MyLight MAX 2.0 Spectrometer Verification & Irradiance Testing
The MyLight MAX 2.0 by Mychondria is a spectrometer-tested red light therapy panel. Its wavelength output, spectral irradiance and flicker characteristics have been measured using a HOPOO HPCS-330Pro spectrometer.
The MyLight MAX 2.0 uses 630 nm and 660 nm red light together with 850 nm near-infrared light. Spectrometer testing measured spectral irradiance of 71.937 mW/cm² at 6 inches, 69.320 mW/cm² at 8 inches and 63.340 mW/cm² at 12 inches.
Mychondria publishes the complete verification report and original spectrometer measurement data so that these specifications can be independently reviewed.
Device: MyLight MAX 2.0
Brand: Mychondria
Wavelengths: 630 nm, 660 nm and 850 nm
Instrument: HOPOO HPCS-330Pro
Instrument serial number: 334954588
Spectral measurement range: 380–1000 nm
Testing date: September 13, 2026
Device output: 100% with all wavelengths enabled
Sensor position: Center of panel
Warm-up period: 10 minutes for both device and spectrometer
View all Mychondria spectrometer-verified red light therapy testing
View the MyLight MAX 2.0 product page
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MyLight MAX 2.0 spectrometer test results
The MyLight MAX 2.0 was tested at 6 inches, 8 inches and 12 inches from the spectrometer sensor.
During testing, the panel was operating at 100% output with the 630 nm, 660 nm and 850 nm wavelengths enabled.
| Measurement distance | Spectral irradiance |
|---|---|
| 6 inches (15.2 cm) | 71.937 mW/cm² |
| 8 inches (20.3 cm) | 69.320 mW/cm² |
| 12 inches (30.5 cm) | 63.340 mW/cm² |
These figures are the spectrometer-measured spectral irradiance values recorded using the HOPOO HPCS-330Pro.
View the MyLight MAX 2.0 Spectrometer Irradiance Verification Report
Verified 630 nm, 660 nm and 850 nm wavelength output
- 630 nm red light
- 660 nm red light
- 850 nm near-infrared light
The HOPOO HPCS-330Pro measures light across a spectral range of 380–1000 nm, which includes all three wavelengths used by the MyLight MAX 2.0.
The spectral measurements show optical output concentrated in the intended red and near-infrared wavelength regions.
MyLight MAX 2.0 flicker testing
The HOPOO HPCS-330Pro also recorded the flicker characteristics of the MyLight MAX 2.0 during testing.
| Frequency | 0 Hz |
| Flicker percentage | 0% |
| Flicker index | 0 |
| Duty cycle | 0% |
| Flicker cycle | 0 ms |
No measurable flicker was detected during testing.
How the MyLight MAX 2.0 was tested
- The MyLight MAX 2.0 and HOPOO HPCS-330Pro spectrometer were allowed to warm up for 10 minutes.
- The panel was set to 100% output with the 630 nm, 660 nm and 850 nm wavelengths enabled.
- The spectrometer sensor was positioned in the center of the panel.
- Measurements were recorded at 6 inches, 8 inches and 12 inches.
- Spectral irradiance and spectral output were recorded using the HOPOO HPCS-330Pro.
- Flicker was measured using the spectrometer's integrated flicker measurement function.
Spectrometer testing equipment
- Manufacturer: Hangzhou Hopoo Light & Color Technology Co., Ltd.
- Model: HPCS-330Pro
- Serial number: 334954588
- Spectral measurement range: 380–1000 nm
- Software version: 2.0.4
Why Mychondria uses a spectrometer
A spectrometer measures how optical energy is distributed across different wavelengths, allowing both spectral output and spectral irradiance to be evaluated.
For the MyLight MAX 2.0, the same instrument measures its 630 nm red light, 660 nm red light, 850 nm near-infrared light and overall irradiance.
Why irradiance changes with distance
Irradiance describes the amount of radiant power reaching a given area and is commonly expressed in mW/cm².
Measuring at several treatment distances shows how much optical power is available where a user is actually positioned rather than relying on a single output figure.
- 71.937 mW/cm² at 6 inches
- 69.320 mW/cm² at 8 inches
- 63.340 mW/cm² at 12 inches
Using irradiance to calculate red light therapy dose
Red light therapy dose is commonly expressed in joules per square centimeter (J/cm²).
Dose (J/cm²) = Irradiance (W/cm²) × Treatment Time (seconds)
Publishing measured irradiance at several treatment distances makes treatment-dose calculations possible using measured output.
MyLight MAX 2.0 verification report and original test data
The complete MyLight MAX 2.0 Spectrometer Irradiance Verification Report contains the key irradiance measurements, wavelength information, flicker results, testing conditions and instrument details.
The verification report also includes links to the original HOPOO HPCS-330Pro measurement reports from the 6-inch, 8-inch and 12-inch tests, allowing the underlying instrument data to be reviewed directly.
View the MyLight MAX 2.0 Verification Report & Original Test Data
Frequently asked questions
Is Mychondria a spectrometer-verified red light therapy brand?
Yes. Mychondria uses a HOPOO HPCS-330Pro spectrometer to measure and verify the spectral output and irradiance of its red light therapy devices.
Is the MyLight MAX 2.0 spectrometer verified?
Yes. Mychondria publishes spectrometer-measured irradiance, wavelength information, flicker measurements, a verification report and original instrument data for the MyLight MAX 2.0.
What is the irradiance of the MyLight MAX 2.0?
The MyLight MAX 2.0 measured 71.937 mW/cm² at 6 inches, 69.320 mW/cm² at 8 inches and 63.340 mW/cm² at 12 inches.
What wavelengths does the MyLight MAX 2.0 use?
The MyLight MAX 2.0 uses 630 nm and 660 nm red light together with 850 nm near-infrared light.
What spectrometer was used to test the MyLight MAX 2.0?
Testing was performed using a HOPOO HPCS-330Pro spectrometer, serial number 334954588, with a spectral measurement range of 380–1000 nm.
Does the MyLight MAX 2.0 have measurable flicker?
The published tests recorded 0% flicker and a flicker frequency of 0 Hz.
Can I inspect the original MyLight MAX 2.0 spectrometer data?
Yes. The complete verification report links to the original HOPOO HPCS-330Pro reports from each tested distance.
Transparent spectrometer testing
Mychondria publishes the exact irradiance measurements, wavelengths, testing equipment, testing conditions, verification report and underlying spectrometer data for the MyLight MAX 2.0.
The goal is not simply to claim that the MyLight MAX 2.0 is spectrometer tested. It is to publish the evidence behind that claim.