CTB-011 Cooling color-correction filter
CTB-011 is a cooling color-correction filter. It transmits more of the blue region than the red region.
- Measured wavelength range: 380-800 nm
- 400-500 nm: 48.1% average transmission
- 500-600 nm: 20.6% average transmission
- 600-700 nm: 24.6% average transmission
- Custom options: Wavelength response, dimensions and operating conditions
Values shown are sample measurements. Final specifications are agreed for your order.
CTB-011 Cooling color-correction filter
CTB-011 is a cooling color-correction filter. It transmits more of the blue region than the red region.
- Measured wavelength range: 380-800 nm
- 400-500 nm: 48.1% average transmission
- 500-600 nm: 20.6% average transmission
- 600-700 nm: 24.6% average transmission
- Custom options: Wavelength response, dimensions and operating conditions
Values shown are sample measurements. Final specifications are agreed for your order.

Cooling color-correction filter (CTB-011)
CTB-011 is a cooling color-correction filter. It transmits more of the blue region than the red region. This can give a warm light source a cooler balance. Average transmission in the sample is 48.1% over 400-500 nm, 20.6% over 500-600 nm, 24.6% over 600-700 nm. The resulting light output also depends on the lamp spectrum.
Optical performance
- Measured wavelength range: 380-800 nm. Performance outside this measured interval is not established by this curve.
- 400-500 nm: Approximately 48.1% average transmission; the range is 21.8-89.9% in the measured curve.
- 500-600 nm: Approximately 20.6% average transmission; the range is 18-22.4% in the measured curve.
- 600-700 nm: Approximately 24.6% average transmission; the range is 18-38.2% in the measured curve.
- Measured edge at 50% transmission: Approximately 468.9 nm. Interpolated absolute-transmission crossing, checked against the factory summary.
- Customization: We can customize stock and sample-book designs. Tell us the wavelength response, size and operating conditions you need.
These values come from the measured samples and help you choose a starting design. We will agree the final specification for your order. Custom versions have their own specifications and measured curves.
Applications to consider
- Film and broadcast lighting: Consider cooling a warm source toward the color of another fixture. Check the resulting color temperature and tint with the actual lamp and camera.
- Stage color shaping: Try it when you want a bluer lighting effect. Account for the transmitted red and green content rather than expecting monochromatic blue.
- Lighting-fixture development: Compare the spectrum and brightness of the filtered light with other correction filters before choosing a strength.
Choosing this filter
- Evaluate the filter together with the intended light source. Color temperature, tint, color rendering and luminous output depend on that combination.
- Tell us the size, shape and working angle you need, along with the temperature conditions inside the fixture.
Custom options
Start with this stock or sample-book design, then tell us what you need to change. We can discuss the wavelength bands, transmission, blocking, angle, glass material, size and operating conditions with you, and agree a specification for your custom filter.
Transmission spectrum
Questions about CTB-011
Why does the whole curve matter for CTB-011?
The measured averages are 48.1% over 400-500 nm; 20.6% over 500-600 nm; 24.6% over 600-700 nm. They show how the filter weights different parts of the visible spectrum; the resulting color depends on which wavelengths your lamp supplies.
What does the 50% crossing near 468.9 nm mean for CTB-011?
It identifies where this measured curve crosses 50% transmission. It is useful for comparing the spectral transition, but it does not give a fixed color-temperature shift or the total light output from your lamp. For CTB-011, use the band averages above together with your source spectrum.
Discuss this filter with KUPO - include the product reference, source wavelength, working angle and required dimensions.