Reptile Lamp Database

Spectrum 280: BESU4 Edit
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Full Spectrum

Measurement

Brand Esu Birdlife
Esu Birdlife
Lamp Product Avian Lamp 15W
Lamp ID BESU4 (02/2008)
Spectrometer USB 2000
Ballast - no ballast or default/unknown ballast -
Reflector
Distance 10 cm
Age 1 hours
Originator (measurement) Frances Baines
Database entry created: Maren 17/Jun/2010 ; updated: Maren 27/Feb/2011

Colorimetry

Colorimetry is the science to describe physically the human color perception. The wavelength range 380 nm - 780 nm is visible to humans and detected by three different photoreceptors. Many Reptiles see the range 350 nm - 800 nm and have an additional UV photoreceptor in their retina.

Spectrum in the visible wavelength range

Whereas a spectrometer measures the intensity in every tiny wavelength interval resulting in thousands of individual intensities, the human eye only measures three intensities detected by the three cones. The same is true for the reptile eye with usually three or four photoreceptors. Effectively the detailled spectrum displayed above reduces to a much compacter bar graph displayed below. The photoreceptor sensitivites from these L-Cone, M-Cone, S-Cone, and U-Cone are used, they are chosen as an average of measured reptile photoreceptor sensitivity curves. The bar graph also shows as reference the intensity seen by the three or four photoreceptors for average sunlight (id 1).

From these three numbers the colour coordinate and the correlated colour temperature for humans are calculated using the CIE standard method. I adapted this concept to a "3 cone reptile (M,S,U)" and a "4 cone reptile (L,M,S,U)". I am sure, that this adaption to other colour spaces makes sense mathematically and this is also done in scientific research regarding colour vision of animals, however I have not seen calculation of colour temperatures for other animals in the scientific literature. Even if it is hypothetical, at least this shows, how arbitrary the colour temperature is, and that the colour temperature calculated for humans does not apply to reptiles. The colour spaces also show the colour coordinates of different phases of daylight ((ids 1, 338451, 511513 ), indicated by crosses, coloured in the appriximate colour perceived by a human.

Human (CIE) 3 cone reptile 4 cone reptile
Cone Excitation
Colour Coordinate ( 0.32 ; 0.32 ) ( 0.38 ; 0.47 ) ( 0.29 ; 0.27 ; 0.33 )
CCT 6200 Kelvin 5400 Kelvin 5100 Kelvin
distance 0.12 0.088
colour space 3-D-graph not implemented yet

Vitamin D3 Analysis

Vitamin D3 is produced by UVB radiation around 300 nm. 7DHC/ProD3 present in the skin is converted to PreD3 when absorbing an UV photon. PreD3 can be converted back to ProD3, to Lumisterol, or to Tachysterol when absorbing another UV photon or can be converted to Vitamin D3 in a warm environment.

This process prevents any overdose of vitamin D3 from UV radiation with a spectrum similar to sunlight. As a comparison the solar spectra at 20°(id:14) and at 85°(id:21) solar angle are shown.

Spectrum in the vitamin D3 active wavelength range

The ratio of the two solarmeters 6.2 (UVB) and 6.5 (UV index) readings has proven a useful and very simply number to acess the spectral shape in the vitamin-d3-active region.

Effective Irradiances

Effective irradiances are calculated for all ranges, actionspectra and radiometers currently present in this database.

The calculation method is a numerical implementation (Simpson's rule) of the formula

To learn more about calculating effective irradiances and radiometers I recommend this excellent report on UVB meters: Characterizing the Performance of Integral Measuring UV-Meters (pdf).

The numbers in the following tables can also be used to estimate certain (effective) irradiances from radiomer readings. Example: If the database lists

  • range: UVB (US) = 13.8 µW/cm²
  • radiometer: Solarmeter 6.2 = 19.6 µW/cm²
then any Solarmeter 6.2 reading multiplied with 0.7 (0.7=13.8/19.6) is an estimate of UVB irradiance for this specific lamp. If you do so, always make sure, that the calculated (effective) irradiance is valid. The calculated value is not valid, if the lamp's spectrum is not measured in the relevant range.

