IP Library › Granted Patent US 10,181,717
Granted Patent B2
US 10,181,717 · App. 14/615,803 · Granted Jan 15, 2019

Overvoltage protection system for wireless communication systems

Inventors: Douglas Wayne Miller (Post Falls, ID); Konstantinos Samaras (Athens, GR); Kelly Rae Richards (Post Falls, ID); Daniel Joseph Sullivan (Post Falls, ID); Megaklis Marathias (Athens, GR)
Assignee: RAYCAP S.A.
H02H9/04H01Q1/50H01T4/04H01T4/06H01T4/08
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Quick Facts
Patent No.
US 10,181,717
App. No.
14/615,803
Granted
Jan 15, 2019
Kind
B2
Abstract

A surge suppression system provides surge protection both locally within the radio station building were the power plant and telecommunication equipment are located and remotely next to the radios and antennas located outside of the building on the communication tower. An external surge suppression unit provides a waterproof enclosure for both surge suppression devices and fiber optic connectors. A rack mountable surge suppression unit provides local in-line surge suppression protection for the electrical equipment located in the communication station. A unique surge suppression tray is hot swappable so that multiple surge suppression devices can be replaced at the same time without disrupting radio operation. Pluggable surge suppression modules can be used in both the external surge suppression unit and the rack mountable surge suppression unit.

Claims (52)

1. A surge suppression system, comprising:

a first surge suppression unit configured to connect to first ends of multiple power cables coupled to a power supply and retain a first set of pluggable surge suppression modules, wherein the first surge suppression unit is located at a radio station housing the power supply and each of the surge suppression modules is coupled to one of the first ends for a different one of the multiple power cables; and

a second surge suppression unit configured to connect to second opposite ends of the multiple power cables coupled to radios powered by the power supply, wherein the second surge suppression unit is remotely located on a radio tower or building proximate to the radios and is configured to retain a second set of the pluggable surge suppression modules each coupled to one of the second opposite ends for a different one of the multiple power cables.

2. A surge suppression system of claim 1 , wherein the first and second set of surge suppression modules comprise:

surge suppression devices; and

bus bars attached at a first end to the surge suppression devices and a second end configured to plug into connectors located on a printed circuit board mounted in one of the first and second surge suppression units.

3. A surge suppression system of claim 2 , wherein the first and second set of surge suppression modules further comprise enclosures configured to retain the surge suppression devices and plug into the printed circuit board.

4. The surge suppression system of claim 1 wherein the first surge suppression unit further comprises:

a frame configured to attach to a rack;

a connection panel including multiple terminals extending out of a back end of the frame for connecting to the first ends of each of the power cables; and

a tray retaining the first set of surge suppression modules and including multiple in-line connectors extending out of a back end, the tray configured to slid horizontally in-between side walls of the frame as the multiple in-line connectors slidingly attach to the connection panel coupling each of the first set of surge suppression modules to the first ends of each of the multiple power cables.

5. The surge suppression system of claim 1 wherein the second surge suppression unit further comprises:

an enclosure base including ports extending through a first wall from an exterior side of the enclosure base to an interior side of the enclosure base, the ports forming elongated slots on a front face of the first wall configured to receive the second end of the power cables; and

a weather resistant enclosure cover configured to attach to the enclosure base and including a second wall configured to abut up against the first wall and cover the elongated slots.

6. The surge suppression system of claim 1 wherein:

the first surge suppression unit includes a first printed circuit board including etched conductor buses for connecting the first ends of the multiple power cables to the first set of surge suppression modules; and

the second surge suppression unit includes a second printed circuit board including etched conductor buses for connecting the second ends of the power cables to the second set of surge suppression modules.

7. The surge suppression system of claim 1 wherein the second surge suppression unit includes a fiber optic connector tray retaining fiber optic adapters each having a first end configured to receive a remote end of a fiber optic cable that extends from the radio station and a second end to receive one of multiple fiber optic jumper cables that connect to different ones of the radios.

8. A surge suppression system, comprising:

a first surge suppression unit retaining a first set of surge suppression devices coupled to first ends of multiple power cables, the first surge suppression unit including:

a frame configured to attach to a rack;

a connection panel including multiple terminals extending out of a back end of the frame for connecting to the first ends of the power cables; and

a tray retaining the first set of surge suppression devices and including multiple connectors extending out of a back end, the tray configured to slid horizontally in-between side walls of the frame as the multiple connectors slidingly attach to the connection panel coupling each of the first set of surge suppression devices to the first ends of the multiple power cables; and

a second surge suppression unit configured to retain a second set of suppression devices each coupled to second opposite ends of the multiple power cables, the second opposite ends of the multiple power cables connected to radios and the second surge suppression unit located remotely on a radio tower or building proximate to the radios.

