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Thermo Scientific ARL EQUINOX 100 X-ray Diffractometers

Brochures and specifications | 2023 | Thermo Fisher ScientificInstrumentation
X-ray
Industries
Pharma & Biopharma, Materials Testing, Energy & Chemicals
Manufacturer
Thermo Fisher Scientific

Summary

Significance of the Topic

Benchtop X-ray diffraction (XRD) instruments democratize crystal structure and phase analysis by offering compact, cost-effective solutions for both research and industrial laboratories. Real-time data acquisition and versatile sample handling expand the applicability of XRD from routine quality control to dynamic in situ studies and teaching applications.

Objectives and Study Overview

The ARL EQUINOX 100 was developed to deliver high-performance structural and phase analysis in a small footprint. Key goals include rapid full-pattern acquisition, minimal maintenance through a stationary geometry, and flexible measurement modes (reflection and transmission) for diverse sample types.

Methodology and Instrumentation

  • Curved Position Sensitive Detector (CPS) enabling simultaneous acquisition over a 110° 2θ range without scanning.
  • Low-power microfocus X-ray source with focusing mirror to maximize beam intensity at the sample.
  • Fixed focal length and no moving parts ensure robust operation and eliminate routine realignment.
  • Reflection and transmission geometries accommodate powders, bulk materials, thin films, capillaries, and temperature or atmosphere-controlled cells.
  • Sample incidence angle adjustment supports small-angle measurements and grazing incidence XRD (GIXRD).

Used Instrumentation

  • Thermo Scientific ARL EQUINOX 100 bench-top X-ray diffractometer.
  • Curved Position Sensitive Detector (CPS).
  • Microfocus X-ray tube with mirror focusing system.
  • Range of sample stages: fixed, spinning (reflection/transmission), capillary, GIXRD thin-film stage, automatic 6-position changer.
  • Temperature-controlled stages (BTS500: ambient–500 °C, BTS150: –10 °C–150 °C) and controlled-atmosphere cell.
  • SolstiX XRD Software with Security Suite for 21 CFR Part 11 compliance.

Key Results and Discussion

Rapid pattern acquisition in as little as 5–10 seconds demonstrates exceptional speed for a benchtop device. High intensity from the microfocus source yields strong signal-to-noise ratios, enabling:
  • Phase identification and quantitative analysis of powders and bulk materials.
  • Percent crystallinity calculations and crystal structure solutions.
  • Real-time monitoring of dynamic processes such as high-temperature phase transitions and thin-film interference phenomena.

Benefits and Practical Applications

  • Robust, low-maintenance design with no moving optics reduces downtime.
  • Versatile sample exchange without realignment accelerates workflow.
  • Dynamic in situ studies under variable temperature, pressure, or atmosphere for materials research.
  • Grazing incidence XRD and X-ray reflectometry (XRR) for thin-film characterization.
  • Compliant software environment supports pharmaceutical quality assurance.

Future Trends and Opportunities

Anticipated developments include integration with laboratory automation for high-throughput screening, expanded environmental control modules for combined thermal and pressure experiments, and AI-driven data analysis pipelines to enable predictive real-time decision-making. Enhanced user interfaces and cloud connectivity will further extend the reach of benchtop XRD in industrial process control and educational settings.

Conclusion

The Thermo Scientific ARL EQUINOX 100 XRD combines compact design, real-time full-pattern acquisition, and flexible sample handling to meet the demands of modern analytical chemistry. Its robust, low-maintenance architecture and comprehensive software compliance features make it a versatile tool across research, quality control, and teaching environments.

References

Not applicable

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