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AELAB EDS9800T Precious Metal Analyzer for XRF Elemental Quantification

The AELAB EDS9800T Precious Metal Analyzer is a benchtop X-ray fluorescence spectrum analyzer engineered for fast, accurate elemental quantification in precious metal testing. Designed for solid, powder, and liquid samples, the EDS9800T analyzes composition from ppm to 99.99% with 0.01% accuracy (Au≥96%). Featuring an SDD detector, digital multichannel analyzer, and qualitative and quantitative analysis software, it supports rapid multi-element evaluation for jewelry and alloy quality control.
Modles : EDS9800T
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The AELAB EDS9800T Precious Metal Analyzer is a benchtop X – Fluorescence Spectrum Analyzer designed to analyzes precious metal composition and measures elemental concentration for quality control in jewelry, bullion, and alloy verification. With an analysis range from ppm to 99.99% and 0.01% accuracy (Au≥96%), the EDS9800T quantifies trace and major elements with high repeatability.

Built around an SDD detector and digital multichannel acquisition, the AELAB EDS9800T Precious Metal Analyzer stabilizes measurement performance through selectable customized filter switches and a 5 kV to 50 kV tube voltage configuration. Fast test cycles of 5 to 60 seconds support efficient precious metal screening without compromising analytical resolution.

 

⚙️ Design & Construction

The AELAB EDS9800T Precious Metal Analyzer integrates a compact benchtop enclosure with a controlled sample chamber sized 310 × 270 × 90 mm, supporting stable positioning of solid, powder, and liquid specimens. The system includes an HD camera for visual sample alignment and inspection, enabling precise placement during XRF testing workflows. The instrument dimensions of 480 × 440 × 368 mm and weight of 36 kg support laboratory and production-floor installation.

 

🔬 Working Principle / Testing Method

The AELAB EDS9800T Precious Metal Analyzer performs X-ray fluorescence spectrum analysis by irradiating a sample with an X-ray tube operating at 5 kV to 50 kV. Emitted characteristic fluorescence signals are detected by the SDD detector and processed by the digital multichannel analyzer to quantify elemental composition. The system analyzes 82 measurable elements from sodium (Na) to uranium (U), and supports up to 26 elements simultaneously per measurement cycle (for use in the precious metals industry only).

 

💡 Key Advantages

  • The AELAB EDS9800T Precious Metal Analyzer quantifies composition across ppm to 99.99% concentration range
  • Provides 0.01% accuracy (Au≥96%) for high-confidence precious metal verification
  • Uses an SDD detector with 135 ± 5 eV resolution to improves spectral discrimination
  • Delivers rapid measurement cycles with 5 to 60 seconds test time for high-throughput workflows
  • Supports 82 elements from sodium (Na) to uranium (U), enabling broad alloy characterization
  • Measures up to 26 elements simultaneously per test cycle for multi-element quantification
  • Includes selectable customized filter switches for optimized excitation and matrix compensation

 

🔗 Connectivity & Integration

The AELAB EDS9800T Precious Metal Analyzer includes qualitative and quantitative analysis software for elemental identification and concentration quantification. The software supports standardized analytical workflows suitable for laboratory documentation, quality control reporting, and traceability-driven operations. Integration options beyond the included software are not specified in the provided catalog data.

 

🧪 Testing Applications

The AELAB EDS9800T Precious Metal Analyzer is optimized for XRF elemental quantification in precious metal and alloy testing environments. Common applications include gold purity verification, jewelry alloy composition control, bullion material authentication, and multi-element screening where rapid decision-making is required. The EDS9800T supports analysis of solid, powder, and liquid samples, enabling flexible workflows across jewelry manufacturing, recycling, assay laboratories, and material trading operations.

 

Compliance & Quality Assurance

The AELAB EDS9800T Precious Metal Analyzer is designed for controlled laboratory and industrial testing environments, with recommended operating conditions of 5 °C to 38 °C and 15% to 90% relative humidity. The power requirement supports AC220 V ± 10 V or AC110 V ± 10 V at 50 / 60 Hz. To maintain measurement stability, installation should avoid high-power electromagnetic sources and vibration interference. Certification standards (ISO / CE / GLP) and calibration traceability methods are not specified in the provided catalog data and should be verified for formal compliance documentation.

