IP Library Granted Patent US 7,182,611
Granted Patent B2
US 7,182,611 · App. 11/029,721 · Granted Feb 27, 2007

Dual-sectioned grounding bushing assembly

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Quick Facts
Patent No.
US 7,182,611
App. No.
11/029,721
Granted
Feb 27, 2007
Kind
B2
Abstract

The present invention provides a grounding bushing assembly essentially comprising a first bushing section, a second bushing section, select pivot structure, select latch structure, and select ground conductor attachment structure. The first bushing section, second bushing section, select pivot structure, select latch structure, and select ground conductor attachment structure are all preferably constructed from electrically conductive materials for allowing electric charges to migrate through the material. The first and second sections each comprise an arc length intermediate the section ends, which are lengths together function to cooperatively form an annular, dual-sectioned, grounding bushing. The resulting grounding bushing comprises an inner annular surface, an outer annular surface, a conductor inlet end, a conductor outlet end, and unique ground conductor attachment structure. The present invention enables an installer thereof to install the same in cooperative association with a ground conductor either before or after electrical connections are finalized.

Claims (82)

1. A dual-sectioned, grounding bushing assembly, the grounding bushing assembly for enabling an installer to install the grounding bushing assembly either before or after electrical connections are finalized, the grounding bushing assembly comprising:

a first bushing section and a second bushing section, the first bushing section comprising a first section hinge end, a first section latch end, and a first section arc length intermediate the first section hinge end and the first section latch end, the second bushing section comprising a second section hinge end, a second section latch end, and a second section arc length intermediate the second section hinge end and the second section latch end;

hinge means, the hinge means comprising first section hinge knuckle structure, second section hinge knuckle structure and a hinge pin, the first section hinge knuckle structure integrally formed with the first bushing section adjacent the first section hinge end, the second section hinge knuckle structure integrally formed with the second bushing section adjacent the second section hinge end, the first and second hinge knuckle structures each comprising hinge pin-receiving structure, the hinge pin-receiving structure having a hinge pin axis, the hinge pin insertable into the hinge pin-receiving structures for pivotally connecting the first bushing section to the second bushing section, the first bushing section and the second bushing section being pivotable about a pivot axis when pivotally connected, the pivot axis being collinear with the hinge pin axis;

latch means, the latch means comprising first section latch knuckle structure, second section latch knuckle structure and latch pin means, the first section latch knuckle structure integrally formed with the first bushing section adjacent the first section latch end, the second section latch knuckle structure integrally formed with the second bushing section adjacent the second section latch end, the first and second latch knuckle structures each comprising latch pin-receiving structure, the latch pin-receiving structure having a latch pin axis, the latch pin axis being substantially parallel to the hinge pin axis, the latch pin means insertable into the latch pin-receiving structure for removably fastening the first section latch end to the second section latch end, the first and second section arc lengths thus cooperatively forming an annular, dual-sectioned, grounding bushing, the grounding bushing comprising an inner annular surface, an outer annular surface, a conductor inlet end, a conductor outlet end, and a bushing axis, the bushing axis being substantially parallel to the latch pin axis and the hinge pin axis, the conductor inlet end for receiving at least one electrical conductor, the electrical conductor exiting a conduit terminus, the conductor inlet end for removable attachment to the conduit terminus, the electrical conductor for finalized electrical connectivity to structure adjacent the conduit terminus, the grounding bushing assembly thus enabling an installer to install the grounding bushing assembly either before or after electrical connections are finalized; and

a substantially C-shaped ground conductor-receiving structure, the conductor-receiving structure for removably attaching a ground conductor to the grounding bushing, the conductor-receiving structure comprising a spine, a superior C portion, an inferior C portion, the spine being fixedly attached to the outer annular surface, the spine, superior C portion, and inferior C portion together defining a ground conductor-receiving groove, the conductor-receiving groove being sized and shaped to receive a ground conductor.

