1) An electrical outlet receptacle comprising:
(a) a receptacle body comprising:
(i) a first three-pronged-receptacle comprising:
(1) a first receptacle face;
(2) a first live blade slot;
(3) a first neutral blade slot; and
(4) a first ground prong opening;
wherein the first live blade slot, the first neutral blade slot; and the first ground prong opening are arranged on the first receptacle face in a spaced orientation capable of receiving a standard North American electrical plug;
(ii) a second three-pronged-receptacle comprising:
(1) a second receptacle face;
(2) a second live blade slot;
(3) a second neutral blade slot; and
(4) a second ground prong opening;
wherein the second live blade slot, the second neutral blade slot; and the second ground prong opening are arranged on the second receptacle face in the spaced orientation capable of receiving the standard North American electrical plug;
wherein the first receptacle face and the second receptacle face are positioned substantially on a same plane, the first live blade slot and second neutral blade slot are aligned along a first vertical axis joining the first receptacle face and the second receptacle face; the first neutral blade slot and second live blade slot aligned along a second vertical axis joining the first receptacle face and the second receptacle face; and the first ground prong opening and second ground prong opening aligned along a third vertical axis joining the first receptacle face and the second receptacle face, such that the first ground prong opening and second ground plug opening are at two opposite ends of the receptacle body; and
(b) a conductive mounting strap having a first ground contact aligned behind the first ground prong opening of the receptacle body and a second ground contact aligned behind the second ground prong opening of the receptacle body;
(c) a conductive live blade receiving assembly having a first live blade contact aligned behind the first live blade slot of the receptacle body and a second live blade contact aligned behind the second live blade slot of the receptacle body, the conductive live blade receiving assembly configured in a substantially S-shaped formation;
(d) a conductive neutral blade receiving assembly having a first neutral blade contact aligned behind the first neutral blade slot of the receptacle body and a second neutral blade contact aligned behind the second neutral blade slot of the receptacle body, the conductive neutral blade receiving assembly configured in a substantially S-shaped formation; and
(e) a non-conductive housing for aligning the conductive mounting strap, the conductive live blade assembly, and the neutral blade assembly in an orientation with the receptacle body allowing the three pronged electrical plug to contact the corresponding live blade contact, the neutral blade contact, and ground contact, while preventing direct electrical communication from occurring between the conductive mounting strap, the conductive live blade receiving assembly, and the neutral blade receiving assembly.
2) The electrical outlet receptacle of claim 1, further comprising a non-conductive insulator protector plate assembly having a first divider plate, a second divider plate, and a top divider plate; wherein the first divider plate and second divider plate are positioned in the non-conductive housing to prevent contact between the conductive live blade receiving assembly and the conductive neutral blade receiving assembly, and wherein the top divider plate is parallel with the conductive mounting strap.
3) The electrical outlet receptacle of claim 1, wherein the standard North American plug comprises a NEMA 5-15 configuration.
4) The electrical outlet receptacle of claim 1, further comprising at least a second electrical outlet receptacle for receiving two additional standard North American electrical plugs.
5) The electrical outlet receptacle of claim 1, wherein the mounting strap is about 103.0 millimeters long.
6) The electrical outlet receptacle of claim 5, further comprising mounting screw holes in the mounting strap that are about 83.3 millimeters apart.
7) The electrical outlet receptacle of claim 1, further comprising an electrical outlet box mounted behind a wall member.
8) The electrical outlet receptacle of claim 1, further comprising a first crossover connector between the first live blade contact and the second live blade contact.
9) The electrical outlet receptacle of claim 1, further comprising a second crossover connector between the first neutral blade contact and the second neutral blade contact.
10) The electrical outlet receptacle of claim 9, further comprising a partial insulation coating on the first crossover connector or the second crossover connector.
11) The electrical outlet receptacle of claim 9, further comprising an insulator wall that separates the first crossover connector and the second crossover connector.
