Labmate Nano Particle Size Analyzer LMNPA-A101
Labmate Nano Particle Size Analyzer LMNPA-A101 provides high-precision measurement of nanoparticles, combining advanced dynamic light scattering with stable optical and thermal control. It features an automatic thermostatic sample cell for consistent conditions, a high-purity semiconductor laser, and photomultiplier tube detection with correlator technology for accurate and repeatable results. Compact and versatile, it is ideal for nanomaterial characterization, pharmaceutical research, and biotechnology applications.
Product Info
Key Features
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Measurement range from 1 to 10,000 nm
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Automatic thermostatic sample cell for stable sample conditions
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High-purity semiconductor laser with 532 nm wavelength
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Photomultiplier tube (PMT) detection and correlator with high-fidelity signal transmission
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Advanced testing principle with high sensitivity and signal-to-noise ratio
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Stable optical path system with DC power supply
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Rapid test speed (<1 min per sample)
Technical Specifications
Specification Details Test Range 1–10,000 nm Concentration Range 0.1–100 mg/L Accuracy Error <1% Repeatability Error <1% Laser Semiconductor laser Laser Wavelength 532 nm Detector Photomultiplier tube (PMT) Scattering Angle 90° Operating Temperature Range 5–90 °C Test Speed <1 min per measurement Photon Correlator Physical channels: 512; Equivalent channels: 10,000; Baseline channels: 8 Sample Size 10×10 mm Power Consumption 100 W Power Supply 100–240 V Dimensions (L×W×H) 440 × 245 × 228 mm Packaging Dimensions 580 × 380 × 440 mm Net Weight 9.5 kg Gross Weight 21 kg Standard Accessories
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Nanoparticle Size Analyzer Software ×1
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Dongle ×1
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Power Adapter ×1
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USB Communication Cable ×1
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Cuvette Box ×1
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Ultrasonic Cleaner ×1
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Hexagon Wrench Set ×2
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Flathead Screwdriver ×1
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Cuvette Wipe Card ×2
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Lens Cleaning Paper ×5
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Wipe Card ×1
Optional Accessories
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LMNPA-A101-C1 Cuvette ×1 box
Applications
Labmate Nano Particle Size Analyzer LMNPA-A101 is employed in nanomaterial research, pharmaceutical development, and biotechnology. It is ideal for analyzing particle size distribution, quality control, formulation optimization, and stability testing in both academic and industrial laboratories.-

















