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  • Brand
  • FMI
  • Product Name
  • "FENYX" VARIABLE DISPENSE PUMP
  • Item
  • FENYX
  • The FENYX Variable Dispense pump connects the needs of the life sciences field with an advanced miniaturized fluidic system designed to manipulate and control small volumes of fluid at the microscale level for a broad range of applications.

    Achieving optimal performance in accuracy and repeatability with innovative design modifications, this product enables the ability to do precision microliter dispensing, high flow washing, and priming with one single pump.

    This technologically advanced fluidic device not only meets the growing demand for simplified architecture, it also provides increased throughput, decreased cost of ownership, and precise dispenses critical in life science applications.

     
  • WETTED MATERIAL OPTIONS:
    Ceramic: Alumina, Zirconia
    Pump Housing: PVDF, ETFE, PTFE, Polypropylene, PEEK

    SEAL MATERIAL OPTIONS:
    Carbon-Filled PTFE, FKM, FFKM, Rulon AR

    PORT OPTIONS:
    1/4-28 UNC Threaded Ports,
    Barb Fittings (1/8"-1/4" Tubing ID),
    1/4" Compression Nuts

    DISPENSE VOLUME:


    DRIVE MOTOR SPECIFICATIONS:
    RATED CURRENT:
    Rotational: 2.0 amp
    Linear: 1.0 amp

    STEP ANGLE:
    Rotational & Linear:1.8° Full Step

    MOTOR DIRECTION:
    Rotational: Clockwise
    Linear: Clockwise & Counterclockwise

    MOTOR FRAME:
    Rotational: NEMA 17 (43 mm)
    Linear: NEMA 11 (28 mm)

    MOTOR SPEED:
    Rotational: Up to 1000 RPM
    Linear: Up to 1900 RPM

    OPERATING TEMPERATURE:
    0°C to 50°C


     
  • ◆ FMI CeramPump® chemical inertness for increased reliability

    ◆ Valveless pump technology

    ◆ Calibratable home dispense volume

    ◆ Linear anti-backlash mechanism

    ◆ Differential linear encoder

    ◆ Non-contact dispensing down to 4μL

    ◆ Maintenance free, wear resistant materials

    ◆ One moving part in fluid path

    ◆ Simplified fluidic architecture

    ◆ Reduces system total cost of ownership when compared to alternative technologies

    ◆ Enables increased throughput when compared to alternative technologies