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LA-960 Laser Particle Size Analyzer

The most high-end class accurate and reliable laser diffraction particle sizing instrument HORIBA Partica LA-950V2 has been upgraded to the LA-960. HORIBA particle sizing instrument recognized as its strong point of submicron range measurement capability and the new model includes these advantages with some new features. HORIBA’s experience in the use of data algorithms has evolved to meet the expectations of the customer dem…

HORIBA Scientific

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Average Rating 4.6

|4Scientists have reviewed this product

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Great tool for chemists!

 

Average Rating 5.0

Application Area:

Particle Size Determination

Very intuitive unit that has been reliable through years of service. Have not had issues maintaining the instrument and accuracy has been great!

Review Date: 16 Nov 2021 | HORIBA Scientific

Good service

 

Average Rating 4.7

Application Area:

Analysis of radioactive waste

Good service

Review Date: 15 Nov 2021 | HORIBA Scientific

Average Rating 4.3

Application Area:

Determination of particle size distribution

Reliable results, quick to use and very easy to clean after use. Excellent customer service; quick help on the phone and if problems could not be solved on the phone then the technicians are quick to help.

Review Date: 5 Jul 2012 | HORIBA Scientific

Average Rating 4.3

Application Area:

Particle analysis

Wide measurement range, strong sonication unit and easy to change dispersion units.

Review Date: 20 Jun 2012 | HORIBA Scientific

The most high-end class accurate and reliable laser diffraction particle sizing instrument HORIBA Partica LA-950V2 has been upgraded to the LA-960.

HORIBA particle sizing instrument recognized as its strong point of submicron range measurement capability and the new model includes these advantages with some new features. HORIBA’s experience in the use of data algorithms has evolved to meet the expectations of the customer demanding the highest accuracy and resolution.


LA-960 Laser Particle Size Analyzer Features:

  • The dynamic wide measurement range; 0.01- 5000 microns (up to 3000 microns for wet method)
  • Guaranteed high data accuracy of ±0.6%
  • ISO13320 compliance
  • Traceability support
  • Easy and functional screen layout method expert function generates appropriate measurement conditions and reviews each analysis
  • Data correlation software available
Application eBookSpectroscopy

Raman spectroscopy: Rapid QC of healthcare products

The development of Raman spectroscopy has come a long way since its discovery in 1928. Its combination with optical microscopy in the latest, next-generation confocal Raman microscopes has enabled fast, non-destructive, non-invasive hyperspectral imaging of samples without the need for sample preparation in most cases.

In this application compendium, we look at some of the wide-ranging applications of Raman microscopy to address various formulation challenges encountered by the pharmaceutical and cosmetics industries. In particular, we consider HORIBA Scientific’s latest confocal Raman imaging microscope, the LabRAM Soleil™, designed to make Raman imaging faster and easier than ever before.

Download the free eBook to discover how Raman microscopy can yield information on molecular structures, crystal phases, polymorphisms and much more, as we cover:

  • Characterization of pharmaceuticals, including compound distribution, chemical homogeneity and more
  • Characterization of cosmetics for perfect formulations
  • Raman spectroscopy as an essential tool in pharma


Application NoteSpectroscopy

Follow-Up of Size Reduction by Homogenization and Optimization of Formulation

Some food products are in an emulsion state, defined as a heterogeneous medium consisting of fine globules dispersed in another liquid as a continuous phase. Particle size and size distribution have a direct effect on formulation stability. Homogenization reduces separation, coalescence or creaming, consequently increasing the stability of an emulsion. This application note describes the follow-up of size reduction of an emulsion composed of 30% fat in a homogenization process .

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