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BRANCH CIRCUIT DESIGN AND DEVICE WIRING
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Figure 7-12 Two duplex receptacles at the end of the circuit are wired in parallel Upper and lower outlets of each receptacles are always hot
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Figure 7-13 illustrates how a single-pole switch at the end of a circuit can control a duplex receptacle between it and the power source The black hot wire from the source is spliced to a black-marked white wire that bypasses the receptacle and conducts power to a brass screw terminal on the switch After passing through the switch, power is conducted by a second black hot wire from the second brass screw terminal on the switch to a brass screw terminal on the receptacle The white neutral wire goes only to the silver-colored screw terminal on the receptacle When the switch toggle is in the ON position, both the upper and lower outlets of the receptacle are hot, but when the switch toggle is in the OFF position, there is no power at either outlet of the receptacle
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Figure 7-14 illustrates a receptacle with the metal tab connecting the upper and lower outlets removed to form two independent outlets As in Fig 7-13, a single-pole switch is at the end of the circuit, with the duplex receptacle between it and the power source
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Figure 7-13 Both outlets of a duplex receptacle are controlled by a single-pole switch Outlets are hot only when the switch is on
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The black hot wire from the source going to the lower brass screw on the receptacle, spliced to a black-marked white hot wire nut, furnishes power in parallel to the lower outlet of the receptacle and the upper brass screw of the switch Power passes through the switch to the lower brass screw and a second attached black hot wire that goes to the upper brass screw on the upper outlet of the receptacle The white neutral wire going to the silver-colored screw of the upper outlet provides a return path for both independent outlets The lower outlet of this duplex receptacle is always hot, but the upper outlet is controlled by the switch When the switch toggle is in the ON position, the upper outlet receives power
GFCI RECEPTACLE
Figure 7-15 illustrates how a duplex GFCI receptacle protects two standard duplex receptacles positioned downstream of it in the same branch circuit The black hot wire from the source conducts power to the lower brass screw on the GFCI receptacle It passes through the GFCI receptacle Power passes through the receptacle and leaves through the upper brass screw in a second black hot wire that goes to the lower brass screw of the standard (middle) receptacle After passing through that receptacle, power
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Figure 7-14 Removal of the metal tab on a duplex receptacle permits independent operation of outlets: The lower outlet is always hot, and the upper outlet is hot only when the switch is on
is conducted from the upper brass screw terminal to a third black hot wire to the lower brass screw terminal of the end (upper) receptacle The neutral white wire goes first to the lower silver-colored screw on the left side of the GFCI receptacle and then continues from the upper silver-colored screw terminal, bypassing the middle receptacle, to the upper silver-colored screw terminal on the end receptacle, where it forms the neutral return connection Ground-fault protection is afforded to all electrical loads plugged into any of the six outlets on the three receptacles by the GFCI circuitry within the GFCI receptacle
Making Wiring Device Connections
When making wire connections to switches and receptacles with screw-type terminals, only enough insulation should be stripped from the ends of the insulated wire to permit the bare wires to be wrapped three-quarters of the way around the screw This
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