BRAND / VENDOR: Agilent

Agilent, 8003-0624, FIAS standard sampling probe assembly, corrosion resistant, 1.0 mm id FEP.

CATALOG NUMBER: 8003-0624

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Product Description

FIAS standard sampling probe assembly, corrosion resistant, 1.0 mm id FEP. Suitable for inorganic acids and most organic solvents, except NMP.

Specifications:
Autosampler Compatibility: AS-90AS-90 plusAS-90AAS-91AS-93 plusAS-S10
Component Type: Probe
Inner Diameter (ID): 1 mm
Probe Material: PTFE lined epoxy polymer
UNSPSC Code: 41115400

**********The following product description is generated by AI and is for reference only. If you have any questions, please contact customer service.**********
The FIAS standard sampling probe assembly with a corrosion-resistant design and a 1.0 mm inner diameter FEP construction is engineered for robust and reliable sample introduction in flow injection analysis systems. This probe is ideal for laboratories conducting trace element analysis, particularly in environmental, clinical, and industrial applications where sample integrity and chemical resistance are critical. Its fluorinated ethylene propylene (FEP) material ensures minimal risk of contamination and superior durability when handling aggressive acids and reagents.

Optimized for seamless integration with Agilent Flow Injection for Atomic Spectroscopy (FIAS) systems, this assembly enables precise and repeatable sample aspiration, supporting high-throughput workflows. It is particularly suitable for automated sample handling in atomic absorption and atomic fluorescence spectroscopy, enhancing productivity and data quality in trace metal determinations. The probe’s construction minimizes carryover between samples, ensuring accurate results in demanding analytical environments.

Compatible with a range of Agilent FIAS modules and accessories, the assembly supports routine and advanced workflows and can be easily incorporated into existing laboratory setups. Its design makes it a valuable tool for researchers seeking efficiency, chemical resistance, and consistent performance across diverse analytical tasks.

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