Used CETAC U-5000AT #9113282 for sale

CETAC U-5000AT
Manufacturer
CETAC
Model
U-5000AT
ID: 9113282
Ultrasonic Nebulizer Constant Temperature Cooling System (CTCS) Interface Kit Utility Cart Consumables.
CETAC U-5000AT is an ultra-precise laser-based equipment that is specially designed to support the collection of accurate sample data. This system utilizes a special mid-IR laser to capture ultra-precise vibrational spectra as well as thermal gravimetric analysis (TGA), dynamic vapor sorption (DVS) and moisture sorption analysis (MSA). The unit operates by focusing a mid-IR laser beam of a sample to measure the intensity of the vibrational spectra that is emitted. This laser is capable of operating in either a continuous wave (CW) or a pulsed mode, allowing for a greater level of accuracy and precision when measuring the emitted spectra. Additionally, U-5000AT also has a special TGA protocol that is used to measure the sample's volatiles. In terms of sample handling, CETAC U-5000AT is able to handle samples up to 1000 mg with a temperature range of 25° to 300°C. The sample is loaded onto the machine via a stainless steel autosampler, where it is desiccated with an integrated dryer. This dryer is capable of controlling the moisture within the sample chamber to reduce the likelihood of sample degradation and cross contamination. In addition to the desiccating capabilities, U-5000AT includes a special software suite for analyzing the collected sample data. This software is capable of performing edge detection to identify the precise vibrational spectra of the sample while also providing real-time graphing capabilities to compare and contrast data points. With this suite, researchers can quickly and accurately interpret the collected sample data. CETAC U-5000AT is an excellent choice for high-precision measurements and analysis of samples due to the accuracy and precision of its mid-IR laser capabilities, its temperature range, and its sample analysis software suite. With U-5000AT, researchers can quickly and accurately obtain reliable vibrational spectra and other relevant sample data.
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