499.215.113080
Carrying Case R8 Taper Spindle Runout Test Arbor
| Taper | L | D | Part Number | |||||
|---|---|---|---|---|---|---|---|---|
| R8 Spindle Taper | 260mm | 31.75mm [1.25in] | 465.R08.000.000 | |||||
| Carrying Case | Aluminum Horizontal Case | 499.215.113080 |
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Location: 304 North Main St, Suite 104, Rockford, IL 61101-1101 USA
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Related
PSC / PSK Spindle Runout Test Arbors
Made to the ISO 26623 Standard. Maximum runout error 0.003mm / 3 micron / 0.00012”. A certificate of accuracy is included. Storage are cases not included.
Steep Taper Spindle Runout Test Arbors
-Maximum runout error 0.003mm / 3 micron / 0.00012 inch
-Cylindricity ≤ 0.002mm / 2 micron / 0.00008 inch
-Carrying cases are not included (see below for case options).
-A certificate of accuracy is included. Traceable certificates available; contact us for details.
-Contact us for other lengths, tapers, and other special requirements.
R8 Taper Spindle Runout Test Arbor
Standard R8 spindle runout test arbor with inch retention thread.
Runout <=0.003 micron (0.00012 inch)
KM Spindle Runout Test Arbors
TAC Rockford's KM Spindle Runout Test Arbors are the essential high-precision instrument for verifying the accuracy of your machine tool spindles. This critical gauge provides a fast, reliable, and definitive way to diagnose alignment and runout issues that directly impact part quality and tool life.
- Ultra-High Precision: Typically guaranteed radial runout of 0.003mm (3 microns / 0.0001") or better, ensuring the highest level of diagnostic accuracy.
- Manufactured from premium, hardened alloy steel and precision ground for stability and longevity.
- Each arbor is supplied with an individual Certificate.
- Contact us for other lengths, tapers, and other special requirements.
- Carrying cases are not included. Available case options listed below.
Steep Taper Standard Ball-End Runout Test Arbors
Ball end spindle runout test arbors are designed checking positioning accuracy of 5-axis machines, but can also be used in place of a standard runout test bars when a shorter length is required or for a touchoff point from the spindle face (ball end is ideal for this purpose).
Spindle Runout Test Arbors
-Maximum runout error 0.003mm / 3 micron / 0.00012 inch
-Cylindricity ≤ 0.002mm / 2 micron / 0.00008 inch
-Carrying cases are not included. Visit www.tac.us/runoutcases for available case styles (Data Sheet 465.006).
-A certificate of accuracy is included. Traceable certificates available; contact us for details.
-Contact us for other lengths, tapers, and other special requirements.
HSK Standard Ball-End Runout Test Arbors
Ball end spindle runout test arbors are designed checking positioning accuracy of 5-axis machines, but can also be used in place of a standard runout test bars when a shorter length is required or for a touchoff point from the spindle face (ball end is ideal for this purpose).
HSK Spindle Runout Test Arbors
TAC Rockford's HSK Spindle Runout Test Arbors are the essential high-precision instrument for verifying the accuracy of your machine tool spindles. This critical gauge provides a fast, reliable, and definitive way to diagnose alignment and runout issues that directly impact part quality and tool life.
- Ultra-High Precision: Typically guaranteed radial runout of 0.003mm (3 microns / 0.0001") or better, ensuring the highest level of diagnostic accuracy.
- Manufactured from premium, hardened alloy steel and precision ground for stability and longevity.
- Each arbor is supplied with an individual Certificate.
- Contact us for other lengths, tapers, and other special requirements.
- Carrying cases are not included. Available case options listed below.
Steep Taper Dual Contact Runout Test Arbors
Compatible with Big-Plus® steep taper spindles.
Carrying Cases for Steep Taper Runout Arbors
TAC Rockford runout arbor cases are specifically designed to protect your precision spindle runout test arbors. These cases feature high-density, custom-cut foam interiors that secure the arbors. They ensure your critical measurement tools are shielded from dirt, damage, and impact, maintaining their accuracy and readiness for preventative maintenance.

