Thermo Q Exactive HF Mass Spec - High Sensitivity, Resolution, ESI/MALDI Ionization
Thermo Fisher Scientific
Details
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CategoryMass Spectrometry
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Dimension231.0cm x 61.0cm x 119.0cm
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Serial05182L
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Shipping TypeFreight
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Manufacturing2015-01-01
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Voltage / HertzDoes Not Apply / Does Not Apply
Description
The Thermo Q Exactive HF, manufactured in the United States in 2015, is a high-performance mass spectrometer designed for life science applications requiring high sensitivity and resolution. It boasts near-new condition with minimal use, showcasing exceptional functionality. This system, a crucial standalone unit or part of a larger analytical setup, has not gone through refurbishment, reflecting its excellent state. Suitable for exact mass measurements, it employs advanced ionization techniques like Electrospray Ionization (ESI) and Matrix-Assisted Laser Desorption/Ionization (MALDI), supporting precise analysis in proteomics, metabolomics, and small molecule identification.
Key Features
- High resolution and sensitivity for detailed analysis
- Advanced ESI/MALDI ionization methods
- Ideal for proteomics and metabolomics applications
- Standalone or part of analytical systems
- Near-new condition ensuring reliable performance
Specifications
- Mass Range: High-resolution over an extended range suitable for complex mixture analysis
- Ionization Techniques: Electrospray Ionization (ESI) and Matrix-Assisted Laser Desorption/Ionization (MALDI)
- Year of Manufacture: 2015
- Condition: Excellent, minimal use, operational as described
- Physical Attributes: Shipping weight 660 lbs, Actual weight 550 lbs
Weight
Imperial: 660.0 Pounds
Metric: 299.37 Kilograms
Shipping Dimensions
Imperial: 109.2 lb x 28.8 lb x 56.4 lb
Metric: 277.37 cm x 73.15 cm x 143.26 cm
Harmonized Code
90273000
Harmonized Code Details
90273000 - Instruments and apparatus for physical or chemical analysis, using optical radiations (ultraviolet, visible, infrared). Used this code because the Thermo Q Exactive HF is used for analytical measurements in mass spectrometry through optical radiation methods.
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