Images

Image 1 of 7 of Women's White/Digital Violet NETBURNER BALLISTIC FF MT 3 Womens Netball Shoes
Image 2 of 7 of Women's White/Digital Violet NETBURNER BALLISTIC FF MT 3 Womens Netball Shoes
Image 3 of 7 of Women's White/Digital Violet NETBURNER BALLISTIC FF MT 3 Womens Netball Shoes
Image 4 of 7 of Women's White/Digital Violet NETBURNER BALLISTIC FF MT 3 Womens Netball Shoes
Image 5 of 7 of Women's White/Digital Violet NETBURNER BALLISTIC FF MT 3 Womens Netball Shoes
Image 6 of 7 of Women's White/Digital Violet NETBURNER BALLISTIC FF MT 3 Womens Netball Shoes
Image 7 of 7 of Women's White/Digital Violet NETBURNER BALLISTIC FF MT 3 Womens Netball Shoes

NETBURNER BALLISTIC FF MT 3

Womens Netball Shoes
The NETBURNER BALLISTIC FF MT 3 has been discontinued.
Let us help you find another great ASICS product to meet your needs. Click below.
View Similar Items
Sport
Netball
Recommended For
Protection
Player Type
Speed, Support, Smooth Transitions

Suitable for players looking to move with freedom while feeling additional support and protection.

The NETBURNER BALLISTIC™ FF MT 3 court shoe's supportive fit keeps you focused on your game. It’s also designed to help you make quicker starts and deliver a balanced court performance.

The combination of a 3D SPACE CONSTRUCTION™ feature and X GUIDANCE™ technology help increase flexibility.

TWISTRUSS™ technology is placed in the outsole to improve stability when pivoting or twisting. This helps you carry your momentum in and out of turns.​

Recommended by

Australian Physiotherapy Association   Sports Medicine Australia

Official Footwear Partner

Netball Australia     Australian Diamonds    Suncorp Super Netball

Style #: 1052A070.104
  • FLYTEFOAM™ Propel technology cushioning increases impact absorption and responsiveness
  • TWISTRUSS™ technology improves quickness and cutting motions
  • Mid-top design
  • 3D SPACE CONSTRUCTION™ feature improves stability
  • X GUIDANCE™ technology improves flexibility
  • The sockliner is produced with the solution dyeing process that reduces water usage by approximately 33% and carbon emissions by approximately 45% compared to the conventional dyeing technology