2. The grounding bushing assembly of claim 1 wherein the conductor-receiving structure comprises a substantially planar first face, a substantially planar second face, and a structural thickness intermediate the first face and the second face, the conductor-receiving groove having a groove axis, the groove axis being substantially orthogonal to the first face and the second face.

3. The grounding bushing assembly of claim 2 wherein the superior conductor-receiving structure comprises ground conductor set means for fixedly setting a ground conductor in contact with the grounding bushing assembly for enabling more proper grounding.

4. The grounding bushing assembly of claim 3 wherein the ground conductor set means is defined by set screw-receiving structure and a set screw cooperatively associated with the set screw-receiving structure.

5. The grounding bushing assembly of claim 4 wherein the set screw-receiving structure is formed in the superior C portion.

6. The grounding bushing assembly of claim 5 wherein the superior C portion extends radially outward from the grounding bushing assembly and the inferior C portion extends radially outward and towards the superior C portion, the conductor-receiving groove thus comprising a conductor seat, the conductor seat being structurally situated intermediate the conductor inlet end and the conductor outlet end for decreasing the charge migratory distance from the grounding bushing assembly to the ground conductor.

7. A dual-sectioned, grounding bushing assembly, the grounding bushing assembly for enabling an installer to install the grounding bushing assembly either before or after electrical connections are finalized, the grounding bushing assembly comprising:

a first bushing section and a second bushing section, the first bushing section comprising a first section hinge end, a first section latch end, and a first section arc length intermediate the first section hinge end and the first section latch end, the second bushing section comprising a second section hinge end, a second section latch end, and a second section arc length intermediate the second section hinge end and the second section latch end;

hinge means, the hinge means comprising first section hinge knuckle structure, second section hinge knuckle structure and a hinge pin, the first section hinge knuckle structure integrally formed with the first bushing section adjacent the first section hinge end, the second section hinge knuckle structure integrally formed with the second bushing section adjacent the second section hinge end, the first and second hinge knuckle structures each comprising hinge pin-receiving structure, the hinge pin-receiving structure having a hinge pin axis, the hinge pin insertable into the hinge pin-receiving structure for pivotally connecting the first bushing section to the second bushing section, the first bushing section and the second bushing section being pivotable about a pivot axis when pivotally connected, the pivot axis being collinear with the hinge pin axis;

latch means, the latch means comprising first section latch structure, second section latch structure and a latch pin, the first section latch structure integrally formed with the first bushing section adjacent the first section latch end, the second section latch structure integrally formed with the second bushing section adjacent the second section latch end, the first and second latch structures each comprising latch pin-receiving structure, the latch pin-receiving structure having a latch pin axis, the latch pin removably insertable into the latch pin-receiving structure for removably fastening the first section latch end to the second section latch end, the first and second section arc lengths thus cooperatively forming an annular, dual-sectioned grounding bushing, the grounding bushing comprising an inner annular surface, an outer annular surface, a conductor inlet end, a conductor outlet end, and a bushing axis, the bushing axis being substantially parallel to the hinge pin axis, the inner annular surface comprising a circumferential seat flange, the seat flange being intermediate the conductor inlet end and the conductor outlet end;

a dual-sectioned, insulative bushing member, the insulative bushing member comprising a first insulative section and a second insulative section, the first and second insulative sections each comprising a first insulative end, a second insulative end, and an insulative arc length intermediate the first insulative end and the second insulative end, the first and second insulative sections thus cooperatively forming an annular, dual-sectioned bushing member, the bushing member being sized and shaped to snugly seat upon the seat flange, the conductor inlet end for receiving at least one electrical conductor, the electrical conductor exiting a conduit terminus, the conductor inlet end for removable attachment to the conduit terminus, the electrical conductor for finalized electrical connectivity to structure adjacent the conduit terminus, the grounding bushing assembly thus enabling an installer to install the grounding bushing assembly either before or after electrical connections are finalized; and

a substantially C-shaped ground conductor-receiving structure, the conductor-receiving structure for removably attaching a ground conductor to the grounding bushing, the conductor-receiving structure comprising a spine, a superior C portion, an inferior C portion, the spine being fixedly attached to the outer annular surface, the spine, superior C portion, and inferior C portion together defining a ground conductor-receiving groove, the conductor-receiving groove being sized and shaped to receive a ground conductor.

