Mass spectrometer DART JumpShot® HTS
processautomaticautomation

Mass spectrometer - DART JumpShot® HTS - Bruker Handheld XRF Spectrometry - process / automatic / automation
Mass spectrometer - DART JumpShot® HTS - Bruker Handheld XRF Spectrometry - process / automatic / automation
Mass spectrometer - DART JumpShot® HTS - Bruker Handheld XRF Spectrometry - process / automatic / automation - image - 2
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Characteristics

Type
mass
Domain
process, automatic, data acquisition, automation

Description

A total solution for high throughput, high sensitivity DART High Throughput Low Running Costs Productivity Analyze and process 384 samples in under 25 minutes to remove lab bottleneck throughput. Simple Combine dedicated hardware and software to implement streamlined, highly efficient workflows. Automated Process large sample sets with minimal manual input. Cost-effective Benefit from low gas consumption and a reduced per-sample cost. Optimizing the throughput and ease of DART-MS DART JumpShot® HTS maximizes the throughput of DART-MS allowing you to analyze and process large sample sets and rapidly detect analytes of interest. It enables both quantitative and qualitative workflows that are streamlined, highly efficient and largely automated. Free up analyst time while at the same time de-bottlenecking lab throughput, whenever you need DART-MS to be delivering to its full potential. How does DART JumpShot® HTS work? DART JumpShot® HTS combines pulsed gas technology, automation hardware and software to analyze large sample sets via a simple three-step workflow that involves: Spotting nanoliter volumes from a 96 or 384 wellplate onto a QuickStrip HT Wire Mesh Screen, using an automated pipetter. Transferring the screen to the JumpShot® HTS interface for analysis; linear rail automation hardware maximizes the speed with which the system moves from sample to sample. Using post-data acquisition software Analyzer Pro XD to complete the workflow, via automatic peak detection and data processing; screen rapidly for analytes of interest on the basis of mass and generate a heat map for the wellplate.

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