AXIMA-TOF2™ by Shimadzu Biotech

Manufacturer Shimadzu Biotech
5.0
/
5.0
  |  1 reviews
The next generation in MALDI CID MS/MS A TOF-TOF mass spectrometer with high energy MS/MS The AXIMA-TOF2 is one of the most powerful tools in mass spectrometry, delivering information-rich spectra with greater sensitivity and higher confidence in identification. It is an extremely versatile and powerful TOF-TOF system, integrating workflows for a diverse range of analytical needs. Key benefits and features Delivers the highest energy collisions (CID with laboratory energy of 20keV) to unlock... Read more


AXIMA-TOF<sup>2</sup>™ by Shimadzu Biotech product image
AXIMA-TOF2

Shimadzu Biotech

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Average Rating: 5.0
1 Scientist has reviewed this product

5 out of 5
Ease of use
5 out of 5
After sales service
5 out of 5
Value for money


  • Status:

    Reviewer
  • Member since: 2007

  • Organization: Max-Planck Institute for Medical Research



  • Ease of use
    5 out of 5
    After sales service
    5 out of 5
    Value for money
    5 out of 5
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Rating: 5.0

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Review date: 18 Oct 2007 | AXIMA-TOF2
The next generation in MALDI CID MS/MS
A TOF-TOF mass spectrometer with high energy MS/MS


The AXIMA-TOF2 is one of the most powerful tools in mass spectrometry, delivering information-rich spectra with greater sensitivity and higher confidence in identification. It is an extremely versatile and powerful TOF-TOF system, integrating workflows for a diverse range of analytical needs.

Key benefits and features
  • Delivers the highest energy collisions (CID with laboratory energy of 20keV) to unlock more information with higher sensitivity.
  • Incorporates novel ion gate technology for high resolution precursor ion selection, simplifying TOF-TOF spectra and data interpretation, even in the presence of complex mixtures.
  • Opens new horizons in analytical research from peptide characterisation, protein biomarker discovery and lipidomics to polymer characterisation.
  • Helps to increase sample throughput and data quality with intelligent results-dependent analysis.