ARRIS® Expands Bicycle Spoke Technology with Innovative Solutions
ARRIS®, a leader in advanced manufacturing, continues to enhance its bicycle component offerings by expanding its Made To Outperform® (MTO) Spoke Series. This initiative is geared towards introducing next-generation, ultralight composite spokes that are poised to redefine cycling performance.
Breakthrough Innovations in Spoke Design
The ARRIS | MTO product series showcases a selection of cutting-edge spoke technologies. Each spoke is engineered using ARRIS's unique continuous-fiber manufacturing technology, which aims to deliver reliable performance that surpasses previous composite spokes. The focus is on creating a lightweight structure that doesn't compromise on durability or performance.
Key Features of the ARRIS | MTO Spoke Series
The MTO Series includes various spoke categories tailored for different applications. Some notable features include:
- Proprietary ARRIS Technology: Advanced spoke design with ultralight architecture.
- Performance Range: Options encompassing a weight range starting from as light as 2 grams.
- Innovative Materials: Constructed from carbon, glass, and multi-materials for robust performance.
- Custom Solutions: Availability of production-ready spokes and personalized build options.
Commitment to Quality and Testing
Bert Mannhalter, Vice President of R&D at ARRIS Composites, emphasizes the importance of rigorous testing: "Composite spoke skepticism exists for a reason. That's exactly why we test every spoke we ship. If it goes out the door, it passed. This level of accountability ensures that quality remains high across our production processes."
Industry Adoption and Partnerships
With increasing interest from leading bicycle brands, ARRIS has quickly established its technology in the market. Many brands are launching bicycles featuring the ARRIS Technology, including the renowned Roval wheelsets produced by Specialized. These products leverage ARRIS composite spokes to enhance their overall performance.
Statement from Leadership
Riley Reese, CEO of ARRIS Composites, stated, "By controlling every aspect of the production process, we don’t just design components; we ensure they meet our rigorous standards. This approach enables us to innovate effectively and back our claims with solid data on performance metrics."
Company Background and Global Operations
Founded in 2017, ARRIS Composites has pioneered a new category of manufacturing known as Additive Molding. This innovation integrates advanced software, materials, and mass production techniques to create exceptional composite components. ARRIS operates globally, maintaining its headquarters and innovation lab in the San Francisco Bay Area while managing high-volume manufacturing in Taiwan.
ARRIS's unique technological capabilities ensure that brands can rely on them for cutting-edge materials and solutions tailored to their products.
Learn More About ARRIS Composites
The company encourages those interested in their latest technologies to learn more at their official website.
About ARRIS Composites: ARRIS® Technology unlocks exceptional performance with a patented manufacturing platform that prioritizes strength and performance across a diverse range of industries, including automotive, aerospace, and sports technology.
Frequently Asked Questions
What are ARRIS's primary products?
ARRIS specializes in advanced composite bicycle spokes and other components utilizing innovative manufacturing technologies.
How does ARRIS ensure the quality of its spokes?
Each spoke undergoes rigorous testing before it is shipped to guarantee performance and reliability.
What materials are used in ARRIS spokes?
ARRIS spokes incorporate carbon, glass, and multi-materials to ensure optimal performance.
Where does ARRIS manufacture its products?
Manufacturing primarily occurs in Taiwan, with their innovation lab and office based in the San Francisco Bay Area.
How did ARRIS Composites get founded?
ARRIS was founded in 2017 and quickly established itself as a leader in the advanced manufacturing of composite materials.