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Orion Optics UK ODK12Tr Truss Optical Tube Assembly

UGC OOUK-ODK12TR-OPTICAL-TUBE-ASSEMBLY
Prix d'origine CA$16,006.00 - Prix d'origine CA$16,006.00
Prix d'origine
CA$16,006.00
CA$16,006.00 - CA$16,006.00
Prix actuel CA$16,006.00
Égalisation de prix!
  • 300mm (12") Optimized Dall-Kirkham Astrograph
  • 2040mm Focal Length (f/6.8)
  • >52mm Flat, Corrected Image Circle
  • 1.8µm On-Axis Spot Size
  • Carbon Fiber Truss Tube Construction
  • 218mm of Back Focus
  • 3" Crayford Focuser with 10:1 Reduction
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  • Description
  • FAQ
  • Specifications
  • In the Box
  • Warranty
  • Orion Optics UK ODK12Tr Truss Optical Tube Assembly

    The Orion Optics UK ODK12Tr Truss is a dedicated imaging platform built around a 300mm primary mirror with a 2040mm focal length. Its f/6.8 corrected Dall-Kirkham design delivers incredibly small 1.8µm spot sizes on-axis and maintains a flat field greater than 52mm in diameter. The entire carbon fiber truss assembly weighs approximately 19kg and provides a generous 218mm of back focal distance for complex accessory stacks.

    300mm f/6.8 Optics: 5.6µm Spots Across a >52mm Field

    The ODK12Tr's optical system is engineered for large-format sensors. The 300mm primary mirror operates at f/6.8, providing enough image scale for detailed views of distant galaxies without demanding excessively long exposure times. A built-in, multi-coated 3-lens corrector flattens the field, delivering pinpoint stars with a spot size of just 5.6µm at the edge of a massive 52mm image circle—fully illuminating full-frame and larger sensors.

    The 120mm secondary mirror provides this wide-field illumination, creating a 40% central obstruction by diameter. This is a necessary trade-off for edge-to-edge performance on large chips and has minimal impact on deep-sky imaging, where light grasp and field flatness are paramount.

    Carbon Fiber Truss: A 19kg Platform for Stable Imaging

    Constructed from a carbon fiber sandwich material, the ODK12Tr's open truss frame offers exceptional thermal and mechanical stability. Weighing approximately 19kg, the tube assembly is rigid enough to support heavy imaging loads without flexure. The carbon fiber's near-zero coefficient of thermal expansion means the 2040mm focal length remains constant as temperatures drop, preventing focus shift during long imaging sessions.

    The open truss design allows the 300mm primary mirror to acclimate to ambient temperatures quickly, aided by three controllable fans integrated into the honeycomb CNC-machined mirror cell. This active thermal management ensures your images are sharp from the start of the night to the end.

    218mm Back Focus & 3" Focuser: Ready for Any Imaging Train

    The ODK12Tr is designed to accommodate any modern imaging accessory. It provides 218mm of back focal distance measured from the rear of the mirror cell, offering ample room for off-axis guiders, filter wheels, rotators, and large-format cameras. You won't need to compromise on your ideal setup due to spacing constraints.

    To carry this load, the OTA is equipped with a robust 3" Crayford focuser featuring a 10:1 reduction for precise, repeatable fine adjustments. The large drawtube diameter prevents vignetting with large sensors and ensures your entire imaging train is held securely throughout the night.

    ODK12Tr vs. Ritchey-Chrétien: Collimation and Field Correction

    Unlike Ritchey-Chrétien (RC) telescopes that use two difficult-to-align hyperbolic mirrors, the Optimized Dall-Kirkham (ODK) design employs an elliptical primary and a spherical secondary. This makes collimation significantly more forgiving and stable, saving valuable clear-sky time.

    While a classic Dall-Kirkham suffers from off-axis coma, the ODK12Tr's integrated 3-lens corrector completely eliminates it, producing a wide, flat, coma-free field that rivals the best RCs. The result is an astrograph that combines the optical simplicity and collimation stability of the DK design with the professional, wide-field imaging results of a corrected RC.

  • What sensor size can the ODK12Tr fully illuminate and correct?

    The ODK12Tr provides a fully corrected, flat field size of over 52mm in diameter. This is large enough to cover full-frame (36x24mm) and even larger format astronomy sensors without significant vignetting or distortion at the corners.

    How does the ODK12Tr's carbon fiber truss help with astrophotography?

    The carbon fiber construction offers two key benefits. First, it has an extremely low coefficient of thermal expansion, which means the telescope's 2040mm focal length does not change as temperatures drop overnight, preventing focus shift. Second, the open truss design allows the primary mirror to cool down to ambient temperature much faster, aided by the three integrated cooling fans.

    How would the ODK12Tr perform on a large target like the Andromeda Galaxy (M31)?

    The ODK12Tr is an excellent choice for M31. Its 2040mm focal length and 300mm aperture provide the necessary resolution to capture fine dust lanes and star-forming regions within the galaxy's spiral arms. The >52mm corrected field allows you to frame a significant portion of the galaxy and its companions in a single shot with a large-format camera.

    What is the benefit of the ODK12Tr's 218mm of back focus?

    The 218mm of back focus is exceptionally generous and provides critical flexibility for building your imaging train. It ensures you have enough space to install multiple accessories—such as an off-axis guider, a filter wheel, an adaptive optics unit, and a rotator—between the focuser and the camera sensor without running out of focus travel.

    Is the ODK12Tr's f/6.8 focal ratio good for imaging smaller targets like the Ring Nebula (M57)?

    Yes, the f/6.8 focal ratio is a versatile sweet spot. For a target like M57, the 2040mm focal length yields a large enough image scale to clearly resolve the nebula's ring structure and the faint central star. The focal ratio is still fast enough to capture significant signal in reasonable sub-exposure times, making it efficient for both broadband and narrowband imaging.

    Why choose the ODK12Tr over a comparable Ritchey-Chrétien astrograph?

    The primary advantage of the ODK12Tr is its ease of collimation. Ritchey-Chrétien designs use two hyperbolic mirrors that are notoriously difficult to align perfectly. The ODK's elliptical primary and spherical secondary are far more tolerant, holding collimation better and being easier to adjust. With its integrated corrector, the ODK provides the flat, coma-free field of an RC without the collimation challenges.

  • Optical Design Optimized Dall-Kirkham (Corrected)
    Primary Mirror Diameter 300mm
    Focal Length 2040mm
    Focal Ratio f/6.8
    Corrected Field Size >52mm
    Spot Size (On-Axis) 1.8µm
    Spot Size (Field Edge) 5.6µm
    Secondary Mirror Size 120mm
    Focuser 3" Crayford with 10:1 reduction
    Back Focus 218mm (from rear of mirror cell)
    Tube Material Carbon fibre sandwich
    Tube Length 615mm
    Tube Diameter 350mm
    Tube Weight approx. 19kg
    Mirror Cell Honeycomb CNC machined aluminium
    Cooling System 3 controllable fans
    Attachment CNC machined aluminium dovetail plate
  • Orion Optics UK 1-Year Warranty