2008 MICRO-VU VERTEX410 machine research record.
This is an independent observation retained for machine research. A recorded status or asking price is not a live-inventory claim. Confirm the exact unit, seller, ownership, configuration, condition, price and availability directly with the originating source.
About this 2008 MICRO-VU VERTEX410 observation.
The catalog retained a used Inspection record, NC and $12,900 as of August 5, 2021. Its source-state label is “Historical sold record.” None of those fields independently proves present availability.
Compare the machine, not only the ad.
Use the persistent MICRO-VU VERTEX410 model page to compare known specifications and related records. Then verify the exact unit through data plates, control screens, option lists, maintenance evidence and an independent inspection.
Evidence boundary for MBB-R-9536D551E7D4.
- Record identity
- MBB-R-9536D551E7D4 · MBB-owned public code
- Last catalog observation
- August 5, 2021
- Recorded source
- Source URL not retained in this public record
- Recorded asking price
- $12,900 · currency and terms not separately retained
- Recorded location
- NC
- Specification scope
- No structured specification evidence retained
- Source-state label
- Historical sold record
- Present availability
- Not independently confirmed by MBB
- MBB role
- Independent research record; not the seller or broker
- Originating source URL was not retained in this public record.
- No structured exact-unit or model-reference specifications were retained.
- Installed and included options are unknown.
A source observation establishes what was recorded—not title, ownership, present condition, present price, present availability or a transaction offer.
Use this 2008 MICRO-VU VERTEX410 record as the starting point.
Carry the recorded machine identity into a source check, market watch, production-ready cost plan, value brief, seller intake or provider search. MBB does not claim ownership or present availability.
Know what happens after the machine is found.
Transfer this 2008 MICRO-VU VERTEX410 record into the provider and preparation paths required to move, place, support and fund the equipment.
2008 MICRO-VU VERTEX410 model-reference specifications.
No structured specifications were retained for this record. Use the model research page and verify the exact machine configuration.
Additional record details
12" x 12" Image Capture Capabilities Multiple Edge Detection Tools Probe Ready, Laser Ready, Rotary Ready Automated 6.5x Zoom Lens XYZ Resolution Color Camera Programmable Multi-Sector LED Surface Ring Light The Micro-Vu Vertex Vision Measuring Centre is a high precision solution for inspecting small parts. The Vertex has a compact design, machine-side electronics, and an external computer (INCLUDED). These features provide for high reliability, simple USB setup, and easy upgrades. InSpec for Windows Metrology Software provides a simple interface for advanced measuring tools, tolerancing, translators and reporting. Lighting options enhance edge definition, while updated focus algorithms provide quick z measurements with excellent repeatability. SELLER NOTES: The machine was used in our precision Swiss machine shop. It was kept in a climate controlled room. It is a perfect machine for a production shop. We loved this machine. We have closed our shop and have sold all major equipment. We are selling the remaining items which include this machine. This machine has a small footprint but is able to measure over 90% of parts being made in US machine shops. The Vertex uses both vision for hard to measure areas and probes for standard measurements. The micro vu software is able to automatically calculate ppm, CPk, etc. Our shop was ISO certified and made parts for the automotive industry. This machine was our right hand in both measuring the parts (from PPAP to production to final inspection) and the software crunched all of the cpk, ppm, ppk, took wear, etc. The speed and accuracy of the Vertex is amazing. We could run 8-10 different parts on our multi-axis machines and the vertex could check them all without us having to slow the machines down. You just put the part in its fixture, call up the program, and done. Put another completely different part in the vertex, pull up the program and done. The software would continue to crunch the numbers for inspection purposes.