12) An electrical outlet receptacle comprising:
(a) a receptacle body comprising:
(i) a first three-pronged-receptacle comprising:
(1) a first receptacle face;
(2) a first live blade slot;
(3) a first neutral blade slot; and
(4) a first ground prong opening;
wherein the first live blade slot, the first neutral blade slot; and the first ground prong opening are arranged on the first receptacle face in a spaced orientation capable of receiving a standard North American electrical plug;
(ii) a second three-pronged-receptacle comprising:
(1) a second receptacle face;
(2) a second live blade slot;
(3) a second neutral blade slot; and
(4) a second ground prong opening;
wherein the second live blade slot, the second neutral blade slot; and the second ground prong opening are arranged on the second receptacle face in the spaced orientation capable of receiving the standard North American electrical plug;
wherein the first receptacle face and the second receptacle face are positioned substantially on a same plane, the first live blade slot and second neutral blade slot are aligned along a first vertical axis joining the first receptacle face and the second receptacle face; the first neutral blade slot and second live blade slot aligned along a second vertical axis joining the first receptacle face and the second receptacle face; the first live blade slot and second live blade slot are connected by a substantially S-shaped connector; the first neutral blade slot and second neutral blade slot are connected by a substantially S-shaped connector; and the first ground prong opening and second ground prong opening aligned along a third vertical axis joining the first receptacle face and the second receptacle face, such that the first ground prong opening and second ground plug opening are at two opposite ends of the receptacle body.
13. The electrical outlet receptacle of claim 12, further comprising:
(iii) a third three-prong receptacle comprising:
(1) a third receptacle face\u2032
(2) a third live plate slot;
(3) a third neutral blade slot; and
(4) a third ground prong opening,
wherein the third live blade slot, the third neutral blade slot, and the third ground prong opening are arrange on the third receptacle face and are space orientation capable of receiving a standard North American electrical plug;
(iv) a fourth three-prong receptacle comprising:
(1) a fourth receptacle face;
(2) a fourth live blade slot;
(3) a fourth neutral blade slot; and
(4) a fourth ground prong opening
wherein the fourth live blade slot, the fourth neutral blade slot, and the fourth ground prong opening are arranged on the fourth receptacle face and the spaced orientation capable of receiving a standard North American electrical plug; and
wherein the third receptacle face and the fourth receptacle face are positioned in substantially the same plane as the first receptacle face and the second receptacle face.
14) An electrical outlet receptacle comprising:
(a) a receptacle body comprising only a first and a second three pronged receptacle;
(i) the first three-pronged-receptacle comprising:
(1) a first receptacle face;
(2) a first live blade slot;
(3) a first neutral blade slot; and
(4) a first ground prong opening;
wherein the first live blade slot, the first neutral blade slot; and
the first ground prong opening are arranged on the first receptacle face in a spaced orientation capable of receiving a standard North American electrical plug;
(ii) the second three-pronged-receptacle comprising:
(1) a second receptacle face;
(2) a second live blade slot;
(3) a second neutral blade slot; and
(4) a second ground prong opening;
wherein the second live blade slot, the second neutral blade slot; and the second ground prong opening are arranged on the second receptacle face in the spaced orientation capable of receiving the standard North American electrical plug;
wherein the first receptacle face and the second receptacle face are positioned substantially on a same plane, the first live blade slot and second neutral blade slot are aligned along a first vertical axis joining the first receptacle face and the second receptacle face; the first neutral blade slot and second live blade slot aligned along a second vertical axis joining the first receptacle face and the second receptacle face; and the first ground prong opening and second ground prong opening aligned along a third vertical axis joining the first receptacle face and the second receptacle face, such that the first ground prong opening and second ground plug opening are at two opposite ends of the receptacle body; and
(b) a conductive mounting strap having a first ground contact aligned behind the first ground prong opening of the receptacle body and a second ground contact aligned behind the second ground prong opening of the receptacle body;
(c) a conductive live blade receiving assembly having a first live blade contact aligned behind the first live blade slot of the receptacle body and a second live blade contact aligned behind the second live blade slot of the receptacle body, wherein the conductive live blade receiving assembly is substantially S-shaped;
(d) a conductive neutral blade receiving assembly having a first neutral blade contact aligned behind the first neutral blade slot of the receptacle body and a second neutral blade contact aligned behind the second neutral blade slot of the receptacle body, wherein the conductive neutral blade receiving assembly is substantially S-shaped; and
(e) a non-conductive housing for aligning the conductive mounting strap, the conductive live blade assembly, and the neutral blade assembly in an orientation with the receptacle body allowing the three pronged electrical plug to contact the corresponding live blade contact, the neutral blade contact, and ground contact, while preventing direct electrical communication from occurring between the conductive mounting strap, the conductive live blade receiving assembly, and the neutral blade receiving assembly.
