WIKISTORE Professional Micrometer 0-25 mm, Centesimal Micrometer, Industrial Precision with Aluminium Alloy Arc, Friction System and Lever Lock, Precise Work Tool
WIKISTORE Professional Micrometer 0-25 mm, Centesimal Micrometer, Industrial Precision with Aluminium Alloy Arc, Friction System and Lever Lock, Precise Work Tool
The WIKISTORE centimeter micrometer is a precision instrument designed to meet even the most stringent measurement and quality control requirements. With a measuring range of 0 to 25 mm and accuracy in the hundredth range, this micrometer is ideal for professionals in the industrial, mechanical and engineering sectors. The arc, made of light metal, ensures handling and resistance, while the clutch and ratchet system ensures repeatable and consistent measurements. The drum and micrometer screw allow fine adjustments and instant reading of values. The micrometer comes with a durable carry case and calibration keys, making this tool a reliable companion for any technician who needs precision and reliability. WIKISTORE is dedicated to excellence in precision engineering science, providing quality measuring instruments expected by professionals. Our micrometer line reflects our commitment to precision, durability and continuous innovation.
Product Features
- Precise and reliable: extremely accurate measurements with a measuring range of 0 to 25 mm, suitable for industrial and technical requirements. A lever system for coupling and locking ensures stable and reliable measurements. A 6.5 mm thick screw with a 0.5 mm thread allows quick and precise adjustments (2 turns = 1 mm).
- Versatile use: ideal for professional use in workshops, laboratories or in engineering on site.
- Robust material: robust tool with a bow made of light metal for easy handling and longer service life.
- Optimal dimensions: compact size allows you to carry the tool with you at all times. Supplied with a durable carry case for maximum protection and portability.
- EASY CALIBRATION: With buttons for easy calibration and maintaining accuracy over time.