Define Candela — What Is Candela?

坎德拉是什么

To define candela: the candela (symbol cd) is the SI base unit of luminous intensity — the luminous flux emitted by a source per unit solid angle in a specific direction (1 cd = 1 lm/sr). Since the 2019 SI redefinition, the candela is fixed by taking the luminous efficacy of monochromatic 540 THz radiation (≈ 555 nm, green) to be exactly 683 lm/W. Where lumens describe a source's total output and lux describes light arriving on a surface, candela describes how strongly light is concentrated in a direction — the shape and punch of the beam. One candela is roughly the intensity of a single wax candle. Luminous intensity is formally defined in CIE S 017:2020, and luminaire intensity distributions are measured by goniophotometer per IES LM-79-19.

Candela is the photometric quantity that spec sheets most often hide and designers most need. Two spotlights can share an identical 600-lumen rating yet differ tenfold in center-beam candela — one washes a wall softly, the other cuts a crisp pool of light on a jewelry display four meters below. To define candela properly is to understand direction, and direction is what turns raw light into design.

How Candela Works: Luminous Intensity and Solid Angle

Luminous intensity answers the question: of all the light this source emits, how much travels in this particular direction? The "direction" is quantified as a solid angle, measured in steradians (sr). A full sphere contains 4π ≈ 12.57 sr; a hemisphere 2π ≈ 6.28 sr; a narrow 15° spotlight cone only about 0.054 sr.

The defining relationship is:

I (candela) = Φ (lumens) ÷ ω (steradians)

Concentrate a fixed lumen budget into a smaller solid angle and the candela rises proportionally. A 600 lm source spread over a full sphere averages only ~48 cd in any direction; the same 600 lm focused into a 15° beam produces roughly 11,000 cd on axis. Nothing about the source's total output changed — the optic simply traded coverage for intensity. This is the central trade-off in every reflector, lens, and TIR optic design.

The Candela as an SI Base Unit

The candela is one of the seven SI base units — the only one dedicated to human perception. Historically it derived from actual candles ("candlepower"), then from platinum blackbody radiators. Since 2019, it is defined by fixing Kcd = 683 lm/W at 540 THz, anchoring all photometry (lumen, lux, cd/m²) to a physical constant plus the CIE V(λ) eye-sensitivity function referenced in CIE S 017:2020. The lumen and the lux are both derived from the candela: 1 lm = 1 cd·sr, and 1 lx = 1 lm/m².

Beam Angle and Center-Beam Candela

Directional lamps are characterized by two linked figures: center-beam candlepower (CBCP) — the candela on the beam axis — and beam angle — the cone within which intensity stays above 50% of CBCP. Field angle (10% threshold) describes the softer spill beyond. For the same lumen package: a 10° spot might rate 20,000 cd CBCP, a 25° flood 4,000 cd, and a 60° wide flood 900 cd. When you define candela requirements for accent lighting, CBCP plus beam angle tells you far more than lumens ever will.

Key Data: Typical Luminous Intensity Values

Source / ParameterApproximate ValueStandard / Reference
Definition: 1 candela1 lm/sr; Kcd = 683 lm/W at 540 THzSI Brochure (BIPM, 2019); CIE S 017:2020
Wax candle≈ 1 cdHistorical basis of the unit
25 W incandescent bulb (bare)≈ 20 cd (omnidirectional)
LED PAR30 spot, 15° beam2,000–5,000 cd CBCPIES LM-79-19 (goniophotometry)
LED track spot, 10° beam10,000–25,000 cd CBCPIES LM-79-19
Car headlight — low beam limit (toward oncoming traffic)< 437 cd above cutoffUN ECE Regulation 112
Car headlight — high beam50,000–100,000+ cdUN ECE R112 (max 430,000 cd combined)
Marine lighthouse1,000,000+ cdIALA recommendations
Aviation obstruction light (medium intensity, red)2,000 cdICAO Annex 14, Type B
Emergency exit sign luminance-related intensityVisibility per EN 1838 / IEC 60598-2-22EN 1838:2024
Discomfort glare from intensity toward the eyeControlled via UGR ≤ 19 (offices)EN 12464-1:2021; CIE 117

How Candela Relates to Lumens and Lux

Candela, lumen, and lux form the emission-direction-reception chain of photometry, all defined in CIE S 017:2020. To define candela in context:

  1. Candela (cd) — luminous intensity: flux per solid angle in a direction. The directional strength of the source. (Base unit.)
  2. Lumen (lm) — luminous flux: intensity integrated over all directions — the total light output. 1 lm = 1 cd·sr.
  3. Lux (lx) — illuminance: flux landing per unit area of a surface. 1 lx = 1 lm/m², and for a point source, lux = candela ÷ distance².

