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Life Science
 

      

 

Nanoparticle Tracking System

Nanoparticle Tracking Analysis (NTA) is a unique method of visualising and analysing particles in liquids that relates the rate of Brownian motion to particle size. The rate of movement is related only to the viscosity of the liquid, the temperature and size of the particle and is not influenced by particle density or refractive index

The image analysis Nanoparticle tracking system (NTA) software suite allows users to automatically track and size nanoparticles on an individual basis. Results are displayed as a frequency size distribution graph and output to spreadsheet. In addition, video clips of images may be captured and archived for future reference.


LM 10

The NanoSight LM10 is ideally suited for use within research laboratories worldwide.The instrument, which is based on a conventional optical microscope, uses a laser light source to illuminate nano-scale particles within a 0.3 ml sample introduced to the viewing unit with a disposable syringe. Enhanced by a near perfect black background, particles appear individually as point-scatterers moving under Brownian motion.Polydisperse and multimodal systems are instantly recognisable and quantifiable, as are agglomerates and contaminants.


  • Nanoparticle analysis range:typically 10nm-1000nm, dependent on particle material
  • Particle type:any
  • Solvent:any non-corrossive solvent and water. A range of solvent-resistant seals are avaialable.
  • Power requirement:110-220 V
  • Laser output: 40mW at 638nm, 60nW at 405 nm, 75nW at 532 nm
  • sample volume requirements:0.3ml
  • Application:ceramic and mettalic nanoparticles,pharmaceutical nanoparticles-liposomes, viruses, carbon nanotubes, cosmetic and foodstuffs,nanoparticles in fuels and oils,chemical mechanical polishing slurries, nanotoxicology studies.

LM 10-HS

The instrument, which is based on a conventional optical microscope, uses a laser light source to illuminate nano-scale particles within a 0.3 ml sample introduced to the viewing unit with a disposable syringe. Enhanced by a near perfect black background, particles appear individually as point-scatterers moving under Brownian motion.Polydisperse and multimodal systems are instantly recognisable and quantifiable, as are agglomerates and contaminants.

Where the LM10-HS differs from the LM10 is in the camera. The LM10-HS utilises an sCMOS camera which improves the sensitivity of the standard LM10 by a factor of x100. Practically, this means that the lower limit of detection for a particular particle type has been improved by a factor of 2 when compared to the standard instrument.


  • Nanoparticle analysis range:typically 10nm-1000nm, dependent on particle material
  • Particle type:any
  • Solvent:any non-corrossive solvent and water. A range of solvent-resistant seals are avaialable.
  • Power requirement:110-220 V
  • Laser output: 40mW at 638nm, 60nW at 405 nm, 60nW at 488nm, 75nW at 532 nm
  • sample volume requirements:0.3ml
  • Application:ceramic and mettalic nanoparticles,pharmaceutical nanoparticles-liposomes, viruses, carbon nanotubes, cosmetic and foodstuffs,nanoparticles in fuels and oils,chemical mechanical polishing slurries, nanotoxicology studies.

  

 
   
   
 
 
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