Starfield Adjustable 1.0x Flattener

StarfieldSKU: SF-FFA1

Price:
Sale price$274.99 CAD
Stock:
In stock Qty: 5
  • Description

The Starfield 1.0x adjustable flattener makes finding the correct back focus easy! Fighting with adapters is a thing of the past!


By setting the adjustment required for your telescope, achieving the correct amount of back focus is simple. If more adjustment is needed for fine tuning all that is needed is a small twist. If you are using accessories such as filter wheels and rotators you can not still get the required back focus. Just add up the thickness of all the accessories, plus the distance to your sensor and subtract from 69.87 and then set the reducer to the number that is calculated.


The reducer attaches directly to the Starfield telescope focusers. Using the supplied 1.5mm Allen key, loosen off the three screws a half turn and then unscrew the lock.


Thread the reducer onto the focuser.


This Flattener is designed for telescopes ranging from 80mm to 155mm


  • 80 mm / focal ratio f/6 - 81.2 mm
  • 90mm / focal ratio f/6 - 82.5mm
  • 102 mm / focal ratio f/7 - 75.3 mm
  • 115 mm / focal ratio f/7 - 73.0 mm
  • 130 mm / focal ratio f/7 - 69.7 mm
  • 140 mm / focal ratio f/6.5 - 68.0 mm
  • 155 mm / focal ratio f/8 - 57.0 mm


Filters can be added inside the reducer.

You may also like

Recently viewed

Recent Blog Posts

View all
Guide scope or off-axis guider: a PHD2 guide graph reporting 0.41 arcsecond RMS beside elongated stars from the same night

Your Guide Graph Is Lying to You

astrophotography Stephen Mallia
You drove ninety minutes to dark sky, PHD2 held 0.4 arcseconds all night, and half your subs still have eggs for stars. Here are the three things your

Read More
V-size Vixen and D-size Losmandy dovetail bar profiles compared to scale, about 44 mm against 75 to 84 mm

D-Size vs V-Size: A Complete Guide to Telescope Dovetail Systems

Stephen Mallia
What's the difference between D-size and V-size telescope dovetails? Here's everything you need to know.

Read More
A 55 mm back focus imaging train: spacer 16.5 mm, filter drawer 21 mm and camera sensor depth 17.5 mm, measured from the rear of the reducer

What Is Back Focus in Astrophotography? Telescope Reducers, Flatteners, and Spacing Explained

Stephen Mallia
What Is Back Focus in Astrophotography? Telescope Reducers, Flatteners, and Spacing Explained Back focus is one of those astrophotography terms that c

Read More