Lightingconcept
Lighting metrics: lumens, foot-candles, CRI, CCT, and efficacy
One-line orientation
Five metrics — lumens, foot-candles, CRI, CCT, and efficacy — are the language of lighting specification; understanding which metric describes the source vs. the space vs. the energy cost is the exam’s central lighting vocabulary test.
Key points
- Lumens: total light output of a lamp; a source property. A 60 W incandescent = ~800 lm; a 10 W LED = ~800 lm. Same lumens, very different watts.
- Foot-candles (fc): illuminance at a surface — lumens arriving per square foot of work
plane. Measured with a light meter. Governs whether a space meets occupancy lighting requirements.
- 1 fc = 1 lumen/ft²
- 1 lux = 1 lumen/m² (metric equivalent; 1 fc ≈ 10.76 lux)
- CRI (Color Rendering Index): 0–100 scale comparing how a source renders a standardized
set of test colors vs. a reference illuminant.
- CRI ~100: incandescent / halogen (reference-quality)
- CRI 85+: LED (good), Metal Halide (~85)
- CRI 75–85: Fluorescent
- CRI ~20: High-Pressure Sodium (very poor — colors shift to yellow-orange)
- Design rule: retail, medical, art galleries → CRI ≥ 90; general commercial → CRI ≥ 80.
- CCT (Correlated Color Temperature): Kelvin scale indicating the “color appearance” of the
light.
- 2700–3000 K: warm white (residential, hospitality, ambiance)
- 3500–4100 K: neutral white (offices, general commercial)
- 5000–6500 K: cool / daylight white (medical, warehouses, some offices)
- CCT does not correlate directly with CRI — a lamp can be warm (low CCT) and still have poor color rendering.
- Efficacy (lm/W): energy efficiency of a source.
- Incandescent: ~20 lm/W (most energy lost as heat)
- Halogen: ~15–25 lm/W (standard); ~25–35 lm/W (IRC/infrared-reflecting halogen)
- Fluorescent: ~60–90 lm/W
- HID (Metal Halide): ~80–100 lm/W
- LED: ~90–120 lm/W (leading current standard)
- Lamp life: rated hours to 70% of initial lumens (L70 standard for LEDs). Not a hard failure point — LEDs dim gradually rather than burn out suddenly.
- Daylight Factor (DF): ratio of indoor natural light to outdoor daylight under overcast
sky, expressed as a percentage.
- < 2%: low daylight — artificial lighting required most of the time.
- 2–5%: moderate — supplemental artificial lighting often needed.
- Above 5%: high daylight availability — also check glare and unwanted heat gain or loss.
- Visible spectrum: about 380–750 nm. UV (< 380 nm) and IR (> 750 nm) are outside visible range.
- UV comes from arc sources — fluorescent and HID (metal halide, mercury vapor) generate UV in the arc, which is why HID lamps need a protective outer envelope or lens. UV is what fades fabrics and artwork, so it drives lamp choice in museums and retail displays.
- IR comes from hot filaments — incandescent and halogen radiate most of their energy as IR (heat) rather than light, which is why their efficacy is so low.
- LEDs emit essentially neither, so they add little radiant heat or fading risk.
Confusions / comparison
| Metric | What it describes | A property of | Unit | Higher = ? |
|---|---|---|---|---|
| Lumens | total light output of a source | the lamp | lm | brighter source |
| Foot-candles | illuminance on a surface | the space / work plane | fc (lm/ft²) | more light on surface |
| CRI | color accuracy vs. reference | the lamp | 0–100 | better color rendering |
| CCT | color appearance (warm vs. cool) | the lamp | Kelvin (K) | cooler / bluer light |
| Efficacy | lumens per watt of electricity | the lamp | lm/W | more efficient |
| Space type | Typical target fc | Notes |
|---|---|---|
| Egress paths, corridors | 1–10 fc | minimum for safe passage |
| Lobbies, hallways | 10–20 fc | ambient orientation |
| General offices, retail | 30–50 fc | comfortable general tasks |
| Typical classrooms / general study | about 30–50 fc | detailed tasks may need more |
| Labs, medical, manufacturing | 100+ fc | precision / critical tasks |
Lighting metrics: what leaves, what arrives, and how the source behaves
Location separates lumens from foot-candles; separate scales distinguish CCT from CRI.
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CCT is not CRI: a warm or cool source can still render colors well or poorly.
Related
→ Lighting: Lamp types (which lamp achieves which CRI/CCT/efficacy) · Illuminance & daylight (using fc levels and DF in design) · Lighting controls (maintaining target fc automatically) · Systems: HVAC (lighting heat load → cooling).
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