For laboratories and production teams requiring fast, accurate XRF composition verification, the AELAB EDS9800T Precious Metal Analyzer delivers stable multi-element quantification from ppm to 99.99% using SDD detection and software-based analytical processing—supporting confident precious metal testing under controlled quality assurance conditions.

Specifications :

Technical Specifications – AELAB EDS9800T Precious Metal Analyzer
Parameter EDS9800T
Instrument Type X - Fluorescence Spectrum Analyzer
Analysis Range ppm to 99.99%
Accuracy 0.01% (Au≥96%)
Sample Form Solid, powder, liquid
Tube Voltage 5kV ~ 50kV
High Voltage Power Supply 0 ~ 50 kV
Camera HD camera
Filters Selectable customized switches
Detector Type SDD
Resolution 135 ± 5 eV
Multichannel Analyzer Digital multichannel
Sample Chamber Size 310 × 270 × 90 (mm)
Test Time 5 ~ 60 sec
Measuring Element 82 elements from sodium (Na) to uranium (U) between all elements, Up to 26 elements simultaneously each time (For use in the precious metals industry only)
Analysis Software qualitative and quantitative analysis software
External Dimensions 480 × 440 × 368 (mm)
Weight 36 kg
Ambient Temperature 5 °C ~ 38 °C (Suggested that in air conditioning room)
Relative Humidity 15% ~ 90%
Power Requirements AC220V ± 10V, or AC110V ± 10V, 50 / 60 Hz
Installation Requirement No high power electromagnetic and vibration interference sources nearby
Technical Specifications – AELAB EDS9800T Precious Metal Analyzer
Parameter EDS9800T
Instrument Type X - Fluorescence Spectrum Analyzer
Analysis Range ppm to 99.99%
Accuracy 0.01% (Au≥96%)
Sample Form Solid, powder, liquid
Tube Voltage 5kV ~ 50kV
High Voltage Power Supply 0 ~ 50 kV
Camera HD camera
Filters Selectable customized switches
Detector Type SDD
Resolution 135 ± 5 eV
Multichannel Analyzer Digital multichannel
Sample Chamber Size 310 × 270 × 90 (mm)
Test Time 5 ~ 60 sec
Measuring Element 82 elements from sodium (Na) to uranium (U) between all elements, Up to 26 elements simultaneously each time (For use in the precious metals industry only)
Analysis Software qualitative and quantitative analysis software
External Dimensions 480 × 440 × 368 (mm)
Weight 36 kg
Ambient Temperature 5 °C ~ 38 °C (Suggested that in air conditioning room)
Relative Humidity 15% ~ 90%
Power Requirements AC220V ± 10V, or AC110V ± 10V, 50 / 60 Hz
Installation Requirement No high power electromagnetic and vibration interference sources nearby

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Frequently Asked Questions

1What applications is the AELAB EDS9800T Precious Metal Analyzer suitable for?
The AELAB EDS9800T Precious Metal Analyzer is used for XRF elemental composition testing in precious metals, including gold purity verification, alloy identification, and multi-element quantification.
2What sample types can the EDS9800T test?
The AELAB EDS9800T Precious Metal Analyzer supports solid, powder, and liquid sample forms.
3What is the accuracy of the AELAB EDS9800T for gold analysis?
The AELAB EDS9800T Precious Metal Analyzer provides 0.01% accuracy when Au is ≥96%.
4How fast is a typical test on the AELAB EDS9800T Precious Metal Analyzer?
The AELAB EDS9800T Precious Metal Analyzer performs testing within 5 to 60 seconds depending on the method and sample composition.
5What environmental conditions are recommended for operation?
The AELAB EDS9800T Precious Metal Analyzer operates reliably at 5 °C to 38 °C and 15% to 90% relative humidity, with installation away from strong electromagnetic and vibration interference sources.

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