Asics NOVABLAST TOKYO - Running Shoes - Men's - sunrise red/black

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105,00 €140,00 €
-25%

* Price recommended by the supplier in 2021

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Features

NOVABLAST TOKYO running shoes by ASICS provide an optimal balance of cushioning and reactivity.

MAIN DETAILS:

  • Surface: Roads
  • Stride: Universal
  • Drop: 10 mm
  • Foot shape: Standard
  • User weight: up to 75 kg
  • Weight: 260 g (per shoe)

SPECIFICATIONS:

Upper:

  • Low-rise
  • Breathable mesh upper
  • Classic laces

Footbed:

  • Otholite® EVA insole
  • Durable dye

Midsole:

  • Flexible, comfortable monobloc FlyteFoam™ Blast
  • Cut-outs for excellent bounce
  • Reflective details

Outsole:

  • Robust rubber contact sole
  • AHAR+™ insert for improved durability
  • Abrasion-resistant
  • Forefoot height: 22 mm
  • Heel height: 32 mm
  • Running style: Mid or forefoot attack
  • Use: Intensive
  • Run frequency: 1 to + 3 times a week

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TECHNOLOGY:

 

ORTHOLITE®: Engineered from open cell polyurethane, Ortholite soles retain 95% of their cushioning after one year of use, whereas ordinary soles lose 70% of their cushioning over the same time period.

The Ortholite® sole is light and breathable. The air circulates, to help evacuate heat and moisture to keep the feet dry. The environmentally-friendly biocide treatment is antimicrobial and creates a healthier environment for the feet. The advantages of Ortholite® Open-Cell Technology are:

  • Durable cushioning
  • Moisture wicking
  • High level of breathability
  • Easy to wash
  • Antimicrobial
  • Lightweight

 

FlyteFoam™ Blast: The FlyteFoam™ Blast midsole provides optimal weight, bounce, durability and cushioning. It is made from EVA + OBC (Olefin Block Copolymers).

 

AHAR+™: An acronym for Asics High Abrasion Rubber, this material is placed in key areas on the sole for exceptional solidity.

 

COMPOSITION:

 

EVA: The moulded EVA foam insert is particularly flexible. It helps improve shock absorption and lightness.

 

Durable Tinting Process: System that considerably reduces water consumption and carbon emissions. It helps reduce CO2 emissions by 45% for shoe soles compared to conventional dyeing technology. It also reduces water consumption by up to 50% for clothing and 33% for insoles.

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