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IMPORTANT: Our store is located in Canada. All orders that include products manufactured outside of Canada or USA will be subject to tariffs and duties, regardless of the order value. US customers are responsible for all applicable duties and tariffs, and those will be billed by the carrier, except for the Lacerta upgrade kit, for which we collect them at checkout.

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Optolong Ha, OIII & SII 3nm Narrowband Filter Set

SKU OPT-SHO3NM-2
Original price $960.00 - Original price $1,199.00
Original price
$1,199.00
$960.00 - $1,199.00
Current price $1,199.00
Price Match Policy!
  • Complete SHO set includes H-alpha, OIII, and SII filters
  • Ultra-narrow 3nm bandpass for maximum contrast
  • Isolates 656nm Ha and 500nm OIII emission lines
  • Advanced coatings for halo suppression and durability
  • Ideal for imaging in heavily light-polluted or moonlit skies
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  • Description
  • FAQ
  • Specifications
  • In the Box
  • Warranty
  • Optolong Ha, OIII & SII 3nm Narrowband Filter Set

    The Optolong Ha, OIII & SII 3nm Narrowband Filter Set provides the essential tools for creating high-contrast Hubble Palette images from light-polluted locations. This three-filter kit isolates the most critical emission lines in deep-sky objects with an extremely narrow 3nm bandpass, targeting H-alpha at 656nm and OIII at 500nm. By aggressively rejecting skyglow, moonlight, and artificial light sources, this SHO set delivers a near-black sky background, making faint nebular structures visible with striking clarity.

    3nm Bandpass: Isolate Emission Lines with Extreme Contrast

    The core of this filter set's power is its ultra-narrow 3nm full width at half maximum (FWHM). This level of precision allows only the light from specific ionized gases to reach your monochrome sensor, dramatically increasing the signal-to-noise ratio. The H-alpha filter captures the 656nm line characteristic of hydrogen, while the OIII filter isolates the dual 495.9nm and 500.7nm lines from doubly ionized oxygen, revealing the intricate structures within planetary nebulae and supernova remnants.

    Advanced Coatings for Durability and Halo Suppression

    Optolong utilizes an ion-assisted deposition coating process to ensure these filters are durable, scratch-resistant, and optically stable. This advanced manufacturing method maintains a consistent central wavelength that does not shift with temperature changes during an imaging session. Special attention has been paid to the OIII filter, which features an optimized coating design to significantly reduce the halos and internal reflections around bright stars that can compromise narrowband images.

    Mastering the Hubble Palette: Building SHO Images

    This filter set is designed for creating false-color "Hubble Palette" images, where data from each filter is mapped to a specific color channel. By assigning the Sulphur-II (SII) data to red, Hydrogen-alpha (Ha) to green, and Oxygen-III (OIII) to blue (the SHO combination), you gain immense creative control over the final image. This technique is responsible for the iconic, high-impact astrophotography seen from the Hubble Space Telescope and allows you to highlight specific structures within a nebula based on its chemical composition.

    3nm vs. 7nm Filters: Choosing the Right Bandwidth

    While wider 7nm filters gather light more quickly, allowing for shorter individual exposures, they are more susceptible to light pollution and moonlight. The primary advantage of the Optolong 3nm filter set is its superior rejection of unwanted light, which is a decisive factor in urban or suburban skies.

    • Contrast: The 3nm bandpass delivers a significantly darker sky background and higher contrast on emission targets, making it the better choice for revealing the faintest details.
    • Exposure Time: The narrower bandpass requires longer total integration time to achieve the same signal level as a 7nm filter. However, the resulting data is often cleaner and requires less aggressive processing.
    • Star Control: The 3nm filters pass less continuum light from stars, resulting in smaller, tighter stars in the final image, which further enhances the visibility of the nebula itself.
  • What is the main advantage of the Optolong 3nm SHO filter set over wider filters?

    The main advantage is contrast. The ultra-narrow 3nm bandpass is extremely effective at blocking out light pollution, skyglow, and moonlight. This results in a much darker background and allows faint details in emission nebulae to stand out more clearly, which is especially critical for imaging from urban or suburban locations.

    How does the Optolong 3nm SHO set perform under a full moon or in Bortle 8/9 skies?

    This set excels in such conditions. Narrowband imaging is the preferred technique for challenging skies, and a 3nm bandpass is the most aggressive tool for the job. While a bright moon will still have some impact, these filters allow you to continue imaging targets like the North American Nebula (NGC 7000) even when broadband LRGB imaging would be impossible.

    Can I use the Optolong 3nm filters with a color camera?

    While designed for monochrome cameras, you can use them with a color camera, but it's inefficient. A color camera's Bayer matrix blocks roughly two-thirds of the incoming light for any given filter. For best results and to fully leverage the power of the 3nm bandpass, a monochrome astronomy camera is strongly recommended.

    Why is the OIII filter in the Optolong 3nm set specifically optimized for halo reduction?

    OIII filters are historically prone to producing halos or rings around very bright stars due to internal reflections within the filter glass. Optolong has applied its experience and advanced coating technologies to the 3nm OIII filter to minimize these artifacts, ensuring cleaner data, especially on targets within star-rich regions like the Cygnus constellation.

    What kind of objects are best suited for imaging with the Optolong 3nm SHO set, like the Cygnus Loop (NGC 6960)?

    This filter set is ideal for all types of emission nebulae. For a target like the Veil Nebula (Cygnus Loop), the results are spectacular. The H-alpha filter will reveal the broad, rope-like hydrogen filaments, while the OIII filter will isolate the delicate, blue-green shock fronts, which are extremely bright in oxygen. The SII provides additional structural detail for a full Hubble Palette composition.

    How do I combine data from the Optolong Ha, OIII, and SII filters?

    In post-processing software like PixInsight or Photoshop, you combine the three monochrome images into a single color image. The most common method is the Hubble Palette (SHO):

    • Assign the SII image to the Red channel.
    • Assign the H-alpha image to the Green channel.
    • Assign the OIII image to the Blue channel.

    This creates the classic gold-and-blue Hubble look, which you can then adjust for color balance and aesthetics.

  • Filter Type Narrowband Interference Filter Set
    Included Filters H-alpha, Oxygen III, Sulphur II
    Bandpass (FWHM) 3nm
    Central Wavelength (H-Alpha) 656nm
    Central Wavelength (OIII) 500nm
    Coatings Multi-layer, Anti-Reflection, Ion-Assisted Deposition
    Substrate Optical Glass
    Available Sizes 2" Mounted, 36mm Round Unmounted
    • Optolong H-alpha 3nm Filter

      × 1

    • Optolong OIII 3nm Filter

      × 1

    • Optolong SII 3nm Filter

      × 1

    • Protective Storage Case

      × 1

  • Optolong 3-Year Warranty