Use the archer's analogy: lumens are how many arrows you shoot in total, candela is how tightly you group them toward one target, and lux is how many arrows per square meter actually strike the target face at its distance. Optics cannot create arrows — they only aim them. Every increase in candela from a fixed source comes from narrowing the beam.

The workhorse conversion in accent and floodlighting design is the inverse square law:

E (lux) = I (cd) ÷ d² (m²)

A 4,000 cd track spot aimed at a display 2.5 m away delivers 4,000 ÷ 6.25 = 640 lx on the merchandise — comfortably achieving the 3:1 accent contrast over a 200 lx ambient that IES RP-2-20 recommends for retail. Reverse the math to select fixtures: to hit 1,000 lx at 3 m you need 9,000 cd CBCP, regardless of the lamp's lumen rating.

Practical Applications of Candela

1. Accent and Retail Lighting

Merchandise lighting is specified in candela, not lumens: choose the CBCP that yields the target lux at the actual throw distance, then pick the beam angle that matches the object size (beam diameter ≈ 2 × distance × tan(beam angle ÷ 2)). A 24° beam at 3 m covers about a 1.3 m circle — right for a mannequin, too wide for a watch case.

2. Automotive and Transport Lighting

Vehicle lighting regulations are written almost entirely in candela. UN ECE R112 caps low-beam intensity above the cutoff line to protect oncoming drivers while requiring high intensity below it; brake lamps, indicators, and aircraft obstruction lights (ICAO Annex 14) all carry candela minima and maxima per direction. This is luminous intensity as a safety-critical, legally enforced quantity.

3. Road and Area Lighting Distributions

Street luminaire photometry is published as candela tables (IES or EULUMDAT files) measured by goniophotometer per IES LM-79-19. Designers and EN 13201 calculations consume these intensity distributions to predict road luminance and glare. The BUG rating system (backlight-uplight-glare, IES TM-15) is likewise derived from candela emitted into specific angular zones.

4. Glare Control

Glare is fundamentally a candela problem: too much intensity aimed at the eye. EN 12464-1:2021 limits office glare via UGR ≤ 19, which is computed from each luminaire's candela toward the observer, its apparent size, and the background luminance. Shielding angles and dark-light optics work by cutting the candela emitted between 65° and 90° from vertical.

5. Searchlights, Lighthouses, and Signaling

Where light must be seen at great distance, only candela matters. A lighthouse's million-plus candela beam is visible tens of kilometers away despite a modest lumen package, because nearly all flux is compressed into a degree-wide rotating fan — the ultimate demonstration that direction, not total output, determines reach.

Specifying with Candela: A Quick Method

  1. Fix the target lux on the object or task (e.g., 750 lx on a display, per IES RP-2-20 or EN 12464-1 context).
  2. Measure the throw distance from fixture aiming point to target.
  3. Compute required CBCP: candela = lux × distance². Add ~20% margin for maintenance factor and aiming tolerance.
  4. Select beam angle from the object size and distance, then verify against the manufacturer's full candela distribution — not just the headline CBCP.
  5. Check glare: confirm the chosen intensity is shielded from normal sightlines (UGR or shielding-angle check).

Key Takeaways

Key Takeaway: To define candela is to define directional light: 1 cd = 1 lm per steradian, and it is the SI base unit from which lumen and lux both derive. Lumens tell you how much light exists; candela tells you where it goes; lux tells you what arrives. For any spotlight, floodlight, or signal, candela — not lumens — is the specification that predicts performance.
Pro Tip: When comparing accent fixtures, ignore the lumen headline and request the LM-79-19 photometric file. Check CBCP, beam angle, and the intensity curve shape — a "smooth" beam with gradual falloff reads as premium; a beam with a harsh 50% cliff creates visible scallops on walls. Then verify with lux = cd ÷ d² at your real mounting distance.
Reality Check: Optics don't add light — they redistribute it. A 600 lm lamp can deliver 48 cd or 11,000 cd depending on the beam. If a datasheet shows high candela and high lumens and a wide beam from a small package, one of those numbers is wrong. The physics (I = Φ ÷ ω) always wins.

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