Finity Works
that is ZERO friction!! Reduced friction is achieved by reinventing the pawl mechanism function!
We will always experience drag in some form or other this can be Aero or Mechanical, here at Finity Works we have invented a system that reduces mechanical drag from the internal pawl and ratchet of our rear hub by 100%! we have designed a system that gives maximum efficiency when in freewheel surpassing all other competitors! As well as an enhanced and unrivaled performance advantage the hubs on the road are completely SILENT.
04/08/2016
https://www.youtube.com/watch?v=min5WeW1iTc
Finity Works ZR Prototype Demonstration Finity Works ZR Prototype hub side by side against a main stream manufacturer. Rotated at 30 kph and comes to a stop at 5:12 seconds the hub uses ultra high ...
04/08/2016
04/08/2016
The Test Rig ZR prototype hub
The founder of Finity Works is a British Engineer and a former motor vehicle/motorsport technician he combines an extensive engineering background (Motor Vehicle Engineering) and CAD design with a passion for cycling, with in-depth bicycle industry knowledge to create an innovative and performance enhanced bicycle hub.
For more than 2 years, Martin has been developing the ZR hub, he always believed there was improvement to be gained from the ratchet system in particular the noise that comes from the conventional mechanism. Martin believes yes! you need to be at one with your bicycle and to know how it feels but also you need to be at one with your surroundings! and with a mechanical click it distracts you from why you go out riding on those quiet country lanes in the first place. And to be honest a loud click is so unnecessary!
From the initial concept to the finished design the quality and engineering excellence has been implemented through out the process now in our final years of patent application we can proudly and finally bring to you the worlds most efficient rear bicycle hub.
Click here to claim your Sponsored Listing.
Category
Contact the business
Website
Address
London
W1S1HN