Products reviews
Bushnell Voyager 78-9970 (100 x 70mm) Telescope$107.00 to $137.00
Tags:bushnell, voyager, 78-9970, 100, x, 70mm, telescope, | Celestron NexStar 5 SE (300 x 44.45mm) Telescope$699.00 to $820.00
Tags:celestron, nexstar, 5, se, 300, x, 44.45mm, telescope, | Celestron CPC 1100 GPS (XLT) (70 x 280mm) Telescope$2,799.00
Tags:celestron, cpc, 1100, gps, xlt, 70, x, 280mm, telescope, |
Celestron NexStar 8 SE (480 x 203mm) Telescope

The distinctive patented fork arm with ergonomically designed integrated hand control cradle gives solid support to Celestron’s classic 8" optics. The NexStar 8 SE features Schmidt-Cassegrain 8" aperture optics with our premium StarBright XLT coatings and a powerful 2,032mm focal length and f/10 focal ratio.
Meade LXD75 SN-8 AT (08047502) (500 x 203mm) Telescope

Meade LXD75 SN8-AT UHTC is an 8 inch Schmidt-Newtonian reflector type telescope with 812mm focal length and fast f/4 aperture and Meade Ultra High Transmission Coating, for 20% more image brightness over its non-UHTC sister model.
Bushnell NorthStar 78-8846 (675 x 114mm) Telescope

Real Voice Output version of premier Northstar 675x4.5". With the tough of a button this talking telescope describes the wonders of the night sky in a real human voice - an interactive and educational way to explore the universe. "Goto" Computerized tracking technology. Red Dot LED finderscope. Remote hand-held control module. Camera adaptable. Quick release tripod. Kinematic mount. Accessory tray. 20,000 Object Onboard Starfinding Computer. 1.25" Format Eyepieces. Barlow Lens. A great starting telescope!Minimize
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