Products reviews
Celestron AstroMaster 90EQ (100 x 90mm) Telescope$150.00 to $300.00
Tags:celestron, astromaster, 90eq, 100, x, 90mm, telescope, | Celestron NexStar 114 SLT 31143 (270 x 144mm) Telescope$220.00 to $399.00
Tags:celestron, nexstar, 114, slt, 31143, 270, x, 144mm, telescope, | Celestron PowerSeeker 127 EQ 21049 (750 x 127mm) Telescope$120.00 to $160.00
Tags:celestron, powerseeker, 127, eq, 21049, 750, x, 127mm, telescope, |
Meade ETX-80AT-TC (270 x 80mm) Telescope

All of the major planets except Pluto are easily observable through Meade's brand-new 80mm (3.1) achromatic refractor telescope. You can study Saturn and its ring system; the primary cloud belts of Jupiter and its 4 major satellites; the Moonlike phases of Mercury and Venus; and much more.
Celestron NexStar 114 SLT 31143 (270 x 144mm) Telescope

The NexStar 114 SLT has over twice the light-gathering power of an 80mm telescope! And the 114 SLT, like the other models in the SLT Series, comes with a fully computerized hand control with a database of over 4,000 celestial objects! With its pre-assembled, adjustable steel tripod, the NexStar 114 SLT can be up and ready to use in a matter of minutes. Our new SkyAlign alignment technology and the included StarPointer Finderscope with a red LED makes aligning a breeze.Minimize
Carson Optical SkyView SV-350 Telescope

The Carson(tm) Optical SkyView(tm) 70-mm refractor telescope is designed to be rugged, trouble-free and easy-to-operated for the beginning observer. It features a focal length of 350 mm, a 45-degree diagnol, a power range of 14X to 87X, and an adjustable
Meade DS-2080ATS Telescope

Meade Digital Series telescopes bring microprocessor technology and the very latest in electromechanical design to the serious beginning or intermediate observer. Completely re-engineered and redesigned, Meade DS-2080AT telescopes provide extremely smooth motions in both altitude and azimuth, and, most importantly, include a fully integrated Autostar control system as standard equipment. Oversize bearings on both telescope axes of all models negate the imprecisions found universally, virtually without exception, on competing models.Minimize