BRAND / VENDOR: Agilent

Agilent, 19091S-733LTM, J&W HP-1ms GC Column, 30 m, 0.25 mm, 1.00 µm, LTM column module

CATALOG NUMBER: 19091S-733LTM

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Product Description

J&W HP-1ms GC Column, 30 m, 0.25 mm, 1.00 µm, LTM column module. This format is only compatible with Agilent Low Thermal Mass Series Rapid Heating/Cooling (LTM) Systems.

Specifications:
Capillary Tubing: Fused Silica
Film Thickness: 1 µm
Format: LTM
GC Column Type: GC/MS
Inner Diameter (ID): 0.25 mm
Length: 30 m
Phase: HP-1ms
Polarity: Low Polarity
Temperature Range: -60 °C-325/350 °C
UNSPSC Code: 41115710

**********The following product description is generated by AI and is for reference only. If you have any questions, please contact customer service.**********
The J&W HP-1ms GC Column, LTM column module, is a high-performance, non-polar capillary column engineered for rapid and precise gas chromatography analyses. Utilizing a proprietary dimethylpolysiloxane stationary phase with a 1.00 µm film thickness, this 30-meter column with a 0.25 mm internal diameter provides excellent separation efficiency, superior inertness, and reliable performance for trace-level and routine analyses of volatile and semi-volatile compounds. Its robust design ensures extremely low bleed, making it ideal for sensitive detection with mass spectrometry.

Designed as part of Agilent’s Low Thermal Mass (LTM) technology platform, this module enables accelerated temperature ramping and cooling, significantly reducing analytical cycle times and boosting laboratory throughput. It is particularly valuable for environmental, forensic, pharmaceutical, and food safety testing laboratories requiring reproducible and high-throughput analysis.

The module seamlessly integrates with compatible Agilent GC and GC/MS systems equipped with LTM technology, offering effortless installation and operation. It is suitable for use in both research and quality control settings, and its performance is enhanced when paired with Agilent’s automated sample injection systems and data analysis software. Researchers seeking fast, sensitive, and reproducible gas chromatography separations will benefit from this advanced column solution.

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