- Thermo Scientific TSQ Endura Triple-Stage Quadrupole Mass Spectrometer 230V
- Thermo Scientific Vanquish Column Compartment/Oven H (VH-C10-A)
- Thermo Scientific Vanquish Split Sampler HT (VH-A10A) (6850.1915)
- Thermo Scientific Vanquish Binary Pump H Quaternary (VH-P10-A)
- Windows Workstation with Monitor, Keyboard, and Mouse
- Divert/Inject Valve Module with Cables
- Chemyx Fusion 101 Syringe Pump
- Peak Scientific NM32LA Nitrogen Generator 230V
- Sogevac SV65 BIFC Pump
- Ethernet Cables
- Power Cables
- 90-Day Warranty
Notice: The above list is an overview and does not include everything that comes with this system. Continue reading to see a complete breakdown of the included items and a section on testing performed to verify functionality.
- Thermo Scientific Xcalibur
- Thermo Scientific TraceFinder
- Thermo Scientific Tune/Instrument Control
- Chromeleon (installed but license is required for operation)
- TSQ Endura mainframe (serial: TQH E1 0464) — triple-quadrupole MS
- API source options: H-ESI / HESI-II, and APCI (includes ion transfer tube + ion sweep cone)
- Divert/Inject valve module with cables
- Syringe pump (for infusion/tuning) with power supply (Chemyx fusion 101)
- MS power cord(s) (230 Vac), region-specific
- Ethernet cable(s), Cat5e shielded, ≤3 m (for PC/control)
- Collision gas line from MS to argon regulator + fitting
- Nitrogen gas line from source to source interface + fitting
- Vanquish Split Sampler module (cat. no. 6850.1915)
- Pump module: Quaternary
- Column compartment/oven
- System interconnect cables (CAN/ethernet/control for Vanquish stack).
- LC power cords
- Bottle tray with caps & frits
- Autosampler racks/trays: 54 x 12 mm OD vials ( 22641.5 mL), 96 x 1.6, 7 and 8 mm OD vials ( 22641.2 mL), 24 x 15 mm OD vials ( 22644 mL), Deep well plates (96 and 384)
- Start/ready contact-closure cable (LC↔MS), if not using software handshake
- UHP & tubing to MS.
- Nitrogen (source/aux gas), HP, with PFA line to MS
- Lab exhaust for the forepump outlet and solvent waste trap vents
- Electrical outlets (typical):
- TSQ Endura: 230 Vac, ~5 A (1 outlet)
- Forepump: 230 Vac, ~8 A (1–2 outlets, 1 pump for Endura)
- PC/monitor/switch: 100–240 Vac (separate outlets)
- LC stack: per module (120/230 Vac). Total outlets commonly ≥10 for a single-forepump build
- Peek or stainless steel capillaries for LC→MS transfer
- Syringes (Hamilton) for direct infusion
- Waste containers/tubing with compatible caps
- Spare ion transfer tube & sweep cone (Endura)
- Spare forepump oil + exhaust mist filter
- Replacement autosampler needles/seals and sample loops (Vanquish Split Sampler)
- Pump seals/check valves (LC)
- Fuses (MS/LC)
- Autosampler confirmed functional through manual injection: PASSED
- LC system confirmed functional; flow path and divert valve operating correctly: PASSED
- Mass Spectrometer confirmed functional; capable of detecting analytes: PASSED
- Method Development substantially completed; ready for use in automated runs: PASSED
Notice: Continue reading for more details of our testing performed to verify functionality.
- A manual injection was performed to test the autosampler’s functionality.
- The needle was observed dipping correctly into the sample solution.
- Injection confirmed that the autosampler syringe system was operational and capable of aspirating/dispensing liquid.
- The LC pump and flow system were engaged and confirmed to be functional.
- Flow through the column and divert valve was verified, showing that the sample path to the mass spectrometer was intact.
- No leaks or pressure irregularities were observed, confirming the LC system’s stability.
