BRAND / VENDOR: Agilent

Agilent, 125-1034LTM, J&W DB-1 GC Column, 30 m, 0.53 mm, 3.00 µm, LTM column module

CATALOG NUMBER: 125-1034LTM

Regular price$0.99
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Product Description

J&W DB-1 GC Column, 30 m, 0.53 mm, 3.00 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: 3 µm
Format: LTM
Inner Diameter (ID): 0.53 mm
Length: 30 m
Phase: DB-1
Polarity: Low Polarity
Temperature Range: -60 °C-260/280 °C
UNSPSC Code: 41115710
USP Designation: G2
With Smart Key: No

**********The following product description is generated by AI and is for reference only. If you have any questions, please contact customer service.**********
The Agilent J&W DB-1 GC Column with LTM module offers high-performance capillary gas chromatography for a wide range of analytical applications. Featuring a non-polar 100 percent dimethylpolysiloxane stationary phase, this column is ideal for analyses of hydrocarbons, pesticides, volatile organics, and environmental pollutants. With a length of 30 meters, an internal diameter of 0.53 millimeters, and a film thickness of 3.00 micrometers, it ensures excellent resolution, sensitivity, and reproducibility for both trace-level and high-concentration samples.

The integrated Low Thermal Mass column module allows for rapid temperature programming, enhancing sample throughput and reducing cycle times. It is suitable for routine quality control, research laboratories, petrochemical analysis, food safety testing, and environmental monitoring. This GC column is designed for seamless compatibility with Agilent LTM Series II systems and other compatible gas chromatographs, providing both flexibility and reliability within existing workflows. Additionally, it can be coupled with detectors such as FID, ECD, and MS for diverse analytical demands. This solution is an optimal choice for laboratories requiring robust performance, reproducible results, and fast analysis for non-polar compound separations.

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