Bridge-Type Coordinate Measuring Machine (CMM): Renishaw SP25M: Metrology & Quality Inspection Standards

High-precision bridge CMM with scanning probe systems capturing thousands of surface points per second for 3D form tolerances.

Engineering Specifications & Parameters

Primary Target Aerospace & Medical 3D Geometries...
Sensor Technology Renishaw SP25M Scanning Probe
Core Metrology Rule Continuous scanning captures true form error, roundness, and...
Measurement Accuracy +/-0.0008 mm (0.8 μm) Volumetric
Metrology Instrument Coordinate Measuring Machine (CMM)

Metrology Architecture & Functional Overview

Bridge-Type Coordinate Measuring Machine (CMM): Renishaw SP25M is an indispensable quality assurance and dimensional metrology instrument deployed across UCAN ROBOT's inspection facilities for High-precision bridge CMM with scanning probe systems capturing thousands of surface points per second for 3D form tolerances..

Technical Specifications & Measurement Capabilities

  • Instrument Classification: Coordinate Measuring Machine (CMM).
  • Sensor / Probing Mechanism: Renishaw SP25M Scanning Probe.
  • Measurement Accuracy: Verified within +/-0.0008 mm (0.8 μm) Volumetric.
  • Inspection Focus: Optimized for Aerospace & Medical 3D Geometries.
  • Metrology Rule: Continuous scanning captures true form error, roundness, and waviness rather than isolated touch-trigger points.
  • Quality Traceability: All metrology instruments are calibrated annually against NIST/CNAS traceable master gauge artifacts within UCAN ROBOT's ISO/IEC 17025 compliant metrology cleanroom.

Review our production quality benchmarks in Precision Machining Quality Control and discover Application of Precision Machining.

Frequently Asked Questions

What accuracy level is achieved using Bridge-Type Coordinate Measuring Machine (CMM)?

Measurement resolution is held within +/-0.0008 mm (0.8 μm) Volumetric under 20°C temperature-controlled laboratory conditions.

Why is this metrology instrument critical for high-precision CNC parts?

Continuous scanning captures true form error, roundness, and waviness rather than isolated touch-trigger points.