
Pulse Fourier Transform NMR Spectrometer
A pulse Fourier transform NMR spectrometer used to observe the chemical shift and hyperfine structure of the proton spectrum and to carry out chemical structure and molecular structure analysis. A pneumatic sample...

Product overview
What This Product Is And Who It Is For
A pulse Fourier transform NMR spectrometer used to observe the chemical shift and hyperfine structure of the proton spectrum and to carry out chemical structure and molecular structure analysis. A pneumatic sample replacement system handles sample exchange, which keeps throughput steady in a teaching laboratory or an analytical service where many samples run in sequence.
Problems It Solves
- Manual sample change slows a teaching session, which pneumatic replacement addresses
- Continuous wave instruments are slow to acquire a spectrum, which pulse Fourier transform operation resolves
- Structure determination without NMR relies on indirect evidence, which direct spectral observation replaces
Who It Is For
- University chemistry and pharmacy departments
- Analytical and contract testing laboratories
- Chemical and pharmaceutical research groups
- Laboratory equipment distributors
- Government and institutional laboratory buyers
Key benefits
Why Buyers Choose It
- Pulse Fourier transform operation acquires the full spectrum per pulse rather than sweeping, which shortens acquisition
- Proton chemical shift and hyperfine structure observation covers the core teaching and analytical requirement
- Pneumatic sample replacement keeps sample exchange fast and repeatable across a run
- Chemical and molecular structure analysis in one instrument serves both research and teaching laboratories
Application scenarios
Where It Is Used
Scenarios
- University teaching laboratories running NMR practicals
- Analytical laboratories performing structure determination
- Chemical and pharmaceutical research
- Quality control laboratories confirming molecular structure
- Institutional laboratory equipping programmes

Technical features
How It Is Built
- Observation of chemical shift and hyperfine structure in the proton spectrum
- Chemical structure analysis and molecular structure analysis
- Pulse Fourier transform NMR operation
- Pneumatic sample replacement system
Specifications
Technical Data
| Product Type | NMR spectrometer |
|---|---|
| Operating Principle | Pulse Fourier transform |
| Primary Observation | Chemical shift and hyperfine structure of the proton spectrum |
| Analysis Functions | Chemical structure analysis and molecular structure analysis |
| Sample Handling | Pneumatic sample replacement system |
Quality and compliance
Quality Control And Certification
Quality Control
- Spectral resolution is verified against a reference sample at commissioning
- Sample replacement operation is function-tested
- Field stability is checked during installation
- Service and calibration intervals are defined in the system documentation
Customisation and comparison
Options And Alternatives
Customisation Options
- Configuration and accessory selection
- Installation and commissioning support arrangement
- Manual and software language
- Site preparation guidance
- Shipping and handling plan
Compared With Other Options
- Continuous wave NMR
- Pulse Fourier transform acquires the whole spectrum per pulse, which is far faster
- Manual sample change instruments
- A pneumatic sample replacement system keeps throughput steady across a teaching session or a sample run
- Indirect structure determination methods
- NMR observes chemical shift and hyperfine structure directly
Use guide
How To Use It Correctly
Step
Prepare samples in the specified tube type and solvent
Step
Load the sample through the pneumatic replacement system
Step
Run the acquisition parameters defined for the experiment
Step
Process the free induction decay with the Fourier transform routine
Step
Record instrument conditions with each spectrum for reproducibility
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FAQ
Pulse Fourier Transform NMR Spectrometer FAQ
What experiments does the spectrometer support
Observation of chemical shift and hyperfine structure in the proton spectrum, plus chemical structure and molecular structure analysis.
How are samples changed
Through a pneumatic sample replacement system, which keeps sample exchange fast and repeatable across a run.
What acquisition method does it use
Pulse Fourier transform, which acquires the spectrum per pulse rather than sweeping across frequencies.
Do you support installation
Installation and commissioning arrangements are confirmed with the order. Send your site details on WhatsApp.
What site preparation is required
Site requirements including space and environment are provided with the system documentation before delivery.
Can software and manuals be supplied in our language
Manual and software language are confirmed with your order.
Request A Quote For This Product
Send your quantity, destination market and any labelling requirement. We confirm stock, lead time and the documentation that travels with the goods.



