Instrument in design: Mini 3D

measuring range: 0,5-2000 µm

AWK 3D

measuring range: 0,2 - 31,5 mm 

2DiSA

measuring range: 0,5 - 2000 µm 

IPS K

measuring range: 0,4 - 300 µm 

IPS UA

measuring range: 0,5 - 2000 µm 

Averager

For particles up to 2 mm

IPS T

measuring range: 0,4 - 300 µm 

AWK D

measuring range: 50 - 4000 µm 

AWK B

measuring range: 1 - 130 mm 

IPS SAM

measuring range: 0,4 - 300 µm 

IPS L

measuring range: 0,2 - 600 µm 

IPS LCW

measuring range: 0,2 - 600 µm 

IPS U

measuring range: 0,5 - 600 µm 

IPS A

measuring range: 200 - 2000 µm 

Analyzers

Quality confirmed by ISO 9001 cert.

 

 

 

 

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KAMIKA Instruments

Infoline: +48 22 666 93 32

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measuring range

Using experience from the exploitation of  AWK 3D analyzer, commercially available for a few years,  A CONCEPTUAL MODEL OF mini 3D analyzer was developed. These are analyzers, which measure the particles in three-dimensional way. AWK 3D has a measuring range from a few hundred microns to 30 mm, and mini 3D  measures from a fraction of microns to 2 mm.

 

KAMIKA's 30 year experience in feeding micro particles in the air was included in the designing of mini 3D. There are two feeders used in the analyzer: Automatic and Ultrasonic that, together with the entire control of the feeding process, are known from the IPS UA and 2DiSA devices.

 

Using 3D mini analyzer allows you to accurately describe each substance in the manner previously impossible.

 

KAMIKA Instruments within several months plans to launch production of analyzers for measuring the three-dimensional shape and size of particles of micron. This project intends to implement in the competition announced on April 2, 2015, by the National Research and Development Centre (NCBiR),  for funding of projects under Activity 1.1 "R & D Projects  of enterprises", the sub-activity 1.1.1 "Industrial research and development work carried out by the company" (ie. Fast tracking).
 
Companies interested in using 3D mini analyzer please contact us.

 

3D measurement of microparticles is feasible!
06 March 2015

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