Thermo TSQ Endura
Now available from KRSS Thermo Scientific TSQ Endura w/ Transcend II LX-4 & Ultimate Pumps UHPLC.
- Overview
- Specifications
- Find Out More
Overview
From forensic toxicology to environmental analysis to pharmaceutical research, a constant in almost every field is the need for greater productivity; to quantify more samples in less time with greater reliability and confidence, and to do it all on ever-tighter budgets. The Thermo Scientific Endura Triple Quadruple Mass Spectrometer meets these needs with unsurpassed value. It delivers best-in-class sensitivity run after run and day after day regardless of sample type or matrix and does so with an ease-of-use that takes the worry out of method development and operation.
The system consist of the following items:
The system consist of the following items:
- Thermo Scientific TSQ Endura Triple Quadrupole Mass Spectrometer
- (4X) Thermo Dionex UltiMate 3000 RS Pump HPG-3400RS
- Thermo Dionex Transcend II Valve Interface
- Thermo Dionex SRD-3600 Solvent Rack with 6 degasser channels
- (2x) Thermo Scientific PAL: MXY 012-05A Open Autosampler
- Powervar Security Plus OnLine Uninterruptible Power Supply
- Peak Scientific Genius 1022 Nitrogen Generator
- Sogevac SV40/65 BI FC Rotary Pump
- Chemyx F100T2 Syringe Pump & Rheodyne MXT715-004 Valve
- Dell computer with software and monitor
Specifications
Thermo Scientific TSQ Endura
- Positive Electrospray (HESI) - A 2 μL injection of a 500 fg/μL reserpine solution will produce a minimum signal-tonoise ratio of 80,000:1 for the transition of the protonated molecule at m/z 609.3 to the fragment ion at m/z 195.1 when operated in selected-reaction monitoring (SRM) mode with Q1 and Q3 resolution set to 0.4 and 0.7 Da FWHM respectively.
- Atmospheric Pressure Chemical Ionization (APCI) - A 2 μL loop injection of a 500 fg/μL reserpine solution will produce a minimum signal-to-noise ratio of 25,000:1 for the transition of the protonated molecular ion at m/z 609.3 to the fragment ion at m/z 195.1 when operated in selected reaction monitoring (SRM) mode with Q1 and Q3 resolution both set to 0.7 Da FWHM
- Negative Electrospray (nESI) - A 2 μL loop injection of a 500 fg/uL chloramphenicol solution will produce a minimum signal-to-noise ratio of 80,000:1 for the transition of the deprotonated molecular ion at m/z 321.0 to the fragment ion at m/z 152.0 when operated in selected reaction monitoring mode (SRM) with Q1 and Q3 resolution set to 0.4 and 0.7 Da FWHM, respectively.
- Mass Range - m/z 10–3400
- Resolution - Q1 and Q3 adjustable to 0.4 Da peak width (FWHM) across the entire mass range
- Scan Rate
15,000 amu/second at a resolution of 2 FWHM
500 SRM/second (for any resolution from 0.4 through 2.0 FWHM)
25msec polarity switching - Mass Stability – Mass assignment will be within ±0.05 Da over a 24 hour period. The laboratory room temperature must be maintained between 18–27 °C (65–81 °F). The room temperature may not change by more than 5 °C (9 °F) during this period
UltiMate 3000 RS Pump HPG-3400RS
- Operating Principle - Serial dual-piston
- Flow Accuracy - ± 0.1% (For BM pumps: ± 0.5%; For NCP-3200RS: < 0.1% RSD at 300 nL/min and 40 MPa)
- Flow Precision - < 0.05% RSD or < 0.01 min SD whichever is greater
- Pulsation - Typically: < 0.2 MPa or < 1% whichever is greater (For ISO-3100BM pump: Typically: < 0.02 MPa or < 0.1%, whichever is greater)
- GLP Features -
Full support of Thermo Scientific™ Dionex™ AutoQ instrument qualification, qualification status and system wellness monitoring
All system parameters are logged in the Chromeleon™ Audit Trail - Communications - USB for PC connection, USB hub with 3 sockets integrated, 15-pin D-sub connector for solvent rack/degasser connection
Transcend II Valve Interface
- Minimizes manual sample preparation and facilitates direct sample injection into an LC-MS system - including plasma, urine, food, and other complex matrices
- Reduces ion suppression through higher specificity
- Saves time and simplifies complex sample preparation protocols
- Simplifies method development by enabling the same method to be used for different matrices
- Accelerates results and quadruples mass spectrometer throughput
- Enhances productivity by facilitating analysis of more samples per hour
- Improves efficiency by reducing MS idle time
- Increases flexibility by allowing up to four different assays to run at the same time
SRD-3600 Solvent Rack
| Eluent Bottle Capacity (all versions) | Nine 1L bottles, or four 2.5L or two 5L bottles and two 1L bottles |
| Degassing Channels | Six analytical degasser channels |
| Degassing Channel Tubing | Teflon AF |
| Channel Volume | 670 μL |
| Maximum Flow Rate/Channel | 14 mL/min |
| Optimal Flow Rate/Channel | ≤3.6 mL/min (for isocratic or gradient formed 50:50 methanol/water blends) |
| Wetted Materials | Teflon AF, PEEK, and Tefzel |
| Status LEDs | Power, vacuum pump status, error (vacuum and/or leak) |
| Communication | 15-pin D-SUB (through UltiMate 3000 pumps) |
Peak Scientific Genius 1022
- Gas Type - Nitrogen
- Gas Flow - 32L/min
- Outlet Pressure - 100psi
Sogevac
- Pumping speed (50/60 Hz): 34.7 / 41.8 cfm
- Ultimate pressure: < 0.5 mbar
- Mains connection: 200-240V, 1-ph, 12A, 50/60 Hz
- Inlet connection: KF-40
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