when a second additional resistance with a second resistance value less than or equal to the resistance threshold level is electrically connected across the output of the second isolation circuitry, and, upon detecting that the second resistance value that is less than or equal to the resistance threshold level, then reduce a DC voltage level supplied at the output of the second isolation circuitry;

wherein the third isolation circuitry is configured to detect when a third additional resistance with a third resistance value less than or equal to the resistance threshold level is electrically connected across the output of the third isolation circuitry, and, upon detecting that the third resistance value that is less than or equal to the resistance threshold level, then reduce a DC voltage level supplied at the output of the third isolation circuitry;

wherein a reduction of a DC voltage level supplied at an output of isolation circuitry does not affect a DC voltage level supplied to an input of the isolation circuitry.

2. The electrical power distribution system of claim 1 , wherein the resistance threshold level is less than or equal to eight kiloohms.

3. The electrical power distribution system of claim 1 , wherein each of the first, the second, and the third isolation circuitry is further configured to reduce the DC voltage level, at their respective output, for a predetermined finite period of time.

4. The electrical power distribution system of claim 1 , wherein the first voltage converter and the second voltage converter are each a DC-DC voltage converter.

5. The electrical power distribution system of claim 1 , further comprising:

the DC power supply;

the first voltage converter;

the second voltage converter;

a first radio electrically coupled to an output of the first voltage converter; and

a second radio electrically coupled to an output of the second voltage converter.

6. The electrical power distribution system of claim 1 , wherein the first isolation circuitry,

the second isolation circuitry, and the third isolation circuitry each further comprise:

an alternating current (AC) Wheatstone bridge;

an AC signal generator electrically coupled to first and third nodes of the AC Wheatstone bridge; and

detector circuitry electrically coupled to second and fourth nodes of the AC Wheatstone bridge and configured to (a) detect when a differential peak or root mean square (RMS) voltage or current level across two nodes of the AC Wheatstone bridge exceeds a corresponding threshold level and (b) upon detecting that the corresponding threshold level has been exceed, then generate an electrical signal to cause the DC voltage level at an output of the isolation circuitry to be reduced.

7. The electrical power distribution system of claim 1 , wherein the first and the second voltage converters are each a DC-DC buck voltage converter.

8. An electrical power distribution system, comprising:

isolation circuitry comprising an input and an output, wherein the input of the isolation circuitry is configured to be electrically coupled to an output of a direct current (DC) power supply, and wherein the output of the isolation circuitry is configured to be coupled to an input of a first voltage converter and an input of a second voltage converter; and

wherein the isolation circuitry is configured to detect when an additional resistance with a resistance value less than or equal to a resistance threshold level is electrically connected across the output of the isolation circuitry, and, upon detecting that the resistance value that is less than or equal to the resistance threshold level, then reduce a DC voltage level supplied at the output of the isolation circuitry;

wherein a reduction of the DC voltage level supplied at the output of the isolation circuitry does not affect a DC voltage supplied to the input of the isolation circuitry;

wherein the isolation circuitry further comprises:

an alternating current (AC) Wheatstone bridge;

an AC signal generator electrically coupled to first and third nodes of the AC Wheatstone bridge; and

detector circuitry electrically coupled to second and fourth nodes of the AC Wheatstone bridge and configured to (a) detect when a differential peak or root mean square (RMS) voltage or current level across two nodes of the AC Wheatstone bridge exceeds a corresponding threshold level and (b) upon detecting that the corresponding threshold level has been exceed, then generate an electrical signal to cause the DC voltage level at the output of the isolation circuitry to be reduced.

9. The electrical power distribution system of claim 8 , wherein the resistance threshold level is less than or equal to eight kiloohms.

10. The electrical power distribution system of claim 8 , wherein the isolation circuitry is further configured to reduce the DC voltage level, at the output of the isolation circuitry, for a predetermined finite period of time.

11. The electrical power distribution system of claim 8 , wherein the first voltage converter and the second voltage converter are each a DC-DC voltage converter.

12. The electrical power distribution system of claim 8 , further comprising:

the DC power supply;

the first voltage converter;

the second voltage converter;

a first radio electrically coupled to an output of the first voltage converter; and

a second radio electrically coupled to an output of the second voltage converter.

13. The electrical power distribution system of claim 8 , wherein the first and the second voltage converters are each a DC-DC buck voltage converter.

