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Overview
HPLC System LMHLS-A201 operates at temperatures ranging from 1°C to 45°C, ensuring consistent sample conditions. Provide a flow range of 0.001–10.000 mL/min for precise fluid control during separation. Offers high sensitivity and resolution for the accurate detection of analytes. Built-in Hg lamp calibration for precise and stable wavelength measurement. Our HPLC system is an essential tool for laboratories conducting complex chemical analyses.
Features :
DAD Detector
High Sampling Rate
Large Injection Volume
Optional Column Switching
Easy to Operate
Specifications :
| Flow Rate Range | 0.001 to 10.000 ml/min |
| Maximum Operating Pressure | 45 MPa / 62 MPa |
| Maximum Injection Volume | 100 µl |
| Maximum Column Capacity | 300 mm column, 3 columns |
| Temperature Range | 1 to 45°C |
| Injector Capacity | 120 × 2 ml vials, 96-well plates compatible |
| Column Oven Temperature | 1 to 90°C |
| Column Switch | Optional |
| DAD Detector | 1024 diodes |
| Wavelength Calibration | Built-in Hg lamp for calibration |
| Maximum Sampling Rate | 160 Hz |
Applications :
HPLC System LMHLS-A201 is essential for separating, identifying, and quantifying components in complex mixtures across industries and research fields.
Selection Guide :
HPLC System LMHLS-A201 is a high-performance liquid chromatography unit designed for advanced research, analytical testing, and quality control across pharmaceutical, chemical, and biochemical laboratories. It features a wide flow rate range of 0.001 to 10.000 ml/min, making it suitable for both micro and standard-scale analyses. With a high maximum operating pressure of 45 MPa, extendable to 62 MPa, it supports high-resolution separations using longer or smaller particle-packed columns. The system allows a maximum injection volume of 100 µl, suitable for medium sample throughput, and can accommodate up to three 300 mm columns, providing flexibility for complex gradient elution and multi-component separations. Its robust design and capability to meet compliance standards and certifications make it reliable for regulated environments, ensuring accuracy, repeatability, and method adaptability in various scientific and industrial applications.