Reflectors
No design delivers more aperture for the money than a Newtonian reflector. A mirror is cheaper to make well than a lens, has no chromatic aberration whatsoever, and scales to sizes that would be impossible in glass — which is why almost every large amateur telescope is a reflector. David Astro carries reflectors in Canada, from fast imaging astrographs to large visual Newtonians, stocked in Canada and shipped worldwide.
The trade is collimation and a coma corrector. Both are manageable, and we will be straightforward about what each telescope actually needs.
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Orion Optics UK ODK16 Optical Tube Assembly
400mm (16") Primary Mirror Diameter 2720mm Focal Length at f/6.8 Corrected Dall-Kirkham Optical Design >52mm Flat Field Image Circle Carbon Fib...
View full detailsOrion Optics UK ODK16Tr Truss Optical Tube Assembly
400mm (16") Optimized Dall-Kirkham Optics 2720mm Focal Length (f/6.8) >52mm Fully Corrected and Illuminated Image Circle 2.4µm On-Axis Spot Siz...
View full detailsOrion Optics UK ODK18Tr Truss Optical Tube Assembly
Optimized Dall-Kirkham (ODK) Optical Design Open Truss Tube Framework Primary and Secondary Mirrors by Orion Optics UK Engineered for Astrophotogr...
View full detailsOrion Optics UK ODK20Tr Optical tube assembly
500mm truss-tube Dall-Kirkham f/6.8 carbon-fibre-sandwich optics Open truss for shorter packed length Built to order in the UK Description Spec...
View full detailsOrion Optics UK ODK24Tr Truss Optical Tube Assembly
Optimized Dall-Kirkham (ODK) Optical Design Corrected, Coma-Free Flat Field for Imaging Open Truss Tube for Thermal Stability and Rigidity Hand-Fi...
View full detailsOrion Optics UK VX10 Optical Tube Assembly
250mm (10") Primary Mirror Diameter 1200mm Nominal Focal Length f/4.8 Focal Ratio Standard 1/6 PV Wavefront Optics 11kg Nominal Tube Weight CNC 9-...
View full detailsOrion Optics UK VX10L Optical Tube Assembly
250mm (10-inch) primary mirror for exceptional light-gathering 1600mm focal length at f/6.3, ideal for both planetary and deep-sky observation Sta...
View full detailsOrion Optics UK VX12 Optical Tube Assembly
300mm (12") primary mirror diameter 1200mm nominal focal length Fast f/4 focal ratio Standard 1/6 PV wavefront optical grade Lightweight 14kg alum...
View full detailsOrion Optics UK VX12L Optical Tube Assembly
300mm (12") Primary Mirror 1600mm Focal Length f/5.3 Focal Ratio Standard 1/6 PV Wavefront Hand-Figured Optics CNC-Machined 9-Point Mirror Cell wi...
View full detailsOrion Optics UK VX14 Optical Tube Assembly
350mm (14") primary mirror diameter 1600mm nominal focal length Fast f/4.6 focal ratio Standard 1/6 PV wavefront optical accuracy, certified by Zy...
View full detailsOrion Optics UK VX16 Optical Tube Assembly
400mm (16") primary mirror diameter 1600mm focal length at a fast f/4 focal ratio Standard 1/6 PV wavefront optics, Zygo-certified 9-point CNC-mac...
View full detailsOrion Optics UK VX20 DOB Optical Tube Assembly
500mm (20") primary mirror for exceptional light-gathering Fast f/4 focal ratio, ideal for deep-sky imaging Standard 1/6 PV wavefront optics, hand...
View full detailsOrion Optics UK VX6 Optical Tube Assembly
150mm (6") primary mirror diameter 750mm focal length at a fast f/5 focal ratio Standard 1/6 PV wavefront optics with Zygo test report Lightweight...
View full detailsOrion Optics UK VX6L Optical Tube Assembly
150mm Primary Mirror 1200mm Focal Length f/8 Focal Ratio 1/6 PV Wavefront Standard Optical Grade Lightweight 5kg Aluminum Tube Description FAQ ...
View full detailsOrion Optics UK VX8 Optical Tube Assembly
200mm (8-inch) Primary Mirror 900mm Focal Length Fast f/4.5 Focal Ratio Standard 1/6 PV Wavefront Hand-Figured Optics Lightweight 7kg Aluminium Tu...
View full detailsOrion Optics UK VX8L Optical Tube Assembly
200mm Primary Mirror Diameter 1200mm Focal Length (f/6) Standard 1/6 PV Wavefront Optics 8kg Nominal Tube Weight CNC 9-Point Mirror Cell with Cool...
View full detailsSharpStar 130mm f/2.8 HNT Hyperbolic Newtonian Astrograph
130mm Hyperbolic Newtonian Optics 364mm Focal Length f/2.8 Focal Ratio 44mm Full-Frame Image Circle Total Assembled Weight: 4.8kg Description F...
