
Inductively coupled plasma mass spectrometers (ICP-MS) utilize inductively coupled plasma for sample ionization and an MS for ion separation and quantification. The low detection limits and high productivity possible with ICP-MS are particularly useful for trace metal analysis and environmental testing. Common components of an ICP-MS system include a sample introduction system, an ion source, a vacuum system, a collision reaction cell, ion optics, a mass spectrometer (often a quadrupole), and a detector. An analytical working range of nine orders of magnitude, detection limits below the ppt range, and aptitude for isotopic analysis are hallmarks of ICP-MS. ICP-MS instruments are commonly configured for routine analyses, high-matrix interference samples, or specific applications, such as work in the semiconductor industry or medical and forensic toxicology fields. Also, be sure to consider any desired customization options, such as chromatographic coupling or use with organic solvents.
Find, compare, and request a quote for inductively coupled plasma mass spectrometers across leading suppliers at Labcompare; including access to product citations, related published figures, and first-hand reviews from our scientific community.
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Other Inductively Coupled Plasma Mass Spectrometer (ICP MS) Products
Agilent Technologies
- Mass range: 2 to 260 u
Resolution: Variable from 0.3 u to 1.0 u - Inquire
- Inquire
Agilent Technologies
- Quadrupole; Mass range: 2 to 260 u; Resolution: Variable from 0.3 u to 1.0 u
- less than ppt
- 11 orders
Analytik Jena
- Quadrupole
- Up to 1500 Mcps/ppm at <2 % CeO
- 11 orders linear analytical range, 0.1-1010 cps, all pulse counting mode
GBC Scientific Equipment
- Orthogonal acceleration Time-of-Flight (TOF); mass range 1–260 u; resolution 0.4 u (R =1200 at 238U); 30,000 full spectra/s
- Parts per trillion (ppt) detection limits; mass range 1–260 amu; >30,000 full spectra per second; resolution typically 1,200 or greater for 238U (0.4 amu)
- Mass range 1 to 260 amu
GBC Scientific Equipment
- Orthogonal acceleration Time-of-Flight (TOF) with Octopole Collision Cell (OCC); mass range 1–260 u; resolution 0.4 u (R =1200 at 238U); 30,000 full spectra/s
- Parts per trillion (ppt) detection limits; mass range 1–260 amu; >30,000 full spectra per second; resolution typically 1,200 or greater for 238U (0.4 amu)
- Mass range 1 to 260 amu
PerkinElmer
- Three-quadrupole design (Q0 ion deflector, Q1 universal cell, Q2 analyzer); mass range 2–260 u; resolution <0.7 u; 34 MHz free-running RF generator
- Inquire
- =14 orders of magnitude (EDR, 10¹4)
Inquire
PerkinElmer
- Three-quadrupole design (Q0 ion deflector, Q1 universal cell with dynamic bandpass tuning, Q2 analyzer); mass range 2–260 u; resolution <0.7 u; 34 MHz free-running RF generator
- Inquire
- =14 orders of magnitude (EDR, 10¹4)
Inquire
Thermo Fisher Scientific
- Single Quadrupole
- Inquire
- >9 orders of magnitude (<1 to >1 x 109 cps)
Thermo Fisher Scientific
- Double-focusing magnetic sector; three resolution settings: R = 300, 4,000, 10,000; magnet jump time <150 ms (7Li–²³8U–7Li)
- >3×106 cps/ppb (¹¹5In) wet plasma with Jet Interface; >3–5×107 cps/ppb (¹¹5In) dry plasma
- >9 orders of magnitude (>10? cps linear dynamic range)
Thermo Fisher Scientific
- Double-focusing magnetic sector; three resolution settings: R = 300, 4,000, 10,000; triple detection (SEM + Faraday + filter lens); auto-switch to Faraday above SEM range
- >3×106 cps/ppb (¹¹5In) wet plasma with Jet Interface; >3–5×107 cps/ppb (¹¹5In) dry plasma
- >12 orders of magnitude (>10¹² cps linear dynamic range)
Thermo Fisher Scientific
- Single quadrupole; QCell collision/reaction cell with He KED; three AGD modes for online matrix dilution
- Sub-ppt capability with AGD technology
- Inquire
Thermo Fisher Scientific
- Double-focusing magnetic sector (MC-ICP-MS); mass range 1–256 u; low/medium/high resolution modes; independent source and detector slit settings
- 10–20× increase in desolvation mode via jet interface
- High dynamic range with multi ion counting capability
Nu Instruments
- Single-collector double-focusing magnetic sector; mass range 1–260 u
- Inquire
- 9 orders of magnitude (pulse-counting multiplier with patented beam attenuation); 12 orders of magnitude with optional Faraday detector
Inquire
Nu Instruments
- Multi-collector double-focusing magnetic sector; 16 Faraday cups + up to 5 ion-counting detectors (SEM or Daly); mass range lithium to actinide series
- Inquire
- Inquire
Inquire
Nu Instruments
- Multi-collector double-focusing magnetic sector; 16 Faraday cups + up to 6 ion-counting detectors (SEM or Daly); high-resolution and pseudo-high-resolution modes
- Inquire
- Inquire
Inquire
Nu Instruments
- Multi-collector double-focusing magnetic sector with MS/MS capability; XD collector array with up to 28 Faraday cups + up to 6 ion-counting detectors (SEM or Daly); mass range Li to U and beyond; 25% natural dispersion; dynamic range 0–75 Gcps (SEM to 10^10 O pre-amplifier)
- Inquire
- 0–75 Gcps (0–1200 V) from SEM to 10^10 O resistor pre-amplifier
Inquire
Nu Instruments
- Multi-collector double-focusing magnetic sector; 16 Faraday cups + up to 6 ion-counting detectors (SEM or Daly); mass range lithium to actinide series
- Inquire
- Inquire
Inquire
Nu Instruments
- Time-of-Flight (TOF); simultaneous full-spectrum acquisition; acquisition rate 33 kHz (full mass range) to 160 kHz (reduced mass range); spectrum readout time as low as 80 µs
- Inquire
- 10 orders of magnitude (patented ion beam attenuation system combined with MagneTOF detector)
Inquire
SPECTRO Analytical Instruments
- Single quadrupole; RF-only pre-filter; 200 mm length, 12 mm Mo rods; fully digital 10 kV power supply; hexapole CRC (He KED ~4 mL/min; H2 reaction mode); dual-stage electron multiplier; minimum integration time =100 µs/channel
- Inquire
- 10 orders of magnitude
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