Products reviews
Meade ETX-80BB (160 x 80mm) Telescope$227.00 to $300.00
Tags:meade, etx-80bb, 160, x, 80mm, telescope, | Celestron AstroMaster 90AZ (50 x 90mm) Telescope$199.00 to $270.00
Tags:celestron, astromaster, 90az, 50, x, 90mm, 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 5 SE (300 x 44.45mm) Telescope

Featuring high-quality Schmidt-Cassegrain optics, the NexStar 5 SE is an ideal telescope for observing and photographing the wonders of space. With a total weight of 28 lbs including the tripod, the ultra portable 5 SE features a precision optical system with 1,250 mm focal length (f/10) standard with our premium StarBright XLT coatings and offers 56% more light gathering power than a 4" model.Minimize
Galileo FS-80 Telescope

The Galileo FS-80 reflector telescope is a great beginner's reflecting telescope. The large 80mm primary mirror cell collects 33% more light than a 60mm refracting telescope. 1.25 focus housing permits the use of larger higher quality 1.25 eyepieces. Yoke mount makes the telescope easy to manage through altitude / azimuth (Up & Down, Left & Right) movement, and altitude slow motion control rod for precision adjustmentsMinimize
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.
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