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Catalog No. THM302662CMD
Part No. 302662CMD
Supplier Thermo Fisher Scientific Inc.
Dionex™ ERS™ 500e Electrolytically Regenerated Suppressor
Net Price
1045.2
Availability

1 week

PROPERTIES
  • For Use With
    Modes of Operation Supported: External Water Mode for Eluents Containing up to 40% Solvent; Chemical Regeneration Mode for Eluents Containing up to 100% Solvent; Recycled Eluent Mode for Aqueous Eluents Without Solvent; MPIC (Mobile Phase Ion Chromatography) Mode for Ion-Pairing Eluents
  • Unit Size
    Each
  • Type
    Anion Electrolytically Regenerated Suppressor
  • Description
    Dionex AERS 500e Anion Electrolytically Regenerated Suppressor for External Water Mode (2 mm), consumables monitoring disabled
  • Flow Rate
    Maximum Eluent Flow Rate: 0.75 mL/min
  • Solvents
    External Water Mode Up to 40%Methanol, Ethanol, Acetonitrile, Isopropanol
  • Operation
    Designed with high capacity, low noise, high backpressure resiliency, and fast startup.
  • Pressure
    Recommended Backpressure: 30 to 150 psi
  • Amperage
    150 mA
  • Temperature Range
    Operational Temperature Range: 15°C to 40°C When installed outside the heated column enclosure, suppressors can support applications up to 60°C Shipping Temperature Range: 0°C to 70°C Short-term only; do not store or operate suppressors above 40°C for extended lengths of time.
  • Weight (English)
    0.65 lb.
  • Weight (Metric)
    295 g
  • Void Volume
    Less than 15 µL
  • Width (Metric)
    4.5 cm
DESCRIPTION
With high-capacity, low noise, high backpressure resiliency, and fast startup, this new generation suppressor was designed for new demands in IC. The Thermo Scientific™ Dionex™ ERS™ 500e Electrolytically Regenerated Suppressor for external water mode applications minimizes peak dispersion and improves peak efficiency, particularly when coupled with 4µm columns. This suppressors was developed in concert with the high efficiency 4µm ion-exchange columns, which use higher flow rates to achieve faster separations while retaining optimal resolution, or equivalent flow rates to achieve higher resolutions while retaining sample throughput.
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