---
type: "WebPage"
title: "Remote analysis and characterization laboratory"
description: "You want to carry out an analysis or characterization by remote means What is remote analysis or characterization? In an industrial context where reactivity and precision are essential, remote analysis and characterization offer a high-performance alternative to traditional procedures. At..."
resource: "https://filab.fr/en/our-services/our-analysis-services/chemical-analysis-laboratory/remote-analysis-characterization-laboratory/"
tags: ["EN", "pll_679cd7ff7098e", "Anaïs DECAUX"]
timestamp: "2025-12-31T08:32:33Z"
published: "2025-01-31T14:56:48Z"
language: "en"
author: "Laure Durieux"
---

# Remote analysis and characterization laboratory

## You want to carry out an analysis or characterization by remote means

### What is remote analysis or characterization?

In an industrial context where reactivity and precision are essential, **remote analysis and characterization** offer a high-performance alternative to traditional procedures. At the FILAB laboratory, we put our expertise and cutting-edge technologies at your disposal to support you without having to travel.

### Remote support for laboratories and R&D centres

Laboratories and research and development (R&D) centres may be faced with complex analytical challenges or peak workloads that require external expertise. **FILAB provides remote support** to help you optimise your analysis and strengthen your technical capabilities:

- Technical and methodological support for your analysis projects.
- Validation and interpretation of results by our experts.
- Access to state-of-the-art equipment and complementary technologies.
- Remote training and support for your teams.
- Diagnosis and resolution of analytical problems in collaboration with your teams.

## The FILAB laboratory carries out remote analysis and characterization

For over twenty years, the FILAB laboratory has acquired a wealth of experience in [chemical analysis](https://filab.fr/en/our-services/our-analysis-services/chemical-analysis-laboratory.md) and [materials characterization](https://filab.fr/en/our-services/our-analysis-services/polymer-materials-analysis-laboratory/laboratory-material-testing/), whatever the analysis technique required: [GC-MS](https://filab.fr/nos-moyens-techniques/laboratoire-analyses-chromatographie-gc-ms.md), [HPLC-MS/MS](https://filab.fr/nos-moyens-techniques/laboratoire-analyses-chromatographie-liquide-hplc/laboratoire-analyses-hplc-ms.md), [HPLC-UV](https://filab.fr/nos-moyens-techniques/laboratoire-analyses-chromatographie-liquide-hplc/laboratoire-analyses-hplc-uv.md), [ICP-MS, ICP-AES](https://filab.fr/nos-moyens-techniques/laboratoire-danalyses-par-icp-icp-ms-et-icp-aes-icp-oes.md), [CLI](https://filab.fr/nos-moyens-techniques/laboratoire-analyses-chromatographie-ionique.md)…

FILAB supports you throughout the remote analysis and characterization process. We support industries in the **aeronautics, space, medical devices, cosmetics, pharmaceuticals, transport, energy and nuclear**, luxury goods, defence and automotive sectors with their analysis and characterisation needs.

## Why choose remote analysis with FILAB?

Remote analysis and characterization offers a number of advantages:

- **Time-saving and rapid response**: no need to travel, you can follow your analyses live.
- **Advanced technical expertise**: access to state-of-the-art analytical equipment.
- **Flexibility and adaptability**: tailor-made services to suit your constraints.
- **Guaranteed confidentiality**: your data and samples are treated with the utmost security.
- **Transparency and collaboration**: thanks to real-time monitoring and screen sharing, you can communicate seamlessly with our experts.

Support for laboratories and R&D centres: specific assistance to boost your analytical capabilities.

### Examples of remote analysis and characterization

## Chemical analysis

**Infrared spectroscopy (FTIR)** for the identification of organic and polymeric materials

**ICP-OES and ICP-MS** for analysis of trace elements and the chemical composition of materials

**Mass spectrometry (GC-MS, LC-MS)** for the detection and quantification of trace chemicals and contaminants

**CHONS** analysis for the quantification of chemical elements in organic materials

## Characterization of materials

**Scanning electron microscopy (SEM-EDX)** for observing microstructures and elemental analysis

**Chromatography (GPC/SEC)** for studying polymers and their molar mass distribution

**X-ray diffraction (XRD)** for the identification of crystalline phases and the characterization of mineral structures
