Products reviews
Celestron NexStar 6 SE (354 x 55.88mm) Telescope$790.00 to $1,100.00
Tags:celestron, nexstar, 6, se, 354, x, 55.88mm, telescope, | Celestron NexStar 4 SE (240 x 102mm) Telescope$499.00 to $900.00
Tags:celestron, nexstar, 4, se, 240, x, 102mm, telescope, | Celestron PowerSeeker 50 Telescope$35.00 to $50.00
Tags:celestron, powerseeker, 50, telescope, |
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 NG-60 (20200) (233 x 60mm) Telescope

A perfect beginning telescope designed specifically for land use, and an occasional peak at the sky. The tripod mount that holds the telescope is designed to move only in straight lines, called Altazimuth.Objects in the sky move in semi-circles, never in straight lines.Use lower power eyepieces to track the Moon, and keep it in the eyepiece.Minimize
Meade ETX-80BB (160 x 80mm) Telescope

Observe the feather structure of an eagle from 50 yards or study the rings of Saturn from a distance of 800 million miles. Then focus beyond the solar system to the universe of nebulae, remote galaxies and ancient star clusters. It's an adventure of discovery the whole family can enjoy, in the backyard or wherever your travels take you.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