DF-1000 EDXRF Ore Composition Analyzer

Maxlab Equipment distributes the genuine DF-1000 EDXRF Ore Composition Analyzer. This device features a high-quality SDV detector, a top-protected anti-contamination design, and an automatic 8-sample tray, optimizing the mineral testing process for accuracy, safety, and speed.

Product Information

Breakthrough Solution with the DF-1000 EDXRF Ore Composition Analyzer from Maxlab Equipment
In the mining and geological industries, accurate determination of elemental content plays a crucial role in ore processing efficiency and commercial valuation. Understanding this need, Maxlab Equipment proudly offers a top-tier testing solution: the DF-1000 EDXRF Ore Composition Analyzer. This is a high-end benchtop energy-resolution X-ray fluorescence analyzer, optimally designed for harsh working environments and demanding absolute accuracy.
1. Advanced SDD Detector Technology for Superior Sensitivity
The core strength of the DF-1000 EDXRF Ore Composition Analyzer lies in its next-generation Silicon Displacement (SDD) detector. Compared to traditional Si-PIN detectors, the SDD detector boasts extremely high pulse counting speed and excellent energy resolution.
Thanks to its ultra-thin window structure, the device extends the analytical range from Sodium (Na) to Uranium (U), including common light elements found in minerals. Detection capabilities from trace levels (ppm) to high concentrations (100%) allow businesses to easily control both impurities and core content in raw ore.
2. Breakthrough Top Design – Challenging All Types of Powder and Liquid Samples
One of the biggest risks when operating conventional XRF machines is that powder or liquid samples may fall, leak, contaminate, and damage the detector located below. The DF-1000 EDXRF Ore Composition Analyzer has completely solved this problem with its intelligent inverted design.
The X-ray tube system and SDD detector are positioned entirely above the sample chamber. This unique design offers superior benefits:
Eliminates 100% of the risk of sample breakage damaging expensive optical components.
Minimize maintenance and routine servicing costs for businesses.
Simplify the cleaning process of the measurement chamber after each shift.
3. Process Automation with an 8-Position Sample Tray
Time is money in mineral processing and manufacturing plants. Distributed officially by Maxlab Equipment, the DF-1000 EDXRF Ore Composition Analyzer integrates an automatic sample loading system controlled by a precise servo motor.
The loading tray allows operators to place 8 samples simultaneously. The machine will automatically rotate and analyze continuously according to the pre-programmed schedule without manual intervention. This feature optimizes laboratory work efficiency, minimizes human error, and speeds up the delivery of test results.
4. Non-Destructive and User-Friendly Analysis
The device uses a direct X-ray fluorescence physical analysis method, which is completely non-destructive to the material structure. The ore sample, after measurement, remains in its original state, making it ideal for subsequent sample storage or comparison. The sample preparation process is also streamlined: the ore only needs to be finely ground into powder or compressed into pellets for direct measurement, eliminating the need for complex chemical treatments that cause environmental pollution.
Furthermore, radiation safety is prioritized with a rigorous multi-layered X-ray shielding system, ensuring absolute safety for operating technicians.
5. Diverse Practical Applications in the Mineral Industry
The DF-1000 EDXRF Ore Composition Analyzer is a crucial link in the quality control chain at:
Iron ore, copper ore, lead, zinc, bauxite, titanium mines, etc.
Mineral processing plants, deep processing facilities, and cement factories.
Service laboratories, geological inspection centers, and mineral import/export companies.
By partnering with Maxlab Equipment, customers not only receive powerful hardware but also a complete package of intelligent analysis software on Windows, supporting the creation of in-depth calibration curves for each specific type of ore.

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