8. The grounding bushing assembly of claim 7 wherein the conductor-receiving structure comprises a substantially planar first face, a substantially planar second face, and a structural thickness intermediate the first face and the second face, the conductor-receiving groove having a groove axis, the groove axis being substantially orthogonal to the first face and the second face.

9. The grounding bushing assembly of claim 8 wherein the superior conductor-receiving structure comprises ground conductor set means for fixedly setting a ground conductor in contact with the grounding bushing assembly for enabling more proper grounding.

10. The grounding bushing assembly of claim 9 wherein the ground conductor set means is defined by set screw-receiving structure and a set screw cooperatively associated with the set screw-receiving structure.

11. The grounding bushing assembly of claim 10 wherein the set screw-receiving structure is formed in the superior C portion.

12. The grounding bushing assembly of claim 11 wherein the superior C portion extends radially outward from the grounding bushing assembly and the inferior C portion extends radially outward and towards the superior C portion, the conductor-receiving groove thus comprising a conductor seat, the conductor seat being structurally situated intermediate the conductor inlet end and the conductor outlet end for decreasing the charge migratory distance from the grounding bushing assembly to the ground conductor.

13. A dual-sectioned, grounding bushing assembly, the grounding bushing assembly enabling an installer to install the grounding bushing assembly either before or after electrical connections are finalized, the grounding bushing assembly comprising:

a first bushing section and a second bushing section, the first bushing section comprising a first section hinge end, a first section latch end, and a first section arc length intermediate the first section hinge end and the first section latch end, the second bushing section comprising a second section hinge end, a second section latch end, and a second section arc length intermediate the second section hinge end and the second section latch end;

hinge means, the hinge means comprising first section hinge knuckle structure, second section hinge knuckle structure, and a fixed hinge post, the first section hinge knuckle structure integrally formed with the first bushing section adjacent the first section hinge end, the second section hinge knuckle structure integrally formed with the second bushing section adjacent the second section hinge end, the hinge post being integrally formed with the second section hinge knuckle structure, the hinge post having a hinge post axis, the first section hinge knuckle structure comprising hinge post-receiving structure, the hinge post-receiving structure being cooperatively associated with the hinge post for pivotally connecting the first bushing section to the second bushing section, the first bushing section and the second bushing section being pivotable about a pivot axis when pivotally connected, the pivot axis being collinear with the hinge post axis;

latch means, the latch means comprising first section latch structure, second section latch structure and a latch pin, the first section latch structure integrally formed with the first bushing section adjacent the first section latch end, the second section latch structure integrally formed with the second bushing section adjacent the second section latch end, the first and second latch structures each comprising latch pin-receiving structure, the latch pin-receiving structure having a latch pin axis, the latch pin removably insertable into the latch pin-receiving structure for removably fastening the first section latch end to the second section latch end, the first and second section arc lengths thus cooperatively forming an annular, dual-sectioned grounding bushing, the grounding bushing comprising an inner annular surface, an outer annular surface, a conductor inlet end, a conductor outlet end, and a bushing axis, the bushing axis being substantially parallel to the hinge post axis, the conductor inlet end for receiving at least one electrical conductor, the electrical conductor exiting a conduit terminus, the conductor inlet end for removable attachment to the conduit terminus, the electrical conductor for finalized electrical connectivity to structure adjacent the conduit terminus, the grounding bushing assembly thus enabling an installer to install the grounding bushing assembly either before or after electrical connections are finalized; and

a substantially C-shaped ground conductor-receiving structure, the conductor-receiving structure for removably attaching a ground conductor to the grounding bushing, the conductor-receiving structure comprising a spine, a superior C portion, an inferior C portion, the spine being fixedly attached to the outer annular surface, the spine, superior C portion, and inferior C portion together defining a ground conductor-receiving groove, the conductor-receiving groove being sized and shaped to receive a ground conductor.