View full detailsSharpStar 150mm f/2.8 HNT Hyperbolic Newtonian Astrograph
Aperture: 150mm Focal Ratio: f/2.8 Image Circle: 44mm Gross Weight: 6 kg Back-Focus: 55mm Description FAQ Specifications In the Box Downloads W...
View full detailsSharpStar 200mm f/3.2 PNT Parabolic Newtonian Astrograph
SHARPSTAR's newly developed ultra-short focal ratio paraboloid Newtonian reflector 20032PNT was launched, which filled a domestic gap in this fie...
View full detailsSharpStar SCA260 V2 260mm f/5 Super Cassegrain Astrograph
260mm (10.2") Aperture Aspherical Primary Mirror 1300mm Focal Length at a fast f/5 Focal Ratio Massive 80mm Corrected Image Circle for Large Forma...
View full detailsSharpstar SCA310 f/3.8 Aspherical Cassegrain Astrograph
310mm Aperture Aspherical Primary Mirror 1178mm Focal Length at a Fast f/3.8 55mm Corrected Image Circle for Medium Format Sensors Triplet Correct...
View full detailsSky-Watcher Classic 150P
152mm (6-inch) Newtonian Reflector 1200mm Focal Length f/7.9 Focal Ratio 94% Reflectivity RAQ™ Mirror Coatings 2-inch Rack & Pinion Focuser ...
View full detailsSky-Watcher Classic 200P
203mm (8-inch) Newtonian Reflector 1200mm Focal Length f/5.9 Focal Ratio 94% Reflectivity Radiant™ Aluminum Quartz (RAQ) Coatings 2-inch Crayford ...
View full detailsSky-Watcher Classic 250P
254mm (10-inch) Newtonian Reflector 1200mm Focal Length Fast f/4.7 Focal Ratio 94% Reflectivity RAQ™ Mirror Coatings 2" Crayford-style Focuser Wei...
View full detailsNewtonian Design and What It Demands
A parabolic primary and a flat diagonal secondary. Simple, efficient, and with two characteristics you have to work with rather than around.
- Focal ratio and its consequences: Fast Newtonians around f/4 give wide bright fields for imaging but demand precise collimation and a coma corrector. Slower f/6 to f/8 designs are far more forgiving.
- Coma: Off-axis stars take a comet shape, inherent to a parabolic mirror and increasingly obvious as focal ratio drops. A coma corrector is effectively mandatory below f/6 for imaging.
- Collimation: Mirror alignment shifts with transport and temperature. Fast scopes need checking each session; slower ones hold for weeks.
- Central obstruction: The secondary mirror reduces contrast slightly. Imaging Newtonians use larger secondaries to fully illuminate a sensor; visual designs minimize them.
- Cooling: A large mirror stores heat and produces a boundary layer that softens detail until it equalizes. Rear fans reduce the wait considerably on Canadian nights.
- Dobsonian mounting: The most practical way to support a large Newtonian for visual use, at a fraction of an equatorial's cost.
Why Choose David Astro for Reflectors
A reflector is excellent value provided you are set up to maintain it, and we would rather tell you that beforehand.
- Collimation expectations set honestly: We tell you how often your specific focal ratio needs checking and recommend a tool that matches, so it is a two-minute routine rather than a chore.
- Coma corrector specified with the tube: For imaging Newtonians we supply the corrector and its spacing alongside the telescope, since the field is unusable without it.
- Focuser assessment: Stock focusers on fast Newtonians often cannot hold an imaging train squarely, and we will say when an upgrade is genuinely required.
- Authorized dealer: Full manufacturer warranty and verified authenticity, with service in Canada.
- Ships from Canada: Large optics delivered domestically with no duties or brokerage fees.
Reflectors in Canada — Frequently Asked Questions
- How often will I need to collimate?
- An f/4 imaging Newtonian benefits from a check every session. An f/6 visual scope typically holds alignment for weeks unless transported roughly. It takes about two minutes once you are practised.
- Do I need a coma corrector?
- For imaging below about f/6, yes — corner stars will show obvious coma otherwise. For visual use at f/5 and slower most observers are untroubled, though a corrector does improve the edge.
- How long does a mirror take to cool?
- A 200 mm mirror moved from a warm house to a Canadian winter night typically needs 45 minutes or more. A rear-mounted fan blowing across the mirror face reduces that substantially.
- Are reflectors good for planets?
- Yes, given aperture and good collimation. A well-collimated 200 mm Newtonian shows excellent planetary detail; the central obstruction costs a little contrast that extra aperture more than repays.
Considering a Newtonian?
Tell us whether it is for visual or imaging and we will specify the tube, corrector and tools. Canadian stock, worldwide shipping.