9. A surge suppression system of claim 8 , including:

bus bars attached at a first end to the surge suppression devices and a second end configured to plug into connectors located on a printed circuit board mounted in one of the first and second surge suppression units.

10. A surge suppression system of claim 9 , including surge suppression modules configured to retain the surge suppression devices and the bus bars and plug into the connectors on the printed circuit board.

11. The surge suppression system of claim 8 wherein the second surge suppression unit includes:

an enclosure base including ports extending through a first wall from an exterior side of the enclosure base to an interior side of the enclosure base, the ports forming elongated slots on a front face of the first wall configured to receive the second end of the power cables; and

an enclosure cover configured to attach to the enclosure base and including a second wall configured to abut up against the first wall and cover the elongated slots.

12. The surge suppression system of claim 8 wherein:

the first surge suppression unit includes a first printed circuit board including etched conductor buses for connecting the first ends of the power cables to the first set of surge suppression devices; and

the second surge suppression unit includes a second printed circuit board including etched conductor buses for connecting the second ends of the power cables to the second set of surge suppression devices.

13. The surge suppression system of claim 8 wherein the second surge suppression unit includes a fiber optic connector tray retaining fiber optic adapters each having a first end configured to connect to a remote end of a fiber optic cable and a second end to connect to one of multiple fiber optic jumper cables that connect to the radios.

14. A surge suppression system, comprising:

a first surge suppression unit located in a radio station and configured to retain a first set of surge suppression devices coupled to first ends of multiple power cables, the first ends of the power cables connected to a power supply; and

a second surge suppression unit configured to connect to second opposite ends of the multiple power cables coupled to radios powered by the power supply, wherein the second surge suppression unit:

is located on a radio tower or building proximate to the radios;

retains a second set of suppression devices coupled to the second opposite ends of the multiple power cables; and

includes a fiber optic connector tray retaining fiber optic adapters each having a first end connecting to a remote end of a fiber optic cable and a second end connecting to one of multiple fiber optic jumper cables that connect to different ones of the radios.

15. A surge suppression system of claim 14 , including surge suppression modules located in the first and second surge suppression units, the surge suppression modules including:

bus bars attached at a first end to the surge suppression devices and a second end configured to plug into connectors located on printed circuit boards mounted in the first and second surge suppression units.

16. The surge suppression system of claim 14 wherein the second surge suppression unit further comprises:

an enclosure base including ports extending through a first wall from an exterior side of the enclosure base to an interior side of the enclosure base, the ports forming elongated slots on a front face of the first wall configured to receive the second end of the power cables; and

an enclosure cover configured to attach to the enclosure base and including a second wall configured to abut up against the first wall and cover the elongated slots.

17. The surge suppression system of claim 14 wherein:

the first surge suppression unit includes a first printed circuit board including etched conductor buses for connecting the first ends of the power cables to the first set of the surge suppression devices; and

the second surge suppression unit includes a second printed circuit board including etched conductor buses for connecting the second ends of the power cables to the second set of the surge suppression devices.

18. The surge suppression system of claim 14 , wherein the first surge suppression unit includes:

a frame configured to attach to a rack;

a connection panel including multiple terminals extending out of a back end of the frame for connecting to the first ends of each of the power cables; and

a tray retaining the first set of surge suppression devices and including multiple in-line connectors extending out of a back end, the tray configured to slid horizontally in-between side walls of the frame as the multiple in-line connectors slidingly attach to the connection panel coupling each of the first set of surge suppression device to the first ends of each of the multiple different power cables.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 8, 2015
From: MILLER, DOUGLAS WAYNE; SAMARAS, KONSTANTINOS; RICHARDS, KELLY RAE; SULLIVAN, DANIEL JOSEPH; MARATHIAS, MEGAKLIS
To: RAYCAP S.A.
Reel/Frame 035361/0308 →
Continuity (5)
Division 13301720 · Nov 21, 2011
Continuation In Part 12984304 · Jan 4, 2011
Provisional Application 61440609 · Feb 8, 2011
Provisional Application 61363967 · Jul 13, 2010
Related Publication 20150155706A1 · Jun 4, 2015
Cited By (2)
US 12,237,134 US 12,444,927