Category: HPLC, FPLC, & LC/MS | Subcategory: LC-MS / LC-MS/MS
Thermo Scientific  TSQ Quantum Access Max Spectrometer With HESI-II Probe
Thermo Scientific  TSQ Quantum Access Max Spectrometer With HESI-II Probe
Thermo Scientific  TSQ Quantum Access Max Spectrometer With HESI-II Probe
Thermo Scientific  TSQ Quantum Access Max Spectrometer With HESI-II Probe
Thermo Scientific  TSQ Quantum Access Max Spectrometer With HESI-II Probe
Thermo Scientific  TSQ Quantum Access Max Spectrometer With HESI-II Probe
Thermo Scientific  TSQ Quantum Access Max Spectrometer With HESI-II Probe
Thermo Scientific  TSQ Quantum Access Max Spectrometer With HESI-II Probe
Thermo Scientific  TSQ Quantum Access Max Spectrometer With HESI-II Probe
Thermo Scientific  TSQ Quantum Access Max Spectrometer With HESI-II Probe

Thermo Scientific TSQ Quantum Access Max Spectrometer With HESI-II Probe

ITEM: 32251 In Stock
Price: $29,995.00
Finance for as low as: $668.89/mo
Free 90 Day Warranty
One Year Upgrade Available
Tested & Serviced Prior to Shipping

The Thermo Scientific TSQ Quantum Access Max Spectrometer With HESI-II Probe provides ultimate productivity for bioanalytical analysis. 
Features:

  • Ion Max source with the HESI-II heated electrospray ionization probe 
  • Unmatched sensitivity and specificity with H-SRM 
    Supports 21 CFR Part 11 compliance through Thermo Scientific LCQUAN software 
  • Extended Mass Range (EMR) and Accurate Mass (AM) models available 
  • Provides accurate mass measurements on the chromatographic timescale 
  • Analyzer control circuitry enables accurate mass measurement capabilities that are easier to use and have a greater dynamic range than those of instruments based on quadrupole/time-of-flight technology

Specifications:

Mass Range: 10–3000 daltons (Da)
Sensitivity: A 5 µL injection of a 200 fg/µL reserpine solution on a Thermo Scientific Hypersil GOLD aQ 20 X 2.1 mm 1.9µm particle packed column at a flow rate of 300 µL/min 30:70:0.02 water/methanol/formic acid will produce a minimum signal-to-noise ratio of 1500:1 for the transition of the protonated molecule at m/z 609.3 to the fragment ion at m/z 195.1 when operated in selected reaction monitoring mode (SRM) with Q1 and Q3 resolution set to 0.7 Da FWHM.

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