ZWO Narrowband OIII Filter - 7nm
- 7nm Bandpass at OIII Emission Line
- Isolates Planetary Nebulae and Supernova Remnants
- Standard 1.25" Threaded Filter Cell
- 1/4 Wave Optical Substrate Accuracy
- Multi-Layer Anti-Reflection Coatings
The ZWO OIII 7nm 1.25" Filter isolates the critical doubly-ionized oxygen emission line with a precise 7nm bandpass, dramatically increasing contrast on key deep-sky targets. Mounted in a standard 31.75mm threaded cell, its glass substrate is polished to an accuracy of 1/4 wave to preserve the fine details resolved by your telescope.
Most of the light from planetary nebulae and supernova remnants is emitted in the OIII line near 500nm. This ZWO filter uses a 7nm bandpass to reject broadband light pollution from city skies and unwanted starlight, making faint structures like the Veil Nebula (NGC 6960) or the Dumbbell Nebula (M27) stand out against a dark background. The 7nm window is wide enough to be effective with faster optical systems while still delivering a significant contrast boost.
A filter should only transmit light, not distort it. ZWO's narrowband filters are built on a fine-optically polished substrate with 1/4 wave accuracy, ensuring the filter does not degrade the sharpness of your optical train. Multi-layer anti-reflection coatings maximize light transmission at the OIII wavelength and suppress internal reflections that can cause halos around bright stars.
The OIII filter is an essential component for creating tri-color "Hubble Palette" images when combined with H-alpha and SII filters. The standard 1.25" (31.75mm) threaded cell is compatible with most astronomy cameras and filter wheels designed for smaller format sensors. While ideal for many setups, be aware that 1.25" filters may introduce vignetting on cameras with APS-C or larger sensors, especially in fast f-ratio telescopes.
This filter excels at isolating structures in emission nebulae that are rich in doubly-ionized oxygen. Prime targets include planetary nebulae like the Ring Nebula (M57) and the Dumbbell Nebula (M27), and supernova remnants such as the Veil Nebula (NGC 6960) and the Crab Nebula (M1).
A 7nm bandpass offers a great balance between performance and flexibility. It provides a major contrast boost over a broadband filter but is more forgiving with faster focal ratio telescopes and allows for slightly shorter exposure times than tighter filters. A 3nm or 5nm filter will reject more light pollution and provide higher contrast on faint details, but typically requires longer exposures and performs best with slower optical systems.
It is not recommended. While the 1.25" filter will thread into compatible nosepieces, it is too small to fully illuminate a full-frame sensor (or even most APS-C sensors) without significant vignetting, which appears as a darkening of the corners of the image. For larger sensors, a 2" or larger filter is required to achieve an evenly illuminated field.
Yes, it's an excellent choice. The Veil Nebula is extremely rich in OIII emission, and this filter will make its delicate, filamentary structure pop against the sky background. An 8" SCT at f/10 or f/6.3 provides an ideal focal ratio for the 7nm bandpass, allowing you to capture high-contrast details in this classic supernova remnant.
Yes, narrowband filters can be used visually with great effect, especially on planetary nebulae. By threading the 1.25" filter onto your eyepiece, you can dramatically increase the contrast of objects like the Ring Nebula (M57), often making it visible from suburban skies where it would otherwise be washed out.
To create a Hubble Palette (SHO) image, you need to capture data through three different narrowband filters:
| SKU | ZWO-OIII7NM1.25 |
| Filter Type | OIII (Oxygen-III) Narrowband |
| Format | Single Filter |
| Bandpass | 7 nm |
| Size | 1.25" (31.75mm) |
| Mounting | Threaded Cell |
| Shape | Round |
| Warranty | 2 Years |
ZWO 1.25" Mounted OIII 7nm Filter
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Protective Plastic Case
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