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RADIAN ASAP Direct Mass Detector

The power to know now.

RADIAN ASAP is a new dedicated direct analysis system that enables rapid, easy, and low-cost analysis of liquid/solid samples. Developed by combining proven single quadrupole mass spectrometry technology with an atmospheric pressure solid sample analysis probe (ASAP), RADIAN ASAP is compact yet designed for high quality and ease of use. No special training or expertise, complex sample pretreatment, or separation is required! High-quality mass spectral data can be obtained, eliminating the need to wait for analysis results from other departments. The multivariate analysis software "LiveID" allows for real-time classification of samples analyzed using RADIAN ASAP. Information is immediately provided to the user during analysis, enabling informed real-time decision-making without doubts regarding sample identification. [Examples of applications in various fields] ■Pharmaceuticals: Reaction monitoring in exploratory research ■Chemical industry: Quality control of raw materials ■Food/Environment: Authenticity assessment of food ■Forensics: Rapid triage of seized drugs ■Academia: Education/analytical method development

Related Link - https://www.waters.com/waters/ja_JP/RADIAN-ASAP-Di…

basic information

[Simple 4-Step Flexible Workflow Solution] The operation of RADIAN ASAP is simple and intuitive, allowing for results to be generated with minimal sample preprocessing, making it an ideal tool for making informed decisions on the spot. It can be used for a wide range of applications and workflows as it allows direct ionization from liquid or solid samples. 1. Capillary cleanup 2. Loading the sample into the capillary 3. Inserting the capillary and starting the measurement 4. Real-time data visualization [LiveID - Library Matching] With LiveID, the real-time library search workflow enables the software to match all compound spectra in the library against each analyzed sample, calculating a score (Max: 1000 points). The closer the value is to 1000, the higher the likelihood that the compound is present in the sample, while a lower score indicates a lower likelihood of the compound being present in the sample.

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