Proto® TorquePlus™ J1200ES-11 Anti-Slip Short Length Combination Wrench Set, Imperial, 11 Pieces, 1/4 to 3/4 in, Full Polished

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$284.70
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SKU: PROJ1200ES11
GTIN (EAN,ISBN): 00662679113148
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Proto® TorquePlus™ J1200ES-11 Anti-Slip Short Length Combination Wrench Set, Imperial, 11 Pieces, 1/4 to 3/4 in, Full Polished

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Main specs
  • Brand
    Proto®
  • UPC
    662679113148
  • Manufacturer Part Number
    J1200ES-11
  • Country
    USA|Canada
Specification
  • Finish
    Full Polished
  • Type
    Anti-Slip Short Length
  • Number of Pieces
    11
  • Size Range
    1/4 to 3/4 in
  • Specifications
    12 Point, 15 deg Offset, Box/Open End Drive
  • Suitable For Use With
    4, 6 and 12 Point Fastener
  • System of Measurement
    Imperial
Features
  • 12 point box end allows for fine indexing, helping to improve speed and access
  • The wrench self-aligns with the fastener
  • Full polish finish provides corrosion resistance and easy to clean surfaces
  • The box end is countersunk for easy application to the fastener
  • 15 deg angled offset helps keep shank clear of obstructions
  • Anti-slip design (ASD) open end
  • Box ends incorporate the TorquePlus™ system
Competitor Information
Competitor Name Competitor Part Number
Grainger 22DH12
Grainger 22DH12
Grainger 22DH12
Additional Information
  • UNSPSC
    27111713
  • Includes
    (11) Combination Wrenches
  • Package Description
    EACH
  • Standards/Approvals
    ASME B107.100-2035
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Proto® TorquePlus™ J1200ES-11 Anti-Slip Short Length Combination Wrench Set, Imperial, 11 Pieces, 1/4 to 3/4 in, Full Polished

Browning® shear pin hubs are designed to shear a necked pin at a predetermined load. This protects equipment from overloads. Consisting of a hub assembly, a sprocket and shear pin, the shear pin bridges between the sprocket and hub assembly. The shear pin is available in load increments, so the closest one to your application requirements must be chosen. Resetting the shear pin hub is accomplished manually by replacing the shear pin. Best applied to applications where infrequent overloads are encountered.

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