14. The grounding bushing assembly of claim 13 wherein the conductor-receiving structure comprises a substantially planar first face, a substantially planar second face, and a structural thickness intermediate the first face and the second face, the conductor-receiving groove having a groove axis, the groove axis being substantially orthogonal to the first face and the second face.

15. The grounding bushing assembly of claim 14 wherein the superior conductor-receiving structure comprises ground conductor set means for fixedly setting a ground conductor in contact with the grounding bushing assembly for enabling more proper grounding.

16. The grounding bushing assembly of claim 15 wherein the ground conductor set means is defined by set screw-receiving structure and a set screw cooperatively associated with the set screw-receiving structure.

17. The grounding bushing assembly of claim 16 wherein the set screw-receiving structure is formed in the superior C portion.

18. The grounding bushing assembly of claim 17 wherein the superior C portion extends radially outward from the grounding bushing assembly and the inferior C portion extends radially outward and towards the superior C portion, the conductor-receiving groove thus comprising a conductor seat, the conductor seat being structurally situated intermediate the conductor inlet end and the conductor outlet end for decreasing the charge migratory distance from the grounding bushing assembly to the ground conductor.

19. A dual-sectioned grounding bushing assembly, the grounding bushing assembly for enabling an installer to install the grounding bushing assembly either before or after electrical connections are finalized, the grounding bushing assembly comprising:

a first bushing section and a second bushing section, the first bushing section comprising a first section hinge end, a first section latch end, and a first section arc length intermediate the first section hinge end and the first section latch end, the second bushing section comprising a second section hinge end, a second section latch end, and a second section arc length intermediate the second section hinge end and the second section latch end;

hinge means, the hinge means comprising first section hinge knuckle structure, second section hinge knuckle structure and a hinge pin, the first section hinge knuckle structure integrally formed with the first bushing section adjacent the first section hinge end, the second section hinge knuckle structure integrally formed with the second bushing section adjacent the second section hinge end, the first and second hinge knuckle structures each comprising hinge pin-receiving structure, the hinge pin-receiving structure having a hinge pin axis, the hinge pin insertable into the hinge pin-receiving structures for pivotally connecting the first bushing section to the second bushing section, the first bushing section and the second bushing section being pivotable about a pivot axis when pivotally connected, the pivot axis being collinear with the hinge pin axis;

latch means, the latch means comprising first section latch structure, second section latch structure and at least one latch pin, the first section latch structure integrally formed with the first bushing section adjacent the first section latch end, the second section latch structure integrally formed with the second bushing section adjacent the second section latch end, the first and second latch structures each comprising latch pin-receiving structure, the latch pin-receiving structure having a latch pin axis, the latch pin removably insertable into the latch pin-receiving structure for removably fastening the first section latch end to the second section latch end, the first and second section arc lengths thus cooperatively forming an annular, dual-sectioned grounding bushing, the grounding bushing comprising an inner annular surface, an outer annular surface, a conductor inlet end, a conductor outlet end, and a bushing axis, the bushing axis being substantially parallel to the hinge pin axis, the conductor inlet end for receiving at least one electrical conductor, the electrical conductor exiting a conduit terminus, the conductor inlet end for removable attachment to the conduit terminus, the electrical conductor for finalized electrical connectivity to structure adjacent the conduit terminus, the grounding bushing assembly thus enabling an installer to install the grounding bushing assembly either before or after electrical connections are finalized; and

a substantially C-shaped ground conductor-receiving structure, the conductor-receiving structure for removably attaching a ground conductor to the grounding bushing, the conductor-receiving structure comprising a spine, a superior C portion, an inferior C portion, the spine being fixedly attached to the outer annular surface, the spine, superior C portion, and inferior C portion together defining a ground conductor-receiving groove, the conductor-receiving groove being sized and shaped to receive a ground conductor.

