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Baader Planetarium H-Beta Narrowband-Filter (5.5nm) – CMOS-optimized

SKU BAA-2961080
Original price CA$0.00 - Original price CA$634.00
Original price
CA$270.00
CA$0.00 - CA$634.00
Current price CA$270.00
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  • Isolates Hydrogen-Beta (H-Beta) Emission Line
  • 5.5nm FWHM Narrowband Passband
  • Available in 1.25" & 2" Mounted, 31/36/50.4mm Round Unmounted and 50x50/65x65mm Square Sizes
  • Optimized for Modern CMOS Sensors
  • Suppresses Halos and Internal Reflections
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  • Baader H-Beta Narrowband-Filter (5.5nm) – CMOS-optimized

    The Baader H-Beta Narrowband Filter uses a tight 5.5nm bandpass to dramatically increase contrast on faint hydrogen-beta emission nebulae, with CMOS-optimized coatings engineered to control internal reflections from highly reflective modern sensors. It is available as 1.25" and 2" mounted filters, as 31mm, 36mm and 50.4mm round unmounted filters, and as 50x50mm and 65x65mm square filters for large-format cameras.

    A 5.5nm Bandpass for Maximum Contrast on H-Beta Targets

    The H-beta emission line is notoriously faint, often lost against the background skyglow. By restricting the incoming light to an extremely narrow 5.5nm window centered on the H-beta wavelength, the filter effectively blacks out light pollution and natural skyglow, causing faint structures like the Horsehead Nebula (Barnard 33) and California Nebula (NGC 1499) to stand out with stark contrast.

    CMOS-Optimized Design for Halo Suppression

    Modern CMOS sensors are highly reflective, which can cause halos and other internal reflections when used with traditional narrowband filters. Baader's CMOS-optimized filters feature advanced anti-reflection coatings designed to mitigate these artifacts at the source. This ensures that bright stars within the field of view remain sharp points of light without distracting glare, preserving the fine details in your target nebula.

    Baader 5.5nm H-Beta vs. Wider Narrowband Filters

    Compared to filters with a wider bandpass (e.g., 8nm or 12nm), the 5.5nm Baader H-Beta offers a significant advantage in signal-to-noise ratio, especially from light-polluted locations.

    • Wider Filters (Competitor Advantage): A wider bandpass allows more total light to reach the sensor, potentially enabling shorter sub-exposure times. They can be more forgiving with slight off-band emissions or filter-wheel temperature shifts.
    • Baader 5.5nm Filter: The tighter 5.5nm window provides a darker background and higher contrast, which is critical for separating extremely faint H-beta signal from the noise floor. While it may require slightly longer exposures, the resulting image is often cleaner and shows more defined nebulosity.
  • Why do I need a specific Baader H-Beta filter for my CMOS camera?

    Modern CMOS sensors have surfaces that are much more reflective than older CCD sensors. The Baader CMOS-optimized H-Beta filter has specialized anti-reflection coatings that prevent halos and internal reflections that can otherwise ruin an image when using bright stars for guiding or focusing.

    What objects are best imaged with the Baader 5.5nm H-Beta filter?

    The filter is specifically designed for emission nebulae that are strong in the Hydrogen-beta line. The classic targets that absolutely require an H-Beta filter to be seen clearly are:

    • The Horsehead Nebula (Barnard 33) in Orion
    • The California Nebula (NGC 1499) in Perseus
    • The Cocoon Nebula (IC 5146) in Cygnus

    Will the Baader 5.5nm H-Beta filter work for visual observing?

    The filter is primarily designed for long-exposure imaging, and visual use is only practical, if at all, with very large aperture telescopes under dark skies. The 5.5nm bandpass is extremely restrictive, so it requires a lot of light-gathering power for the view to be bright enough for the human eye. For visual use, wider H-Beta filters are often preferred.

    How does the 5.5nm bandpass affect my exposure times?

    The 5.5nm bandpass is tighter than older 7nm or 8nm filters, meaning it rejects more background light. This may require you to increase your sub-exposure times slightly. However, the benefit is a much higher-contrast image, meaning you may need less total integration time to achieve a clean result.

    Which size of the Baader 5.5nm H-Beta filter should I choose?

    Choose the size that matches your camera sensor and filter wheel or holder. The 1.25" and 2" mounted versions suit standard filter holders and accessories. The 31mm and 36mm unmounted filters drop into dedicated filter wheels, such as those from ZWO and QHY, and offer a larger clear aperture than 1.25" mounted filters to help prevent vignetting on APS-C sensors. The 50.4mm round and 50x50mm or 65x65mm square filters are intended for large-format filter wheels and full-frame or larger sensors. Whichever size you choose, the Horsehead Nebula remains a demanding target: plan on long sub-exposures and several hours of total integration time.

    Can I use the 5.5nm H-Beta filter with my color CMOS camera from a light-polluted location?

    Yes, it is an excellent filter for that scenario. The 5.5nm bandpass is extremely effective at blocking out broadband light pollution from city skies. When used with a one-shot-color (OSC) camera, only part of the color pixels will record the signal, as H-beta is at the blue-green end of the spectrum. You will need to process the resulting image carefully to isolate the relevant channel data.

  • 1.25" Round Mounted

    Filter Type Narrowband H-Beta
    Bandpass (FWHM) 5.5nm
    Size 1.25"
    Coatings CMOS-Optimized, Anti-Reflection
    Primary Use Astrophotography of H-Beta Emission Nebulae

    2" Round Mounted

    Filter Type Narrowband H-Beta
    Bandpass (FWHM) 5.5nm
    Size 2" (Mounted)
    Coatings CMOS-Optimized, Anti-Reflection

    31mm Round Unmounted Filter

    Filter Type H-Beta Narrowband
    Bandpass (FWHM) 5.5nm
    Size 31mm
    Format Unmounted
    Sensor Optimization CMOS-optimized

    36mm Round Unmounted Filter

    Filter Type H-Beta Narrowband
    Bandpass (FWHM) 5.5nm
    Size 36mm
    Format Unmounted
    Sensor Optimization CMOS-optimized
    Coatings Reflex-Blocker™ Anti-Reflection

    50.4mm Round Unmounted Filter

    Filter Type H-Beta Narrowband
    Bandwidth (FWHM) 5.5nm
    Size 50.4mm (Unmounted)
    Sensor Compatibility CMOS-Optimized

    50x50mm Square Filter

    Manufacturer Baader Planetarium
    Filter Type Narrowband H-beta
    Size 50 x 50 mm
    Format Unmounted
    Bandwidth (FWHM) 5.5 nm
    Central Wavelength 486.1 nm
    Optimized For CMOS Sensors

    65x65mm Square Filter

    Filter Type Narrowband H-Beta
    Bandwidth (FWHM) 5.5nm
    Size 65mm x 65mm
    Format Unmounted
    Optimization CMOS-Optimized Coatings
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