Watch the sun in H-alpha with the Sky-Watcher Heliostar 76mm


Specifications

Aperture: 3 inches / 76mm

Focal length: 25-inches / 630mm

Focal ratio: f/8.3

Optical design: Achromatic doublet dedicated H-alpha refractor

Filter type: Hydrogen-alpha, 656.28nm (meets ISO 12312-2)

Etalon: Sky-Watcher Solis etalon technology (

Blocking filter: 11.5mm blocking filter integrated into supplied diagonal

Tuning system: Mechanical Trifid/Triffid pressure tuner

Focuser: 2-inch dual-speed Crayford focuser

Finder: Integrated solar finder

Eyepiece: 20mm 70-degree 1.25-inch eyepiece

Mount: OTA supplied with tube rings and V-style dovetail

Other accessories: smartphone adapter, sunshade, hard case.

Weight: 8.4 lbs (3.81kg) tube

With a total solar eclipse on Aug. 12, an annular solar eclipse on Feb 6, 2027 and another total solar eclipse on Aug. 2, 2027, solar telescopes are about to be in hot demand. After all, why peer at the eclipsed sun when you can see it in close-up? However, the Sky-Watcher Heliostar 76mm offers something a little different to a telescope wearing a solar filter — and it’s just as good when there’s no eclipse at all. Built around a standard, small-aperture refracting telescope, it has an H-alpha etalon (an ultra-narrowband filter used to observe the sun) and a diagonal blocking filter, which together let you safely see features in the sun’s chromosphere, a layer of its atmosphere above the surface (photosphere) and below its corona (outer atmosphere). It’s a layer that’s invisible in standard white light, but it glows in the very specific 656.28 nm wavelength of light, called hydrogen alpha (about 92% of all the atoms in the sun are hydrogen).

The aperture of the Sky-Watcher Heliostar 76mm H-alpha solar telescope.

The H-alpha system reveals prominences, filaments and active regions. (Image credit: Jamier Carter)

Costing around US$3,395/UK£2,399, the Sky-Watcher Heliostar 76mm isn’t specifically an eclipse telescope, being unable to show you anything of the precious but short totality phase, when the corona comes into view. Although it’s a great way to get a unique look at the partial phases of a solar eclipse, it’s actually best seen as a solar telescope fit for studying our star at any time. It can show incredible features such as prominences (which look red to the naked eye during totality), filaments, bright plage regions and even solar flares (if you’re lucky with timing!), but can be used at any time of the day.



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