Ranges
total ( 0 nm - 0 nm) 723 µW/cm² = 7.23 W/m²
UVC ( 0 nm - 280 nm) 0.115 µW/cm² = 0.00115 W/m²
non-terrestrial ( 0 nm - 290 nm) 0.14 µW/cm² = 0.0014 W/m²
total2 ( 250 nm - 880 nm) 723 µW/cm² = 7.23 W/m²
UVB (EU) ( 280 nm - 315 nm) 5.44 µW/cm² = 0.0544 W/m²
UVB (US) ( 280 nm - 320 nm) 8.42 µW/cm² = 0.0842 W/m²
UVA+B ( 280 nm - 380 nm) 41.8 µW/cm² = 0.418 W/m²
Solar UVB ( 290 nm - 315 nm) 5.42 µW/cm² = 0.0542 W/m²
UVA D3 regulating ( 315 nm - 335 nm) 13.3 µW/cm² = 0.133 W/m²
UVA (EU) ( 315 nm - 380 nm) 36.4 µW/cm² = 0.364 W/m²
UVA2 (medical definition) ( 320 nm - 340 nm) 13.3 µW/cm² = 0.133 W/m²
UVA (US) ( 320 nm - 380 nm) 33.4 µW/cm² = 0.334 W/m²
UVA1 (variant) ( 335 nm - 380 nm) 23.1 µW/cm² = 0.231 W/m²
UVA1 (medical) ( 340 nm - 400 nm) 28.6 µW/cm² = 0.286 W/m²
vis. UVA ( 350 nm - 380 nm) 16 µW/cm² = 0.16 W/m²
VIS Rep3 ( 350 nm - 600 nm) 488 µW/cm² = 4.88 W/m²
VIS Rep4 ( 350 nm - 700 nm) 654 µW/cm² = 6.54 W/m²
purple ( 380 nm - 420 nm) 46.5 µW/cm² = 0.465 W/m²
VIS ( 380 nm - 780 nm) 676 µW/cm² = 6.76 W/m²
VIS2 ( 400 nm - 680 nm) 608 µW/cm² = 6.08 W/m²
PAR ( 400 nm - 700 nm) 630 µW/cm² = 6.3 W/m²
tmp ( 400 nm - 1100 nm) 673 µW/cm² = 6.73 W/m²
blue ( 420 nm - 490 nm) 173 µW/cm² = 1.73 W/m²
green ( 490 nm - 575 nm) 193 µW/cm² = 1.93 W/m²
yellow ( 575 nm - 585 nm) 29.3 µW/cm² = 0.293 W/m²
orange ( 585 nm - 650 nm) 129 µW/cm² = 1.29 W/m²
red ( 650 nm - 780 nm) 105 µW/cm² = 1.05 W/m²
IRA ( 700 nm - 1400 nm) 43.4 µW/cm² = 0.434 W/m²
IR2 ( 720 nm - 1100 nm) 28.1 µW/cm² = 0.281 W/m²
IRB ( 1400 nm - 3000 nm) 0 µW/cm² = 0 W/m²
Actionspectra
Erythema 0.4 UV-Index
Pyrimidine dimerization of DNA 3.25 µW/cm²
Photoceratitis 0.601 µW/cm²
Photoconjunctivitis 0.115 µW/cm²
DNA Damage 0.153
Vitamin D3 1.48 µW/cm²
Photosynthesis 440 µW/cm²
Luminosity 1760 lx
Human L-Cone 263 µW/cm²
Human M-Cone 220 µW/cm²
Human S-Cone 146 µW/cm²
CIE X 241 µW/cm²
CIE Y 245 µW/cm²
CIE Z 269 µW/cm²
PAR 3010000 mol photons
Extinction preD3 10.4 e-3*m²/mol
Extinction Tachysterol 35.6 e-3*m²/mol
Exctincition PreD3 5490 m²/mol
Extinction Lumisterol 2.45 m²/mol
Exctincition Tachysterol 49900 m²/mol
Extinction 7DHC 2.53 m²/mol
L-Cone 222 µW/cm²
M-Cone 209 µW/cm²
S-Cone 257 µW/cm²
U-Cone 86.2 µW/cm²
UVR - ICNIRP 2004 0.391 Rel Biol Eff
Melatonin Supression 200 µW/cm²
Blue Light Hazard 164 µW/cm² (93.2 µW/cm² per 1000 lx)
CIE 174:2006 PreVit D3 1.61 µW/cm²
Lumen Reptil 1800 "pseudo-lx"
Vitamin D3 Degradation 1.68 µW/cm²
Actinic UV 0.387 µW/cm² (2.2 mW/klm)
Exctincition Lumisterol 3130 m²/mol
Exctincition 7DHC 2950 m²/mol
Exctincition Toxisterols 1170 m²/mol
Broadbandmeters
Solarmeter 6.2 (UVB, pre 2010) 10.3 µW/cm²
Solarmeter 6.5 (UV-Index, pre 2010) 0.429
Leybold UVB 7.33 µW/cm²
Leybold UVA 23.4 µW/cm²
Leybold UVC 0.0906 µW/cm²
DeltaOhm UVB 16.9 µW/cm²
DeltaOhm UVC 2.22 µW/cm²
Vernier UVB 2.55 µW/cm²
Vernier UVA 22.3 µW/cm²
Gröbel UVA 30.2 µW/cm²
Gröbel UVB 3.72 µW/cm²
Gröbel UVC 0.0928 µW/cm²
Luxmeter 1800 lx
Solarmeter 6.4 (D3) 1.34 IU/min
UVX-31 18.3 µW/cm²
IL UVB 0.00432 µW/cm²
IL UVA 27.8 µW/cm²
Solarmeter 6.5 (UVI, post 2010) 0.353 UV-Index
Solarmeter 6.2 (UVB, post 2010) 6.83 µW/cm² (Solarmeter Ratio = 19.3)
Solarmeter AlGaN 6.5 UVI sensor 4.62 UV Index
GenUV 7.1 UV-Index 0.261 UV-Index
Solarmeter 10.0 (Global Power) (manuf.) 7.36 W/m²
Solarmeter 4.0 (UVA) 0.448 mW/cm²
LS122 (manuf.) 0.0028 W/m²
ISM400 (first guess) 5.25 W/m²
LS122 (assumption) 0.257 W/m²
ISM400_new 4.37 W/m²
Solarmeter 10.0 (Global Power) (assumption) 7.02 W/m²