IP Library › Granted Patent US 10,218,135
Granted Patent B2
US 10,218,135 · App. 15/641,422 · Granted Feb 26, 2019

Modular electrical system including back-to-back receptacle configurations and capable of providing four wire circuitry

Inventor: Norman R. Byrne (Ada, MI)
H01R25/006H01R13/642H01R25/162H01R25/167H02G3/00H01R13/748
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,218,135
App. No.
15/641,422
Granted
Feb 26, 2019
Kind
B2
Abstract

An electrical system comprises a four-wire integral receptacle junction block assembly ( 530 ) having a first male end connector set ( 536 ) and a second male end connector set ( 538 ). The assembly ( 530 ) also includes a first duplex receptacle set ( 540 ) and a second duplex receptacle set ( 541 ). The connector sets ( 534, 536 ) are connected to a series of buss bars ( 570 ) comprising two hot buss bars ( 586, 616 ), a neutral buss bar ( 620 ), and a ground buss bar ( 598 ). The buss bars ( 570 ) can be configured so as to selectively apply incoming power to the duplex receptacle sets ( 540, 541 ) from either of two circuits.

Claims (29)

1. An electrical system configured for use in a raceway, said electrical system comprising:

a source of incoming electrical power comprising a hot conductor, a neutral conductor, and a ground conductor; and

a receptacle junction block comprising:

a pair of receptacle blocks configured to form opposing halves of the receptacle junction block, wherein each receptacle block defines a receptacle face arranged on an opposing side of the receptacle junction block, and wherein the receptacle blocks are coupled together to define a buss bar cavity within the receptacle junction block; and

an internal buss bar configuration arranged within the buss bar cavity and comprising a hot buss bar coupled to the hot conductor, a neutral buss bar coupled to the neutral conductor, and a ground buss bar coupled to the ground conductor, wherein the pair of receptacle blocks are configured to provide selective engagement with the internal buss bar configuration through the respective receptacle faces.

2. The electrical system of claim 1 , wherein the receptacle junction block further comprises a pair of connector blocks arranged on opposing ends of the receptacle junction block, wherein the connector blocks are configured to couple the hot conductor, the neutral conductor, and the ground conductor to the hot buss bar, the neutral buss bar, and the ground buss bar, respectively.

3. The electrical system of claim 2 , wherein the pair of receptacle blocks are arranged between the pair of connector blocks.

4. The electrical system of claim 1 , wherein the hot conductor comprises first and second hot conductors, and wherein the source of incoming electrical power comprises:

a first electrical circuit comprising the first hot conductor, the neutral conductor, and the ground conductor; and

a second electrical circuit comprising the second hot conductor, the neutral conductor, and the ground conductor.

5. The electrical system of claim 4 , wherein the hot buss bar comprises first and second hot buss bars, and wherein the internal buss bar configuration comprises the first hot buss bar coupled to the first hot conductor, and further comprises the second hot buss bar coupled to the second hot conductor.

6. The electrical system of claim 5 , wherein the internal buss bar configuration is configured such that the pair of receptacle blocks feed off the first hot buss bar of the internal buss bar configuration while the second hot buss bar of the internal buss bar configuration is configured to pass through the receptacle junction block without electrical engagement by either receptacle block.

7. The electrical system of claim 6 , wherein each receptacle block of the pair of receptacle blocks comprises a female connector clip, each female connector clip configured to couple to the first hot buss bar.

8. The electrical system of claim 5 , wherein the pair of receptacle blocks comprise a first receptacle block and a second receptacle block, wherein the internal buss bar configuration is configured such that the first receptacle block feeds off the first hot buss bar while the second receptacle block feeds off the second hot buss bar.

9. The electrical system of claim 8 , wherein the first receptacle block comprises a first female connector clip configured to couple to the first hot buss bar, and wherein the second receptacle block comprises a second female connector clip configured to couple to the second hot buss bar.

10. The electrical system of claim 1 , wherein the receptacle junction block comprises a housing, wherein the housing houses the pair of receptacle blocks such that the pair of receptacle blocks are arranged on opposing faces of the housing of the receptacle junction block.

11. The electrical system of claim 1 , wherein the hot conductor comprises first and second hot conductors, and wherein the source of incoming electrical power comprises a four-wire arrangement that comprises the first hot conductor, the second hot conductor, the neutral conductor, and the ground conductor.

12. A modular electrical system configured for use in a work space, said modular electrical system comprising:

a source of incoming electrical power arranged as a four-wire system comprising a first hot conductor, a second hot conductor, a neutral conductor, and a ground conductor; and

a first receptacle junction block comprising:

a housing;

a pair of receptacle blocks configured to form opposing halves of the housing, wherein each receptacle block defines a receptacle face arranged on an opposing side of the first receptacle junction block, and wherein the receptacle blocks are coupled together to define a buss bar cavity within the first receptacle junction block; and

a buss bar configuration arranged within the buss bar cavity and comprising a first hot buss bar coupled to the first hot conductor, a second hot buss bar coupled to the second hot conductor, a neutral buss bar coupled to the neutral conductor, and a ground buss bar coupled to the ground conductor, wherein the pair of receptacle blocks are configured to provide selective engagement with the buss bar configuration through the respective receptacle faces.

13. The modular electrical system of claim 12 further comprising a cable and a second receptacle junction block, wherein the cable is configured to extend the source of incoming electrical power from the first receptacle junction block to the second receptacle junction block.

14. The modular electrical system of claim 13 , wherein the cable comprises a 4-wire electrical circuit.

15. The modular electrical system of claim 13 , wherein the first receptacle junction block further comprises a pair of connector blocks arranged on opposing ends of housing of the first receptacle junction block, wherein a first connector block of the pair of connector blocks is configured to couple the first hot conductor, the second hot conductor, the neutral conductor, and the ground conductor to the first hot buss bar, the second hot buss bar, the neutral buss bar, and the ground buss bar, respectively.

16. The modular electrical system of claim 15 , wherein a second connector block of the pair of connector blocks is configured to couple the cable to the first receptacle junction block.

17. The modular electrical system of claim 16 , wherein the cable is configured to extend the source of incoming electrical power to the second receptacle junction block.

18. The modular electrical system of claim 12 further comprising a network of cables and a plurality of additional receptacle junction blocks, wherein the network of cables comprises a first cable configured to couple to the first receptacle junction block and to extend the source of incoming electrical power to the plurality of additional receptacle junction blocks via the network of cables.

Continuity (4)
Continuation 15360331 · Nov 23, 2016
Continuation In Part 14056166 · Oct 17, 2013
Continuation In Part 11747518 · May 11, 2007
Related Publication 20180090893A1 · Mar 29, 2018
Cited By (6)
US 1,065,087 US 1,103,110 US 1,106,960 US 1,112,096 US 1,134,217 US 1,134,220