KNAUER AZURA Compact HPLC Isocratic Educational System
The KNAUER AZURA Compact HPLC Isocratic Educational System is a complete analytical High-Performance Liquid Chromatography (HPLC) solution designed for routine laboratory analysis, pharmaceutical quality control, and educational applications. Its compact design allows it to fit easily on laboratory benches while delivering reliable and accurate chromatographic performance.
Designed for teaching laboratories and routine quality control applications, the AZURA Compact HPLC system features precise isocratic solvent delivery, manual sample injection, and stable analytical performance. It is an ideal solution for universities, research institutes, pharmaceutical laboratories, and industrial quality control environments.
Product Specifications
| Product Name | Compact HPLC Isocratic Educational System |
|---|---|
| Brand | KNAUER |
| Maximum Pressure | 400 bar |
| Flow Range | 0.001 to 1 mL/min |
| Autosampler | Manual Injection |
| Usage/Application | Laboratory Use |
| Primary Applications | Pharma QC, Routine QC & Teaching Laboratories |
Key Features
- Complete analytical isocratic HPLC system
- Compact design suitable for every laboratory bench
- Precise isocratic solvent delivery for reliable analysis
- Manual injection system for simple operation and training
- Ideal for pharmaceutical quality control and routine testing
- Excellent solution for research institutes and teaching laboratories
Applications
The KNAUER AZURA Compact HPLC Isocratic Educational System is widely used in pharmaceutical quality control laboratories, academic institutions, teaching laboratories, research facilities, analytical chemistry laboratories, and industrial quality control departments for routine chromatographic analysis.
Working Principle
The system operates on the principle of High-Performance Liquid Chromatography (HPLC), where a liquid mobile phase carries the sample through a chromatographic column under high pressure. Components of the sample are separated based on their interaction with the stationary phase and are detected individually, enabling accurate qualitative and quantitative analysis.