20. The grounding bushing assembly of claim 19 wherein the conductor-receiving structure comprises a substantially planar first face, a substantially planar second face, and a structural thickness intermediate the first face and the second face, the conductor-receiving groove having a groove axis, the groove axis being substantially orthogonal to the first face and the second face.

21. The grounding bushing assembly of claim 20 wherein the superior conductor-receiving structure comprises ground conductor set means for fixedly setting a ground conductor in contact with the grounding bushing assembly for enabling more proper grounding.

22. The grounding bushing assembly of claim 21 wherein the ground conductor set means is defined by set screw-receiving structure and a set screw cooperatively associated with the set screw-receiving structure.

23. The grounding bushing assembly of claim 22 wherein the set screw-receiving structure is formed in the superior C portion.

24. The grounding bushing assembly of claim 23 wherein the superior C portion extends radially outward from the grounding bushing assembly and the inferior C portion extends radially outward and towards the superior C portion, the conductor-receiving groove thus comprising a conductor seat, the conductor seat being structurally situated intermediate the conductor inlet end and the conductor outlet end for decreasing the charge migratory distance from the grounding bushing assembly to the ground conductor.

25. A dual-sectioned grounding bushing assembly, the grounding bushing assembly for enabling an installer to install the grounding bushing assembly either before or after electrical connections are finalized, the grounding bushing assembly comprising:

a first bushing section and a second bushing section, the first bushing section comprising a first section hinge end, a first section latch end, and a first section arc length intermediate the first section hinge end and the first section latch end, the second bushing section comprising a second section hinge end, a second section latch end, and a second section arc length intermediate the second section hinge end and the second section latch end;

pivot means, the pivot means comprising first section pivot structure and second section pivot structure, the first section pivot structure integrally formed with the first bushing section adjacent the first section pivot end, the second section pivot structure integrally formed with the second bushing section adjacent the second section pivot end, the first and second pivot structures cooperatively associated with one another for movably connecting the first bushing section to the second bushing section, the first bushing section being triaxially movable with respect to the second bushing section when movably connected thereto;

latch means, the latch means comprising first section latch structure, second section latch structure and latch pin means, the first section latch structure integrally formed with the first bushing section adjacent the first section latch end, the second section latch structure integrally formed with the second bushing section adjacent the second section latch end, the first and second latch structures each comprising latch pin-receiving structure, the latch pin-receiving structure having a latch pin axis, the latch pin means removably insertable into the latch pin-receiving structure for removably fastening the first section latch end to the second section latch end, the first and second section arc lengths thus cooperatively forming an annular, dual-sectioned grounding bushing, the grounding bushing comprising an inner annular surface, an outer annular surface, a conductor inlet end, a conductor outlet end, and a bushing axis, the conductor inlet end for receiving at least one electrical conductor, the electrical conductor exiting a conduit terminus, the conductor inlet end for removable attachment to the conduit terminus, the electrical conductor for finalized electrical connectivity to structure adjacent the conduit terminus, the grounding bushing assembly thus enabling an installer to install the grounding bushing assembly either before or after electrical connections are finalized; and

a substantially C-shaped ground conductor-receiving structure, the conductor-receiving structure for removably attaching a ground conductor to the grounding bushing, the conductor-receiving structure comprising a spine, a superior C portion, an inferior C portion, the spine being fixedly attached to the outer annular surface, the spine, superior C portion, and inferior C portion together defining a ground conductor-receiving groove, the conductor-receiving groove being sized and shaped to receive a ground conductor.

26. The grounding bushing assembly of claim 25 wherein the conductor-receiving structure comprises a substantially planar first face, a substantially planar second face, and a structural thickness intermediate the first face and the second face, the conductor-receiving groove having a groove axis, the groove axis being substantially orthogonal to the first face and the second face.

