
The Agilent MS40 Plus offers 40 m³/h pumping speed, low noise, adjustable speed control, and robust filtration—ideal for maintaining stable vacuum conditions in LC/MS and ICP-MS systems.

Agilent 2-Channel Degasser V (G7112-60070) ensures efficient solvent degassing in 1260 Infinity II HPLC systems, providing stable baselines and improved chromatographic precision.

Agilent HPLC/UHPLC Vacuum Pump (G1311-60007) ensures efficient solvent degassing for stable baselines, reliable performance, and optimal chromatography results.

Gradient valve for Agilent 1100 HPLC systems. Ensures accurate solvent mixing and consistent delivery during gradient-based chromatographic analysis.

Electrospray ionization source for Agilent LC/MS delivers high sensitivity for polar, labile compounds. Ideal for pharma, environmental, and biochemical LC/MS workflows.

The Agilent Infinity II Sample Thermostat (G7167-60201) is a dedicated module designed to work seamlessly with the Agilent 1260 and 1290 Infinity II Multisamplers. Its purpose is to maintain the thermal stability of vials and microplates before injection, enabling optimal sample integrity from storage through to analysis.

The Agilent Infinity II Sample Thermostat (G7167-60201) is a dedicated module designed to work seamlessly with the Agilent 1260 and 1290 Infinity II Multisamplers. Its purpose is to maintain the thermal stability of vials and microplates before injection, enabling optimal sample integrity from storage through to analysis.

The Agilent G7167-60101 is a genuine replacement part for the InfinityLab Sample Thermostat, ensuring precise vial temperature control and reproducibility in InfinityLab LC systems.

The Agilent G7167-60101 is a genuine replacement part for the InfinityLab Sample Thermostat, ensuring precise vial temperature control and reproducibility in InfinityLab LC systems.

The Agilent Infinity II Sample Thermostat (G7167-60201) is a dedicated module designed to work seamlessly with the Agilent 1260 and 1290 Infinity II Multisamplers. Its purpose is to maintain the thermal stability of vials and microplates before injection, enabling optimal sample integrity from storage through to analysis.


