SENS Advanced Mass SpectrometryHORIBA
HORIBA Solutions / EMGA-Expert HORIBA for oxygen, nitrogen and hydrogen
Inert gas fusion

EMGA-Expert HORIBA for oxygen, nitrogen and hydrogen

High performance analyzer for O, N and H in solid metals and materials, with speed, precision and operational navigation.

O/N/Hthree elements
NDIRoxygen
TCDnitrogen and hydrogen
EMGA-Expert Horiba Analyzer
EMGA-Expert Horiba Analyzer
Summary

The EMGA-30E/20E configurations use inert gas fusion, NDIR and TCD to convert and measure oxygen, nitrogen and hydrogen.

Solution overview

Control of interstitial gases in materials

Small variations of O, N and H can alter ductility, resistance and performance. EMGA-Expert is designed for quick and accurate measurements across a wide range of materials.

Applications

Primary applications

01

Steel and superalloys

Control of production gases and R&D.

02

Titanium

Quality of alloys and raw materials.

03

Ceramics and powders

Characterization of advanced materials.

Key features

Resources and settings

01

Wide analytical range

Settings for lower levels and higher concentrations.

02

Assisted navigation

Guides to analysis, maintenance and recovery.

03

Automation options

Automated sampling and flow possibilities.

Reference data

Technical view

This summary supports preliminary evaluation; the final configuration must account for the sample matrix, method, analytical range and throughput.

TemplatesEMGA-30E / EMGA-20E
ElementsO, N and H according to configuration
PrincipleInert gas fusion
DetectoresNDIR and TCD
Frequently Asked Questions

Technical information

Does EMGA-Expert measure the three elements on the same platform?

Yes, in the appropriate O/N/H configurations, with specific detectors for the generated gases.

Which carrier gas is used?

Helium is common; options depend on the configuration and method.

Is it suitable for titanium?

Yes. Titanium and reactive alloys are among the important applications for O/N/H control.

Application assessment

Inform the matrix, analytes or molecules of interest, expected range and volume of samples. SENS specifies the applicable configuration.