Elevate your electronic component manufacturing with our comprehensive technical documentation for the Kontakt Orodje. In the production of electrical contacts, terminals, and connectors, precision is the only metric that matters. Even a fractional deviation can lead to poor conductivity or assembly failure. This drawing package details a high-precision progressive or single-stage die designed to handle thin-gauge conductive materials like copper, brass, and phosphor bronze. It focuses on maintaining perfect geometry for crimping zones, spring contacts, and mounting tabs.

The provided desenho package offers an exhaustive look at the micro-clearances and specialized plating allowances required for high-conductivity parts. By analyzing the polished punch surfaces and the modular insert system in these blueprints, engineers can minimize material galling and ensure that delicate features are formed without stress fractures. We provide these high-fidelity CAD resources for free to help toolmakers design dies that can run at high speeds while maintaining the strict tolerances required by the automotive and telecommunications industries.

Our files are compatible with all major 3D engineering platforms, allowing your team to perform detailed “strip layouts” and thinning analysis before fabrication. This ensures that the contact’s mechanical spring properties are preserved during the forming process. Download this essential resource today to master the intricate requirements of precision electronic tooling and reduce your production scrap rates.

Principais recursos:

  • Micro-Stamping Precision: Engineered for thin-gauge materials (0.1mm to 1.0mm) with ultra-tight punch-to-die clearances.
  • Integrated Coining & Embossing: Stations designed specifically for creating contact dimples and reinforcement ribs.
  • Tungsten Carbide Inserts: Specifications for high-wear zones to ensure millions of cycles without losing dimensional accuracy.
  • Advanced Stripper Control: Features high-sensitivity spring systems to prevent deformation of delicate contact arms during ejection.
  • Modular “Quick-Change” Inserts: Designed for rapid replacement of wearing parts, reducing downtime in 24/7 production environments.