Triple Quadrupole LC-MS/MS Comparison
Triple quadrupole mass spectrometry (TQMS) is a versatile tool for quantitative analysis. Experience the excellent performance and robustness of Shimadzu’s LCMS-TQ instruments, which offer a choice of speed, sensitivity and resolution to meet the demands of high-throughput routine analysis and/or more specialized applications.
Compare Shimadzu’s triple quadrupole LC-MS/MS systems below.
Triple Quadrupole LC-MS/MS Comparison
LCMS-8060RX | LCMS-8050RX | LCMS-8045RX | ||
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Features | The LCMS-8060RX builds on the exceptional sensitivity and UF capabilities of the LCMS-8060NX and adds even more robustness without compromising sensitivity. | Engineered to deliver excellent sensitivity the LCMS-8050RX further extends the performance of the LCMS-8050 to meet the ever-changing needs of any LC-MS/MS laboratory. | Designed for rugged, routine LC-MS/MS analysis with the optimal balance of cost, sensitivity and performance now enhanced with greater robustness and easier to use. | |
Sensitivity (S/N) | ||||
Scan Speed | ||||
Ionization Unit Compatibility | ESI | |||
APCI |
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DUIS*1) |
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Heated-ESI |
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Heated-ESI with IonFocus |
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Micro-ESI |
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Probe-ESI |
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Measurement Mode | Q1 Scan/SIM |
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Q3 Scan/SIM |
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MRM |
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Precursor ion scan |
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Product ion scan |
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Neutral loss scan |
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Synchronized Survey Scan™*2) |
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Collision Cell | UFsweeper III*3) | UFsweeper III*3) | UFsweeper II*3) | |
QP guard |
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LCMS-8060RX | LCMS-8050RX | LCMS-8045RX |
- DUIS: The dual ion source continuously performs both electrospray ionization (ESI) and atmospheric pressure chemical ionization (APCI).
- Synchronized Survey Scan: Synchronized Survey Scan (SSS) automatically performs a product ion scanning whenever a pre-set survey scan threshold is exceeded.
- UFsweeper: UFsweeper is a unique technology that delivers unparalleled efficiency and speed. UFsweeper accelerates ions out of the collision cell by forming a pseudo-potential surface.
- QP guard: Reduces contamination of the quadrupole rod by applying voltage to the multi-pole and preventing unwanted ions from entering the quadrupole rod.