EDP 9000

EDP 9000

DOUBLE MAST ELECTRODEPOSITION EQUIPMENT

Description

EDP 9000 – DOUBLE MAST ELECTRODEPOSITION EQUIPMENT

This equipment has the same technical characteristics as the EDP 7000 electrodeposition device. The most important characteristic of the EDP 9000 is to present two measurement places on the same appliance. It has been designed as a response to the lack of sufficient space which is quite often the case in most laboratories. The second benefit is its price, since one EDP 9000 is less expensive then two EDP 7000. Finally, the use of the EDP 9000 when many analysis must be done saves time.

Key advantages

  • SPACE-SAVING & ECONOMICAL DESIGN: Two measurement stations on a single base, ideal for laboratories with limited workspace. The EDP 9002 is more affordable than purchasing two EDP 7000 devices.
  • TIME EFFICIENCY: Significant time savings when conducting multiple analyses.
  • SYNTHETIC MATERIALS: The EDP is made solely from synthetic materials that perfectly resist the sometimes highly corrosive environments of research laboratories, thus ensuring a very long lifespan for the device.
  • HIGH PRECISION: Ensures optimal trapping efficiency with regulated and constant direct current. The EDP is equipped with a polarity reverser for electrochemical stripping of the stainless steel pellet intended to receive the deposit, thereby ensuring perfect purity of the support.
  • COOLING SYSTEM: Features high-flow air convection, preventing solution evaporation thanks to a solution cooling system with high-flow air convection.
  • VERSATILE SETTINGS: Adjust the current intensity up to 5 Amperes and the electrode rotation speed with precision potentiometers and three sizes for solution containers.
  • DIGITAL TIMER: Set the exact duration of electrodeposition with a digital display timer and an audible alarm.
  • EASY TO USE: Quick assembly/disassembly of bottles and an internal container for accidental spills. Easy user maintenance of the device. Almost instantaneous assembly/disassembly of bottles.