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Nano Particle Analyzer LZ-NPA-A101 Catalog

Overview

Nano Particle Analyzer LZ-NPA-A101 is an advanced characterization system designed for accurate measurement of nanoparticle size distribution, zeta potential, and colloidal stability. Utilizing Dynamic Light Scattering (DLS) and Electrophoretic Light Scattering principle, the analyzer delivers rapid and reliable results for research, product development, and quality control applications. Engineered for laboratories working with nanomaterials, emulsions, suspensions, polymers, pharmaceuticals, and biotechnology samples, the system provides high-sensitivity analysis across a wide particle size range while ensuring excellent repeatability and ease of operation.

Specifications :
Measurement Principle Electrophoretic Light Scattering (ELS)
Particle Size Range 1 – 10,000 nm
Zeta Potential Range 1-500 mV to +500 mV
Measurement Concentration Range 0.1mg/ml--100mg/ml (Reference to sample)
Accuracy Error ≤1% (CRM D50)
Repeatability Error ≤1% (CRM D50)
Electrophoretic Mobility Range >+20µm.cm/V.s
Conductivity 200mS/cm (Reference to sample)
Laser Source 635 nm Semiconductor Laser
Detector High-Sensitivity Photomultiplier Tube
Scattering Angle 90°
Sample Volume 1 – 4 mL
Temperature Range 5 – 90°C
Temperature Accuracy ±0.1°C
Analysis Time < 5 minutes
Digital Correlator 100ns-10ms
Operation Mode Fully automated
Operating Software Windows-Based Intelligent Analysis Software
Test Reports 10^11 dynamic linearity, up to 10,000 channels
Dimensions 600 x 380 x 230 mm
Weight 12 kg
Features :

  • Photon Correlation DLS Nanoparticle Size and Zeta Potential Analyzer
  • Optical Path system
  • Simultaneous nanoparticle size and zeta potential analysis
  • Advanced Dynamic Light Scattering technology
  • Electrophoretic Light Scattering
  • Wide measurement range
  • High sensitive signal to noise ratio
  • Speed data collection
  • Fast analysis cycle
  • High-sensitivity photomultiplier detection system
  • Precision temperature control
  • User-friendly software
  • Compact laboratory design

Applications :

Ideal for measuring particle size and distribution in nanoparticles, colloids, emulsions, polymers, and pigments. It is widely used in nanomaterials research, pharmaceutical and biotech formulations, coatings, cosmetics, and quality-control labs. Its fast, precise analysis supports stability studies, aggregation monitoring, and routine R&D.

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