IP Library Granted Patent US 7,052,299
Granted Patent B2
US 7,052,299 · App. 11/050,081 · Granted May 30, 2006

Low voltage electricity distribution circuit

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Quick Facts
Patent No.
US 7,052,299
App. No.
11/050,081
Granted
May 30, 2006
Kind
B2
Abstract

The low voltage electricity distribution circuit of the present invention is an electrical outlet that includes a receptacle mounted to a recess including either a plurality of wires or a bus bar system. The receptacle has at least one continuously live power socket and at least one switched power socket disposed on it. Each of the power sockets is capable of receiving an appliance plug. The receptacle is movable along the recess to a different location to allow for appliances, for example lamps or computers, to be located at many different points along the wall. In other forms of the distribution circuit a stand-alone unit that is fixed in place may be provided. Additionally, accessories for the above receptacles and sockets are provided.

Claims (30)

1. An electrical outlet, comprising:

a first electrical conductor connected to an AC voltage source;

a second electrical conductor connected through a switch to a neutral power source;

a third electrical conductor connected to a neutral power source; and

a receptacle having first and second sockets each capable of accepting an electrical device plug for connection to the conductors, the first socket configured to provide power from the first and second conductors, the second socket configured to provide power from the first and third conductors, wherein the sockets are formed by a plurality of apertures extending through the receptacle, the first and second sockets sharing at least one aperture aligned with the first conductor, wherein each aperture is configured to receive a pin of the electrical device plug, the first socket being formed by a first aperture and a second aperture, the second socket being formed by the first aperture and a third aperture, wherein the first aperture is aligned with the first conductor, the second aperture is aligned with the second conductor, and the third aperture is aligned with the third conductor, wherein the first, second, and third apertures are linearly aligned with each other.

2. The electrical outlet of claim 1 , wherein the neutral power source to which the second conductor is connected through the switch is the same neutral power source to which the third conductor is connected.

3. A method of providing selectively continuous or switchable power from an electrical outlet, said method comprising:

providing first, second, and third electrical conductors each configured to contact a pin of a plug that is connected to an electrical load, the second conductor being connected to a switch; and

engaging a receptacle with the conductors, the receptacle including a continuously powered socket and a switchably powered socket, each socket formed by a plurality of apertures extending through the receptacle and aligned with the conductors, wherein the receptacle comprises at least a first aperture, a second aperture, and a third aperture;

wherein when the pins of the plug are inserted into the continuously powered socket the pins extend through said first and third apertures and form an electrical connection with the first and third conductors such that the electrical load is continuously powered, and when the pins of the plug are inserted into the switchably powered socket the pins extend through said second and third apertures and form an electrical connection with the second and third conductors such that the electrical load is switchably powered by controlling the switch, wherein said first aperture, second aperture, and third aperture are linearly aligned with each other.

4. The method of claim 3 , further comprising inserting first and second pins of the plug into the continuously powered socket so that the first pin forms an electrical connection with the first conductor and the second pin forms an electrical connection with the third conductor.

5. The method of claim 3 , further comprising inserting first and second pins of the plug into the switchably powered socket so that the first pin forms an electrical connection with the second conductor and the second pin forms an electrical connection with the third conductor.

6. The method of claim 3 , further comprising:

connecting the first conductor to a neutral power source;

connecting the second conductor through the switch to a neutral power source; and

connecting the third conductor to an AC power source.

7. The method of claim 6 , wherein connecting the second conductor comprises connecting the second conductor through the switch to the same neutral power source to which the first conductor is connected.

8. The method of claim 3 , further comprising:

connecting the first conductor to an AC power source;

connecting the second conductor through the switch to an AC power source; and

connecting the third conductor to a neutral power source.

9. The method of claim 8 , wherein connecting the second conductor comprises connecting the second conductor through the switch to the same AC power source to which the first conductor is connected.

10. The method of claim 3 , further comprising connecting no more than one of the conductors to a live power source.

11. The method of claim 3 , further comprising connecting no more than one of the conductors to a neutral power source.

12. An electrical outlet, comprising:

a first electrical conductor connected to an unswitched AC voltage source;

a second electrical conductor connected through a switch to an AC voltage source;

a third electrical conductor connected to a neutral power source; and

a receptacle having first and second sockets each capable of accepting an electrical device plug for connection to the conductors, the first socket configured to provide power from the first and third conductors, the second socket configured to provide power from the second and third conductors, wherein the sockets are formed by a plurality of apertures extending through the receptacle, wherein the receptacle has a first aperture, a second aperture and a third aperture, wherein the first and second sockets share at least one aperture aligned with the third conductor, wherein each aperture is configured to receive a pin of the electrical device plug, the first socket being formed by the first aperture and the third aperture, the second socket being formed by the second aperture and the third aperture, wherein the first aperture is aligned with the first conductor, the second aperture is aligned with the second conductor, and the third aperture is aligned with the third conductor, wherein the first, second, and third apertures are linearly aligned with each other.

13. The electrical outlet of claim 12 , wherein the AC voltage source to which the second conductor is connected through the switch is the same AC voltage source to which the first conductor is connected.

Assignments (3)
SECURITY INTEREST Recorded Jun 14, 2011
From: KCSM, INC.
To: KNOBE, MARTENS, OLSON & BEAR, LLP
Reel/Frame 026445/0238 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 5, 2011
From: KIM, KYUNG T.; KIM, KYUNG H.
To: KCSM, INC.
Reel/Frame 025612/0516 →
CHANGE OF NAME Recorded Jul 22, 2010
From: FUJITSU MICROELECTRONICS LIMITED
To: FUJITSU SEMICONDUCTOR LIMITED
Reel/Frame 024982/0245 →
Priority Claims (1)
NZ 518138 · Apr 4, 2002 · national
Continuity (4)
Continuation In Part 1050956300
Provisional Application 6054164700 · Feb 3, 2004
Provisional Application 6054135600 · Feb 2, 2004
Related Publication 20050191902A1 · Sep 1, 2005