Lasany LI-5500 FTIR Spectrometer
The Lasany LI-5500 FTIR Spectrometer is a high-performance benchtop Fourier Transform Infrared (FTIR) analytical instrument designed for rapid identification of chemical compounds and molecular structures. It is widely used in pharmaceutical, chemical, environmental, academic, and research laboratories for qualitative and quantitative material analysis.
Equipped with a high-sensitivity DTGS detector, single-beam optical system, and multiple sampling accessories, the LI-5500 delivers excellent spectral resolution and reliable analytical performance. It is particularly suitable for environmental studies, including atmospheric gas analysis of carbon dioxide, methane, and water vapor, as well as routine laboratory quality control and research applications.
Product Specifications
| Product Name | FTIR Spectrometer |
|---|---|
| Brand | Lasany |
| Model | LI-5500 |
| Form Factor | Benchtop |
| Spectral Range | 7800 – 350 cm-1 |
| Resolution | 0.5 cm-1 |
| Detector Type | DTGS |
| Beam Type | Single Beam |
| Sampling Accessories | ATR, Gas Cell, Reflectance |
| Applications | Chemical, Pharmaceutical & Research Laboratories |
| Condition | New |
| Packaging | Wooden Box |
Key Features
- High-performance benchtop FTIR spectrometer for molecular analysis
- Wide spectral range of 7800–350 cm-1 with 0.5 cm-1 resolution
- High-sensitivity DTGS detector for accurate spectral measurements
- Supports ATR, Gas Cell, and Reflectance sampling accessories
- Ideal for environmental monitoring and atmospheric gas analysis
- Suitable for pharmaceutical, chemical, research, and academic laboratories
Applications
The Lasany LI-5500 FTIR Spectrometer is widely used in pharmaceutical quality control, chemical analysis, environmental monitoring, polymer characterization, forensic science, academic institutions, and research laboratories. It is particularly effective for identifying unknown compounds, analyzing functional groups, and monitoring atmospheric gases such as carbon dioxide, methane, and water vapor.
Working Principle
The FTIR spectrometer works by passing infrared radiation through a sample and measuring the wavelengths absorbed by different molecular bonds. The resulting infrared spectrum serves as a unique molecular fingerprint, allowing precise identification of chemical compounds and functional groups. Fourier Transform processing converts the measured interferogram into a high-resolution spectrum for accurate qualitative and quantitative analysis.