Shimano Stella STL4000XGFJ Front Drag Freshwater Spinning Reel
Shimano Stella STL4000XGFJ Front Drag Freshwater Spinning Reel
Shimano Stella STL4000XGFJ Front Drag Freshwater Spinning Reel

Shimano

Shimano Stella STL4000XGFJ Front Drag Freshwater Spinning Reel

Sale price$709.99
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Pickup currently unavailable at Ocean Township

Shimano Stella STL4000XGFJ Front Drag Freshwater Spinning Reel

Ocean Township

Pickup currently unavailable

3501 Sunset Avenue
Ocean Township NJ 07712
United States

+18003884149

Order Chart

    Shimano Stella STL4000XGFJ Front Drag Freshwater Spinning Reel


    4000XG


    6.2:1


    24


    8/240; 10/200; 12/160


    15/280,30/170,50/150


    Packed with the latest and most advanced technologies Shimano offers, power and torque far beyond what was previously thought possible with a spinning reel, and incredible durability, the Shimano Stella delivers next generation performance and stays at the top of the class. The MicroModule Gear System provides improved gear alignment, as well as more power and torque thanks to the use of micro-teeth on the main gear and pinion gear. The S-Direct Drive System picks up from there, allowing the handle to screw directly into the drive gear, for a pure transfer of power that makes it ounce-for-ounce one of the most powerful spinning reel ever created. The S-Direct drive system also eliminates all back play. Core Protect delivers a major upgrade in durability by keeping water out of the reel’s inner workings and thus greatly increasing its life.

  • The next generation in the legendary stella platform; this spinning reel is loaded with advanced shimano technologies and is now even smoother and more efficient with improved durability
  • Employs state of the art micro module ii gearing; which lends a silky handle rotation and seamless transfer of power from the handle to the updated pinion gear
  • Backed by x-protect technology; which utilizes a water repellant coating and specially designed channels to extend the life of the reel making it up to five times more resistant to the long term effects of water than previous models