15. The device of claim 1 further including:
(a) a first three prong plug with a cord extending generally perpendicular from the axis of the prongs, removably inserted into the first three prong receptacle; and
(b) a second three prong plug with a cord extending generally perpendicular from the axis of the prongs, removably inserted into the second three prong receptacle.
The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.
1. A method for implementing enhanced performance and reduced leakage current for application specific integrated circuit (ASIC) designs comprising the steps of:
identifying standard voltage threshold (SVT) circuits in a circuit library;
for each SVT circuit, replacing each SVT P-channel field effect transistor (PFET) with a low voltage threshold (LVT) PFET to provide a hybrid alternate voltage threshold (AVT) circuit; and
saving each said AVT circuit in an alternate circuit library.
2. A method for implementing enhanced performance and reduced leakage current as recited in claim 1 wherein the step of replacing each SVT PFET with a low voltage threshold (LVT) PFET includes the step of adding a low voltage threshold (LVT) over each said SVT PFET.
3. A method for implementing enhanced performance and reduced leakage current as recited in claim 2 wherein the step of adding a low voltage threshold (LVT) over each said SVT PFET includes the step of adding a single shape defining said low voltage threshold mask over an Nwell region to convert each said SVT PFETs to said LTV PFET.
4. An alternate voltage threshold (AVT) circuit library comprising:
a plurality of hybrid AVT circuits, each said hybrid AVT circuit including
each P-channel field effect transistor (PFET) having a low voltage threshold (LVT); and
each N-channel field effect transistor (NFET) having a standard voltage threshold (SVT).
5. An alternate voltage threshold (AVT) circuit library as recited in claim 4 wherein said hybrid AVT circuits include a corresponding standard voltage threshold (SVT) having a low voltage threshold (LVT) added over each said SVT PFET to convert each said SVT PFET to said LVT PFET.
6. An alternate voltage threshold (AVT) circuit library as recited in claim 4 wherein each said LVT PFET are provided in an Nwell Region isolated from each said NFET in each said hybrid AVT circuit.
7. A computer program product for implementing enhanced performance and reduced leakage current for application specific integrated circuit (ASIC) designs in a computer system, said computer program product including instructions executed by the computer system to cause the computer system to perform the steps of:
identifying standard voltage threshold (SVT) circuits in a circuit library;
for each SVT circuit, replacing each SVT P-channel field effect transistor (PFET) with a low voltage threshold (LVT) PFET to provide a hybrid alternate voltage threshold (AVT) circuit; and
saving each said AVT circuit in an alternate circuit library.
8. A computer program product as recited in claim 7 wherein the step of replacing each SVT PFET with a low voltage threshold (LVT) PFET includes the step of adding a low voltage threshold (LVT) over each said SVT PFET.
9. A computer program product as recited in claim 8 wherein the step of adding a low voltage threshold (LVT) over each said SVT PFET includes the step of adding a single shape defining said low voltage threshold mask over an Nwell region to convert each said SVT PFET to said LTV PFET.