NMR Instruments

Fourier 80

Advance your analytical capabilities and strengthen your curriculum with high-performance NMR in an easy-to-use, compact benchtop system. Tackle the challenges. Remove the barriers. Advance discovery.

Big things come

in small packages



The Fourier 80 can be installed in the fume hood or on the bench without the need for new infrastructure, providing easy maintenance and minimal cost of ownership.
80 MHz
The Fourier has been designed for the highest data quality and stability at 80 MHz, with excellent lineshape, resolution and sensitivity.
Adjustable temperature for the Fourier 80 allows samples to be measured from 25°C up to 60°C
Fourier 80 HD: Designed for performing complex molecular structure analysis mimicking high field NMR resolution

The Fourier 80 is an 80 MHz high-performance nuclear magnetic resonance (NMR) benchtop spectrometer designed for the routine laboratory in either research facilities or university settings.



See the Fourier 80 in action!
See how the Fourier 80 can be used in labs with high-field systems to maximize productivity.
Adjustable Temperature for Fourier 80

Fourier 80 Benefits

  • Compact footprint, designed for the routine laboratory use
  • Easy maintenance and minimal cost of ownership
  • Perform complex molecular analysis
  • Provides higher sample throughput
  • Optimized synthesis and process control directly on the bench
  • Automated data interpretation
  • Use Bruker high-field system workflows on the benchtop
  • Suitable for comprehensive range of applications
  • Reduces errors and maximizes efficiency

Technical Features

  • 80-MHz high performance, cryogen-free permanent magnet
  • Superior spectral quality for precise results
  • Automation for up to 120 samples
  • Adjustable temperature (25-60°C)
  • On-line reaction monitoring with patented temperature-controlled transfer lines and controlled reaction path
  • Pulsed field gradient
  • Full flexibility with use of TopSpin software
  • GoScan software provides pre-defined, dedicated workflows
  • Push-button operation


  • Structure verification
  • Process optimization & control 
  • Academic/Basic Research and advance discovery
  • Forensics and narcotics profiling
  • Authenticity and quality analysis of olive oil
  • Quantification of ethanol content in hand-sanitizers
  • For hands-on training in colleges and universities



All Fourier 80 related Application Notes:



Operating Frequency: 80 MHz (1H) (Corresponds to 1.88 Tesla)
Nuclei: 1H,
1H/13C, 1H/31P or 1H/129Xe
(contact us for more)
1H Sensitivity: Measured on 1% Ethyl Benzene:
1H-only systems: ≥ 240:1 or ≥ 220:1 when pulsed field gradient (PFG) incl.
1H/X systems: ≥ 180:1 or ≥ 160:1 when PFG incl.
1H/13C|19F: ≥ 110:1, optimized for the x-channel, PFG incl., with 13C: ≥ 20:1 (100% ethyl benzene) and 19F: ≥ 110:1 (0,5% TFT in CDIC3)
1H/7Li: ≥ 90:1 optimized for the x-channel, PFG incl., with 7Li: ≥ 2000:1 (1M LiBr in D2O)
Gradient strength: ≥ 0.25 T/m (25 G/cm)
Adjustable temperature: 25°C - 60°C*
Automation: PAL RSI sample changer; up to 120 samples + 12 reference samples
1H Resolution: (@ 50/0.55/ 0.11% signal height)
Standard: ≤ 0.4/ 15/ 30 Hz
HD option: ≤ 0.3/ 10/ 15 Hz
Digital Lock: External, no deuterated solvents needed
Sample Tubes: standard 5mm diameter, 7’’-long NMR tubes; compatible with Young tubes
Dimensions: ~50 cm x 70 cm x 60 cm (Height x Width x Depth)
Weight: ~94 kg
Lab Temperature: 18-28°C; Measurements at sample temperature > 40°C: 18-25°C
Lab Infrastructure needed: no liquid nitrogen or helium required
no water cooling required
power consumption typically <300 W
power: 100 – 240 V, 50 – 60 Hz
no additional venting required
AT needs compressed air or nitrogen at 5 bar max.
  *Incoming supply gas temperature must be min.5°C lower than the target temperature



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