Electricalconcept
Electrical service and distribution: voltages, wiring, and code requirements
One-line orientation
Building electrical service arrives at high voltage, is stepped down by transformers, and distributed at voltages matched to the load — the exam tests which voltage system serves which building type and which protective devices go where.
Key points
- Ohm’s Law: V = I × R (voltage = current × resistance). For AC circuits, real power in watts also involves the power factor: W = I × V × pf. Apparent power (VA) omits pf.
- Power factor (pf): ratio of real power (W) to apparent power (VA); ideal = 1.0. Low pf means wasted energy, common with inductive loads (motors, transformers).
- Why high-voltage transmission: distributing a million watts at 120V would require impractically large conductors (8,000+ A). High voltage keeps current manageable; substations and transformers step it back down.
- Standard building voltage systems:
- 120V single-phase — one hot + neutral; residential outlets and lighting.
- 120/240V single-phase — two hot + neutral; 120V for outlets, 240V for dryers/ovens.
- 120/208V three-phase — three hot + neutral; commercial buildings, motors, HVAC.
- 277/480V three-phase — common in large commercial and industrial buildings. Lighting often uses 277V; large motors often use 480V. Small step-down transformers in electrical closets reduce 480V service to 120V for standard outlets.
- Delta note: a standard 3-wire delta has no neutral and is mainly a motor/industrial service; a 4-wire high-leg delta is the exception that can provide 120/240V plus a high leg.
- Wire gauge and ampacity: higher current → thicker wire (lower AWG number).
- 14 AWG → 15 A; 12 AWG → 20 A; 10 AWG → 30 A.
- Voltage drop: increases with wire length and load; minimize by using thicker wire or shorter runs.
- Wire types:
- Romex (NM cable): flexible nonmetallic cable; common in dwelling/light-frame concealed dry runs, but not for exposed, wet, or high-damage locations.
- Steel conduit: strong protection, commercial/industrial; costly to install.
- BX (armored cable / Type AC): armor serves as the ground path via an internal aluminum bonding strip; no separate grounding wire.
- MC (metal-clad): separate grounding wire inside; casing not used for ground.
- Hot (black/red) / Neutral (white) / Ground (green/bare): hot carries current to load; neutral returns it; ground provides fault path to earth.
- Protective outlets:
- GFCI — monitors current imbalance; required in bathrooms, kitchens, outdoors (wet locations).
- AFCI — detects arcing; per NEC 2023 §210.12(B), required in nearly all habitable dwelling rooms (bedrooms, living rooms, kitchens, hallways, closets, laundry, dining, sunrooms, and similar).
- Electrical clearances (NEC): 3 ft clearance in front of electrical equipment; 30 in. wide working space; 6 ft 6 in. minimum headroom (NEC 110.26(A)(3)/(D) = 2.0 m).
- Outlet spacing (residential):
- Walls: Receptacles may be no more than 12 feet apart, and no point may be more than 6 feet from a receptacle.
- Wall segments: Each segment over 2 feet needs a receptacle.
- Kitchen counters: No point may be more than 2 feet from a receptacle. Each counter over 1 foot needs a receptacle.
Confusions / comparison
| System | Voltage (phase-to-phase / phase-to-neutral) | Typical building type | Typical loads |
|---|---|---|---|
| 120V 1-phase | 120V / — | Residential | Outlets, lighting |
| 120/240V 1-phase | 240V / 120V | Residential | Outlets (120V); dryers, ovens (240V) |
| 120/208V 3-phase | 208V / 120V | Commercial | Motors, HVAC, receptacles |
| 277/480V 3-phase | 480V / 277V | Large commercial / industrial | Lighting (277V); elevators, motors (480V) |
| Wire type | Ground method | Best for |
|---|---|---|
| Romex (NM) | Separate bare wire | Dwelling/light-frame concealed dry runs |
| Steel conduit | Conduit itself | Commercial, exposed runs |
| BX armored (Type AC) | Armor + internal bonding strip = ground | Tight residential/commercial spaces |
| MC metal-clad | Separate wire inside | Where casing must not carry ground |
Electrical service steps voltage down, then matches it to the load
SchematicA common large-building path distributes 480/277 V and adds a secondary transformer where 120 V is needed.
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Voltage values show a common commercial pattern, not the only service configuration.
Related
→ Systems: Lighting (277V commercial lighting, lamp types) · HVAC (motors, three-phase loads) · Plumbing (dedicated circuits for appliances) · Code: NEC clearance and spacing requirements.
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