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ABI 4700 Proteomics Analyzer, Applied Biosystems (CAT#: STEM-MSPO-0133-ZJF)

Highlights

Combines matrix-assisted laser desorption ionization (MALDI) for ease-of-use and high throughput with true MS/MS specificity for continuous automated protein identification and characterization
Patented TOF/TOF Optics provide reproducible high-energy fragmentation, generating information-rich fragmentation patterns for accurate protein identification and enhanced characterization.
Compatible with existing proteomic workflows and enables new, innovative workflows such as those based on the proprietary ICAT reagent technology for new levels of productivity in proteomics

Cat Number: STEM-MSPO-0133-ZJF

Application: For measuring the mass-to-charge ratio (m/z) of one or more molecules present in a sample

Model: ABI 4700

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Description

The manufacturer of the ABI 4700 Proteomics Analyzer, Applied Biosystems is Applied Biosystems.
Refurbished Applied Biosystems (ABI) 4700 Proteomics Analyzer, MALDI-TOF/TOF system (p/n 4319989R) with Varian eyesys mini-BA, PC, ABI 4700 Explorer software ver 2.0, ABI 4700 Proteomics Analyzer ver 1.1, monitor and manuals.

Specification

Condition: Refurbished, Certified Pre-owned
Throughput: Up to 36,000 PMF's per day with optional automation package
Mass Accuracy: MS/MS Mode: Angiotensin fragments 354 - 1183 +/- 50 ppm
Mass Resolution: GluFib fragments; 175 > 2000 res., 684 & 1056 > 3500 res., 1441 > 5000 res.
Sensitivity: Refl. Mode: 5 fm Neurotenisin m/z 1672 50: 1 s/n : MS/MS Mode: Angiotensin fragment 926 10: 1 s/n
Laser: Solid state, Integrated
Laser rep rate: Up to 200Hz
Data acquisition: Up to 200Hz

Features

Combines matrix-assisted laser desorption ionization (MALDI) for ease-of-use and high throughput with true MS/MS specificity for continuous automated protein identification and characterization
Patented TOF/TOF Optics provide reproducible high-energy fragmentation, generating information-rich fragmentation patterns for accurate protein identification and enhanced characterization.
Compatible with existing proteomic workflows and enables new, innovative workflows such as those based on the proprietary ICAT reagent technology for new levels of productivity in proteomics
Excellent long term instrument stability for automated high productivity analysis
High-sensitivity analysis for low copy proteins.

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