BIKE SADDLE BRAND: SELLE ITALIA FLITE BOOST GRAVEL TI316 SUPERFLOW 

Taking the classic Flite road saddle and improving it with gravel-specific created the performance and comfort-focused Flite Boost Gravel TI 316 Superflow.

Meeting the needs of one of the cycling's most demanding disciplines, the Flite Boost Gravel TI 316 Superflow has been designed for adventures that go far off the beaten track. A padded gel insert and TI 316 rails reduce surface vibrations and the Superflow cut-out reduces pressure on the perineum, making this one of the most comfortable gravel saddles. The striking Flite shape gives you an unbeatable range of movement, allowing you to ride for longer and finished with a durable Fibra-Tek material.

Technical specifications:

Technology: Ti316

Family: FLITE

Idmatch cat: S3 / L3

Dimensions:

S3: W 135 x L 250 mm

L3: W 145 x L 250 mm

Rail: TI 316 Tube Ø7

Weight [g]: S3: 228 grams ; L3: 232 grams

Cover: FIBRA-TEK

Intended Use: Gravel

Materials and Shapes

Flat

Flat saddles are suggested for Dynamic Riders or individuals who have an Anterior Pelvic Tilt.

Fibra-Tek

Technical microfiber cover material that guarantees a strong and durable lifetime at a very low weight.

TI316 Rail

Rail increased by up to 25% resistance and durability and reduced by 15% weight compared with traditional rails, ø 7 mm.

Superflow

The Superflow technology drastically reduces all physical limitations caused by prolonged pressure in the perineal area.

Carbon Powered

Shell made with carbon composite and high grade nylon polymer.

Light Gel

Lightweight gel layer that ensures excellent sitting comfort and complete absorption of vibrations, guaranteeing lightness and performance

Shock Absorber

Absorption system between the shell and the rail that highly reduces road shocks and vibrations.

Note for U.S. buyers: Since August 29, 2025, the U.S. De Minimis duty-free exemption (previously up to $800) has ended. Import duties may apply. These charges are not included in the item price and are the buyer?s responsibility