- The TSQ Endura mass spectrometer was engaged and tested in operating mode.
- Signal response confirmed that the MS was detecting and recording ion events appropriately.
- This validated that the instrument was capable of receiving and processing analyte input from the LC system.
Manufacturer
|
Thermo Fisher Scientific
|
Model
|
TSQ Endura
|
Serial No.
|
TQH-E1-0464
|
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.
|
Positive Electrospray (HESI)
|
A 2 µL injection of a 500 fg/µL reserpine solution will produce a minimum signal-to-noise 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.
|
Gas requirements
|
Collision gas: 99.995% pure argon Collision gas supply pressure: 135 ± 70 kPa (20 ± 10 psig) Sheath/aux/sweep gas: 99% pure nitrogen Sheath/aux/sweep gas supply pressure: 690 ± 140 kPa (100 ± 20 psig) Maximum sheath gas consumption: ≈20 L/min
|
Environment requirements
|
Functional temperature range: 15–27 °C (59–81 °F) Optimal temperature range: 18–21 °C (65–70 °F) Heat output: 1550 W (5400 Btu/h) Total system heat output: 4420 W (15,380 Btu/h) Particulate matter: <3,500,000 particles per cubic meter of air (<100,000 particles of >5 µm diameter per cubic foot of air) Relative humidity: 20% to 80%, without condensation Floors must be free of vibration
|
Power consumption
|
2300VA
|
Power rating
|
230V~, 50/60Hz, 10.0A max
|
Dimensions (W x D x H)
|
30 x 33 x 27 in (76 x 84 x 68 cm)
|
Weight
|
275 lb (125 kg)
|
Manufacturer
|
Thermo Fisher Scientific
|
Device
|
Column Compartment H
|
Part No.
|
VH-C10-A
|
Serial No.
|
6301071
|
Mfg. date
|
2016-11-11
|
Power consumption
|
326VA
|
Power rating
|
100-240V~, 50/60Hz, 4AT
|
Dimensions (W x D x H)
|
4.4 x 16.5 x 27.6 in (11.1 x 42 x 70 cm)
|
Weight
|
28.7 lb (13 kg)
|
Manufacturer
|
Thermo Fisher Scientific
|
Device
|
Split Sampler HT
|
Part No.
|
VH-A10-A
|
Serial No.
|
8302664
|
Mfg. date
|
2016-04-21
|
Power consumption
|
550VA
|
Power rating
|
100-240V~, 50/60Hz, 5AT
|
Dimensions (W x D x H)
|
16.5 x 11.4 x 24.4 in (42 x 29 x 62 cm)
|
Manufacturer
|
Thermo Fisher Scientific
|
Device
|
Binary Pump H
|
Part No.
|
VH-P10-A
|
Serial No.
|
8302653
|
Mfg. date
|
2016-04-21
|
Power consumption
|
550VA
|
Power rating
|
100-240V~, 50/60Hz, 4AT
|
Manufacturer
|
Peak Scientific
|
Model
|
NM32LA
|
Serial No.
|
A16-02-112
|
Gas type
|
Nitrogen
|
Integrated compressor
|
Yes
|
Application types
|
LC-MS or LC-MS/MS
|
Max gas flow
|
32L/min
|
Max output pressure
|
100psi/6.9bar
|
Pressure gauges
|
1
|
Gas outlets fitting
|
¼" BSP
|
Start up time
|
30 mins
|
Heat output
|
5729 BTU
|
Max operating temperature
|
30°C (86°F)
|
Particles
|
<0.01µm
|
Noise level
|
54 dBA @ 1m
|
Accreditations
|
CSA, FCC, CE
|
Power rating
|
~230V, 50/60Hz, 7A
|
Power consumption
|
1680 VA
|
Dimensions (W x D x H)
|
23.6 x 29.5 x 28.1 in (60 x 75 x 71.3 cm)
|
Weight
|
226.6 lb (103 kg)
|