Electrical power strip
US-11929580-B2 · Mar 12, 2024 · US
US10348063B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10348063-B2 |
| Application number | US-201615233137-A |
| Country | US |
| Kind code | B2 |
| Filing date | Aug 10, 2016 |
| Priority date | May 31, 2011 |
| Publication date | Jul 9, 2019 |
| Grant date | Jul 9, 2019 |
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Official abstract text for this publication.
Methods, systems, and apparatuses provide power from multiple input power sources to adjacent outputs efficiently and reliably. Aspects of the disclosure provide a power distribution unit (PDU) that includes a number of power outputs including first and second adjacent power outputs. The PDU includes a printed circuit board having a first conducting layer electrically interconnected to a first power input connection and the first power output, a second conducting layer that is at least partially above the first conducting layer and in facing relationship thereto. The second conducting layer is electrically insulated from the first conducting layer and electrically interconnected with a second power input connection and the second power output, the first and second power outputs thereby connected to different power inputs.
Opening claim text (preview).
We claim: 1. A power distribution apparatus adapted for use with a 3-phase power source that includes a first phase line conductor, a second phase line conductor, a third phase line conductor, a neutral line conductor and a ground conductor, said power distribution apparatus comprising: a housing; a power input disposed at least partially within the housing and connectable to the 3-phase power source; a multi-layer printed circuit board (PCB) disposed in said housing and electrically connected to said power input, said PCB comprising a plurality of layers with electrically conductive material, including: a first conducting layer; a second conducting layer; and a third conducting layer, wherein each of the first, second and third conducting layers is electrically connectable to only one phase line conductor when said input is connected to the 3-phase power source; a plurality of power outputs disposed at least partially within the housing, comprising: at least a first power output electrically connectable to the first phase line conductor via said first conducting layer; at least a second power output located adjacent to the first power output and electrically connectable to the second phase line conductor via said second conducting layer; and at least a third power output located adjacent the second power output, and electrically connectable to the third phase line conductor via said third conducting layer. 2. The power distribution apparatus of claim 1 , wherein said at least a first power output, said at least a second power output and said at least a third power output define a multi-phase outlet group that extends lengthwise along said housing such that longitudinally adjacent outlets within the multi-phase outlet group are electrically connectable to a different phase line conductor when said power input is connected to the 3-phase power source. 3. The power distribution apparatus of claim 2 , comprising a plurality of multi-phase outlet groups extending longitudinally adjacent to one another along said housing, each of said multi-phase outlet groups comprising an associated first power output, second power output and third power output. 4. The power distribution apparatus of claim 1 , wherein said at least a first power output, at least a second power output and at least a third power output are configured as outlet receptacles that are mounted to said multi-layer PCB to define an outlet module. 5. The power distribution unit of claim 1 , wherein each of said at least a first power output, at least a second power output and at least a third power output is configured as an outlet receptacle and comprises an associated line connector electrically connected to the outlet's respective conducting layer. 6. The power distribution unit of claim 5 , wherein each of said at least a first power output, at least a second power output, and at least third power output further comprises an associated neutral connector and ground connector. 7. The power distribution unit of claim 6 , wherein said multi-layer PCB includes at least one ground conducting region electrically connected to the ground connector of each outlet, and at least one neutral conducting region electrically connected to the neutral conductor of each outlet. 8. The power distribution unit of claim 7 , wherein said multi-layer PCB further comprises a first conductively plated through hole extending through the first, second and third conducting layers, said first conductively plated through hole electrically connected to the first conducting layer, electrically insulated from the second and third conducting layers, and electrically interconnected to the at least a first power output. 9. The power distribution unit of claim 8 , wherein said multi-layer PCB further comprises a second conductively plated through hole extending through the first, second and third conducting layers, said second conductively plated through hole electrically connected to the second conducting layer, electrically insulated from the first and third conducting layers, and electrically interconnected to the at least a second power output. 10. The power distribution unit of claim 9 , wherein said multi-layer PCB further comprises a third conductive plated through hole extending through the first, second and third conducting layers, said third conductively plated through hole electrically connected to the third conducting layer, electrically insulated from the first and second conducting layers, and electrically interconnected to the at least a third output. 11. The power distribution unit of claim 10 , wherein said multi-layer PCB further comprises at least a first input connection, at least a second input connection, and at least a third input connection each electrically connectable, respectively, to the first, second and third line conductors when said power input is electrically connected to the 3-phase power source. 12. The power distribution unit of claim 1 , wherein said first, second and third conducting layers are electrically insulated from one another. 13. The power distribution unit of claim 12 , wherein said multi-layer PCB includes a plurality of insulation layers interposed between adjacent, facing ones of said first, second and third conducting layers. 14. The power distribution unit of claim 1 , further comprising a plurality of power control relays disposed in said housing, each among the plurality of power control relays being connected in independent power control communication between said power input and a respective power output. 15. The power distribution unit of claim 1 , wherein at least one of said first, second and third conducting layers includes a plurality of conductive regions that are electrically insulated from one another, and wherein at least one of said plurality of conductive regions is electrically connectable to a respective phase line conductor, and another of said plurality of conductive regions is electrically connectable to either the neutral line conductor or the ground conductor when said power input is electrically connected to the 3-phase power source. 16. A power module, comprising: an elongate multi-layer printed circuit board (PCB) comprising: a first conducting layer; a second conducting layer located at least partially below the first conducting layer in facing relationship thereto, and electrically insulated from the first conducting layer; and a third conducting layer located at least partially below the first and second conducting layers in facing relationship thereto, and electrically insulated from the first and second conducting layers; at least one outlet group extending lengthwise along said elongate multi-layer PCB such that longitudinally adjacent outlets within said at least one outlet group are connected to different conducting layers, said at least one outlet group, comprising: at least a first power outlet mounted on said PCB, and having an associated first power outlet line connector electrically connected to said first conducting layer; at least a second power outlet mounted on said PCB, and having an associated second power outlet line connector electrically connected to said second conducting layer; and at least a third power outlet mounted on said PCB, and having an associated third power outlet line connector electrically connected to said third conducting layer. 17. The power module of claim 16 , wherein said multi-layer PCB further comprises at least a first input connection, at least a second input connection, and at least a third input connection each electric
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