27. The grounding bushing assembly of claim 26 wherein the superior conductor-receiving structure comprises ground conductor set means for fixedly setting a ground conductor in contact with the grounding bushing assembly for enabling more proper grounding.

28. The grounding bushing assembly of claim 27 wherein the ground conductor set means is defined by set screw-receiving structure and a set screw cooperatively associated with the set screw-receiving structure.

29. The grounding bushing assembly of claim 28 wherein the set screw-receiving structure is formed in the superior C portion.

30. The grounding bushing assembly of claim 29 wherein the superior C portion extends radially outward from the grounding bushing assembly and the inferior C portion extends radially outward and towards the superior C portion, the conductor-receiving groove thus comprising a conductor seat, the conductor seat being structurally situated intermediate the conductor inlet end and the conductor outlet end for decreasing the charge migratory distance from the grounding bushing assembly to the ground conductor.

31. A dual-sectioned grounding bushing assembly, the grounding bushing assembly for enabling an installer to install the grounding bushing assembly either before or after electrical connections are finalized, the grounding bushing assembly comprising:

a first bushing section and a second bushing section, the first bushing section comprising a first section hinge end, a first section latch end, and a first section arc length intermediate the first section hinge end and the first section latch end, the second bushing section comprising a second section hinge end, a second section latch end, and a second section arc length intermediate the second section hinge end and the second section latch end;

hinge means, the hinge means comprising first section hinge knuckle structure, second section hinge knuckle structure and a hinge pin, the first section hinge knuckle structure integrally formed with the first bushing section adjacent the first section hinge end, the second section hinge knuckle structure integrally formed with the second bushing section adjacent the second section hinge end, the first and second hinge knuckle structures each comprising hinge pin-receiving structure, the hinge pin-receiving structure having a hinge pin axis, the hinge pin insertable into the hinge pin-receiving structures for pivotally connecting the first bushing section to the second bushing section, the first bushing section and the second bushing section being pivotable about a pivot axis when pivotally connected, the pivot axis being collinear with the hinge pin axis;

latch means, the latch means comprising first section latch structure, second section latch structure and a latch pin, the first section latch structure integrally formed with the first bushing section adjacent the first section latch end, the second section latch structure integrally formed with the second bushing section adjacent the second section latch end, the first and second latch structures each comprising latch pin-receiving structure, the latch pin-receiving structure having a latch pin axis, the latch pin removably insertable into the latch pin-receiving structures for removably fastening the first section latch end to the second section latch end, the first and second section arc lengths thus cooperatively forming an annular, dual-sectioned grounding bushing, the grounding bushing comprising an inner annular surface, an outer annular surface, a conductor inlet end, a conductor outlet end, and a bushing axis, the inner annular surface comprising at least one spring member-receiving structure, the spring member-receiving structure being intermediate the conductor inlet end and the conductor outlet end;

at least one spring member, the conductor inlet end for receiving at least one electrical conductor, the electrical conductor exiting a conduit terminus, the conductor inlet end for removable attachment to the conduit terminus, the spring member being insertable into the spring member-receiving structure for increasing electrical communication with the conduit terminus, the electrical conductor for finalized electrical connectivity to structure adjacent the conduit terminus, the grounding bushing assembly thus enabling an installer to install the grounding bushing assembly either before or after electrical connections are finalized; and

a substantially C-shaped ground conductor-receiving structure, the conductor-receiving structure for removably attaching a ground conductor to the grounding bushing, the conductor-receiving structure comprising a spine, a superior C portion, an inferior C portion, the spine being fixedly attached to the outer annular surface, the spine, superior C portion, and inferior C portion together defining a ground conductor-receiving groove, the conductor-receiving groove being sized and shaped to receive a ground conductor.

32. The grounding bushing assembly of claim 31 wherein the conductor-receiving structure comprises a substantially planar first face, a substantially planar second face, and a structural thickness intermediate the first face and the second face, the conductor-receiving groove having a groove axis, the groove axis being substantially orthogonal to the first face and the second face.

