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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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Baader Planetarium O-III f/2 Ultra-Highspeed-Filter (4nm) – CMOS-optimized

SKU BAA-2961450
Original price $333.00 - Original price $669.00
Original price
$333.00
$333.00 - $669.00
Current price $333.00
Price Match Policy!
  • 4nm FWHM Bandpass
  • Optimized for f/2 Ultra-Highspeed Systems
  • Available in 1.25" & 2" Mounted, 31mm, 36mm, 47.4mm (FCCT) & 50.4mm Round Unmounted, and 50x50mm & 65x65mm Square Sizes
  • CMOS-Optimized Anti-Reflection and Halo Coatings
  • Reflex-Blocker™ Hard-Coated and Polished
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  • Description
  • FAQ
  • Specifications
  • In the Box
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  • Warranty
  • Baader O-III f/2 Ultra-Highspeed-Filter (4nm) – CMOS-optimized

    The Baader O-III f/2 Ultra-Highspeed Filter is specifically engineered to operate without bandpass shift on ultra-fast astrographs, delivering its full 4nm contrast even at focal ratios down to f/2. Standard narrowband filters suffer a blue-shift when used on fast optics, reducing transmission and contrast, but this filter's pre-shifted design – offered in mounted 1.25" and 2" cells, as unmounted 31mm, 36mm and 50.4mm rounds, as a 47.4mm unmounted version for the Baader FCCT, and as 50x50mm and 65x65mm squares – ensures peak O-III signal capture where others fail.

    Engineered for f/2 Systems: Zero Bandpass Shift

    The primary challenge of narrowband imaging with fast optical systems like a RASA, HyperStar, or fast refractor is bandpass shift. A standard filter designed for f/5 or slower will have its transmission window shift towards the blue when faced with the steep light cone of an f/2 system, effectively de-tuning it from the target 500.7nm O-III emission line. Baader's f/2 Ultra-Highspeed filters solve this by intentionally pre-shifting the bandpass, ensuring it lands squarely on the O-III line at its design focal ratio for maximum signal throughput.

    The 4nm Advantage in Light-Polluted Skies

    With a full-width at half-maximum (FWHM) of just 4nm, this filter provides an extremely high degree of contrast against background light pollution and natural skyglow. This narrow window isolates the faint, doubly ionized oxygen signal from emission nebulae like the Veil Nebula (NGC 6960) or the Crescent Nebula (NGC 6888) with exceptional clarity. The result is a darker background sky and more prominent nebulosity, even from suburban locations.

    CMOS-Optimized Coatings for Halo-Free Imaging

    Modern CMOS sensors are highly reflective, especially to near-infrared light, which can cause halos around bright stars. Baader addresses this with advanced CMOS-optimized coatings that provide superb anti-reflection properties. These Reflex-Blocker™ coatings, combined with planeoptically polished surfaces, ensure that stars remain tight and free of distracting internal reflections, preserving the quality of your data across the entire field – from a small sensor behind a 1.25" filter to full-frame and larger chips behind the square formats.

    Baader 4nm f/2 vs. 7nm Filters: Speed vs. Signal Strength

    Choosing between a 4nm and a wider 6.5nm or 7nm filter involves a direct trade-off. The 4nm f/2 filter is the superior choice for maximum contrast under light-polluted skies or for separating fine structural details in bright nebulae. However, a wider filter may be preferable for very faint targets or when imaging under pristine dark skies, as it captures more signal and is more forgiving with slight guide errors or temperature shifts.

    • Baader 4nm f/2 Filter: Unmatched contrast for light-polluted environments and high-detail imaging on ultra-fast systems around f/2. It requires precise guiding and focus.
    • Standard 7nm Filter: Gathers more total photons, making it better suited for extremely faint, low-surface-brightness objects. It is also less demanding on the imaging setup and works best on systems slower than f/4.
  • Why do I need a special Baader f/2 filter for my RASA or HyperStar system?

    Standard narrowband filters experience "bandpass shift" when used with very fast optical systems like a Celestron RASA or a HyperStar-equipped SCT. The steep angle of incoming light effectively shifts the filter's transmission window, causing it to miss the target O-III emission line. The Baader f/2 Ultra-Highspeed Filter is pre-shifted to counteract this effect, ensuring you get maximum signal and contrast at ultra-fast focal ratios around f/2.

    Will this Baader 4nm O-III filter work well on my f/7 refractor?

    No, this filter is not recommended for slower telescopes. Because it is intentionally pre-shifted for ultra-fast optics around f/2, using it on an f/7 refractor will result in the bandpass being off-target, leading to significantly reduced light transmission. For f/4 or slower systems, you should use Baader's standard narrowband filters (e.g., the 6.5nm CMOS-optimized versions).

    Which size of the Baader O-III f/2 Ultra-Highspeed Filter do I need?

    Choose the size that matches your filter holder and sensor. The 1.25" (M28.5 x 0.6 thread) and 2" versions are mounted for standard threaded filter wheels and holders. The 2" unmounted (Ø 47.4mm) filter is designed for the Baader FCCT (Filter Changer Camera Tilter) and compatible filter drawers, not for standard 2" threaded wheels. The 31mm, 36mm and 50.4mm unmounted rounds fit wheels and drawers that accept those sizes, while the 50x50mm square covers full-frame sensors such as the ZWO ASI6200MM and the 65x65mm square is intended for large-format sensors with a 40mm diagonal or greater.

    How does the 4nm bandpass on this Baader filter affect my images?

    A narrower 4nm bandpass provides higher contrast than wider 6.5nm or 7nm filters by rejecting more unwanted light from skyglow and light pollution. This makes faint nebular details stand out more dramatically against a darker sky background. The trade-off is that it requires longer total integration times to achieve the same signal level as a wider filter.

