- -20%
Fits 220mm discs, 2.3mm thick.
For the Ultimate, we held nothing back. Our engineers sculpted the finest materials - titanium and carbon fiber - to make this our lightest four-piston brake ever. Power, modulation and lever feel set a new standard. Personalization is quick and intuitive. And for performance - well, our test riders didn't dub it the "Mini-Code" for nothing.
Reference: SH-B013/BK
Front Disc Guard made of 6061 T6 aluminum and 304 stainless steel screws for Talaria / Sur-Ron / Segway electric dirt bike.
Reference: GS-029
Let's face it. You don't always need your headlights on. Why waste your battery? With the Halo Kill Switch by GritShift, you can quickly and easily control your lights and conserve your battery. Without having to take your hand off the handlebar, simply turning them off and on with the push of a button! When you want to improve your stealth abilities, the...
Reference: 32010-56000-000
Front fender for Talaria Sting, Sur-Ron Light Bee and Segway X260. Direct fit with DNM / KKE / Fastace fork. Note! This fender is a direct fit for the DNM volcano, KKE, Fastace & Talaria MX fork only! Doesn't work with RST. Custom fender, precision-drilled, includes stainless steel mounting hardware.
Reference: 310419-01
Replacement set of disc brake pads for Sram G2 Ultimate Caliper (Doesn't fit OEM caliper). Sintered pad with steel back plate. Heavy Duty / Powerful Compound.
Reference: 310069-23
Fits 220mm discs, 2.3mm thick.For the Ultimate, we held nothing back. Our engineers sculpted the finest materials - titanium and carbon fiber - to make this our lightest four-piston brake ever. Power, modulation and lever feel set a new standard. Personalization is quick and intuitive. And for performance - well, our test riders didn't dub it the...
Reference: 310069-25
Fits 220mm discs, 2.3mm thick.For the Ultimate, we held nothing back. Our engineers sculpted the finest materials - titanium and carbon fiber - to make this our lightest four-piston brake ever. Power, modulation and lever feel set a new standard. Personalization is quick and intuitive. And for performance - well, our test riders didn't dub it the...
Reference: 310069-22
Fits 220mm discs, 2.3mm thick.For the Ultimate, we held nothing back. Our engineers sculpted the finest materials - titanium and carbon fiber - to make this our lightest four-piston brake ever. Power, modulation and lever feel set a new standard. Personalization is quick and intuitive. And for performance - well, our test riders didn't dub it the...
Reference: LW-LHP-S4-012/BK
Reference: 310069-26
Fits 220mm discs, 2.3mm thick.For the Ultimate, we held nothing back. Our engineers sculpted the finest materials - titanium and carbon fiber - to make this our lightest four-piston brake ever. Power, modulation and lever feel set a new standard. Personalization is quick and intuitive. And for performance - well, our test riders didn't dub it the...
Reference: 310069-21
Fits 220mm discs, 2.3mm thick.For the Ultimate, we held nothing back. Our engineers sculpted the finest materials - titanium and carbon fiber - to make this our lightest four-piston brake ever. Power, modulation and lever feel set a new standard. Personalization is quick and intuitive. And for performance - well, our test riders didn't dub it the...
Reference: LW-LHP-U4-010/BK
Reference: LW-LHP-U4-011/AL
Reference: 35530-56A30-000
The radial design of the brake master ensures low friction, reducing transmission losses. It also enables the conversion of (small/large) transmission ratios, which improves modulation and control. The 4-piston brake calliper forged in one piece has a high degree of rigidity, resulting in outstanding braking force and the best possible modulation.
Reference: 35450-56A30-000
The radial design of the brake master ensures low friction, reducing transmission losses. It also enables the conversion of (small/large) transmission ratios, which improves modulation and control. The 4-piston brake calliper forged in one piece has a high degree of rigidity, resulting in outstanding braking force and the best possible modulation.