33. The grounding bushing assembly of claim 32 wherein the superior conductor-receiving structure comprises ground conductor set means for fixedly setting a ground conductor in contact with the grounding bushing assembly for enabling more proper grounding.

34. The grounding bushing assembly of claim 33 wherein the ground conductor set means is defined by set screw-receiving structure and a set screw cooperatively associated with the set screw-receiving structure.

35. The grounding bushing assembly of claim 34 wherein the set screw-receiving structure is formed in the superior C portion.

36. The grounding bushing assembly of claim 35 wherein the superior C portion extends radially outward from the grounding bushing assembly and the inferior C portion extends radially outward and towards the superior C portion, the conductor-receiving groove thus comprising a conductor seat, the conductor seat being structurally situated intermediate the conductor inlet end and the conductor outlet end for decreasing the charge migratory distance from the grounding bushing assembly to the ground conductor.

37. A grounding bushing assembly, the grounding bushing assembly for enabling an installer to install the grounding bushing assembly either before or after electrical connections are finalized, the grounding bushing assembly comprising:

a first bushing section and a second bushing section, the first bushing section comprising a first section pivot end, a first section latch end, and a first section arc length intermediate the first section hinge end and the first section latch end, the second bushing section comprising a second section pivot end, a second section latch end, and a second section arc length intermediate the second section pivot end and the second section latch end;

select pivot means, the select pivot means being selected from the group consisting of insertable-pin hinge means, fixed-post hinge means, and triaxial pivot means, the select pivot means for movably connecting the first bushing section to the second bushing section;

select latch means, the select latch means being selected from the group consisting of axially-orthogonal latch means and select axially-parallel latch means, the select axially-parallel latch means being selected from the group consisting of ball-plunger knuckle latch means and latch-pin knuckle latch means, the select latch means for removably fastening the first section latch end to the second section latch end, the first and second section arc lengths thus cooperatively forming an annular, dual-sectioned grounding bushing, the grounding bushing comprising an inner annular surface, an outer annular surface, a conductor inlet end, a conductor outlet end, and a bushing axis; and

a substantially C-shaped ground conductor-receiving structure, the conductor-receiving structure for removably attaching a ground conductor to the grounding bushing, the conductor-receiving structure comprising a spine, a superior C portion, an inferior C portion, the spine being fixedly attached to the outer annular surface, the spine, superior C portion, and inferior C portion together defining a ground conductor-receiving groove, the conductor-receiving groove being sized and shaped to receive a ground conductor.

38. The grounding bushing assembly of claim 37 wherein the conductor-receiving structure comprises a substantially planar first face, a substantially planar second face, and a structural thickness intermediate the first face and the second face, the conductor-receiving groove having a groove axis, the groove axis being substantially orthogonal to the first face and the second face.

39. The grounding bushing assembly of claim 38 wherein the superior conductor-receiving structure comprises ground conductor set means for fixedly setting a ground conductor in contact with the grounding bushing assembly for enabling more proper grounding.

40. The grounding bushing assembly of claim 39 wherein the ground conductor set means is defined by set screw-receiving structure and a set screw cooperatively associated with the set screw-receiving structure.

41. The grounding bushing assembly of claim 40 wherein the set screw-receiving structure is formed in the superior C portion.

42. The grounding bushing assembly of claim 41 wherein the superior C portion extends radially outward from the grounding bushing assembly and the inferior C portion extends radially outward and towards the superior C portion, the conductor-receiving groove thus comprising a conductor seat, the conductor seat being structurally situated intermediate the conductor inlet end and the conductor outlet end for decreasing the charge migratory distance from the grounding bushing assembly to the ground conductor.

