missing translation for 'onlineSavingsMsg'
Learn More

SW Sustainability Solutions PowerForm PF-12TL Extended-Cuff Heavy-Duty Nitrile Gloves
GREENER_CHOICE

Catalog No. p-7193057
Change view
missing translation for 'orderingAttributeHoverText'
Size:
2X-Large
Medium
Small
X-Large
X-Small
Catalog No. Size
17441056 X-Small
17441007 Small
17441006 Medium
17441008 X-Large
17441061 2X-Large
5 options

Catalog No. 17441056

Supplier: SW Sustainability Solutions N127361

Only null left

Engineered for life science environments, these durable 6.2 mil gloves provide protection from chemicals without sacrificing the grip or dexterity you need to handle fine work details with full confidence.

  • Extended cuff provides extra coverage and protection
  • Optimal thickness for durability and tactile sensitivity
  • Fully textured surface for excellent wet and dry grip
  • Silicone-free to prevent contamination
  • Tear-resistant beaded cuff eases donning
  • 1.5 AQL exceeds laboratory standards
  • Tested for use with chemotherapy drugs
  • SHA Dermatologically Approved
  • EcoTek™ Sustainable Technology

Specifications

Certifications/Compliance ASTM D6319-19, ASTM D6978-05 (2019), ASTM F1671-13, ASTM F739-12
Certifications/Compliance (Europe) Reach EU 1907/2006, EU 2016/425, EN ISO 21420:2020, EN 455-2000-2015
Chemotherapeutic Rated Yes
Chlorinated Yes
Accelerator Free No
Applications Healthcare, Laboratory, Industrial
AQL 1.5
Color Teal
Disposable Single-use
Exterior Finish Fully Textured
Finger Thickness (English) 7.1 mil
Finger Thickness (Metric) 0.18 mm
Latex Free Yes
Material Nitrile
Palm Thickness (English) 6.2 mil
Palm Thickness (Metric) 0.16 mm
Powdered Powder Free
Product Type Nitrile Examination Glove
Size X-Small
Sterility Non-sterile
Thickness (English) 7.1 mil
Thickness (Metric) 0.18 mm
FDA 510 (k) Yes
Model N127361
Series PF-12TL
Tensile Strength 21 MPa
Length (English) 12 in.
Length (Metric) 30.5 cm
Show More Show Less

*EcoTek gloves tested to ASTM D5526-12 Standard Test Method for Determining Anaerobic Biodegradation of Plastic Materials Under Accelerated Landfill Conditions. Results are 92.6% biodegradation in 60% solids landfill at 945 days. Future results cannot be predicted/extrapolated.