Used WATERS / MICROMASS 680 #9407661 for sale
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ID: 9407661
Automated gradient controller
Pump flow: 0-10 ml/min (3-Pump slot)
Adjustable flow increment: 0.01 ml/min
Adjustable composition increment: 1%
Power supply: 115-230 VAC, 50/60 Hz, 0.5 A - 1.0 A, 80 VA.
WATERS / MICROMASS 680 is a mass spectrometer designed for use in laboratories. It is designed to analyze molecules based on their mass-to-charge ratios. This instrument is typically used for protein and peptide analysis. The main components of WATERS 680 include a multi-mode ion source, mass filter, reflector and detector. The multi-mode ion source is designed to be versatile and can accept a wide range of molecule types, including proteins and peptides. The source is also able to ionize the molecules in multiple ways, such as electron impact ionization, chemical ionization, fast atom bombardment and electrospray ionization. The mass filter is responsible for separating the molecules according to their mass-to-charge ratios. This is done through a combination of quadrupole and magnetic fields. The reflector is then used to reflect the ions so that the most abundant molecules can be detected by the detector. The detector is typically an array detector, which is able to detect the molecular fragments that are produced as the ions are filtered through the mass filter. Another feature of MICROMASS 680 is its ability to perform tandem mass spectrometry. Tandem mass spectrometry involves the use of multiple filters to further separate the molecules. This allows for more precise analysis of the molecules, such as the identification of post-translational modifications, such as protein modifications. 680 is a powerful and versatile analytical instrument. It is designed to be used in labs to analyze molecules, such as proteins and peptides, according to their mass-to-charge ratios. It is equipped with a multi-mode ion source, a mass filter, a reflector, and an array detector, allowing for the analysis of molecules in multiple ways. Additionally, it can be used to perform tandem mass spectrometry, allowing for the more precise analysis of molecules.
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