The Truth Optical Technology team has over 20 years of experience in particle size characterization and application development, and enjoys a high reputation worldwide. LT3600It is a new generation of ultra high speed intelligent laser particle size analysis system developed by Truth Optics based on years of scientific research achievements. Its multiple technical performance and indicators have broken through the limitations and bottlenecks of existing laser particle size analyzers in the market, becoming a milestone product in today's particle size analyzer market.
LT3600The high-speed intelligent laser particle size analysis system has been enhanced with the following innovations and technologies:
1. Polarization filtering technology
2. Compensation and correction techniques for anomalous changes in diffraction Airy spots (ACAD)
3. Diagonal trapezoidal measurement window
4. Grid style super large angle detection technology
5. Particle size analysis mode optimization and adaptive technology
6. Dual drive injection dispersion integration technology
LT3600The excellent performance of the high-speed intelligent laser particle size analysis system optical measurement system also includes:
1. Fully comply with the ISO13320 diffraction method measurement technology standard
2. Unique optical path configuration, ultra large continuous physical measurement angle, no detection blind spots
3. Improved inversion algorithm, users do not need to choose "analysis mode", balancing extremely high resolution and stability
4. No need to replace lenses, no need to calibrate with standard samples, with a range of 0.02 micrometers to 3600 micrometers
5. Using holographic signal synchronization processing technology, real-time measurement speed can reach up to 20000 times per second, without missing diffraction information of any shape and distribution particles
6. The ultra-high stability solid-state laser light source system using automatic temperature constant technology completely overcomes the disadvantages of long preheating time and short service life of helium neon gas lasers
7. Adopting polarization spatial filtering technology, completely abandoning pinhole filters that cause poor mechanical and thermal stability
8. Metal brushed shell design, balancing durability and improving the anti-interference ability of the instrument
Technical indicators
measuring principle | Laser diffraction |
Optical model | Full range Michaelis theory and Fraunhofer theory are optional |
Particle size range | 0.02 μ m-3600 μ m, no need to replace lens, no dependence on standard calibration |
detecting system | Includes grid style ultra large angle, non-uniform cross area compensation detector array, with no blind spots in the full measurement angle range |
light source | 638nm, up to 20mW solid-state laser with integrated temperature control system |
Spatial filtering method | Non pinhole polarization filtering technology |
Optical alignment system | Intelligent fully automatic |
Measurement time | Typical value less than 10 seconds |
Measuring speed | Up to 20000 times per second |
Accuracy | Dv50 is better than ± 0.6% (NIST traceable latex standard) |
Repeatability | Dv50 better than ± 0.5% (NIST traceable latex standard) |
Laser safety | Class 1 laser products |
Computer configuration | Intel i5 processor, 4GB memory, 250GB hard drive, mouse, keyboard, and widescreen display |
computer interface | USB 2.0 or above |
Software operating platform | Windows 7 or above Professional Edition |
Operating environment temperature | 5℃-40℃ |
Operating environment humidity | 10% -85% relative humidity (no condensation) |
Power requirements | AC 220V, 50Hz-60Hz, standard grounding |
Weight of optical system | 28kg |
Optical system dimensions | 636mm x 275mm x 320mm |