E-A-R™ 7010384042

E-A-R™ 7010384042 Uncorded Earplugs, 29 dB Noise Reduction, Cylindrical Shape, CSA Class AL, Disposable, Uncorded Design

  • TIEPN: 3MF 080529-11080-7
  • MPN: 7010384042
  • UPC: 080529110807
  • Min. Order Qty: 1
  • Quantity Interval: 1
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3M™ E-A-R™ Classic™ uncorded earplugs set the standard in hearing protection as the world's first foam earplugs. Constructed from slow-recovery foam, these disposable earplugs are uniquely moisture resistant. Still one of the most widely used foam earplugs today, the 3M™ E-A-R™ Classic™ earplug is an economical, reliable choice for hearing protection and hearing conservation. Slow recovery, low pressure foam conforms to the shape of the earcanal to help create a comfortable, snug noise barrier. Econopack gives you the best value - with savings of up to 20%. Flame resistant and moisture resistant. Noise reduction rating (NRR) - 29 dB CSA class AL. Test compatible with 3M™ E-A-Rfit™ validation system. The NRR may overestimate the hearing protection provided during typical use. 3M™ recommends reducing the NRR by 50% for estimating the amount of noise reduction provided. 3M™ is leading the advancement of hearing Conservation™.

E-A-R™, 7010384042, Earplugs, Uncorded, Uncorded Design, 29 dB Noise Reduction, Cylindrical Shape, Regular Size, Yellow Plug, Soft Polyurethane Foam Plug, Specifications Met: CSA Class AL, Disposable/Reusable: Disposable

Plug Color      :      Yellow
Plug Material      :      Soft Polyurethane Foam
Size      :      Regular
Noise Reduction Rating      :      29 dB
Shape      :      Cylindrical
Specifications Met      :      CSA Class AL
Disposable/Reusable      :      Disposable
Design      :      Uncorded
  • 3M™ E-A-R™ Classic™ earplugs set the standard in hearing protection as the world's first foam earplugs
  • Slow recovery, low pressure foam conforms to the shape of the earcanal for enhanced comfort and wearability
  • Moisture resistant helps maintain a consistent expansion time, even in humid environments
  • Flame resistant important for potential arc flash situations and for storage considerations