Micron-level detection capabilities make cleanliness analysis simpler
FASMEI launched the XRF-P1 metal particle element analyzer, which is designed to provide precise cleanliness foreign particle detection solutions for automotive parts, lithium batteries, semiconductors and other industries. It can analyze metal particles, non-metal particles and fiber particles above 5μm with one click, in line with ISO16232/VDA19 international standards.

Four core advantages, redefining detection efficiency
- Multi-station synchronous detection: 1-6 filter membrane samples can be analyzed at a time, and the batch processing efficiency is increased by 6 times, which is suitable for the cleanliness laboratory and production line large-scale cleanliness quality control needs.
- Micron-level detection accuracy: Using a micro-focused X ray tube, with a ≤20μm spot, accurately capture micron-level metal foreign matter (such as Fe/Cu/Zn particles).
- Pre-treatment-free design: No vacuum or particle fixation is required, and inexperienced operators can master it in 30 minutes, greatly reducing the operating threshold.
- Intelligent analysis system: Built-in automotive / battery industry-specific element database, automatically generates Chinese and English test reports, and visualizes the number of particles, element content, spectrum, and particle size data.
Technical key points at a glance
- Analytical element range: covers Al (13) to U (92) , including major metals and some non-metallic elements in the periodic table.
- Detection capability: can identify metal particles, non-metallic foreign matter and fiber impurities of ≥5μm .
- Compliance: fully compliant with international cleanliness testing standards such as ISO16232 and VDA19 .
- Quick detection of copper and zinc particles
- Quick positioning and elemental analysis of metal particles
- Target particle elemental analysis can be performed manually or fully automatically.
- Analysis standards can be customized
- Custom element database
- SQLDatabase management

Applicable industry scenarios
- New energy field: Detection of copper and zinc particles in positive and negative electrode materials of lithium batteries to prevent the risk of diaphragm penetration.
- Automotive industry: Analysis of wear particle composition of engine parts and foreign body tracing in hydraulic systems.
- High-end manufacturing: Identification of surface contaminants in semiconductor devices and cleanliness certification of precision aerospace components.




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