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Overview
Wet Laser Particle Size Analyzer LMWLA-A100 offers 0.1 to 800 µm measurement range. It offers computer-controlled, one-click operation for easy, fast, and fully automated testing. Its advanced optical design with auto calibration ensures full-range detection with minimal adjustment time. It features anti-dry burning and mis operation protection with no bubble interference for reliable operation. Our Wet Laser Particle Size Analyzer is ideal for pharmaceuticals, paints, and ceramics.
Features :
Boiling type sample cell
Dustproof and shockproof build
Micro circulation system
Dew point measurement
Quick-change sample window
Imported fibre laser
Specifications :
| Measurement Range | 0.1 to 800 µm |
| Detector Channels | 96 |
| Sample Cell Volume | 190 to 600 mL |
| Testing Speed | Less than 1 minute per test (excluding dispersion) |
| Accuracy Error | Lesser than 0.5% |
| Repeatability Error | Lesser than 0.5% |
| Optical Calibration Time | Less than or equal to 15 seconds |
| Circulation and mixing | 100 to 33950 rpm, adjustable |
| Circulation Flow | 0 to 30 L/min, adjustable |
| Micro Circulation System Volume | Greater than 180 mL |
| Laser Wavelength | 635 nm |
| Laser Power | Greater than 10 mW |
| Dispersion Method | Ultrasonic |
| Ultrasonic Frequency | 40 KHz |
| Ultrasonic Power | 100 W |
| Dimensions | 680 × 410 × 450 mm |
| Weight | 35 kg |
Applications :
Wet Laser Particle Size Analyzer LMWLA-A100 is ideal for pharmaceuticals, ceramics, and cement industries for analysing active ingredients, sintering powders, and cement fineness during formulation and quality control.
Selection Guide :
Wet Laser Particle Size Analyzer LMWLA-A100 is a high-precision instrument designed for measuring particle size distribution in liquid suspensions using laser diffraction technology. It is widely used in research studies and experiments across various fields such as pharmaceuticals, materials science, ceramics, chemicals, and environmental science. Applications include analyzing emulsions, slurries, pigments, coatings, and nanomaterials, where accurate particle size measurement is crucial for product development and quality control. The model supports fast and repeatable testing, making it suitable for both laboratory research and industrial settings. It typically complies with ISO 13320 standards for laser diffraction and is CE certified, with calibration traceability to NIST standards, ensuring reliable performance in regulated environments. Customers should consider this model when their requirements demand certified precision, fast testing, and versatile application for wet sample analysis.