This is a fully functional Horiba LA-910 particle size analyzer system in great working and cosmetic conditions with its operation and performance fully verified recently with NIST traceable standards of 200 nm and 1 um. This analyzer meets the manufacturer’s specifications.
This Horiba system includes a LA-910 analyzer, an original computer with operating software installed, and a printer. It also comes with some critical spare parts including Philips light source, Horiba H1006525001 board, 5-Phase Vexta stepping motor, tubing, O-rings, clips, and others. The analyzer also have four original manuals and one technical document, including LA-910 Instruction Manual, Program Operation Manual, Software Manual, and Maintenance Manual as well as Particle Size Technical Seminar.
The LA-910 analyzer has two light sources: 405 nm tungsten halogen lamp and 633 nm He-Ne gas laser, and silicon diode detectors for high-resolution measurement of particle size distribution for particles in sizes ranging from 20 nm to 1000 µm in 20 seconds with no need to adjust lenses.
The LA-910 uses an iterative deconvolution method to calculate particle-size distribution. The results of analysis are displayed as histograms with the measurement range divided into 80 segments that gives a highly resolved view of the size distribution and identified peaks in mixed samples with particles of different sizes.
On site inspection is welcome for serious buyer. Please contact us for any questions.
Specification:
Condition: used
Product: Horiba LA-910 Particle Size Analyzer
Particle Size Range: 20 nm to 1,000 μm
Measurement Time: ~20 Seconds
Light Source: 633 nm He-Ne laser and tungsten lamp
Detector: Silicone photo-diode detector array
Communications: RS-232C port
Operation Interface: Microsoft Windows
Power: 120 V, 1Ph
Flow Cell: Tempax glass
Ultrasonic Chamber: 40 W, 39 kHz
Circulation Pump Discharge Volume: 1,000ml /min
Stirrer: up to 1,000 rpm
Weight: ~220 lbs
Warranty: 30-Day Warranty
Handling/palletizing/crating charge: $300.
Return policy: See Terms.