    Is the Baader O-III f/2 filter parfocal with other Baader filters?

    Yes, all Baader filters within a given size and series are designed to be parfocal. This means you should not need to significantly refocus when switching between different Baader LRGB or narrowband filters of the same size in your filter wheel, saving valuable imaging time.

    Can I use this 4nm O-III filter for visual observing?

    While technically possible, it is not practical. A 4nm bandpass is extremely restrictive and will result in a very dim image, even on large-aperture telescopes. This filter is designed exclusively for long-exposure astrophotography. For visual use, a much wider O-III filter is recommended.

  • Single or Set? Single Filter
    Filter Usage CMOS, CCD, O-III
    CWL (Central Wavelength) 500.7 nm
    AR-Coating Reflex-Blocker™ hard coated, planeoptically polished
    Suitable for f/ratio < f/2.3

    1.25" Round Mounted

    Filter Size 1.25"
    Filter Type Narrowband O-III
    Bandpass 4nm
    Design Focal Ratio Optimized for f/2
    Threads M28.5 x 0.6
    Net weight (kg) 0.01
    Filter shape round
    Filter mounted Mounted (LPFC 6mm)
    Special Features CMOS-optimized with Life-Coat™
    Filter Thickness (without cell) 2 mm

    2" Round Mounted

    Filter Type O-III Narrowband
    Size 2"
    Bandwidth (FWHM) 4nm
    Optimized Focal Ratio f/2 to f/3.5
    Coatings CMOS-Optimized Reflex-Blocker™
    Substrate Planeoptically Polished
    Net weight (kg) 0.01
    Filter shape round
    Filter mounted Mounted (LPFC 6mm)
    Special Features CMOS-optimized with Life-Coat™
    Filter Thickness (without cell) 2 mm

    2" Round Unmounted Filter (Ø 47.4mm, FCCT)

    Filter Type O-III Narrowband
    Bandwidth (FWHM) 4 nm
    Optimized Focal Ratio f/1.8 to f/3.5
    Diameter 47.4 mm
    Format Unmounted
    Coatings Reflex-Blocker™, Life-Coat™
    Substrate Optically Polished Glass
    Optical Quality 1/4 Wavefront
    Application Baader FCCT, Filter Drawers
    Net weight (kg) 0.01
    Filter size 47.4 mm (2" w/o cell)
    Filter shape round
    Filter Thickness (without cell) 2 mm

    31mm Round Unmounted Filter

    Filter Type O-III (Oxygen-III) Narrowband
    Size 31mm, Unmounted
    Bandpass (FWHM) 4nm
    Optimized Focal Ratio f/1.8 to f/3.5
    Coatings CMOS-Optimized, Phantom Group Anti-Reflection
    Substrate Planoptically Polished
    Net weight (kg) 0.01 (50.4mm)
    Filter size 31 mm (31mm)
    36 mm (36mm)
    50.4 mm (50.4mm)
    Filter shape round
    Special Features CMOS-optimized with Life-Coat™
    Filter Thickness (without cell) 2 mm (31mm, 36mm)
    3 mm (50.4mm)

    36mm Round Unmounted Filter

    Filter Type Ultra-Narrowband O-III
    Size 36mm Unmounted
    Bandpass (FWHM) 4nm
    Optimized F-Ratio f/2 to f/3.5
    Application Astrophotography
    Coatings Reflex-Blocker, CMOS-Optimized
    Net weight (kg) 0.01 (50.4mm)
    Filter size 31 mm (31mm)
    36 mm (36mm)
    50.4 mm (50.4mm)
    Filter shape round
    Special Features CMOS-optimized with Life-Coat™
    Filter Thickness (without cell) 2 mm (31mm, 36mm)
    3 mm (50.4mm)

    50.4mm Round Unmounted Filter

    Filter Type O-III Narrowband
    Bandwidth (FWHM) 4nm
    Size 50.4mm (Unmounted)
    Optimized Focal Ratio f/2
    Sensor Compatibility CMOS-Optimized
    Net weight (kg) 0.01 (50.4mm)
    Filter size 31 mm (31mm)
    36 mm (36mm)
    50.4 mm (50.4mm)
    Filter shape round
    Special Features CMOS-optimized with Life-Coat™
    Filter Thickness (without cell) 2 mm (31mm, 36mm)
    3 mm (50.4mm)

    50x50mm Square Filter

    Filter Type O-III Narrowband
    Bandpass (FWHM) 4nm
    Size 50mm x 50mm
    Format Unmounted Square
    Optimized Focal Ratio f/2
    Sensor Compatibility CMOS-optimized
    Coatings Reflex-Blocker™, Life-Coat™
    Net weight (kg) 0.02
    Filter size 50 x 50 mm
    Filter shape square
    Filter mounted Unmounted
    Type of Filter f/2 Ultra-Highspeed
    Special Features CMOS-optimized with Life-Coat™
    Filter Thickness (without cell) 3 mm
    HBW (Halfbandwidth) 4 nm
    Transmission Range O-III

    65x65mm Square Filter

    Filter Type O-III Ultra-Narrowband
    Bandpass (FWHM) 4nm
    Size 65mm x 65mm
    Format Unmounted Square
    Optimized Focal Ratio f/2
    Sensor Compatibility CMOS-optimized
    Net weight (kg) 0.03
    Filter size 65 x 65 mm
    Special Features CMOS-optimized with Life-Coat™
    Filter Thickness (without cell) 3 mm
    • Baader O-III f/2 Ultra-Highspeed-Filter (4nm), selected size

      × 1

    • Filter Case (where supplied; packaging varies by size)

      × 1

  • Baader Planetarium Warranty