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Agilent 1290 Infinity II Preparative Open-Bed Fraction Collector

The 1290 Infinity II Preparative Open-Bed Fraction Collector is our most versatile fraction collector, enabling high-capacity fraction collection of purified compounds for semipreparative and preparative-scale LC purification. This module is ideally suited to open-access environments, provides all standard trigger modes for purification workflows, and is optimized for flow rates up to 200 mL/min.

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The 1290 Infinity II Preparative Open-Bed Fraction Collector is our most versatile fraction collector, enabling high-capacity fraction collection of purified compounds for semipreparative and preparative-scale LC purification. This module is ideally suited to open-access environments, provides all standard trigger modes for purification workflows, and is optimized for flow rates up to 200 mL/min.

The Open-Bed Fraction Collector can be seamlessly integrated into any InfinityLab Purification System. The integrated fraction delay sensor allows automated delay calibration for maximum substance recovery. The module uses RFID tagging for automated and rapid detection of vessel dimensions. The fast X-Z-theta probe minimizes sample loss during movement between vessels.

Features:

  • Integration of all standard collection modes and compatibility with multiple trigger sources provides compatibility with existing purification methods
  • Flexible bed layout allows collection of fractions into the vessel types best suited for your application, using tube sizes of 12, 16, 25, and 30 mm outside diameter with tube lengths of 100 or 150 mm
  • Preconfigured tubing kits with identification tags allow easy setup and provide optimized substance recovery with minimized peak dispersion at any flow rate
  • Variable bed configuration enables collection of up to 432 fractions or up to 5.9 L, allowing easy adaption to new applicative needs
  • Integrated delay volume sensor and automated calibration procedure ensure optimized sample recovery
  • Module offers clustering functionality for easy doubling or tripling of available fraction capacity
  • Rapid vessel-to-vessel movement minimizes substance loss during movement between fraction vessels

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