The best particle diameter distribution measurement device to perform the characteristics evaluation of nanoparticles and fine particles with one click litesizer-Anton Paar GmbH

155761 | The best particle diameter distribution measurement device to perform the characteristics evaluation of nanoparticles and fine particles with one click litesizer
Anton Paar GmbH


Price (excluding tax)

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Model Description

■ Model: litesizer 500 ・ Particle characteristic evaluation from NM to µm ・ Particle diameter measurement by dynamic light scattering method at three measurement angles ・ Zeta potential measure using a patented CMPALS technology ・ Measurement of molecular weight and refractive index


Model Filter

You can search for other models from each index. The displayed value is the value of the currently selected part number.

Maximum concentration of zeta potential sample

Maximum conductive rate of Zeta Priad Sample

Maximum particle diameter concentration

Minimal concentration of molecular weight sample

Minimal concentration of zeta potential sample

Molecular weight accuracy

Molecular weight measurement angle

Molecular weight measurement principle

Molecular weight measurement range (mass)

Molecular weight measurement range (particle diameter)

Particle diameter measurement angle

Particle diameter measurement principle

Particle diameter measurement range

Particle diameter minimum concentration

Particle diameter minimum sample amount

Particle size accuracy

Permeability certainty

Repeat molecular weight

Repeated particle diameter accuracy

The minimum amount of transmem on the permeability

Transparent permeability measurement range

Zeta Captricity Measurement Principles

Zeta Code of Zeta

Zeta Power Stage Repeat accuracy

Zeta Power of Swimming Movement

Zeta Power of particle diameter range

Zeta potential measurement range

Zeta potential minimum sample amount

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  • Part Number

    155761




*Please note that we may not be able to accommodate sample requests.

The best particle diameter distribution measurement device to perform the characteristics evaluation of nanoparticles and fine particles with one click litesizer 155761's performance table

Items marked with have different values ​​depending on the model number.

Product Image Price (excluding tax) Maximum concentration of zeta potential sample Maximum conductive rate of Zeta Priad Sample Maximum particle diameter concentration Minimal concentration of molecular weight sample Minimal concentration of zeta potential sample Molecular weight accuracy Molecular weight measurement angle Molecular weight measurement principle Molecular weight measurement range (mass) Molecular weight measurement range (particle diameter) Particle diameter measurement angle Particle diameter measurement principle Particle diameter measurement range Particle diameter minimum concentration Particle diameter minimum sample amount Particle size accuracy Permeability certainty Repeat molecular weight Repeated particle diameter accuracy The minimum amount of transmem on the permeability Transparent permeability measurement range Zeta Captricity Measurement Principles Zeta Code of Zeta Zeta Power Stage Repeat accuracy Zeta Power of Swimming Movement Zeta Power of particle diameter range Zeta potential measurement range Zeta potential minimum sample amount
The best particle diameter distribution measurement device to perform the characteristics evaluation of nanoparticles and fine particles with one click litesizer-Part Number-155761 Available upon quote 70 %W/V (dependent on samples) 200 50 %W/V (dependent on samples) 0.1 mg/ml (liza team) 0.1 mg/ml (liza team) +/- 10 % 90 Static light scattering method (SLS) 980 DA ~ 20 MDA Diameter 40 nm or less 15 °, 90 °, 175 ° Dynamic light scattering method (DLS) 0.3 NM ~ 10 µm (diameter) 0.1 mg/ml (liza team) 12 +/- less than 2 %(NIST standard substances) +/- less than 1 % +/- 5 % +/- less than 2 %(NIST standard substances) 15 0 to 100 % Electric swimming light scattering method (ELS) / CMPALS +/- less than 10 % +/- 3 %AD2 10-11 ~ 2 × 10-7 m²/v · S 3.8 nm ~ 100 µm (diameter) > = +/- 1,000 MV 50 µL (dependent on sample viscosity)

There are 2 models for this product.

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