43. A grounding bushing assembly, the grounding bushing assembly for enabling an installer to install the grounding bushing assembly either before or after electrical connections are finalized, the grounding bushing assembly comprising:

a first bushing section and a second bushing section, the first bushing section comprising a first section pivot end, a first section latch end, and a first section arc length intermediate the first section hinge end and the first section latch end, the second bushing section comprising a second section pivot end, a second section latch end, and a second section arc length intermediate the second section pivot end and the second section latch end;

pivot means, the pivot means for movably connecting the first bushing section to the second bushing section;

latch means, the latch means for removably fastening the first section latch end to the second section latch end, the first and second section arc lengths thus cooperatively forming an annular, dual-sectioned grounding bushing, the grounding bushing comprising an inner annular surface, an outer annular surface, a conductor inlet end, a conductor outlet end, and a bushing axis; and

a substantially C-shaped ground conductor-receiving structure, the conductor-receiving structure for removably attaching a ground conductor to the grounding bushing, the conductor-receiving structure comprising a spine, a superior C portion, an inferior C portion, the spine being fixedly attached to the outer annular surface, the spine, superior C portion, and inferior C portion together defining a ground conductor-receiving groove, the conductor-receiving groove being sized and shaped to receive a ground conductor.

44. The grounding bushing assembly of claim 43 wherein the conductor-receiving structure comprises a substantially planar first face, a substantially planar second face, and a structural thickness intermediate the first face and the second face, the conductor-receiving groove having a groove axis, the groove axis being substantially orthogonal to the first face and the second face.

45. The grounding bushing assembly of claim 44 wherein the superior conductor-receiving structure comprises ground conductor set means for fixedly setting a ground conductor in contact with the grounding bushing assembly for enabling more proper grounding.

46. The grounding bushing assembly of claim 45 wherein the ground conductor set means is defined by set screw-receiving structure and a set screw cooperatively associated with the set screw-receiving structure.

47. The grounding bushing assembly of claim 46 wherein the set screw-receiving structure is formed in the superior C portion.

48. The grounding bushing assembly of claim 47 wherein the superior C portion extends radially outward from the grounding bushing assembly and the inferior C portion extends radially outward and towards the superior C portion, the conductor-receiving groove thus comprising a conductor seat, the conductor seat being structurally situated intermediate the conductor inlet end and the conductor outlet end for decreasing the charge migratory distance from the grounding bushing assembly to the ground conductor.

Assignments (7)
TERMINATION AND RELEASE OF SECURITY INTEREST IN PATENTS RECORDED AT R/F 052047/0886 Recorded Nov 24, 2024
From: ARES CAPITAL CORPORATION
To: BRIDGEPORT FITTINGS, LLC; SULLSTAR TECHNOLOGIES INC.
Reel/Frame 069438/0325 →
PATENT RELEASE AND REASSIGNMENT Recorded Feb 28, 2020
From: NXT CAPITAL, LLC
To: BRIDGEPORT FITTINGS, LLC
Reel/Frame 052159/0316 →
SECURITY INTEREST Recorded Feb 27, 2020
From: BRIDGEPORT FITTINGS, LLC; SULLSTAR TECHNOLOGIES INC.
To: ARES CAPITAL CORPORATION
Reel/Frame 052047/0886 →
CHANGE OF NAME Recorded Aug 12, 2019
From: BRIDGEPORT FITTINGS, INCORPORATED
To: BRIDGEPORT FITTINGS, LLC
Reel/Frame 050022/0931 →
SECURITY INTEREST Recorded Aug 9, 2019
From: BRIDGEPORT FITTINGS, LLC
To: NXT CAPITAL, LLC, AS AGENT
Reel/Frame 050017/0527 →
NOTICE OF RECEIVING PARTY'S UNABBREVIATED CORPORATE NAME Recorded Mar 5, 2019
From: BRIDGEPORT FITTINGS, INC.
To: BRIDGEPORT FITTINGS, INCORPORATED
Reel/Frame 048508/0786 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 16, 2010
From: BORDEN, AARON M.; ZANZOLA, TOMAS J.
To: BRIDGEPORT FITTINGS, INC.
Reel/Frame 023937/0804 →