M1, M1.2, M1.4, M1.7, M2, M2.2, M2.6 Countersunk Self-Tapping Screws – 304 Stainless Steel

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Beschreibung

🔩 Countersunk Self-Tapping Screws – 304 Stainless Steel (M1, M1.2, M1.4, M1.7, M2, M2.2, M2.6)

When precision and corrosion resistance can't be compromised, these A2 / 304 stainless steel countersunk self-tapping screws deliver. Designed for delicate assembly work, the 90° flat head sits perfectly flush in a standard countersink, leaving a smooth, snag‑free surface ideal for eyeglass frames, watches, laptops, mobile phones, and small electronics. The sharp, fully‑threaded shank cuts its own tight thread into thin sheet metal, plastic, and composite materials without a pilot hole in most applications, streamlining your repair and assembly process. Genuine 304 stainless provides permanent rust protection — no plating to wear off — so your repair or build stays clean even in humid environments. Covering the complete micro‑range from M1 up to M2.6 with exact lengths listed for each diameter, this series puts a professional‑grade, corrosion‑proof fastener at your fingertips for the finest precision work.

⚙️ Key Features – 304 Stainless Micro Countersunk Self-Tapping Screws

  • Genuine A2 / 304 stainless steel — provides permanent corrosion resistance for indoor, outdoor, and humid environments without plating
  • Countersunk flat head (90°) sits flush for a seamless, snag‑free finish on precision devices and enclosures
  • Self‑tapping thread cuts into thin sheet metal, plastic, and composites — no pre‑tap or pilot hole needed in most micro‑applications
  • Phillips drive recess accommodates standard precision screwdrivers for secure, cam‑out‑resistant driving
  • Seven exact metric diameters: M1, M1.2, M1.4, M1.7, M2, M2.2, M2.6 — a size for every micro‑assembly task
  • Fully threaded design with lengths including the head for precise material thickness matching
  • Ideal for eyeglass repair, watchmaking, mobile phones, laptops, RC models, and fine electronics assembly

📋 Technical Specifications – 304 Stainless Countersunk Self-Tapping Screws

Size Thread Diameter (d) Thread Pitch (p) Head Diameter (dk) Head Thickness (k) Available Lengths (mm)* Drive Material
M1 1.0 mm 1.75 mm 0.65 mm 3 Phillips A2 304 Stainless
M1.2 1.2 mm 1.82 mm 0.7 mm 3, 4, 5, 6 Phillips A2 304 Stainless
M1.4 1.4 mm 0.5 mm 2.50 mm 0.8 mm 3, 4, 5, 6, 8, 10 Phillips A2 304 Stainless
M1.7 1.7 mm 0.5 mm 3.27 mm 1.13 mm 3, 4, 5, 6, 8, 10 Phillips A2 304 Stainless
M2 2.0 mm 0.6 mm 3.70 mm 1.21 mm 4, 5, 6, 7, 8, 10, 12, 16, 20 Phillips A2 304 Stainless
M2.2 2.2 mm 0.8 mm 3.98 mm 1.3 mm 5, 6, 8, 10, 12, 16, 20 Phillips A2 304 Stainless
M2.6 2.6 mm 0.9 mm 4.20 mm 1.6 mm 6, 8, 10, 12, 16, 20 Phillips A2 304 Stainless

* Lengths are overall length (including head). All screws are fully threaded. Natural stainless finish — no coating. M3–M8 are also available in this series.

❓ Frequently Asked Questions – Micro Stainless Self-Tapping Screws

🔸 Are these screws really suitable for eyeglasses and watch repair?

Absolutely. The smallest sizes — M1, M1.2, and M1.4 — are specifically suited for eyeglass hinges, watch bands, and tiny electronic enclosures. The 304 stainless steel construction ensures they won't rust from skin contact or ambient humidity.

🔸 Do I need to drill a pilot hole for these microscrews?

In thin plastics, soft metals, and most electronics housings, they will self‑tap directly. For harder materials or very precise applications, a small pilot hole about 80% of the thread diameter ensures the cleanest result and prevents the tiny threads from galling.

🔸 Is the length measured from the top of the head?

Yes. All listed lengths are overall length — from the top of the flat countersunk head to the tip. This makes it straightforward to match the screw to the material thickness you're fastening.

🔸 Which Phillips screwdriver do I need for these small sizes?

The smallest screws (M1–M1.4) require a #000 or #00 Phillips precision screwdriver. M1.7–M2 use #0, and M2.2–M2.6 use #0 or #1. A high‑quality precision screwdriver set will cover all sizes and prevent cam‑out.

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