Custom Downwind Prone / SUP Foil Boards Made in France
Voga Offshore Pure SUP is a versatile downwind SUP or prone board for intermediate to expert riders. Also excellent for wing foiling in ultralight wind conditions.
A lightweight and ultra rigid board with a reduced wetted surface to allow you to scale down your foils size with medium to high aspect ratio. Its rocker and stiffness obtained thanks to the honeycomb and carbon sandwich structure combined with its structural beam and our 18” full carbon foil box will ease your quick take-off and allow for efficient pumping.
Materials: Carbon fiber, Entropy CLR© biosourced epoxy, Nomex© aramid honeycomb, Airex© PVC foam (sandwich), EPS core, upcycled Airbus© carbon fibers, Map Yachting© boat varnish.
Colors available: Fluorescent Orange, Custom Color.
High performance carbon US Box
Gore-Tex© venting valve
FCS© leash plug
Carrying handle
Full customization available. Please allow 24h to get back to you with a design proposal.
Size variants:
6'5" x 18" x 85L
7'7" x 19" x 96L
Lead time 8-12 weeks depending on production schedule.
Board sold alone, stainless screw set included.
A Versatile Downwind Shape
Pin tail, progressive rocker, relatively straight rails, reduced wetted surface with a double concave hull on its front third to cushion the hits. The scoop line is adapted to the rough conditions of the Mediterranean.
Nomex© Honeycomb and Carbon Pro Build
Internal Structure
Honeycomb Pro Build
A | Hull-side carbon fabric 2 layers |
B | Twill carbon fabric 2 sandwich layers with extra reinforcement strips on rails |
C | Nomex© aramid honeycomb Partial sandwich under deck |
D | Airex© / carbon sandwich structural beam Deck / hull interface, IPN beam principle, extreme stiffness |
E | In-house US-standard foil box plate Vacuum infused Carbon / Nomex© double sandwich plate, routed to USBox standards and secured with structural epoxy glue, then laminated under one layer of carbon |
F | US-standard box rails Airex© / carbon molded bloc routed with US rails, laminated top and bottom and bound to the internal beam |
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