
Instrument Introduction
Great10The Fourier transform infrared spectrometer is a product carefully independently developed by the company. It has the characteristics of simple operation and easy maintenance, and is an indispensable spectral analysis instrument in industries such as materials science, biomedicine, petrochemicals, and food safety. At the same time, it is also an essential laboratory analysis instrument for related majors in universities, research institutes, and other institutions.Since its listing, it has occupied the domestic market and won the support and trust of a large number of users.
Experimental Principle
By using the principle of interferometer interference frequency modulation, the light emitted by the light source is converted into interference light through a Michelson interferometer, and then the interference light is irradiated onto the sample. The receiver receives the interference light with sample information, and the computer software performs Fourier transform to obtain the spectral image of the sample.
Instrument Features
Technological advancement, overall design is reasonable and stable
1.The interferometer adopts an electromagnetic driven Michelson interferometer, which has continuous dynamic adjustment function and does not require optical compensation. Automatically optimize system energy without manual adjustment;
2.Sealed interferometer design with automatic protection reminder device, more in line with ergonomic principles and easy to observe. The instrument can replace the desiccant without opening the cover, making maintenance simpler.
3.The core components such as light source, beam splitter, and detector are all imported;
4.Using a gold-plated reflector with a large aperture as the moving and fixed mirrors of the interferometer, it has excellent energy efficiency;
5.Off axis mirror adopts SPDTCutting technology with excellent optical efficiency and system consistency;
6.The main components are installed using needle positioning, without the need for adjustment, greatly enhancing the stability of the instrument and reducing maintenance costs;
7.The push-pull sample compartment door design greatly reduces the impact of water and carbon dioxide in the external air on the experimental test resultsDisturb.
8.24 Bit, 500KHzThe A/D conversion, high-speed USB 2.0 interface, and USB 3.0 compatible high-performance electronic system enable real-time acquisition of spectral data, ensuring the authenticity and reliability of the data;
9.Large sample compartment design, convenient for connecting various accessories such as ATRAccessories, diffuse reflection accessories, planar reflection accessories, gas pool, etc
10.Adopting an efficient and energy-saving electrical system design, the entire machine operates normally with a power consumption of less than 30WGreen, safe and energy-saving;
11.The instrument is designed to be compact and small, with an overall weight of only 14KgSave laboratory space;
Powerful operating software design
1.Intelligent human-computer interaction design, intuitive and simple system interface, whether you have been exposed to Fourier transform infrared software or not, you can quickly get started and operate proficiently;
2.Spectral data collection preview full monitoring mode, with a clear view of the collection process;
3.We can provide multiple professional infrared spectrum libraries (approximately 22)Wanzhang, covering various industries, meets the needs of regular searches, and users can also customize new spectral libraries for searching, which is flexible and convenient.
4.The operating software includes baseline calibration, data conversion, multi-component quantification, curve peak fitting, H20/CO2Automatic compensation, absorbance transmittance conversion, KK conversion, peak calibration, arithmetic operation, Y-axis normalization function, QC comparison, basic analysis and other functions; Supports more than ten formats such as CSV, SPA, DPT, TXT, etc; Supports arbitrary switching between wavenumber cm-1 and wavelength um.
Application Industry
Testing of food, drugs, and their packaging materials
Identification of Polymer Materials such as Plastic, Rubber, Nylon, Resin, etc
Asphalt traceability and SBSAssay
Determination of fatty acid methyl ester content
Determination of structural cluster composition of mineral insulating oil and lubricating oil
Identification and determination of typical unconventional additives in automotive gasoline
Measurement of Carbon and Oxygen Content in Silicon Crystals
Textile fiber identification
Crystal QValue determination
Measurement of building glass parameters
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