14. An electrical power distribution system, comprising:

first isolation circuitry comprising an input and an output, wherein the input of the first isolation circuitry is configured to be electrically coupled to an output of a direct current (DC) power supply, and wherein the output of the first isolation circuitry is configured to be coupled to an input of a first voltage converter;

second isolation circuitry comprising an input and an output, wherein the input of the second isolation circuitry is configured to be electrically coupled to the input of the first isolation circuitry, and wherein the output of the second isolation circuitry is configured to be coupled to an input of a second voltage converter;

wherein the first isolation circuitry is configured to detect when a first additional resistance with a first resistance value less than or equal to a resistance threshold level is electrically connected across the output of the first isolation circuitry, and, upon detecting that the first resistance value that is less than or equal to the resistance threshold level, then reduce a DC voltage level supplied at the output of the first isolation circuitry;

wherein the second isolation circuitry is configured to detect when a second additional resistance with a second resistance value less than or equal to the resistance threshold level is electrically connected across the output of the second isolation circuitry, and, upon detecting that the second resistance value that is less than or equal to the resistance threshold level, then reduce a DC voltage level supplied at the output of the second isolation circuitry; and

wherein a reduction of a DC voltage level supplied at an output of isolation circuitry does not affect an DC voltage level supplied to an input of the isolation circuitry.

15. The electrical power distribution system of claim 14 , wherein the resistance threshold level is less than or equal to eight kiloohms.

16. The electrical power distribution system of claim 14 , wherein each of the first and the second isolation circuitry is further configured to reduce the DC voltage level, at their respective output, for a predetermined finite period of time.

17. The electrical power distribution system of claim 14 , wherein the first voltage converter and the second voltage converter are each a DC-DC voltage converter.

18. The electrical power distribution system of claim 14 , further comprising:

the DC power supply;

the first voltage converter;

the second voltage converter;

a first radio electrically coupled to an output of the first voltage converter; and

a second radio electrically coupled to an output of the second voltage converter.

19. The electrical power distribution system of claim 14 , wherein the first isolation circuitry,

and the second isolation circuitry each further comprise:

an alternating current (AC) Wheatstone bridge;

an AC signal generator electrically coupled to first and third nodes of the AC Wheatstone bridge; and

detector circuitry electrically coupled to second and fourth nodes of the AC Wheatstone bridge and configured to (a) detect when a differential peak or root mean square (RMS) voltage or current level across two nodes of the AC Wheatstone bridge exceeds a corresponding threshold level and (b) upon detecting that the corresponding threshold level has been exceed, then generate an electrical signal to cause the DC voltage level at the output of the isolation circuitry to be reduced.

20. The electrical power distribution system of claim 14 , wherein the first and the second voltage converters are each a DC-DC buck voltage converter.

Assignments (13)
RELEASE OF SECURITY INTEREST AT REEL/FRAME 067252/0657 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 074593/0348 →
PARTIAL TERMINATION AND RELEASE OF SECURITY INTEREST IN PATENTS RECORDED AT REEL 069889/FRAME 0114 Recorded Feb 7, 2025
From: APOLLO ADMINISTRATIVE AGENCY LLC
To: OUTDOOR WIRELESS NETWORKS LLC
Reel/Frame 070154/0341 →
PARTIAL TERMINATION AND RELEASE OF SECURITY INTEREST IN PATENTS Recorded Feb 7, 2025
From: U.S. BANK TRUST COMPANY, NATIONAL ASSOCIATION
To: OUTDOOR WIRELESS NETWORKS LLC
Reel/Frame 070154/0183 →
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 067259/0697 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 069790/0575 →
SECURITY INTEREST Recorded Dec 17, 2024
From: ARRIS ENTERPRISES LLC; COMMSCOPE TECHNOLOGIES LLC; COMMSCOPE INC., OF NORTH CAROLINA; OUTDOOR WIRELESS NETWORKS LLC; RUCKUS IP HOLDINGS LLC
To: APOLLO ADMINISTRATIVE AGENCY LLC
Reel/Frame 069889/0114 →
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 →
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 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 3, 2024
From: COMMSCOPE TECHNOLOGIES LLC
To: OUTDOOR WIRELESS NETWORKS LLC
Reel/Frame 068107/0089 →
PATENT SECURITY AGREEMENT (TERM) Recorded Apr 29, 2024
From: ARRIS ENTERPRISES LLC; COMMSCOPE TECHNOLOGIES LLC; COMMSCOPE, INC. OF NORTH CAROLINA
To: JPMORGAN CHASE BANK, N.A., AS COLLATERAL AGENT
Reel/Frame 067259/0697 →
PATENT SECURITY AGREEMENT (ABL) Recorded Apr 29, 2024
From: ARRIS ENTERPRISES LLC; COMMSCOPE TECHNOLOGIES LLC; COMMSCOPE, INC. OF NORTH CAROLINA
To: JPMORGAN CHASE BANK, N.A., AS COLLATERAL AGENT
Reel/Frame 067252/0657 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 17, 2023
From: AL-MUFTI, KHALID W.
To: COMMSCOPE TECHNOLOGIES LLC
Reel/Frame 062398/0644 →
Continuity (3)
Continuation 17468011 · Sep 7, 2021
Provisional Application 63075451 · Sep 8, 2020
Related Publication 20230155484A1 · May 18, 2023