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    RRD Vogue HD Y27 Windsurf Sail
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RRD Vogue HD Y27 Windsurf Sail

From: £574.15

IN A NUTSHELL...

The RRD Vogue HD Y27 is the sail for ripping in the waves and handling the toughest high wind conditions.

Delivery information

Design details

CONTROL WAVE

SIZES: 2.1/ 2.4 / 2.7 / 3.0 / 3.4 / 3.7 / 4.0 / 4.2 / 4.5 / 4.7 / 5.0 / 5.3 / 5.6 / 5.9

  • ULTIMATE SAIL FOR CONTROL WHEN THE CONDITIONS GET EXTREME
  • WIDER BATTEN SEPARATION, WITH ADDED POWER AND CONTROL
  • FOR ADVANCED WAVE RIDERS AND GENERAL HIGH WIND USE

Last year we worked heavily on the sail and increased the space between the bottom two battens, allowing the sail to breath and react more in the important area around the boom. The results were a touch more power, but at the same time much better control, with the power being really focused in the front of the sail around the boom area where it is easy to control. For Y27 we focused on trimming weight out of the sail whilst maintaining the same high levels of durability and reinforcement. Whether its jumping, riding or just blasting in highwinds, the Vogue lets you take your sailing wherever you want to go.

SPECIAL Y27 SILVER EDITION
For Y27 we introduce a super limited special edition Silver Vogue. Unique styling with all the performance of the VOGUE HD.

FEATURES

  • NEW for Y27 – Limited Silver Edition. Monofilm window.
  • Wider batten spacing between the bottom two battens for more reaction.
  • Slightly wider head, supported by closer batten spacing, for a touch more drive.
  • New for Y27 – Lighter weight without sacrificing durability and reinforcement.
  • Lower clew position for increased control.
  • 100% X-ply for the ultimate in strength, featuring our ‘high visibility’ X-ply window with wide spaced yarns for clear vision.
  • Additional stretch control seam through the window to support the wider batten spacing.
  • Power-Clew system for huge tuneable range.
  • Cross panel construction utilises heavy grade x-ply to create structural support through the centre of the sail.
  • Performance construction for the optimum strength to weight ratio throughout.