Khải Anh - 21/12/2022
Irradiance is defined as the quantity of energy released at every wavelength from a luminous sample, such as an LED, a laser, or the sun. More precise intensity levels can be computed using the above data.
Relative irradiance uses a lamp with a known color temperature to correct the shape of the spectrum but not its magnitude. Relative irradiance can determine whether there is more power at one wavelength than another, but not how much power there is in absolute terms.
Absolute spectral irradiance requires a lamp of known spectral power output to calibrate the spectrometer’s response at each pixel. This modifies the shape and magnitude of the spectrum, correcting for the instrument’s response function. The modified spectrum is given in terms of power per area per wavelength.
Advantages of Irradiance
LED Measurement
A modular setup for measuring LEDs comprises a spectrometer like our Flame, Ocean FX or Ocean HDX models, plus optical fibers, and an integrating sphere to collect the output from the LED. Also, we can add an LED power supply/controller to operate the LED and adjust its drive current, and for absolute irradiance, include a radiometrically calibrated VIS-NIR source designed for use with an integrating sphere.
Quick Tips for Absolute Irradiance Measurement
Absolute irradiance measurements require calibration using a source with known power output. A spectrum is measured with the sampling optic (cosine corrector, integrating sphere or optical fiber) connected to the calibration light source, and is then compared to the known output power of the radiometrically calibrated light source. Here are some important tips to remember for absolute irradiance measurements:
Determining the Collection Area of Sampling Optic Absolute Irradiance Measurements
The collection area of the sampling optic is needed to calibrate a system radiometrically. There is a step in the OceanView Absolute Irradiance Wizard where this information is entered.