AR 403 All-Purpose Equipment Drive Unit

AR 403 All-Purpose Equipment Drive Unit

Description

The ERWEKA All-Purpose system is based on a powerful drive unit available in two versions. The various attachments can be easily and quickly connected by means of a coupling.

The drive unit AR 403 is equipped with a three-phase AC motor. The sturdy ball bearing worm gear drive is completely maintenance free and provides an output torque of max. 23 Nm. The unit features electronic speed control, variable between 20 and 400 rpm. A digital dial regulates the speed.

Through permanent nominal/actual adjustment the preselected speed is kept, even under varying load. The AR 403-S is similar to the AR 403, but has a different drive train. This connection is designed for heavy use.

R&D and Small Scale Production

The ideal solution

ERWEKA’s All-Purpose equipment is ideal for small scale production in the pharmaceutical, chemical, cosmetic and food industries. In addition, it fits perfect into R&D and the development of powder tablets, ointments, crèmes and more. The modular design is compact, economical and offers a powerful motor drive with a wide ideal for R&D and small scale production range of easily interchangeable attachments for various purposes.

Universal Gear -Extends for even more

The universal gear is required for adjusting the angle of operation (0-80°) and for speed reduction (1:6).

The Universal Gear is required for the operation of the following:




  • CM – Conical Mill


  • AR 403 / AR 403-s

    Specifications

    ManufacturerErweka
    Torquerobust / -S for heavy use
    Voltage/Frequency230V 50/60 Hz 115 V/60 Hz 127V/60Hz
    Width450 mm
    Length400 mm
    Height440 mm
    Weight30 kg
    Motor typeThree-phase AC motor
    Power740 W
    Tropics insulationClass F
    RPM20-400 rpm
    Tolerance rpm (coasting)+/- 1 rpm
    Gear typeWorm gear
    Output20-400 rpm
    Gear max. torque23 Nm
    Efficiency89 %
    Timer possible time settingHours/minutes
    Set time (max)9 h 59 min
    Tolerance timer+/- 1 se