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Wet Laser Particle Size Analyzer LMWLA-A103 is equipped with 0.1 to 2000 µm measurement range. Its advanced optical configuration with dual lens filtering ensures enhanced analysis across broad particle range. Its dustproof, shockproof build with dew point detection delivers reliable performance in tough environments. It features quick-change viewing window and boiling-type cell for fast setup and efficient dispersion. Our Wet Laser Particle Size Analyzer is ideal for pharmaceuticals, chemical, ceramics and mining industry.
Specifications
| Measurement Range | 0.1 to 2000 µm |
| Detector Channels | 70 |
| 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 | 1050×320×335mm |
| Weight | 46 kg |
Features
Computer controlled operation
Micro circulation system
Automatic optical path calibration
Imported fibre laser
Integrated Safety Control
Bubble-free measurement
Applications
Wet Laser Particle Size Analyzer LMWLA-A103 is suitable for particle size analysis in pharmaceuticals, ceramics, pigments, inks, coatings, cement, catalysts, food additives, and metal or non-metal powders.
Selection Guide
Wet Laser Particle Size Analyzer LMWLA-A103 is a high-precision instrument designed for analyzing fine particle distributions in various liquid suspensions. Based on research studies, this model is commonly used in pharmaceutical formulations, nanomaterial characterization, ceramics, pigment dispersions, and food emulsions, where accurate wet dispersion and particle analysis are crucial. It features a wide measurement range, high-resolution detector channels, and fast testing capabilities suitable for labs requiring frequent, high-throughput analysis. The model complies with international standards such as ISO 13320 (laser diffraction methods) and supports GLP/GMP documentation, which is essential for regulatory environments. Customers can select this model based on requirements for high-accuracy measurements, compatibility with aqueous or non-aqueous media, and the need for certified, research-grade instrumentation.
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