Description
Taylor Hobson Talyrond 73 A 112/1080E-8 – High-Precision Roundness Tester
Unlock sub-micron roundness and form measurement with this Talyrond 73 A 112/1080E-8, a benchmark instrument from Taylor Hobson, renowned for its metrological precision and rugged build. Ideal for quality-control labs, toolrooms, and high-precision manufacturing environments.
Key Features
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Laboratory-Grade Roundness Measurement
Part of the Talyrond 73 series, this machine is designed for very high accuracy roundness testing — the very model used as the basis for national metrology (e.g., the NPL’s roundness facility). -
Stable, Rigid Structure
The instrument’s base and column are engineered for mechanical stability, minimizing vibrations and ensuring repeatable measurement accuracy. -
Precision Centering & Levelling Table
A micrometer-driven centering and levelling mechanism allows parts to be aligned extremely precisely to the spindle axis — critical for accurate roundness measurement. -
Highly Sensitive Gauging Capability
Equipped to use a variety of inductive probes / styli (Taylor Hobson offers a wide range) to capture minute deviations in surface form. -
Error-Separation Techniques
Using advanced signal processing and repeatable spindle rotation, the Talyrond can separate spindle error from the workpiece form, improving measurement fidelity. -
Solid Metrology Legacy
Taylor Hobson instruments like this are trusted in both industrial QC and national measurement institutes.
Why Choose This Talyrond?
This Talyrond 73 A unit is ideal for anyone requiring ultra-precise roundness, cylindricity, or form measurement. Whether you’re calibrating precision shafts, verifying bearing journals, or validating flatness/circularity in finished parts, this machine provides:
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Exceptional repeatability and accuracy
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Stability in a workshop or lab environment
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Capability for detailed harmonic/form analysis
Typical Applications
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Inspection of cylindrical workpieces (shafts, spindles, bearing races)
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Metrology labs performing form certification
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Toolmaking and R&D for high-precision components
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Calibration facilities demanding traceable, high-accuracy roundness data









