S-91420A026 M2.5 x 20 mm DIN 965 Steel Phillips Flat Head Screws
Steel Phillips Flat Head Screws
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Basic Information
Head Parameters
Dimensions
Thread Parameters
Tip & Drive Parameters
Material & Strength
Temperature & Environment
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Key Features & Benefits at a Glance
- Enhanced corrosion resistance with zinc plating, extending service life in demanding industrial environments.
- Superior holding power and reliability from a high 60,000 psi tensile strength and Rockwell B71 hardness.
- Efficient and secure fastening due to the fully threaded M2.5 design with a coarse 0.45mm pitch.
- Streamlined assembly process with a standard flat head and No. 1 Phillips drive for easy, flush installation.
- Guaranteed dimensional accuracy and interchangeability through compliance with the precise DIN 965 standard and Class 6h thread fit.
- Broad material compatibility for use in various industrial assemblies requiring a right-hand thread.
- Safe for regulated industries as the screw is fully compliant with RoHS 3 and REACH environmental regulations.
Professional Applications & Engineering Value
Engineered for precision and endurance, these M2.5 metric screws are crafted from zinc-plated steel to combat rust and wear in harsh conditions. The fully threaded body with a coarse thread pitch ensures maximum grip and vibration resistance, preventing loosening in dynamic applications. The flat head with a Phillips drive allows for a clean, countersunk finish, ideal for machinery, electronics, and automotive assemblies where a smooth surface is critical. Meeting the stringent DIN 965 specification, these screws deliver consistent performance, reducing the risk of assembly errors and improving overall project efficiency for engineers and procurement specialists.
Specification Summary & Compliance
This screw adheres to a Class 6h thread fit for precise metric tolerances, as defined by the DIN 965 manufacturing standard. It is fully compliant with RoHS 3 (2015/863/EU) and REACH (EC 1907/2006) regulations, ensuring environmental safety and material restrictions are met for global supply chain integration.