A completely innovated series of legendary Superlight rods. This is a new series of four-piece ultra-slim, extra-light, very sensitive and at the same time powerful rods. They have been designed, continuously tested and fine-tuned to perfection in close cooperation with multiple world champion Tereza Rutová with the aim of creating the finest and slimmest competition rods possible. Furthermore, František Kouba, Miloslav Hosenseidl, Vojtěch Ungr, Roman Heimlich, Luboš Roza, Ivan Vančura and František Hanák helped in the development and active testing.
Through the use of the most modern technologies and the revolutionary material Hexagon Graphene, it was possible to reduce the thickness of the new blanks by an incredible 10 % compared to the original Superlight blanks while maintaining a similar action. It was possible to reduce the weight of the rods by approx. 30 % (up to 30 g) compared to ordinary rods thanks to the use of extra light and high quality components.
Exclusive design with lots of smart improvements. The blank of these rods has a luxurious matte gray color. Original custom reel seat in hexagon design (similar structure of Graphene material) with exotic rosewood insert. Top quality AAAA cork.
Features:
- Ultralight graphene blank material
- Exclusive design with many smart improvements
- Special ANT (anti tangle) stripper guides and hook keeper prevent tangling of thin leaders.
- Flexible titanium single leg guides RECOIL Titanflex
- Matte gray blank color
- Reel seat in hexagon design with rosewood insert
- Premium quality AAAA cork
- Pentagon rod tube with separate compartments for each rod section
Available models:
Model |
Length |
Transport Length |
Line Class (AFTMA) |
Weight |
Superlight USG 299 |
298 cm |
79 cm |
#2 |
75 g |
Superlight USG 396 |
290 cm |
77 cm |
#3 |
77 g |
Superlight USG 3100 |
305 cm |
81 cm |
#3 |
79 g |
Superlight USG 3106 |
320 cm |
84 cm |
#3 |
84 g |
Graphene
is the thinnest material used with the thickness of a single atom layer arranged in the hexagonal lattice. Thanks to this structure, it is incredibly light and it has approximately 200 times higher tensile strength than steel.
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