10-32 x 1-1/2 Phillips Pan Machine Screws

Brand: Midwest

SKU: 12287

Product Attributes:
  • Finish: Zinc Plated
  • Material: Steel
  • Color: Silver
  • Brand: Midwest
  • Scale: Standard
  • Length: 1-1/2"
  • Head Type: Pan
  • Drive Size: #3 Phillips
  • Drive Type: Phillips
  • Thread Type: Fine
  • Package Type: Clamshell

Product Description:

These 10-32 x 1-1/2 Phillips Pan Machine Screws from Midwest are crafted from high-quality steel with a zinc-plated finish, providing excellent corrosion resistance and durability for a wide range of general-purpose fastening applications. Featuring a rounded pan head, these screws offer a low-profile, slightly raised finish that evenly distributes load and minimizes damage to materials.

Designed with a cross-recessed Phillips drive, they enable quick and secure engagement with standard Phillips screwdrivers, making installation efficient and reliable. The fine machine threads ensure precise engagement in pre-tapped holes, delivering strong clamping force and dependable fastening, ideal for precision assembly tasks where maintaining material integrity is crucial.

Perfect for use in electronics, machinery, and other delicate component assemblies, these screws combine strength and precision to meet the demands of both professional and DIY projects. Midwest’s commitment to quality ensures these screws provide lasting performance in various industrial and commercial settings.

Features:

  • Made from high-quality steel with a zinc coating for corrosion resistance and long-lasting performance in general-purpose applications.
  • Rounded pan head provides a low-profile, slightly raised finish that distributes load evenly and reduces material damage.
  • Cross-recessed Phillips drive allows quick, secure engagement with standard Phillips screwdrivers.
  • Fine machine threads offer accurate engagement in pre-tapped holes, providing strong clamping force and reliable fastening.
  • Ideal for precision assembly tasks, these screws ensure secure fastening in delicate components without compromising material integrity.