Saint-Gobain High Purity Systems
Saint-Gobain High Purity Systems

Furon® Precision Dispense Pump (PDP)

Furon® Precision Dispense Pump (PDP)
Our Furon® Precision Dispense Pump (PDP) utilizes cutting edge technology to deliver extremely accurate doses of media with unprecedented reliability. Furon® PDP pumps are designed for long life and are maintenance-free, maximizing the end user's up-time.

Our patented PTFE rolling diaphragm technology coupled with precision stepper motor control enables precise dispensing of aggressive or ultra-pure media, eliminating the requirement for expensive flow controllers.


The Furon® PDP features Zero Displacement Valve technology that enables pulsation-free dispensing.  Additionally, a fully-programmable suckback valve technology provides complete control over residual drops of liquid, assuring superior recipe accuracy and maximizing chemical efficiency.

Our Furon® PDP is a fully-integrated system driven by its own on-board microprocessor.  The PDP may be operated on its own via the intuitive Graphical User Interface (GUI), or controlled remotely via the built-in RS-485 interface.

All wetted surfaces are Fluoroloy-T and Fluoroloy 646 to suit dispensing of ultra-pure chemicals commonly used in the semiconductor, pharmaceutical, and medical industries.
  • Cutting-edge technology assures accurate and precise delivery of media
  • Meets the semiconductor industry's ultra high purity chemical requirements
  • Easy setup and control via intuitive Graphical User Interface (GUI)
  • Programmable suckback feature maximizes use of expensive chemistries
  • 0 to 40 mL dispense volume
  • Stepper motor driven for precise dispense volume and flow-rate control
  • Zero displacement valves enhance dose repeatability
  • Remotely controllable via RS-485 PC interface or Logic Controller
  • CE compliant
  • Long working life without preventive maintenance
  • Customizable for a wide variety of applications
  • Capable of storing up to four custom recipes
  • Built-in vacuum generation provides for efficient use of CDA supply

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