SRAM, G2 RE, MTB Hydraulic Disc Brake, Front, Post mount, Black
Original price was: $60.00.$36.00Current price is: $36.00.
Description
Experience superior stopping power and exceptional control with the SRAM G2 RE Disc Brake and Lever – Front, Hydraulic, Post Mount, Gloss Black (A2). Engineered specifically for trail-ready e-MTBs, this high-performance hydraulic brake system is designed to handle increased speeds, heavier loads, and demanding terrain with confidence. Materials & Advanced Engineering Constructed with a forged aluminum caliper body and a cast aluminum brake lever body, the SRAM G2 RE ensures durability and lightweight performance. Its four phenolic pistons provide excellent thermal insulation, maintaining consistent braking performance even during extended, aggressive rides. The included steel-backed sintered brake pads offer reliable, long-lasting stopping power and are compatible with all SRAM Code disc brake pads for easy maintenance and replacement. Innovative Components & Technology Built on SRAM's proven G2 R lever platform, the G2 RE lever features a stamped aluminum blade and a sleek gloss black finish, combining style with function. The hydraulic actuation system ensures smooth, effortless braking with precise modulation, allowing riders to confidently navigate technical descents and steep climbs. Tool-less reach adjustment permits quick customization to fit riders' hand sizes, enhancing comfort and control. Compatibility with all SRAM Code disc brake pads and the optional use of a 1-piece HS2 rotor (sold separately) ensures versatile performance tailored to your riding style. Designed for E-MTBs & Trail Performance Optimized for electric mountain bikes, the SRAM G2 RE offers powerful braking performance capable of handling higher speeds and increased weight from e-bike components. Its post-mount caliper design simplifies installation and maintenance, making it suitable for a variety of trail and e-MTB setups. The 950mm hydraulic hose provides ample length for versatile routing and installation options across different frame geometries. Style & Use Case Finished in





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