Canon EF 70-200mm f 2.8L IS USM Telephoto Zoom Lens *USED* For Discount

Description
Quick Overview
- Up to 3 Stops of Image Stabilization
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- Superior Image Quality
-
- Ultra-Low Dispersion UD Glass
-
- Fluorite & Aspherical Elements
-
- Super Spectra Multi Coating
-
- Ultra Sonic Motor – USM
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- Constant f 2.8 Aperture
-
- Filter Size – 77mm
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- Eight Blade Circular Aperture
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- Resistant to Dust and Moisture
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Product Description
The pinnacle in Canon s constant-aperture telephoto zoom lenses, the EF 70-200mm f 2.8L IS USM Telephoto Zoom Lens is an incredible optic with robust design and tacksharp results. Second-generation Image Stabilization responds in as little as 0.5 seconds, while providing up to three stops stabilization that as handholdable as a normal lens. IS now automatically deactivates when on a tripod by sensing non-movement of the camera and lens, also conserving battery power. An entirely new optical formula produces images that are superior to even its highly regarded predecessor, the EF 70-200mm f 2.8 L, despite having more reflective surfaces within the lens.
- Up to 3 Stops of Image Stabilization
- Superior Image Quality
- Ultra-Low Dispersion UD Glass
- Fluorite & Aspherical Elements
- Super Spectra Multi Coating
- Ultra Sonic Motor – USM
- Constant f 2.8 Aperture
- Filter Size – 77mm
- Eight Blade Circular Aperture
- Resistant to Dust and Moisture
-
Product Description
The pinnacle in Canon s constant-aperture telephoto zoom lenses, the EF 70-200mm f 2.8L IS USM Telephoto Zoom Lens is an incredible optic with robust design and tacksharp results. Second-generation Image Stabilization responds in as little as 0.5 seconds, while providing up to three stops stabilization that as handholdable as a normal lens. IS now automatically deactivates when on a tripod by sensing non-movement of the camera and lens, also conserving battery power. An entirely new optical formula produces images that are superior to even its highly regarded predecessor, the EF 70-200mm f 2.8 L, despite having more reflective surfaces within the lens.
Additional Information
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