Flow Cytometer LX102FCM

Description

Flow Cytometer LX102FCM is a high-performance system with triple-laser, 15-channel fluorescence detection, delivering high-resolution and stable analysis. It enables fully automated, high-throughput operation with real-time processing up to 50,000 events per second. The system features automatic fluorescence compensation, accurate volumetric counting, and supports both 40-tube racks and 96-well microplates for efficient workflow.

Specifications

Laser
Up to 3 lasers 488 nm (60 nw), 638 nm (80 nw), 405 nm (100 mw)
Single range
Maximum 10⁷
Detector
APD
Fluorescence resolution
CV < 2%
Fluorescence sensitivity
FITC < 50 MESF, PE < 30 MESF, APC < 30 MESF
Fluorescence linearity
≥ 0.99
Forward scattered light resolution
< 0.45 µm
Detection particle range
0.2 - 50 µm
Carryover rate
< 0.1 %
Detection speed
> 50000 Events
Injection speed
Low: 15 µl/Min, Medium: 30 µl/Min
High1: 60 µL/Min, High2: 90 µl/Min, High3: 120 µl/Min
Adjustable speed range: 15 - 120 µl/Min
Injection mode
Single tube manual sampling
40 Tubes auto sampler with single sample mixing function
96 Holes plates
PC
Memory 8 G/HDD, 1T/27 inch monitor
External dimension
760 x 450 x 470 mm
Net weight
50 Kg
Features
  • Three lasers, 15-channel fluorescence detection
  • High-resolution, high-sensitivity, and stable optical performance
  • Fully automated acquisition with synchronized collection and real-time analysis
  • High-throughput processing up to 50,000 events/sec injection rate
  • Database-driven automatic fluorescence compensation (no reconfiguration required)
  • Absolute volumetric counting via precision plunger pump system
  • Automated sampling for 40-tube racks and 96-well microplates
Applications
  • Used for rapid, quantitative analysis of cells, including immune phenotyping, cell cycle analysis, apoptosis studies, and biomarker detection in clinical and research applications. It is widely applied in oncology, immunology, stem cell research, and microbial analysis for accurate cell characterization and disease monitoring.