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Carbon Front Shock Tower for Gullwing Arm T6.2 (ASC71136)

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Carbon Front Shock Tower for Gullwing Arm T6.2 (ASC71136)

The Carbon Front Shock Tower for Gullwing Arm T6.2 is designed specifically for the RC10T6.2 model, providing enhanced performance and durability. Constructed from high-quality carbon fiber, this shock tower combines lightweight properties with exceptional strength, making it an ideal upgrade for serious RC enthusiasts.

This front shock tower is compatible with RC10SC6.1, RC10SC6.2, and RC10T6.1 models, allowing for easy installation and versatility across different chassis types. Its gullwing design offers improved handling and stability, enabling drivers to achieve optimal control and responsiveness on the track.

The Carbon Front Shock Tower for Gullwing Arm T6.2 is designed specifically for the RC10T6.2 model, providing enhanced performance and durability. Constructed from high-quality carbon fiber, this shock tower combines lightweight properties with exceptional strength, making it an ideal upgrade for serious RC enthusiasts.

This front shock tower is compatible with RC10SC6.1, RC10SC6.2, and RC10T6.1 models, allowing for easy installation and versatility across different chassis types. Its gullwing design offers improved handling and stability, enabling drivers to achieve optimal control and responsiveness on the track.

$7.44

Original: $21.25

-65%
Carbon Front Shock Tower for Gullwing Arm T6.2 (ASC71136)

$21.25

$7.44

Description

The Carbon Front Shock Tower for Gullwing Arm T6.2 is designed specifically for the RC10T6.2 model, providing enhanced performance and durability. Constructed from high-quality carbon fiber, this shock tower combines lightweight properties with exceptional strength, making it an ideal upgrade for serious RC enthusiasts.

This front shock tower is compatible with RC10SC6.1, RC10SC6.2, and RC10T6.1 models, allowing for easy installation and versatility across different chassis types. Its gullwing design offers improved handling and stability, enabling drivers to achieve optimal control and responsiveness on the track.