Thermo Trace GC Ultra Gas Chromatograph 230V 450C Sensitive Detection
Thermo Fisher Scientific
Details
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CategoryHPLC / FPLC / GC / CE
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Dimension65.0cm x 61.0cm x 48.0cm
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Serial620120662
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Shipping TypeFedEx Ground
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ManufacturingDoes Not Apply
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Voltage / Hertz230V / 50Hz/60Hz
Description
The Thermo Trace GC Ultra Gas Chromatograph offers high precision and functionality, tailored for modern laboratories with evolving requirements. This model, K073000000000D0, integrates various unique inlet options, including vaporizing and non-vaporizing inlets, and supports up to two injectors and three detectors, providing superior flexibility for complex analyses. Its linear heating rate of up to 1200C/min and a wide temperature range, near ambient to 450C, enhance sample run efficiency, ideal for studies involving crude oils, pesticides, and hydrocarbons. Despite being categorized as used, this unit retains full functionality and is supplied with power and data cables for seamless integration into your lab environment. Its sturdy build and high compatibility with ancillary devices make it a robust choice for users seeking increased speed and sensitivity in gas chromatography.
Key Features
- Configurable with up to three detectors
- Linear heating rate up to 1200C/min
- Supports BEST PTV and other injector types
- Temperature range: Near ambient to 450C
- Internal LAN interfacing capability
- Large Volume split/splitless technique
Specifications
- Column Oven Programmability: 7 Ramps/8 Plateaus
- Temperature Range: Near ambient to 450C
- Maximum Temperature Ramp: 120C/min
- Injectors: SSL, Packed, and Cold On-column
- Vaporizing Inlet Temperature Range: 50 to 400C
- Detectors: FID, TCD, ECD, NPD, FPD, PID, PDD
Weight
Imperial: 119.05 Pounds
Metric: 54.0 Kilograms
Shipping Dimensions
Imperial: 30.71 lb x 28.82 lb x 22.68 lb
Metric: 78.0 cm x 73.2 cm x 57.61 cm
Harmonized Code
902710
Harmonized Code Details
902710 - Gas chromatographs. This code is applicable as it encompasses laboratory instruments like chromatographs that analyze gases based on compound separation capabilities.
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