Josh Welz
· 20.08.2026
With the Protocol range, Silca is venturing into the world of its own bicycle tyres for the first time. The design combines high volume with thin casings and different tread patterns for road and gravel. Whether the promised benefits in terms of rolling resistance, comfort and puncture protection hold up in everyday use remains to be seen, and will be determined by independent measurements and real-world tests. The new tyres are already on their way to our editorial office – stay tuned!
Silca is entering the tyre market for the first time with its Protocol range. The US manufacturer with Italian roots – previously best known for its pumps, tools, lubricants and other cycling accessories – is launching three gravel tyres and one road tyre.
According to the company, the tyres have been specifically developed for modern rim standards and lower air pressures. Silca aims to take a different approach to that of many established tyre manufacturers. Rather than adding extra rubber to traditional road tyre designs for gravel use, the company has drawn inspiration from the characteristics found in cross-country mountain biking.
The new range of tyres is designed to combine larger volumes with comparatively thin casings. According to Silca, the tyres feature high-density casings with 120 TPI. This is said to result in reduced weight, greater comfort and lower rolling resistance.
At the same time, the manufacturer promises a high level of puncture resistance. Silca cites its own laboratory and field tests, in which the Protocol tyres were found to be faster and more durable than rival products. We have requested the new Silca tyres and will be testing the manufacturer’s claims both in the lab and in real-world conditions – so stay tuned!
Silca refers to this design approach as ‘inverse proportional design’. This refers to the combination of a larger tyre volume and a thinner carcass. At lower air pressures, the reduced tension within the carcass plies is intended to help absorb impact forces in a controlled manner.
According to the manufacturer, this could enable the tyres to combine comfort with puncture protection without significantly increasing rolling resistance. Practical testing will have to show whether this balance can actually be achieved in different applications.
One of the series’ common technical features is the so-called ‘Pulsar’ compound. According to Silca, this is based on solution-polymerised styrene-butadiene rubber and silica reinforcement. What lies behind this rather unwieldy name? According to the manufacturer, the compound is designed to reduce internal energy losses during rolling whilst also enhancing braking and cornering grip. As mentioned, we will be testing these purported properties both in the laboratory and in real-world conditions.
Another distinctive feature is the carcass construction. According to Silca, this is specifically tailored to the tyre’s shape and construction profile in order to stabilise the carcass under load and minimise hysteresis (energy loss due to deformation). Furthermore, the models feature tread blocks of varying heights arranged asymmetrically. The outer blocks are designed to dig into the ground even at low lean angles.
For the tyre bead, Silca uses carbon fibres instead of conventional Kevlar fibres. According to the manufacturer, this design is intended to prevent moisture absorption and stretching. This should ensure that the tyre sits precisely on the rim throughout its entire service life.
According to Silca, the tyres are designed to suit modern, wider rims. Specific recommendations regarding rim width are provided for each model. A special coating is also said to make fitting easier and ensure better compatibility with tubeless sealant.
Silca intends to set a recommended retail price of 119 euros for all Protocol models – which would place the American company at the top end of the price scale in the tyre market. Silca’s first in-house range of tyres is set to be available from selected specialist retailers and directly via the company’s website.

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